Method and apparatus for use in a node in wireless communications - Patent Application 20070122997
The method and apparatus in wireless communication systems use a wake-up signal to dynamically adjust wake-up mechanisms, optimizing power consumption and reducing hardware complexity across diverse scenarios, including 5G and IoT networks.
Patent Information
- Application Number
- JP2025537109
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2022-12-23
- Filing Date
- 2023-12-13
- Publication Date
- 2026-01-14
AI Technical Summary
Existing wireless communication systems face challenges in adapting to diverse application scenarios while optimizing power consumption and reducing hardware complexity.
A method and apparatus utilizing a wake-up signal to proactively wake up user equipment or network equipment, dynamically adjusting wake-up or command mechanisms, and supporting different paging wake-up or command mechanisms to optimize power consumption and reduce hardware complexity.
The solution effectively reduces power consumption and hardware complexity by dynamically adjusting wake-up mechanisms, supporting various application scenarios, including 5G technologies like NR, IoT, and vehicle-to-everything networks.
Smart Images

Figure 2026501347000001_ABST
Abstract
Description
[Technical Field]
[0001] The present application relates to a transmission method and apparatus in a wireless communication system, and more particularly to a low-power transmission scheme and apparatus in wireless communication. [Background technology]
[0002] In the future, application scenarios for wireless communication systems will become increasingly diverse, and different application scenarios will impose different performance requirements on the system. To address the different performance needs of various application scenarios, the 3GPP (3rd Generation Partnership Project) RAN (Radio Access Network) #72 General Meeting decided to consider new radio (NR) technology (or 5G), and the 3GPP RAN #75 General Meeting approved the WI (Work Item) for NR (New Radio) technology, marking the start of NR standardization.
[0003] In new wireless technologies, power consumption is a key indicator for measuring technical performance. To adapt to different application scenarios and meet different needs, 3GPP has evolved technologies to reduce power consumption. Summary of the Invention
[0004] Among various techniques for reducing power consumption, proactively waking up the receiver of a user equipment (UE) or network equipment (gNB / eNB) through a wake-up signal is considered an effective method. Due to the demand for reducing power consumption in NR systems, this application discloses a solution. Please note that in the description of this application, reducing power consumption is used only as one typical application scenario or example. The wake-up signal in this application can also be applied to other scenarios facing similar problems (such as other scenarios requiring proactive wake-up, including, but not limited to, capacity expansion systems, short-range wireless communication systems, unlicensed band communications, the Internet of Things (IoT), Ultra-Reliable Low-Latency Communication (URLLC) networks, vehicle-to-everything networks, etc.) and can achieve similar technical effects. In addition, using a unified solution in different scenarios (including, but not limited to, multi-carrier scenarios) can also help reduce hardware complexity and costs. Where there is no contradiction, embodiments and features in embodiments of a first node device in this application may also be applied to a second node device, and vice versa. Specifically, the descriptions of terms, nouns, functions, and variables in this application (if not specified) may refer to the definitions in the TS36 series, TS38 series, and TS37 series of 3GPP specification protocols.
[0005] The present application discloses a method for use in a first node for wireless communication, the method comprising: receiving a first information block used to determine at least one configuration parameter value of the target wake-up signal and monitoring the target wake-up signal; determining whether to monitor the first signaling and determining whether to monitor the second signaling; The monitor for the target wake-up signal is configured to monitor a first device group, the first device group including at least one user equipment, the target wake-up signal is detected, and the target wake-up signal is detected as a signal for the first device group. When the target wakeup signal propagates an instruction for the first device group, at least one of the first information block or the target wakeup signal is used to determine whether to monitor the first signaling, and the first signaling is used to determine whether to monitor the second signaling, and when the target wakeup signal is detected and the target wakeup signal does not propagate an instruction for the first device group, the monitor of the target wakeup signal abandons monitoring the second signaling.
[0006] In one embodiment, whether to monitor the first signaling is determined through the first information block or the target wake-up signal, thereby supporting different paging wake-up or command mechanisms and increasing configuration flexibility.
[0007] In one embodiment, the network dynamically adjusts wake-up or command mechanisms as needed, thereby optimizing power consumption.
[0008] According to one aspect of the present application, the method is characterized in that the target wake-up signal is not detected, the monitor for the target wake-up signal monitors the first signaling, and the first signaling is used to determine whether to monitor the second signaling, or the monitor for the target wake-up signal abandons monitoring the second signaling.
[0009] According to one aspect of the present application, the method is characterized in that the first signaling is associated with a G1 device group, G1 being a positive integer greater than 1, the second device group being one of the G1 device groups, a monitor of the target wake-up signal belonging to the second device group, and an instruction value of the second device group propagated by the first signaling being used to determine whether to monitor the second signaling.
[0010] According to one aspect of the present application, the method is characterized in that the first information block is used to determine an X1 configuration set, any one of the X1 configuration sets including at least one configuration parameter value, X1 is a positive integer greater than 1, the target configuration set is one of the X1 configuration sets, the target configuration set includes at least one configuration parameter value of a target wake-up signal, and the identity of the first device group is used to determine the target configuration set from the X1 configuration set.
[0011] In one embodiment, the target configuration set is determined through the identity of the first device group, thereby supporting different types of wake-up signal receivers and increasing implementation flexibility.
[0012] In one embodiment, wake-up signals with different configurations are supported, thereby optimizing the design of the wake-up signal.
[0013] According to one aspect of the present application, the method comprises: transmitting a second block of information; The second information block is used to indicate at least one band, and the target wake-up signal monitor supports reception of a wake-up signal on each band indicated by the second information block.
[0014] According to one aspect of the present application, the method further comprises: the first device group being one of the X2 device groups; and the X2 identities being associated with the X2 device groups, respectively. wherein any one of the X2 device groups includes at least one user equipment, X2 is a positive integer greater than 1, the first identity and the second identity are two different identities within the X2 identity, and one user equipment included in the device group corresponding to the first identity within the X2 device group is assigned the first identity, and one user equipment included in the device group corresponding to the second identity within the X2 device group is assigned either no identity or the second identity.
[0015] According to one aspect of the present application, the method is characterized by using a first information block to determine a time-domain position offset between the first signaling and the second signaling, using the first information block to determine a time-domain position offset between the target wake-up signal and the second signaling, using the time-domain position relationship between the target wake-up signal and the first signaling to decide whether to monitor the first signaling, and using the identity of the monitor of the target wake-up signal to determine the time-domain position of the second signaling.
[0016] The present application discloses a method for use in a second node for wireless communication, the method comprising: transmitting a first information block used to determine at least one configuration parameter value of the target wake-up signal, and transmitting the target wake-up signal; transmitting the first signaling and transmitting the second signaling; The monitor for the target wake-up signal is characterized in that: the monitor belongs to a first device group, the first device group includes at least one user equipment; when the target wake-up signal is detected and the target wake-up signal carries instructions for the first device group, at least one of the first information block or the target wake-up signal is used to determine whether a first signaling is to be monitored; the first signaling is used to determine whether a second signaling is to be monitored; and when the target wake-up signal is detected and the target wake-up signal does not carry instructions for the first device group, the monitor for the target wake-up signal abandons monitoring the second signaling.
[0017] According to one aspect of the present application, the method is characterized in that the target wake-up signal is not detected, the monitor for the target wake-up signal monitors the first signaling, and the first signaling is used to determine whether to monitor the second signaling, or the monitor for the target wake-up signal abandons monitoring the second signaling.
[0018] According to one aspect of the present application, the method is characterized in that the first signaling is associated with a G1 device group, G1 being a positive integer greater than 1, the second device group being one of the G1 device groups, a monitor of the target wake-up signal belonging to the second device group, and an instruction value of the second device group propagated by the first signaling being used to determine whether to monitor the second signaling.
[0019] According to one aspect of the present application, the method includes: a first information block is used to determine an X1 configuration set, any one of the X1 configuration sets includes at least one configuration parameter value, X1 is a positive integer greater than 1; a target configuration set is one of the X1 configuration sets, the target configuration set includes at least one configuration parameter value of a target wake-up signal; and an identity of a first device group is determined. The property is used to determine a target configuration set from the X1 configuration set.
[0020] According to one aspect of the present application, the method comprises: receiving a second block of information; The second information block is used to indicate at least one band, and the target wake-up signal monitor supports reception of a wake-up signal on each band indicated by the second information block.
[0021] According to one aspect of the present application, the method is characterized in that the first device group is one of X2 device groups, the X2 identities each correspond to the X2 device groups, any one of the X2 device groups includes at least one user equipment, X2 is a positive integer greater than 1, the first identity and the second identity are two different identities within the X2 identity, and one user equipment included in the device group corresponding to the first identity in the X2 device group is assigned the first identity, and one user equipment included in the device group corresponding to the second identity in the X2 device group is assigned no identity or the second identity.
[0022] According to one aspect of the present application, the method is characterized by using a first information block to determine a time-domain position offset between the first signaling and the second signaling, using the first information block to determine a time-domain position offset between the target wake-up signal and the second signaling, using the time-domain position relationship between the target wake-up signal and the first signaling to decide whether to monitor the first signaling, and using the identity of the monitor of the target wake-up signal to determine the time-domain position of the second signaling.
[0023] The present application discloses a first node device for use in wireless communication, the first node device comprising: a first transceiver for receiving a first information block and monitoring a target wake-up signal, the first information block being used to determine at least one configuration parameter value of the target wake-up signal; a first receiver for determining whether to monitor the first signaling and for determining whether to monitor the second signaling; The monitor for the target wake-up signal belongs to a first device group, the first device group includes at least one user equipment, and when the target wake-up signal is detected and the target wake-up signal carries instructions for the first device group, at least one of the first information block or the target wake-up signal is used to determine whether to monitor a first signaling, and the first signaling is used to determine whether to monitor a second signaling, and when the target wake-up signal is detected and the target wake-up signal does not carry instructions for the first device group, the monitor for the target wake-up signal abandons monitoring the second signaling.
[0024] The present application discloses a second node device for use in wireless communication, the second node device comprising: a second transceiver for transmitting a first information block and for transmitting a target wake-up signal, the first information block being used to determine at least one configuration parameter value of the target wake-up signal; a first transmitter for transmitting the first signaling and for transmitting the second signaling; The monitor for the target wake-up signal is characterized in that: the monitor belongs to a first device group, the first device group includes at least one user equipment; when the target wake-up signal is detected and the target wake-up signal carries instructions for the first device group, at least one of the first information block or the target wake-up signal is used to determine whether a first signaling is to be monitored; the first signaling is used to determine whether a second signaling is to be monitored; and when the target wake-up signal is detected and the target wake-up signal does not carry instructions for the first device group, the monitor for the target wake-up signal abandons monitoring the second signaling.
[0025] Other features, objects, and advantages of the present application will become more apparent from the following detailed description of non-limiting embodiments, taken in conjunction with the drawings in which: [Brief explanation of the drawings]
[0026] [Figure 1] 1 illustrates a flowchart of a first information block, a target wake-up signal, a first signaling, and a second signaling according to an embodiment of the present application; [Figure 2] 1 shows a schematic diagram of a network architecture according to an embodiment of the present application; [Figure 3] 1 shows a schematic diagram of a radio protocol architecture for the user plane and the control plane according to an embodiment of the present application; [Figure 4]FIG. 1 illustrates a schematic diagram of a first node device and a second node device according to an embodiment of the present application. [Figure 5] 1 shows a flowchart of wireless signal transmission according to an embodiment of the present application. [Figure 6] 10 illustrates another flowchart of wireless signal transmission according to an embodiment of the present application. [Figure 7] 1 shows a schematic diagram of a target wake-up signal according to an embodiment of the present application; [Figure 8] FIG. 1 shows a schematic diagram of a G1 device group according to an embodiment of the present application. [Figure 9] 1 shows a schematic diagram of a target configuration set according to an embodiment of the present application; [Figure 10] FIG. 2 shows a schematic diagram of a first identity and a second identity according to an embodiment of the present application; [Figure 11] 2 illustrates a schematic diagram of a relationship between a target wake-up signal, a first signaling, and a second signaling according to an embodiment of the present application; [Figure 12] FIG. 1 illustrates a structural block diagram of a processing device in a first node device according to an embodiment of the present application. [Figure 13] FIG. 10 illustrates a structural block diagram of a processing device in a second node device according to an embodiment of the present application. DETAILED DESCRIPTION OF THE INVENTION
[0027] The technical solutions of the present application are described in further detail below in conjunction with the accompanying drawings. It should be noted that the embodiments and features in the embodiments of the present application can be arbitrarily combined with each other if there is no contradiction.
[0028] Embodiment 1 Embodiment 1 shows a flowchart 100 of a first information block, a target wake-up signal, a first signaling, and a second signaling according to an embodiment of the present application, as shown in FIG. 1. In FIG. 1, each block represents a step. It should be emphasized that the sequence of the blocks in the figure does not limit the time priority relationship of the represented steps.
[0029] In embodiment 1, in step 101, a first node device of the present application receives a first information block and monitors a target wake-up signal, the first information block is used to determine at least one configuration parameter value of the target wake-up signal, and in step 102, the first node device of the present application determines whether to monitor a first signaling and whether to monitor a second signaling, the monitor of the target wake-up signal belongs to a first device group, the first device group includes at least one user equipment, when the target wake-up signal is detected and the target wake-up signal carries an instruction for the first device group, at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling, the first signaling is used to determine whether to monitor the second signaling, and when the target wake-up signal is detected and the target wake-up signal does not carry an instruction for the first device group, the monitor of the target wake-up signal abandons monitoring the second signaling.
[0030] In one embodiment, the first information block is transmitted over an air interface or a wireless interface.
[0031] In one embodiment, the first information block includes all or part of one upper layer signaling or one physical layer signaling.
[0032] In one embodiment, the first information block includes all or part of one RRC (Radio Resource Control) layer signaling, or the first information block includes all or part of one MAC (Medium Access Control) layer signaling.
[0033] In one embodiment, the first information block includes all or part of one SIB (System Information Block).
[0034] In one embodiment, the first information block includes all or part of one SIB1.
[0035] In one embodiment, the first information block is specific to a user equipment (per-UE) or the first information block is specific to a cell (per-cell).
[0036] In one embodiment, the first information block is configured per carrier, or the first information block is configured per BWP (Bandwidth Part), or the first information block is configured per band or per FR (Frequency Range).
[0037] In one embodiment, the first information block includes all or part of the fields of a DCI (Downlink Control Information) format.
[0038] In one embodiment, the first information block includes all or part of an IE (Information Element) "PCCH-Config", or the first information block includes all or part of an IE "DownlinkConfigCommonSIB", or the first information block includes all or part of an IE "WUS-Config-r19", or the first information block includes all or part of an IE "LPWUS-Config-r19", or the first information block includes all or part of an IE "LPWUS-Config-r19". The first information block contains all or part of the IE "WUS-Config", or the first information block contains all or part of the IE "LPWUS-Config".
[0039] In one embodiment, the first information block includes all or part of the paging configuration information.
[0040] In one embodiment, the first information block includes all or part of the downlink common configuration information.
[0041] In one embodiment, the first information block includes all or part of the wake-up signal configuration information.
[0042] As an embodiment, the technical feature "the first information block is used to determine at least one configuration parameter value of the target wake-up signal" includes the meaning that the first information block is used by the first node device in the present application to determine at least one configuration parameter value of the target wake-up signal.
[0043] In one embodiment, the technical feature "the first information block is used to determine at least one configuration parameter value of the target wake-up signal" includes the meaning that all or part of the first information block is used to explicitly or implicitly indicate at least one configuration parameter value of the target wake-up signal.
[0044] In one embodiment, the technical feature "the first information block is used to determine at least one configuration parameter value of the target wake-up signal" includes the meaning that all or part of the first information block is used to explicitly or implicitly indicate all or part of the configuration parameter values of the target wake-up signal.
[0045] In one embodiment, the technical feature "the first information block is used to determine at least one configuration parameter value of the target wake-up signal" includes the meaning that all or part of the first information block is used to explicitly or implicitly indicate values of some of the configuration parameters of the target wake-up signal, and the at least one configuration parameter value of the target wake-up signal is a default configuration set.
[0046] As an embodiment, the technical feature "the first information block is used to determine at least one configuration parameter value of the target wake-up signal" includes the meaning that the first information block is used to determine at least one configuration set of the X1 configuration set in the present application.
[0047] In one embodiment, the technical feature "the first information block is used to determine at least one configuration parameter value of the target wake-up signal" includes the meaning that the first information block is used to determine a set of configuration parameter values including at least one configuration parameter value of the target wake-up signal.
[0048] In one embodiment, the target wake-up signal is a low power wake-up signal (LP-WUS).
[0049] In one embodiment, the target wake-up signal is a square wave signal.
[0050] In one embodiment, the target wake-up signal is a frequency modulated signal.
[0051] In one embodiment, the target wake-up signal is a signal that uses OOK (On / Off Keying).
[0052] In one embodiment, the target wake-up signal is a signal that uses FSK (Frequency Shift Keying).
[0053] In one embodiment, the target wake-up signal is a signal that uses OOK and a constant envelope sequence.
[0054] In one embodiment, the target wake-up signal is a signal that uses FSK and a constant envelope sequence.
[0055] In one embodiment, the target wake-up signal is a signal for waking up the baseband processing function of the receiver.
[0056] In one embodiment, the target wake-up signal is a signal to wake up the complete baseband processing functionality of the receiver.
[0057] In one embodiment, the target wake-up signal is transmitted via a PDCCH (Physical Data Channel Control Channel). This is a signal to wake up the monitoring or reception of the Physical Downlink Control Channel (PDCCH).
[0058] In one embodiment, the target wake-up signal is a baseband signal or a radio frequency signal.
[0059] In one embodiment, the target wake-up signal is generated through OFDM.
[0060] In one embodiment, the target wake-up signal is used to reduce power consumption.
[0061] In one embodiment, the target wake-up signal is used in an RRC (Radio Resource Control) idle state or an RRC inactive state.
[0062] In one embodiment, the target wake-up signal can be used in the RRC (Radio Resource Control) idle state, the RRC inactive state, and the RRC connected state.
[0063] In one embodiment, a bit block and a feature sequence are used together through OOK to generate a target wake-up signal.
[0064] In one embodiment, one bit block and a signature sequence are used together through FSK to generate a target wake-up signal.
[0065] In one embodiment, one bit block is subjected to OOK modulation, transform precoding, mapping to physical resources, OFDM baseband signal generation, and modulation and up-conversion. At least one of the conversions is used to generate a target wake-up signal.
[0066] In one embodiment, one bit block is used to generate a target wake-up signal through at least one of FSK modulation, transform precoding, mapping to physical resources, OFDM baseband signal generation, and modulation and upconversion.
[0067] In one embodiment, one bit block generates a target wake-up signal through at least one of OOK modulation, sequence generation / modulation, transform precoding, mapping to physical resources, OFDM baseband signal generation, and modulation and upconversion.
[0068] In one embodiment, one bit block generates a target wake-up signal through at least one of FSK modulation, sequence generation / modulation, transform precoding, mapping to physical resources, OFDM baseband signal generation, and modulation and upconversion.
[0069] In one embodiment, one bit block generates a target wake-up signal through at least one of oversampling or spreading / extending or repetition, transform precoding, mapping to physical resources, OFDM baseband signal generation, and modulation and upconversion.
[0070] In one embodiment, one bit block generates a target wake-up signal through at least one of oversampling or spreading / extending or repetition, sequence generation / modulation, transform precoding, mapping to physical resources, OFDM baseband signal generation, and modulation and upconversion.
[0071] In one embodiment, monitoring for the target wake-up signal is implemented at radio frequency.
[0072] In one embodiment, monitoring for the target wake-up signal is implemented at an intermediate frequency.
[0073] In one embodiment, monitoring for the target wake-up signal is implemented in baseband.
[0074] In one embodiment, monitoring for the target wake-up signal is implemented through envelope detection.
[0075] In one embodiment, monitoring for target wake-up signals is implemented through correlation.
[0076] In one embodiment, monitoring for the target wake-up signal is implemented through energy detection.
[0077] In one embodiment, monitoring for the target wake-up signal is implemented through envelope detection and decoding.
[0078] In one embodiment, monitoring the target wake-up signal includes envelope detection and Implemented through correlation.
[0079] In one embodiment, monitoring for the target wake-up signal is implemented through frequency modulation (FM) to amplitude modulation (AM) conversion and envelope detection.
[0080] In one embodiment, the method of monitoring the target wakeup signal is implementation related.
[0081] In one embodiment, the receiver used to monitor the target wake-up signal is implementation related.
[0082] In one embodiment, monitoring the target wake-up signal is related to the capabilities of the first node device.
[0083] In one embodiment, the target wakeup signal has only one configuration parameter.
[0084] In one embodiment, the target wake-up signal has multiple configuration parameters.
[0085] In one embodiment, the value of any one configuration parameter of the target wakeup signal is the value of one field in one IE.
[0086] In one embodiment, the value of any one configuration parameter of the target wake-up signal is the value of one field in the IE used to configure the wake-up signal.
[0087] In one embodiment, one configuration parameter value of the target wake-up signal is the value of one field in the IE used to configure the wake-up signal.
[0088] In one embodiment, one configuration parameter value of the target wake-up signal is the value of one field included in the first information block.
[0089] In one embodiment, the value of any one configuration parameter of the target wake-up signal is the value of one field included in the first information block.
[0090] In one embodiment, one configuration parameter value of the target wake-up signal is a parameter value used to configure frequency domain resources of the target wake-up signal.
[0091] In one embodiment, one configuration parameter value of the target wake-up signal is a parameter value used to configure the time domain resources of the target wake-up signal.
[0092] In one embodiment, one configuration parameter value of the target wakeup signal is a parameter value used to configure the sequence resources used by the target wakeup signal.
[0093] In one embodiment, one configuration parameter value of the target wake-up signal is a parameter value used to configure all or a portion of the number of information bits carried by the target wake-up signal.
[0094] In one embodiment, one configuration parameter value of the target wakeup signal is a parameter value used to configure the number of bits included in at least one field propagated by the target wakeup signal.
[0095] In one embodiment, one configuration parameter value of the target wakeup signal is a parameter value used to configure the numbers included in all or some of the fields propagated by the target wakeup signal.
[0096] In one embodiment, one configuration parameter value of the target wakeup signal is a parameter value used to configure the format used by the target wakeup signal.
[0097] In one embodiment, one configuration parameter value of the target wakeup signal is a parameter value used to configure whether the target wakeup signal is used to indicate monitoring of a PEI (Paging Early Indication).
[0098] In one embodiment, one configuration parameter value of the target wake-up signal is a parameter value used to configure whether the target wake-up signal is used to indicate monitoring of a PDCCH with a PS-RNTI scrambled CRC.
[0099] In one embodiment, one configuration parameter value of the target wake-up signal is a parameter value used to configure how the target wake-up signal is generated.
[0100] In one embodiment, one configuration parameter value of the target wakeup signal is a parameter value used to configure the type of the target wakeup signal.
[0101] In one embodiment, one configuration parameter value of the target wake-up signal is a parameter value used to configure the modulation scheme (OOK or FSK) of the target wake-up signal.
[0102] In one embodiment, the first signaling is transmitted over a PDCCH.
[0103] In one embodiment, the first signaling is transmitted over a PDCCH with a PEI-RNTI scrambled CRC.
[0104] In one embodiment, the first signaling is transmitted over a PDCCH with a PS-RNTI scrambled CRC.
[0105] In one embodiment, the first signaling includes all or part of the fields of DCI format 2_6.
[0106] In one embodiment, the first signaling includes all or part of the fields of DCI format 2_7.
[0107] In one embodiment, the first signaling includes higher layer information.
[0108] In one embodiment, the first signaling includes physical layer information.
[0109] In one embodiment, the first signaling includes core network information.
[0110] In one embodiment, the two expressions "monitoring the first signaling" and "receiving information carried by the first signaling" are equivalent or can be used interchangeably.
[0111] In one embodiment, the two expressions "monitoring the first signaling" and "decoding the first signaling" are equivalent or can be used interchangeably.
[0112] In one embodiment, the two expressions "monitoring the first signaling" and "monitoring the PDCCH candidate carrying the first signaling" may be equivalent or may be used interchangeably.
[0113] In one embodiment, the two expressions "monitoring the first signaling" and "decoding PDCCH candidates that may carry the first signaling" may be equivalent or may be used interchangeably.
[0114] In one embodiment, the two expressions "monitoring the first signaling" and "blindly decoding the first signaling" are equivalent or may be used interchangeably.
[0115] In one embodiment, the two expressions "monitoring the first signaling" and "performing decoding and CRC checking on the first signaling" are equivalent or may be used interchangeably.
[0116] In one embodiment, the two expressions "monitor the first signaling" and "perform decoding and RNTI (Radio Network Temporary Identity) scrambled CRC check on the first signaling" may be equivalent or may be used interchangeably.
[0117] In one embodiment, the two expressions "monitor the first signaling" and "decode the first signaling for one or more DCI (Downlink Control Information) format(s)" are equivalent or may be used interchangeably.
[0118] In one embodiment, the two expressions "monitoring the first signaling" and "decoding the first signaling for one or more DCI payload sizes" may be equivalent or may be used interchangeably.
[0119] In one embodiment, the second signaling is a PDCCH.
[0120] In one embodiment, the second signaling is a paging PDCCH.
[0121] In one embodiment, the second signaling includes all or part of the fields of a paging DCI format.
[0122] In one embodiment, the second signaling is a PDCCH with a P-RNTI scrambled CRC.
[0123] In one embodiment, the second signaling includes all or part of the fields of DCI format 1_0.
[0124] In one embodiment, the second signaling carries higher layer information.
[0125] In one embodiment, the second signaling carries physical layer information.
[0126] In one embodiment, the second signaling carries core network information.
[0127] In one embodiment, the two expressions "monitoring the second signaling" and "receiving information carried by the second signaling" are equivalent or can be used interchangeably.
[0128] In one embodiment, the two expressions "monitoring the second signaling" and "decoding the second signaling" are equivalent or may be used interchangeably.
[0129] In one embodiment, the two expressions "monitoring the second signaling" and "monitoring the PDCCH candidates carrying the second signaling" may be equivalent or may be used interchangeably.
[0130] In one embodiment, the two expressions "monitoring the second signaling" and "decoding PDCCH candidates that may carry the second signaling" may be equivalent or may be used interchangeably.
[0131] In one embodiment, the two expressions "monitoring the second signaling" and "blindly decoding the second signaling" may be equivalent or may be used interchangeably.
[0132] In one embodiment, the two expressions "monitor the second signaling" and "perform decoding and CRC check on the second signaling" are equivalent or may be used interchangeably.
[0133] In one embodiment, the two expressions "monitor the second signaling" and "perform decoding and RNTI (Radio Network Temporary Identity) scrambled CRC check on the second signaling" may be equivalent or may be used interchangeably.
[0134] In one embodiment, the two expressions "monitor the second signaling" and "decode the second signaling for one or more DCI (Downlink Control Information) format(s)" may be equivalent or may be used interchangeably.
[0135] In one embodiment, the two expressions "monitor the second signaling" and "decode the second signaling for one or more DCI payload sizes" may be equivalent or may be used interchangeably.
[0136] In one embodiment, the monitor of the target wake-up signal is the first node device.
[0137] In one embodiment, the "monitor target wake-up signal" and the "first node The terms "device" and "device" are equivalent or can be used interchangeably.
[0138] In one embodiment, the monitor of the target wake-up signal is one user device included in the first device group.
[0139] In one embodiment, the first group of devices includes only monitors for target wakeup signals.
[0140] In one embodiment, the first device group also includes user equipment other than the monitor for the target wake-up signal.
[0141] In one embodiment, the first device group is configurable or the first device group is predefined.
[0142] In one embodiment, the user equipment included in the first device group is assigned by the core network.
[0143] In one embodiment, the user equipment included in the first device group is determined according to the capabilities of the user equipment.
[0144] In one embodiment, the first device group is a subset (or subgroup) of a set (or group) of user equipment corresponding to the same PO.
[0145] In one embodiment, the first device group is a subset (or subgroup) of a set (or group) of user equipment that monitors the same PO.
[0146] In one embodiment, the first device group is a subset (or subgroup) of the user equipment set (or user equipment group) that corresponds to the opportunity occupied by the second signaling.
[0147] In one embodiment, the first device group is a subset (or subgroup) of the set (or group) of user equipment that can monitor the second signaling.
[0148] In one embodiment, the user equipment included in the first device group is determined according to the type of wake-up signal receiver of the user equipment.
[0149] In one embodiment, the user equipment included in the first device group is determined according to the type of the user equipment.
[0150] In one embodiment, the user equipment included in the first device group is determined according to whether the user equipment has a subgroup ID assigned by the core network and whether the user equipment supports the core network to assign subgroups.
[0151] In one embodiment, the user equipment included in the first device group is determined according to whether the user equipment has at least one index or identity of the X1 configuration set in the present application assigned by the core network, and whether the user equipment supports the core network to assign at least one index or identity of the X1 configuration set.
[0152] In one embodiment, all user equipments included in the first device group support the core network for assigning subgroups.
[0153] In one embodiment, all user equipment included in the first device group supports the core network to assign at least one index or identity of the X1 configuration set in this application.
[0154] In one embodiment, all user equipment included in the first device group supports the core network to assign subgroups, and the subgroup IDs assigned by the core network are equal to one and the same predefined value.
[0155] In one embodiment, all user equipment included in the first device group supports the core network to assign an index or identity of a target configuration set in the present application in the X1 configuration set in the present application, and the index or identity of the target configuration set in the X1 configuration set and assigned by the core network is equal to a predefined value.
[0156] In one embodiment, all user equipments included in the first device group support the core network for assigning subgroups, and the subgroup IDs assigned by the core network belong to one and the same predefined value range.
[0157] In one embodiment, all user equipment included in the first device group supports the core network to assign an index or identity of a target configuration set in the present application in the X1 configuration set in the present application, and the index or identity of the target configuration set in the X1 configuration set and assigned by the core network belongs to a predefined value range.
[0158] In one embodiment, all user equipment included in the first device group have the same or similar wake-up signal reception capabilities.
[0159] In one embodiment, all user equipment in the first device group uses the same or similar wake-up signal receiver.
[0160] In one embodiment, all user equipment included in the first device group does not support the core network to assign subgroups.
[0161] In one embodiment, all user equipment included in the first device group does not support the core network to assign an index or identity of any one of the X1 configuration sets.
[0162] In one embodiment, all user equipment included in the first device group do not support a core network for allocating subgroups, or support a core network for allocating subgroups, but the subgroup IDs assigned by the core network are equal to one and the same predefined value.
[0163] In one embodiment, all user equipments included in the first device group do not support a core network for allocating any one index or identity of the X1 configuration set in this application, or do not support a core network for allocating at least one index or identity of the X1 configuration set. The index or identity of each of the configured sets that supports the network is equal to one and the same predefined value.
[0164] In one embodiment, all user equipment included in the first device group do not support a core network for allocating subgroups, or support a core network for allocating subgroups, but the subgroup IDs allocated by the core network belong to one and the same predefined value range.
[0165] In one embodiment, all user equipment included in the first device group does not support the core network to assign any one index or identity of the X1 configuration set in the present application, or supports the core network to assign at least one index or identity of the X1 configuration set, but the index or identity of the configuration set and assigned by the core network belongs to the same predefined value range.
[0166] In one embodiment, the user equipment included in the first device group is determined according to the identity of the user equipment.
[0167] In one embodiment, the identities of all user equipment included in the first device group have the same modulo value for the configured or predefined parameter.
[0168] In one embodiment, the 5G-S-TMSI of all user equipments included in the first device group satisfies the following formula: GroupID=(floor(5G-S-TMSI / (N*Ns))mod GroupNum where GroupID represents the identity of the first device group, N represents the number of paging frames in a DRX cycle, Ns represents the number of paging occasions corresponding to one paging frame, and GroupNum represents the number of configured or predefined device groups.
[0169] In one embodiment, the 5G-S-TMSI of all user equipments included in the first device group satisfies the following formula: GroupID=(floor(5G-S-TMSI / (N*Ns))mod GroupNum+Offset where Group ID represents the identity of the first device group, N represents the number of paging frames in a DRX cycle, Ns represents the number of paging occasions corresponding to one paging frame, GroupNum represents the number of configured or predefined device groups, and Offset represents a configurable or predefined offset value.
[0170] In one embodiment, the detection of a target wake-up signal means that the information carried by the target wake-up signal is received.
[0171] In one embodiment, detection of a target wake-up signal means that the information bits carried by the target wake-up signal are correctly decoded.
[0172] In one embodiment, a target wake-up signal is detected means that energy detection for the target wake-up signal exceeds a configured or predefined threshold.
[0173] In one embodiment, a target wake-up signal is detected when the power value of the envelope detection for the target wake-up signal exceeds a configured or predefined threshold.
[0174] In one embodiment, a target wake-up signal is detected when a correlation peak of a correlation detection for the target wake-up signal exceeds a configured or predefined threshold.
[0175] In one embodiment, a target wakeup signal is detected when a CRC check of the bits propagated by the target wakeup signal passes.
[0176] In one embodiment, the criteria for a target wakeup signal to be detected is implementation related.
[0177] In one embodiment, the criteria for a detected target wake-up signal need not be defined by a standard protocol.
[0178] In one embodiment, whether a target wakeup signal is detected is implementation related.
[0179] In one embodiment, whether a target wake-up signal is detected is implementation-related when the corresponding requirements are met.
[0180] In one embodiment, whether a target wake-up signal is detected is implementation-related, and the detection of the target wake-up signal satisfies at least one of three requirements: corresponding miss-detection probability / rate, false detection probability / rate, and false alarm probability / rate.
[0181] In one embodiment, "the target wakeup signal propagating instructions for the first device group" includes the target wakeup signal propagating an index or identity of the first device group.
[0182] In one embodiment, "the target wakeup signal propagates instructions for the first device group" includes at least one bit included in the bit block propagated by the target wakeup signal being used for the first device group.
[0183] In one embodiment, "the target wakeup signal propagates instructions for the first device group" includes at least one bit included in the bit block used to generate the target wakeup signal being used for the first device group.
[0184] In one embodiment, "the target wakeup signal propagates instructions for the first device group" includes at least one bit included in the bit block used to generate the target wakeup signal corresponding to the first device group.
[0185] In one embodiment, the target wake-up signal is "Propagating an instruction to generate a target wakeup signal" includes a bit block including an index or identity of the first device group being used to generate a target wakeup signal.
[0186] In one embodiment, "the target wakeup signal propagates instructions for the first device group" includes a bit block including bits used to explicitly or implicitly instruct the first device group being used to generate the target wakeup signal.
[0187] As one embodiment, "the target wakeup signal propagating an instruction for the first device group" includes setting a bit value of at least one bit corresponding to the first device group and propagated by the target wakeup signal to a predefined value ("1" or "0"). As a dependent embodiment of the above embodiment, the predefined value is a bit value representing wakeup. As a dependent embodiment of the above embodiment, the position of the bit corresponding to the first device group within the plurality of bits propagated by the target wakeup signal is configured or predefined. As a dependent embodiment of the above embodiment, the position of the bit corresponding to the first device group within the plurality of bits propagated by the target wakeup signal is related to the identity or index of the first device group. As a dependent embodiment of the above embodiment, the position of the bit corresponding to the first device group within the plurality of bits propagated by the target wakeup signal is related to the identity of the first node device.
[0188] In one embodiment, "the target wake-up signal propagates instructions for the first device group" includes the target wake-up signal being used to at least wake up at least one user equipment included in the first device group.
[0189] In one embodiment, "the target wake-up signal propagating instructions for the first device group" includes the target wake-up signal being used to at least instruct at least one user equipment included in the first device group to monitor a paging PDCCH or a PEI.
[0190] In one embodiment, "the target wake-up signal propagates instructions for the first device group" includes the target wake-up signal being used to at least wake up the complete baseband processing functionality of at least one user equipment included in the first device group.
[0191] In one embodiment, "the target wake-up signal propagates instructions for the first device group" includes the target wake-up signal being used to at least instruct at least one user equipment included in the first device group to begin full baseband processing functionality.
[0192] In one embodiment, "the target wakeup signal does not propagate instructions for the first device group" includes the target wakeup signal not propagating instructions for the first device group.
[0193] In one embodiment, "the target wakeup signal does not carry instructions for the first device group" includes the target wakeup signal only carrying information other than instructions for the first device group.
[0194] In one embodiment, "the target wakeup signal does not carry instructions for the first device group" includes the target wakeup signal not carrying an index or identity of the first device group.
[0195] In one embodiment, "the target wakeup signal does not propagate instructions for the first device group" includes the bit block propagated by the target wakeup signal not including any bits that are specifically used for the first device group.
[0196] In one embodiment, "the target wakeup signal does not carry instructions for the first device group" includes that the block of bits used to generate the target wakeup signal does not include any bits that are specifically used for the first device group.
[0197] In one embodiment, "the target wakeup signal does not carry instructions for the first device group" includes the bit block used to generate the target wakeup signal not including any one bit that specifically corresponds to the first device group.
[0198] In one embodiment, "the target wakeup signal does not carry instructions for the first device group" includes the block of bits used to generate the target wakeup signal not including an index or identity of the first device group.
[0199] In one embodiment, "the target wakeup signal does not carry instructions for the first device group" includes that the block of bits used to generate the target wakeup signal does not include bits used to explicitly or implicitly instruct the first device group.
[0200] As one embodiment, "the target wakeup signal does not propagate an instruction for the first device group" includes setting a bit value of at least one bit corresponding to the first device group and propagated by the target wakeup signal to a predefined value ("0" or "1"). As a dependent embodiment of the above embodiment, the predefined value is a bit value representing no wakeup. As a dependent embodiment of the above embodiment, the position of the bit corresponding to the first device group within the plurality of bits propagated by the target wakeup signal is configured or predefined. As a dependent embodiment of the above embodiment, the position of the bit corresponding to the first device group within the plurality of bits propagated by the target wakeup signal is related to the identity or index of the first device group. As a dependent embodiment of the above embodiment, the position of the bit corresponding to the first device group within the plurality of bits propagated by the target wakeup signal is related to the identity of the first node device.
[0201] In one embodiment, "the target wake-up signal does not carry instructions for the first device group" includes the target wake-up signal being used only to wake up user equipment other than the first device group.
[0202] In one embodiment, "the target wakeup signal does not propagate instructions for the first device group" means that the target wakeup signal does not propagate instructions for the first device group. This includes being used only to instruct user equipment other than the PDCCH to monitor the paging PDCCH or PEI.
[0203] In one embodiment, "the target wake-up signal does not carry instructions for the first device group" includes the target wake-up signal being used only to wake up the complete baseband processing functionality of user equipment other than the first device group.
[0204] In one embodiment, "the target wakeup signal does not carry instructions for the first device group" includes the target wakeup signal being used only to instruct user equipment other than the first device group to begin full baseband processing functions.
[0205] As an embodiment, the technical features "when a target wakeup signal is detected and the target wakeup signal propagates an instruction for the first device group" and "when a target wakeup signal is detected and the target wakeup signal propagates an instruction for the first device group" are equivalent or can be used interchangeably.
[0206] In one embodiment, "whether to monitor the first signaling" and "whether to need to monitor the first signaling" may be equivalent or may be used interchangeably.
[0207] In one embodiment, "whether to monitor the first signaling" and "whether it is mandatory to monitor the first signaling" may be equivalent or may be used interchangeably.
[0208] In one embodiment, "whether to monitor the first signaling" and "whether to expect to monitor the first signaling" may be equivalent or used interchangeably.
[0209] As an embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that at least one of the first information block or the target wake-up signal is used by the first node device in the present application to determine whether to monitor the first signaling.
[0210] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that both the first information block and the target wake-up signal are used to determine whether to monitor the first signaling.
[0211] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that the first information block is used to determine whether to monitor the first signaling.
[0212] In one embodiment, "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling." The technical feature "to monitor the first signaling" includes the meaning that the target wake-up signal is used to determine whether to monitor the first signaling.
[0213] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that at least one of the first information block or the target wake-up signal is used by the first node device to determine whether it is necessary to monitor the first signaling.
[0214] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that all or part of the first information block is used to explicitly or implicitly indicate whether to monitor the first signaling.
[0215] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that all or part of the information bits carried by the target wake-up signal are used to explicitly or implicitly indicate whether to monitor the first signaling.
[0216] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that at least one bit in the bit block used to generate the target wake-up signal is used to explicitly or implicitly indicate whether to monitor the first signaling.
[0217] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that at least one field in the bit block used to generate the target wake-up signal is used to explicitly or implicitly indicate whether to monitor the first signaling.
[0218] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that whether to monitor the first signaling is related to the sequence used to generate the target wake-up signal.
[0219] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that whether to monitor the first signaling is related to the modulation (OOK or FSK) used to generate the target wake-up signal.
[0220] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that whether to monitor the first signaling is related to the number of bits carried by the target wake-up signal.
[0221] In one embodiment, "the first information block or the target wake-up signal" The technical feature that "at least one of the time-frequency resources is used to determine whether to monitor the first signaling" means that whether to monitor the first signaling is related to the number or location of time-frequency resources occupied by the target wake-up signal.
[0222] In one embodiment, the technical feature "at least one of the first information block or the targeted wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that whether to monitor the first signaling is related to a device group targeted by the targeted wake-up signal.
[0223] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that whether to monitor the first signaling is related to a device group that is woken up by the target wake-up signal.
[0224] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that whether to monitor the first signaling is related to the user equipment that is woken up by the target wake-up signal.
[0225] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that all or part of the first information block is used to indicate whether the target wake-up signal is used to determine whether to monitor the first signaling.
[0226] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that when all or part of the first information block enables or turns on the target wake-up signal to determine whether to monitor the first signaling, whether to monitor the first signaling depends on the target wake-up signal; otherwise, whether to monitor the first signaling depends on the configuration or instructions of the first information block.
[0227] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that when all or part of the first information block enables or turns on the target wake-up signal to determine whether to monitor the first signaling, whether to monitor the first signaling depends on the target wake-up signal; otherwise, whether to monitor the first signaling depends on the configuration or instruction of the RRC signaling.
[0228] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" means that when all or part of the first information block enables or turns on the target wake-up signal to determine whether to monitor the first signaling, whether to monitor the first signaling depends on the target wake-up signal; otherwise, whether to monitor the first signaling is predefined. This implies that the setting is either the default or the default.
[0229] In one embodiment, the technical feature "at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling" includes the meaning that when all or part of the first information block enables or turns on the target wake-up signal to determine whether to monitor the first signaling, whether to monitor the first signaling depends on the target wake-up signal; otherwise, whether to monitor the first signaling depends on the capability of the first node device.
[0230] In one embodiment, "whether to monitor the second signaling" and "whether there is a need to monitor the second signaling" may be equivalent or may be used interchangeably.
[0231] In one embodiment, "whether to monitor the second signaling" and "whether it is mandatory to monitor the second signaling" may be equivalent or may be used interchangeably.
[0232] In one embodiment, "whether to monitor the second signaling" and "whether to expect to monitor the second signaling" may be equivalent or used interchangeably.
[0233] As an embodiment, the technical feature "the first signaling is used to determine whether to monitor the second signaling" includes the meaning that the first signaling is used by the first node device in the present application to determine whether to monitor the second signaling.
[0234] In one embodiment, the technical feature "the first signaling is used to determine whether to monitor the second signaling" includes the meaning that all or part of the first signaling is used to explicitly or implicitly indicate whether to monitor the second signaling.
[0235] In one embodiment, the technical feature "the first signaling is used to determine whether to monitor the second signaling" includes the meaning that the first signaling is monitored, and the detected first signaling is used to determine whether to monitor the second signaling.
[0236] In one embodiment, the technical feature "the first signaling is used to determine whether to monitor the second signaling" includes the meaning that the first signaling is detected and the first signaling is used to determine whether to monitor the second signaling.
[0237] In one embodiment, the technical feature "the first signaling is used to determine whether to monitor the second signaling" includes the meaning that the first signaling is monitored and detected, and the first signaling is used to determine whether to monitor the second signaling.
[0238] In one embodiment, the technical feature "the first signaling is used to determine whether to monitor the second signaling" means that when the first signaling is monitored and detected, the first signaling determines whether to monitor the second signaling. otherwise, whether to monitor the second signaling depends on the target wake-up signal or the first information block.
[0239] In one embodiment, the technical feature "the first signaling is used to determine whether to monitor the second signaling" includes the meaning that when the first signaling is monitored and detected, the first signaling is used to determine whether to monitor the second signaling, and otherwise the second signaling is monitored.
[0240] As one embodiment, the technical feature "the first signaling is used to determine whether to monitor the second signaling" includes the meaning that the first signaling is used to instruct at least one device group, and whether the first device group is one of the at least one device group instructed by the first signaling is used to determine whether to monitor the second signaling.
[0241] As one embodiment, the technical feature "the first signaling is used to determine whether to monitor the second signaling" includes the meaning that the first signaling is used to instruct at least one device group, and whether the first node device belongs to one device group instructed by the first signaling is used to determine whether to monitor the second signaling.
[0242] As one embodiment, the technical feature "the first signaling is used to determine whether to monitor the second signaling" includes the meaning that the first signaling is used to instruct at least one device group, and whether the first node device simultaneously belongs to one device group instructed by the first signaling and to the first device group is used to determine whether to monitor the second signaling.
[0243] As one embodiment, the technical feature "the first signaling is used to determine whether to monitor the second signaling" includes the meaning that when the first signaling is used to instruct at least one device group, and the first node device belongs to one device group instructed by the first signaling, the first node device monitors the second signaling; otherwise, the first node device does not need to monitor the second signaling.
[0244] As one embodiment, the technical feature "the first signaling is used to determine whether to monitor the second signaling" includes the meaning that when the first signaling is used to instruct at least one device group, and the first node device simultaneously belongs to one device group instructed by the first signaling and the first device group, the first node device monitors the second signaling, and in other cases, the first node device does not need to monitor the second signaling.
[0245] In one embodiment, when the first signaling is monitored, the first signaling is used to indicate whether to monitor the second signaling.
[0246] In one embodiment, when the first signaling is monitored and detected, the first signaling is used to indicate whether to monitor the second signaling.
[0247] As an embodiment, the technical features "the monitor of the target wake-up signal gives up monitoring the second signaling" and "the monitor of the target wake-up signal does not need to monitor the second signaling" are equivalent or can be used interchangeably.
[0248] As an embodiment, the technical features "the monitor of the target wake-up signal abandons monitoring the second signaling" and "the monitor of the target wake-up signal decides whether to monitor the second signaling" are equivalent or can be used interchangeably.
[0249] As an embodiment, the technical features "the monitor of the target wake-up signal gives up monitoring the second signaling" and "the monitor of the target wake-up signal may not monitor the second signaling" are equivalent or may be used interchangeably.
[0250] As an embodiment, the technical features "the monitor of the target wake-up signal gives up monitoring the second signaling" and "the monitor of the target wake-up signal allows the monitor to give up monitoring the second signaling" are equivalent or can be used interchangeably.
[0251] As one embodiment, the technical feature "when a target wakeup signal is detected and the target wakeup signal carries instructions for a first device group, at least one of the first information block or the target wakeup signal is used to determine whether to monitor the first signaling, and the first signaling is used to determine whether to monitor the second signaling; when a target wakeup signal is detected and the target wakeup signal does not carry instructions for the first device group, the monitor of the target wakeup signal does not need to monitor the second signaling" includes the meaning of "when a target wakeup signal is detected and the target wakeup signal carries instructions for the first device group, at least one of the first information block or the target wakeup signal is used to determine whether to monitor the first signaling, and the first signaling is used to determine whether to monitor the second signaling."
[0252] As one embodiment, the technical feature "when a target wakeup signal is detected and the target wakeup signal propagates instructions for a first device group, at least one of the first information block or the target wakeup signal is used to determine whether to monitor a first signaling, and the first signaling is used to determine whether to monitor a second signaling; when a target wakeup signal is detected and the target wakeup signal does not propagate instructions for the first device group, the monitor of the target wakeup signal does not need to monitor the second signaling" includes a meaning that when a target wakeup signal is detected and the target wakeup signal does not propagate instructions for the first device group, the monitor of the target wakeup signal does not need to monitor the second signaling.
[0253] In one embodiment, when a target wakeup signal is detected and the target wakeup signal carries instructions for a first device group, at least one of the first information block or the target wakeup signal is used to determine whether to monitor a first signaling, and the first signaling is used to determine whether to monitor a second The technical feature "when a target wakeup signal is detected and the target wakeup signal does not carry an instruction for the first device group, the monitor for the target wakeup signal does not need to monitor the second signaling" includes the meaning that whether the target wakeup signal carries an instruction for the first device group is used to enable or disable at least one of the first information block or the target wakeup signal, each of which is used to determine whether to monitor the first signaling.
[0254] As one embodiment, the technical feature "when a target wakeup signal carries instructions for a first device group, at least one of the first information block or the target wakeup signal is used to determine whether to monitor a first signaling, and the first signaling is used to determine whether to monitor a second signaling; when a target wakeup signal is detected and the target wakeup signal does not carry instructions for the first device group, the monitor of the target wakeup signal does not need to monitor the second signaling" includes the meaning that a target wakeup signal is detected, and whether the target wakeup signal carries instructions for the first device group is used to enable or disable at least one of the first information block or the target wakeup signal, each of which is used to determine whether to monitor the first signaling.
[0255] As one embodiment, the technical feature "when a target wakeup signal carries instructions for a first device group, at least one of the first information block or the target wakeup signal is used to determine whether to monitor the first signaling, and the first signaling is used to determine whether to monitor the second signaling; when a target wakeup signal is detected and the target wakeup signal does not carry instructions for the first device group, the monitor of the target wakeup signal does not need to monitor the second signaling" includes the meaning that a target wakeup signal is detected, and one, or a combination of two or three, of whether the target wakeup signal carries instructions for the first device group, the first information block, or the target wakeup signal is used to determine whether to monitor the first signaling.
[0256] In one embodiment, when a target wakeup signal is detected and the target wakeup signal does not carry an instruction for the first device group, the monitor for the target wakeup signal does not need to monitor the first signaling.
[0257] In one embodiment, when a target wakeup signal is detected and the target wakeup signal does not carry an instruction for a first device group, the monitor for the target wakeup signal determines whether to monitor the first signaling.
[0258] In one embodiment, when a target wakeup signal is detected and the target wakeup signal does not carry instructions for the first device group, whether to monitor the first signaling depends on the capability of monitoring the target wakeup signal.
[0259] In one embodiment, when a target wakeup signal is detected and the target wakeup signal does not carry an instruction for a first device group, the monitor of the target wakeup signal indicates that the detected first signaling requires the monitor of the target wakeup signal to monitor a second signaling; is not expected (or cannot be assumed).
[0260] In one embodiment, when a target wakeup signal is detected and the target wakeup signal does not propagate instructions for a first device group, the monitor of the target wakeup signal does not expect (or cannot assume) that the detected first signaling indicates that the bit value of the bit corresponding to the device group that includes the monitor of the target wakeup signal is equal to "1."
[0261] In one embodiment, when the target wake-up signal is not detected, the target wake-up signal monitor monitors the first signaling, and the first signaling is used to determine whether to monitor the second signaling.
[0262] In one embodiment, when the target wake-up signal is not detected, the target wake-up signal monitor abandons monitoring the second signaling.
[0263] In one embodiment, when the target wake-up signal is not detected, the target wake-up signal monitor monitors for a second signaling.
[0264] In one embodiment, when the target wake-up signal is not detected, whether the monitor for the target wake-up signal monitors the first signaling depends on the capability of the monitor for the target wake-up signal.
[0265] In one embodiment, whether the target wake-up signal monitor monitors the first signaling when the target wake-up signal is not detected is predefined, configurable, or default.
[0266] In one embodiment, when a target wakeup signal is not detected and the target wakeup signal monitor supports monitoring of a first signaling, the target wakeup signal monitor monitors the first signaling, and the first signaling is used to determine whether to monitor a second signaling; when a target wakeup signal is not detected and the target wakeup signal monitor does not support monitoring of the first signaling, the target wakeup signal monitor abandons monitoring the second signaling.
[0267] In one embodiment, when a target wakeup signal is not detected and the target wakeup signal monitor supports monitoring of a first signaling, the target wakeup signal monitor monitors the first signaling, and the first signaling is used to determine whether to monitor a second signaling; when a target wakeup signal is not detected and the target wakeup signal monitor does not support monitoring of the first signaling, the target wakeup signal monitor monitors the second signaling.
[0268] In one embodiment, the first information block is used to determine a time domain position offset between the first signaling and the second signaling.
[0269] In one embodiment, an information block other than the first information block is used to determine a time domain position offset between the first signaling and the second signaling.
[0270] In one embodiment, the first information block is used to determine a time domain position offset between the target wake-up signal and the second signaling.
[0271] In one embodiment, an information block other than the first information block is used to determine a time domain position offset between the target wake-up signal and the second signaling.
[0272] In one embodiment, the time domain position relationship between the target wake-up signal and the first signaling is used to determine whether to monitor the first signaling.
[0273] In one embodiment, the identity of the monitor of the target wake-up signal is used to determine the time domain location of the second signaling.
[0274] Embodiment 2 Embodiment 2 illustrates a schematic diagram of one network architecture according to the present application, as shown in Figure 2. Figure 2 illustrates a diagram of a network architecture 200 for 5G NR, Long-Term Evolution (LTE), and Long-Term Evolution Advanced (LTE-A) systems. The 5G NR or LTE network architecture 200 may be referred to as a 5G System (5GS) / Evolved Packet System (EPS) 200 or other suitable terminology. The 5GS / EPS 200 may include one or more User Equipment (UE) 201, a next generation radio access network (NG-RAN) 202, a 5G Core Network (5GC) / Evolved Packet Core (EPC) 210, a Home Subscriber Server (HSS) / Unified Data Management (UDM) 220, and an Internet service 230. The 5GS / EPS can interconnect with other access networks, but for simplicity, these entities / interfaces are not shown. As shown in the figure, the 5GS / EPS provides packet switching services, but those skilled in the art will readily understand that the various concepts presented throughout this application can be extended to networks providing circuit switching services or other cellular networks. The NG-RAN includes an NR / evolved Node B (gNB / eNB) 203 and other gNBs (eNBs) 204. The gNB (eNB) 203 provides user plane and control plane protocol termination for the UE 201. The gNB (eNB) 203 can be connected to the other gNBs (eNBs) 204 via an Xn / X2 interface (e.g., backhaul).The gNB (eNB) 203 may also be referred to as a base station, base transceiver station, radio base station, radio transceiver, transceiver function, basic service set (BSS), extended service set (ESS), transmit receive point (TRP), or other suitable terminology. The gNB (eNB) 203 provides an access point to the 5GC / EPC 210 for the UE 201. Examples of the UE 201 include a mobile phone, a smartphone, a session initiation protocol (SIP) phone, a laptop, a personal digital assistant (PDA), satellite radio, non-terrestrial base station communications, satellite mobile communications, a global positioning system, a multimedia device, a video device, a digital audio player (e.g., an MP3 player), a camera, a game console, a drone, an aircraft, a narrowband Internet of Things (IoT) device, a machine-type communication device, a land transportation vehicle, an automobile, a wearable device, or any other similarly functional device. Those skilled in the art may also refer to UE 201 as a mobile station, subscriber station, mobile unit, subscriber unit, wireless unit, remote unit, mobile device, wireless device, wireless communications device, remote device, mobile subscriber station, access terminal, mobile terminal, or wireless terminal. , remote terminal, handset, user agent, mobile client, client, or some other suitable terminology. The gNB (eNB) 203 is connected to the 5GC / EPC 210 through an S1 / NG interface. The 5GC / EPC 210 comprises an MME (Mobility Management Entity) / AMF (Authentication Management Field) / SMF (Session Management Function) 211, another MME / AMF / SMF 214, an S-GW (Service Gateway) / UPF (User Plane Function) 212, and a P-GW (Packet Data Network Gateway) / UPF 213. The MME / AMF / SMF 211 is a control node that processes signaling between the UE 201 and the 5GC / EPC 210. Generally, the MME / AMF / SMF 211 provides bearer management and connection management. All user IP (Internet Protocol) packets are transmitted through S-GW / UPF 212, which is itself connected to P-GW / UPF 213. The P-GW provides IP address allocation for UEs and other functions. The P-GW / UPF 213 is connected to Internet services 230. Internet services 230 includes the operator's corresponding Internet Protocol services, which may specifically include the Internet, intranet, IMS (IP Multimedia Subsystem), and packet switching streaming services.
[0275] In one embodiment, the UE 201 corresponds to the first node device in this application.
[0276] In one embodiment, the gNB (eNB) 201 corresponds to the second node device in this application.
[0277] Embodiment 3 Embodiment 3 shows a schematic diagram of an embodiment of a wireless protocol architecture of a user plane and a control plane according to the present application, as shown in Figure 3. Figure 3 is a schematic diagram illustrating an embodiment of a radio protocol architecture of a user plane 350 and a control plane 300. Figure 3 shows a radio protocol architecture for the control plane 300 of a first node device (UE or gNB) and a second node device (gNB or UE) using three layers: Layer 1, Layer 2, and Layer 3. Layer 1 (L1 layer) is the lowest layer and handles various PHYs (Physical The L1 layer implements a physical layer (L1) signal processing function. The L1 layer is referred to as PHY 301 in this specification. Layer 2 (L2 layer) 305 is above PHY 301 and is responsible for the link between the first node device and the second node device through PHY 301. The L2 layer 305 comprises a medium access control (MAC) sublayer 302, a radio link control (RLC) sublayer 303, and a packet data convergence protocol (PDCP) sublayer 304, which terminate in the second node device. The PDCP sublayer 304 provides multiplexing between different radio bearers and logical channels. The PDCP sublayer 304 also provides security by encrypting data packets and provides cross-zone mobility support for the first node device between the second node devices. The RLC sublayer 303 provides segmentation and reassembly of upper layer data packets, retransmission of lost data packets, and reordering of data packets to compensate for out-of-order reception caused by HARQ. The MAC sublayer 302 provides multiplexing between logical channels and transport channels. The user plane 350 is also responsible for allocating various radio resources (e.g., resource blocks) within one cell between the first node device and the second node device. The MAC sublayer 302 is also responsible for HARQ operations. A Radio Resource Control (RRC) sublayer 306 in Layer 3 (L3 layer) in the control plane 300 is responsible for obtaining radio resources (i.e., radio bearers) and configuring the lower layers by using RRC signaling between the second node device and the first node device. The radio protocol architecture of the user plane 350 comprises Layer 1 (L1 layer) and Layer 2 (L2 layer). The radio protocol architecture for the first node device and the second node device in the user plane 350 is substantially the same as the corresponding layers and sublayers in the control plane 300 for the physical layer 351, the PDCP sublayer 354 in the L2 layer 355, the RLC sublayer 353 in the L2 layer 355, and the MAC sublayer 352 in the L2 layer 355, except that the PDCP sublayer 354 also provides header compression for upper layer data packets to reduce radio transmission overhead. The L2 layer 355 in the user plane 350 also includes a Service Data Adaptation Protocol (SDAP) sublayer 356, which is responsible for mapping between QoS streams and data radio bearers (DRBs) to support service diversity. Although not shown, the first node device may have multiple upper layers above the L2 layer 355, which include a network layer (e.g., an IP layer) terminated at the P-GW on the network side and an application layer terminated at the other connected end (e.g., a remote UE, a server, etc.).
[0278] As an embodiment, the wireless protocol architecture of FIG. 3 is applicable to the first node device in this application.
[0279] As an embodiment, the wireless protocol architecture of FIG. 3 is applicable to the second node device in this application.
[0280] Embodiment 4 Embodiment 4 shows a schematic diagram of a first node device and a second node device according to an embodiment of the present application, as shown in FIG. 4.
[0281] The first node device 450 may comprise a controller / processor 490, a data source / buffer 480, a receive processor 452, a transmit device / receive device 456, and a transmit processor 455, where the transmit device / receive device 456 comprises an antenna 460.
[0282] The second node device 410 may include a controller / processor 440, a data source / buffer 430, a receive processor 412, a transmit device / receive device 416, and a transmit processor 415, where the transmit device / receive device 416 includes an antenna 420.
[0283] In DL (Downlink), upper layer packets, such as high layer information included in a first information block in this application, high layer information included in a first signaling (if the first signaling includes high layer information), and high layer information included in a second signaling (if the second signaling includes high layer information), are provided to the controller / processor 440. The controller / processor 440 implements L2 layer and higher layer functions. In DL, the controller / processor 440 performs packet header compression, encryption, packet segmentation, etc. based on various priority metrics. The controller / processor 440 provides radio resource allocation for the first node device 450. The controller / processor 440 is also responsible for HARQ operations, retransmission of lost packets, and signaling to the first node device 450. For example, the high layer information included in the first information block in the present application, the high layer information included in the first signaling (if the first signaling includes high layer information), and the high layer information included in the second signaling (if the second signaling includes high layer information) are generated in the controller / processor 440. The transmit processor 415 implements various signal processing functions for the L1 layer (i.e., the physical layer), including coding, interleaving, scrambling, modulation, power control / allocation, precoding, and physical layer control signaling generation. For example, a physical layer signal carrying a first information block, a physical layer signal for a target wake-up signal, a physical layer signal corresponding to the first signaling, and a physical layer signal corresponding to the second signaling are generated in the transmit processor 415. The generated modulation symbols are split into parallel streams. Each stream is mapped to a corresponding multicarrier subcarrier and / or multicarrier symbol and then mapped by the transmit processor 415 to the antenna 420 via the transmit device 416 for transmission in the form of a radio frequency signal. At the receiving end, each receive device 456 receives the radio frequency signal through a corresponding antenna 460. Each receive device 456 recovers the baseband information modulated onto the radio frequency carrier and provides the baseband information to the receive processor 452. The receive processor 452 implements various signal reception processing functions of the L1 layer.The signal reception processing function includes monitoring the physical layer signal carrying the first information block in this application, the target wake-up signal, the first signaling, and the second signaling, performing demodulation based on various modulation schemes (e.g., binary phase shift keying (BPSK) and quadrature phase shift keying (QPSK)) through the multi-carrier symbols in the multi-carrier symbol stream, then performing descrambling, decoding, and de-interleaving to recover data or control transmitted by the second node device 410 on the physical channel, and then providing the data and control signals to the controller / processor 490. The controller / processor 490 is responsible for the L2 layer and higher layers. The controller / processor 490 interprets, in this application, the high layer information included in the first information block, the high layer information included in the first signaling (if the first signaling includes high layer information), and the high layer information included in the second signaling (if the second signaling includes high layer information). The controller / processor may be associated with a memory 480 that stores program codes and data. The memory 480 may be referred to as a computer-readable medium.
[0284] In uplink (UL) transmission, similar to downlink transmission, high layer information, including high layer information included in the second information block in this application, is generated by the controller / processor 490, and then the transmit processor 455 implements various signal transmission processing functions for the L1 layer (i.e., physical layer), and a physical layer signal carrying the second information block is generated in the transmit processor 455 and then mapped by the transmit processor 455 to the antennas 460 via the transmit devices 456 for transmission in the form of a radio frequency signal. The receive devices 416 receive the radio frequency signal through corresponding antennas 420, and each receive device 416 recovers the baseband information modulated onto the radio frequency carrier and provides the baseband information to the receive processor 412. The receive processor 412 implements various signal reception processing functions for the L1 layer (i.e., physical layer), including receiving and processing the physical layer signal carrying the second information block, and then provides data and / or control signals to the controller / processor 440. The functions for the L2 layer implemented in the controller / processor 440 are The controller / processor may be associated with a buffer 430 that stores program code and data. The buffer 430 may be a computer-readable medium.
[0285] In one embodiment, the first node device 450 apparatus comprises at least one processor and at least one memory, the at least one memory including computer program code, the at least one memory and the computer program code being configured for use with the at least one processor, the first node device 450 apparatus receiving a first information block used to determine at least one configuration parameter value of a target wakeup signal, and monitoring the target wakeup signal, determining whether to monitor the first signaling, and determining whether to monitor the second signaling, The device belongs to a first device group, the first device group including at least one user equipment, when a target wake-up signal is detected and the target wake-up signal carries instructions for the first device group, at least one of the first information block or the target wake-up signal is used to determine whether to monitor a first signaling, and the first signaling is used to determine whether to monitor a second signaling, when the target wake-up signal is detected and the target wake-up signal does not carry instructions for the first device group, the monitor of the target wake-up signal abandons monitoring the second signaling.
[0286] In one embodiment, the first node device 450 apparatus comprises a memory that stores a computer-readable instruction program, which when executed by at least one processor generates actions, the actions including receiving a first information block used to determine at least one configuration parameter value of a target wake-up signal, and monitoring the target wake-up signal, determining whether to monitor first signaling, and determining whether to monitor second signaling, the monitor for the target wake-up signal being a device belonging to a first device group, and The group includes at least one user equipment, and when a target wake-up signal is detected and the target wake-up signal carries instructions for a first device group, at least one of the first information block or the target wake-up signal is used to determine whether to monitor a first signaling, and the first signaling is used to determine whether to monitor a second signaling, and when the target wake-up signal is detected and the target wake-up signal does not carry instructions for the first device group, the monitor of the target wake-up signal abandons monitoring the second signaling.
[0287] In one embodiment, the second node device 410 apparatus includes at least one processor and at least one memory, the at least one memory including computer program code, and the at least one memory and the computer program code configured for use with the at least one processor. The second node device 410 apparatus at least includes: transmitting a first information block used to determine at least one configuration parameter value of a target wakeup signal, transmitting the target wakeup signal, transmitting first signaling, and transmitting second signaling; and monitoring the target wakeup signal, the first device group including at least one user equipment, when the target wakeup signal is detected and the target wakeup signal carries instructions for the first device group, at least one of the first information block or the target wakeup signal indicates whether the first signaling is monitored or not. The first signaling is used to determine whether the second signaling is monitored, and when a target wakeup signal is detected and the target wakeup signal does not carry an instruction for the first device group, the monitor for the target wakeup signal abandons monitoring the second signaling.
[0288] In one embodiment, the second node device 410 apparatus comprises a memory that stores a computer-readable instruction program, which when executed by at least one processor generates actions, the actions being: transmitting a first information block and transmitting a target wake-up signal, the first information block being used to determine at least one configuration parameter value of the target wake-up signal; transmitting a first signaling and transmitting a second signaling, wherein a monitor of the target wake-up signal belongs to a first device group, and the first device group includes at least one transmitting a target wake-up signal including at least one user equipment, wherein when a target wake-up signal is detected and the target wake-up signal carries instructions for a first device group, at least one of the first information block or the target wake-up signal is used to determine whether a first signaling is to be monitored, and the first signaling is used to determine whether a second signaling is to be monitored, and when the target wake-up signal is detected and the target wake-up signal does not carry instructions for the first device group, the monitor of the target wake-up signal abandons monitoring the second signaling.
[0289] In one embodiment, the first node device 450 is a user equipment (UE).
[0290] In one embodiment, the second node device 410 is a base station device (gNB / eNB).
[0291] In one embodiment, the receiving device 456 (including the antenna 460), the receiving processor 452, and the controller / processor 490 are used to receive a first information block in the present application.
[0292] In one embodiment, the receiving device 456 (with antenna 460) is used to monitor the target wake-up signal in this application.
[0293] In one embodiment, the receiving device 456 (including the antenna 460), the receiving processor 452, and the controller / processor 490 are used to monitor the first signaling in this application.
[0294] In one embodiment, the receiving device 456 (with antenna 460), the receiving processor 452, and the controller / processor 490 are used to monitor the second signaling in this application.
[0295] In one embodiment, the transmitting device 456 (including the antenna 460), the transmitting processor 455, and the controller / processor 490 are used to transmit a second information block in the present application.
[0296] In one embodiment, the transmitting device 416 (including the antenna 420), the transmit processor 415, and the controller / processor 440 may receive a first information block as defined in the present application. Used to send
[0297] In one embodiment, the transmitting device 416 (including the antenna 420) is used to transmit the target wake-up signal.
[0298] In one embodiment, the transmitting device 416 (including the antenna 420), the transmit processor 415, and the controller / processor 440 are used to transmit the first signaling in this application.
[0299] In one embodiment, the transmitting device 416 (including the antenna 420), the transmit processor 415, and the controller / processor 440 are used to transmit the second signaling in the present application.
[0300] In one embodiment, the receiving device 416 (including the antenna 420), the receiving processor 412, and the controller / processor 440 are used to receive the second information block in the present application.
[0301] Embodiment 5 Embodiment 5 illustrates a flowchart of wireless signal transmission according to an embodiment of the present application, as shown in Figure 5. In Figure 5, the second node device N500 is a maintenance base station of the serving cell of the first node device U550. It should be particularly noted that the order of this example does not limit the order of signal transmission and the order of implementation in the present application.
[0302] For the second node device N500, a second information block is received in step S501, a first information block is transmitted in step S502, a target wake-up signal is transmitted in step S503, a first signaling is transmitted in step S504, and a second signaling is transmitted in step S505.
[0303] For the first node device U550, the second information block is sent in step S551, the first information block is received in step S552, the target wake-up signal is monitored in step S553, the first signaling is monitored in step S554, and the second signaling is monitored in step S555.
[0304] In embodiment 5, the first information block is used to determine at least one configuration parameter value of a target wake-up signal, and the monitor of the target wake-up signal belongs to a first device group, the first device group including at least one user equipment, when the target wake-up signal is detected and the target wake-up signal carries an instruction for the first device group, at least one of the first information block or the target wake-up signal is used to determine whether to monitor a first signaling, and the first signaling is used to determine whether to monitor a second signaling, when the target wake-up signal is detected and the target wake-up signal does not carry an instruction for the first device group, the monitor of the target wake-up signal abandons monitoring the second signaling, and the second information block is used to indicate at least one band, and the monitor of the target wake-up signal supports receiving a wake-up signal on each band indicated by the second information block.
[0305] In one embodiment, the second information block indicates that reception of wake-up signals is supported in each band, so that receiver performance can be more flexibly considered and the configuration and reception performance of the wake-up signal can be optimized.
[0306] In one embodiment, the second information block is used to indicate the capabilities of the first node device.
[0307] In one embodiment, the second information block is used to indicate the ability of the first node device to receive a wake-up signal.
[0308] In one embodiment, the second information block is used to indicate that the first node device has the ability to receive a wake-up signal and simultaneously receive a PEI.
[0309] In one embodiment, the second information block is transmitted over an air interface or a wireless interface.
[0310] In one embodiment, the second information block is also transmitted over the X2 interface, the Xn interface, or the NG interface.
[0311] In one embodiment, the second information block is also transmitted between network nodes.
[0312] In one embodiment, the second information block is received by the network node through the RAN interface and then transmitted to another network node or also to the core network.
[0313] In one embodiment, the second information block is received by the network node over the Uu interface and then transmitted to another network node or also to the core network.
[0314] In one embodiment, the second information block includes all or part of the upper layer signaling or the physical layer signaling.
[0315] In one embodiment, the second block of information is earlier than the first block of information.
[0316] In one embodiment, the second block of information is later than the first block of information.
[0317] In one embodiment, the second information block includes all or part of the RRC signaling, or the second information block includes all or part of the MAC layer signaling.
[0318] In one embodiment, the second information block is transmitted over a PUSCH or a PUCCH (Physical Uplink Control Channel).
[0319] In one embodiment, the second information block is for each UE, or the second information block is for each feature set, or the second information block is for each band, or the second information block is for each band combination, or the second information block is for each band list, or the second information block is for each frequency range, or the second information block is for each duplex mode.
[0320] In one embodiment, the second block of information relates to a frequency range.
[0321] In one embodiment, the second information block relates to the duplex mode (TDD or FDD).
[0322] In one embodiment, the second information block includes all or part of "UE-RadioPagingInfo."
[0323] In one embodiment, the second information block includes all or part of "UERadioPagingInformation."
[0324] In one embodiment, the second information block includes all or part of "UE-NR-Capability-v1900".
[0325] In one embodiment, the second information block includes all or part of "LPWUS-Parameters-v1900".
[0326] In one embodiment, the second information block includes all or part of "lpwus-SubgroupingSupportBandList-r19".
[0327] In one embodiment, the second information block is used to indicate the UE capabilities required for paging.
[0328] As an embodiment, the technical feature "the second information block is used to indicate at least one band" includes the meaning that all or part of the second information block is used by the first node device in the present application to explicitly or implicitly indicate at least one band.
[0329] As an embodiment, the technical feature "the second information block is used to indicate at least one band" includes the meaning that all or part of the second information block is used by the second node device in the present application to explicitly or implicitly indicate at least one band.
[0330] As one embodiment, the technical feature "the second information block is used to indicate at least one band" includes the meaning that all or part of the second information block is used by the first node device in the present application to explicitly or implicitly indicate at least one band to the second node device in the present application.
[0331] As an embodiment, the technical feature "the second information block is used to indicate at least one band" includes the meaning that all or part of the second information block is used by the second node device in the present application to explicitly or implicitly indicate at least one band to another network node or a core network.
[0332] As an embodiment, the technical feature "the second information block is used to indicate at least one band" includes the meaning that all or part of the second information block is used by the second node device in the present application to explicitly or implicitly indicate at least one band to another network node or a core network.
[0333] In one embodiment, the technical feature "the second information block is used to indicate at least one band" includes the meaning that the second information block is used to indicate a band list.
[0334] In one embodiment, the technical feature "the second information block is used to indicate at least one band" includes the meaning that the second information block is used to indicate a band that supports monitoring (or receiving) a wake-up signal.
[0335] In one embodiment, the number of bands indicated by the second information block is 1024 or less.
[0336] In one embodiment, the second information block is also used to indicate receiver parameter values supported by the first node device.
[0337] In one embodiment, the second information block is also used to indicate the receiver type supported by the first node device.
[0338] In one embodiment, the second information block is also used to indicate reception parameter values of the wake-up signal supported by the first node device.
[0339] In one embodiment, the second information block is also used to indicate at least one configuration parameter value of the wake-up signal supported by the first node device.
[0340] In one embodiment, the technical feature "supports the target wake-up signal monitor receiving a wake-up signal on each band indicated by the second information block" includes the meaning that the target wake-up signal monitor has the ability to monitor (or receive) a wake-up signal on each band indicated by the second information block.
[0341] As one embodiment, the technical feature "the monitor for the target wakeup signal supports receiving a wakeup signal on each band indicated by the second information block" includes the meaning that the monitor for the target wakeup signal supports receiving a signal or instruction used for paging a wakeup on each band indicated by the second information block.
[0342] As an embodiment, the technical feature "the target wake-up signal monitor supports receiving a wake-up signal on each band indicated by the second information block" includes the meaning that the target wake-up signal monitor supports receiving a signal or command used for DRX wake-up on each band indicated by the second information block.
[0343] In one embodiment, the technical feature "the monitor for the target wake-up signal supports receiving a wake-up signal on each band indicated by the second information block" includes the meaning that the monitor for the target wake-up signal supports wake-up paging on each band indicated by the second information block.
[0344] In one embodiment, the technical feature "the monitor for the target wake-up signal supports receiving a wake-up signal on each band indicated by the second information block" includes the meaning that the monitor for the target wake-up signal supports early command of paging on each band indicated by the second information block.
[0345] In one embodiment, the target wake-up signal monitor supports receiving wake-up signals having one or more given configuration parameter values on each band indicated by the second information block.
[0346] In one embodiment, the target wake-up signal monitor supports receiving wake-up signals on each band indicated by the second information block and supports a given wake-up signal receiver type.
[0347] In one embodiment, the target wake-up signal monitor supports receiving wake-up signals on each band indicated by the second information block and supports a given wake-up signal receiver capability.
[0348] In one embodiment, the target wake-up signal monitor supports receiving wake-up signals on each band indicated by the second information block and supports a given wake-up signal receiver parameter value.
[0349] In one embodiment, the second information block is also used to indicate that the monitor for the target wakeup signal supports the X1 configuration set.
[0350] In one embodiment, the second information block is also used to indicate that the monitor for the target wake-up signal supports multiple configuration sets for the wake-up signal.
[0351] In one embodiment, the second information block is also used to indicate that the monitoring of the target wake-up signal supports grouping (or sub-grouping) of user equipment.
[0352] In one embodiment, the target wake-up signal monitor supports one or any combination of {receiving (or monitoring) a wake-up signal, receiving (or monitoring) a wake-up signal with one or more given configuration parameter values, grouping (or sub-grouping) user equipment, and supporting multiple configuration sets for the wake-up signal} on each band indicated by the second information block.
[0353] Embodiment 6 Embodiment 6 illustrates another flowchart of wireless signal transmission according to an embodiment of the present application, as shown in Figure 6. In Figure 6, the second node device N600 is a maintenance base station of the serving cell of the first node device U650. It should be particularly noted that the order of this example does not limit the order of signal transmission and the order of implementation in the present application.
[0354] For the second node device N600, the second information block is received in step S601 and the first information block is transmitted in step S602.
[0355] For the first node device U650, the second information block is sent in step S651, the first information block is received in step S652, and a target wake-up signal is monitored in step S653.
[0356] In embodiment 6, the first information block is used to determine at least one configuration parameter value of the target wake-up signal, and the monitor of the target wake-up signal belongs to a first device group, the first device group including at least one user equipment, when the target wake-up signal is detected and the target wake-up signal carries an instruction for the first device group, at least one of the first information block or the target wake-up signal is used to determine whether to monitor a first signaling, and the first signaling is used to determine whether to monitor a second signaling, when the target wake-up signal is detected and the target wake-up signal does not carry an instruction for the first device group, the monitor of the target wake-up signal abandons monitoring the second signaling, and the second information block is used to indicate at least one band, and the monitor of the target wake-up signal supports receiving a wake-up signal on each band indicated by the second information block.
[0357] Embodiment 7
[0047] Embodiment 7 illustrates a schematic diagram of a target wake-up signal according to an embodiment of the present application, as shown in Figure 7. In Figure 7, each rectangle represents an operation, and each diamond represents a decision. Starting from step 701, step 702 determines whether a target wake-up signal is detected, step 703 abandons monitoring for a second signaling, step 704 determines whether the target wake-up signal carries an instruction for a first device group, step 705 determines whether to monitor the first signaling, step 706 monitors the second signaling, and step 707 determines whether to monitor the second signaling. It should be noted that the sequence numbers of the steps are only used as step identities in one example and do not restrict the execution order between various steps.
[0358] In embodiment 7, the target wake-up signal in the present application is not detected, and the monitor for the target wake-up signal monitors the first signaling in the present application, and the first signaling is used to determine whether to monitor the second signaling in the present application, or the monitor for the target wake-up signal abandons monitoring the second signaling.
[0359] In one embodiment, the first signaling is monitored when the target wake-up signal is not detected, and whether to monitor the second signaling is determined according to the first signaling, thereby supporting an optimized design between power consumption and false alarm performance.
[0360] In one embodiment, when the target wake-up signal is not detected, monitoring for the second signaling is abandoned to further conserve power consumption.
[0361] In one embodiment, no target wake-up signal is detected means that no wake-up signal is detected on the time-frequency resource allocated to the target wake-up signal.
[0362] In one embodiment, the absence of a target wake-up signal indicates that the target This means that no wake-up signal is detected on the time-frequency and sequence resources allocated for the wake-up signal.
[0363] In one embodiment, failure to detect the target wake-up signal means that the information carried by the target wake-up signal is not correctly decoded.
[0364] In one embodiment, no target wake-up signal is detected means that energy detection of any wake-up signal is not detected above a configured or predefined threshold on the resource allocated to the target wake-up signal.
[0365] In one embodiment, no target wake-up signal is detected means that the power value of the envelope detection for the target wake-up signal does not exceed one configured or predefined threshold.
[0366] In one embodiment, no detection of the target wake-up signal means that the correlation peak of the correlation detection for the target wake-up signal does not exceed one configured or predefined threshold.
[0367] In one embodiment, a target wakeup signal not being detected means that the CRC check of the bits propagated by the target wakeup signal does not pass.
[0368] As one embodiment, the technical feature "the monitor for the target wake-up signal monitors a first signaling, and the first signaling is used to determine whether to monitor a second signaling" includes the meaning that the monitor for the target wake-up signal monitors a first signaling, and the first signaling is used to determine whether to monitor a second signaling when the first signaling is detected.
[0369] As one embodiment, the technical feature "the target wake-up signal monitor monitors a first signaling, and the first signaling is used to determine whether to monitor a second signaling" includes the meaning that the target wake-up signal monitor monitors a first signaling, and when the first signaling is detected, the first signaling is used to determine whether to monitor a second signaling, and when the first signaling is not detected, the target wake-up signal monitor monitors the second signaling.
[0370] As one embodiment, the technical feature "the monitor for the target wake-up signal monitors a first signaling, and the first signaling is used to determine whether to monitor a second signaling" includes the meaning that the monitor for the target wake-up signal monitors a first signaling, and when the first signaling is detected, the first signaling is used to determine whether to monitor a second signaling, and when the first signaling is not detected, the monitor for the target wake-up signal does not need to monitor the second signaling.
[0371] As one embodiment, the technical feature "the monitor for the target wake-up signal monitors a first signaling, and the first signaling is used to determine whether to monitor a second signaling" may be expressed as the monitor for the target wake-up signal monitors the first signaling, and when the first signaling is detected, the first signaling is used to determine whether to monitor a second signaling. , is used to determine whether to monitor the second signaling, and when the first signaling is not detected, the monitor for the target wake-up signal includes the implication that whether to monitor the second signaling depends on at least one of the first information block or the target wake-up signal.
[0372] As one embodiment, the technical feature "the monitor for the target wake-up signal monitors a first signaling, and the first signaling is used to determine whether to monitor a second signaling" includes the meaning that the monitor for the target wake-up signal monitors a first signaling, and whether the first signaling is detected is used to determine whether to monitor a second signaling.
[0373] As one embodiment, the technical feature "the monitor for the target wake-up signal monitors a first signaling, and the first signaling is used to determine whether to monitor a second signaling" includes the meaning that the monitor for the target wake-up signal monitors a first signaling, and whether the first signaling is detected and whether the first signaling is detected when the first signaling is detected are both used to determine whether to monitor a second signaling.
[0374] As one embodiment, the technical feature "when a target wakeup signal is not detected, the monitor for the target wakeup signal monitors a first signaling, and the first signaling is used to determine whether to monitor a second signaling, or the monitor for the target wakeup signal abandons monitoring the second signaling" includes the meaning that when a target wakeup signal is not detected, the monitor for the target wakeup signal executes a first behavior or executes a second behavior, the first behavior includes monitoring the first signaling, the first signaling is used to determine whether to monitor the second signaling, and the second behavior includes abandoning monitoring the second signaling.
[0375] As one embodiment, the technical feature "the target wake-up signal is not detected, and the monitor for the target wake-up signal monitors the first signaling, and the first signaling is used to determine whether to monitor the second signaling, or the monitor for the target wake-up signal abandons monitoring the second signaling" includes the meaning that the target wake-up signal is not detected, and the monitor for the target wake-up signal monitors the first signaling, and the first signaling is used to determine whether to monitor the second signaling.
[0376] As one embodiment, the technical feature "the target wake-up signal is not detected, and the monitor for the target wake-up signal monitors the first signaling, and the first signaling is used to determine whether to monitor the second signaling, or the monitor for the target wake-up signal abandons monitoring the second signaling" includes the meaning that the target wake-up signal is not detected, and the monitor for the target wake-up signal abandons monitoring the second signaling.
[0377] Embodiment 8 Embodiment 8 illustrates a schematic diagram of a G1 device group according to one embodiment of the present application, as shown in Figure 8. In Figure 8, each filled rectangle represents one of the G1 device groups, and different fills represent different device groups.
[0378] In embodiment 8, the first signaling in the present application is associated with a G1 device group, where G1 is a positive integer greater than 1, and the second device group is: The device group G1 is one of the G1 device groups, and the monitor of the target wake-up signal in the present application belongs to the second device group, and the instruction value that belongs to the second device group and is propagated by the first signaling is used to determine whether to monitor the second signaling in the present application.
[0379] In one embodiment, G1 is configurable or predefined.
[0380] In one embodiment, the G1 device group is configurable or predefined.
[0381] In one embodiment, the first information block is used to determine the G1 device group.
[0382] In one embodiment, an information block other than the first information block is used to determine the G1 device group.
[0383] In one embodiment, any one of the G1 device groups is a subgroup.
[0384] In one embodiment, any one of the G1 device groups is a subgroup configured by the IE "subgroupConfig."
[0385] In one embodiment, any one of the G1 device groups is a PEI subgroup.
[0386] In one embodiment, one of the G1 device groups is a subgroup assigned by the core network.
[0387] In one embodiment, any one of the G1 device groups is a subgroup divided based on UE_ID.
[0388] In one embodiment, one of the G1 device groups is a subgroup divided based on UE_ID, and another of the G1 device groups is a subgroup assigned by the core network.
[0389] In one embodiment, any two of the G1 device groups are different.
[0390] In one embodiment, two of the G1 device groups are identical.
[0391] In one embodiment, at least one of the G1 device groups is a subgroup assigned by the core network, and one of the G1 device groups is made up of user equipment that does not support core network assignment.
[0392] In one embodiment, any one of the G1 device groups includes only one user equipment.
[0393] In one embodiment, at least one of the G1 device groups includes multiple user equipment.
[0394] In one embodiment, the first device group is one of the G1 device groups. be.
[0395] In one embodiment, the first device group is not one of the G1 device groups.
[0396] In one embodiment, the technical feature "the first signaling is associated with the G1 device group" includes the meaning that the first signaling and the G1 device group are associated with the same paging occasion.
[0397] In one embodiment, the technical feature "the first signaling is associated with the G1 device group" includes the meaning that the first signaling and the G1 device group are for the same paging occasion.
[0398] In one embodiment, the technical feature "the first signaling is associated with the G1 device group" includes the meaning that the first signaling and the G1 device group are for paging occasions of the same group.
[0399] In one embodiment, the technical feature that "the first signaling is associated with the G1 device group" includes the meaning that the information bits included in the first signaling each correspond to the G1 device group.
[0400] In one embodiment, the technical feature "the first signaling is associated with the G1 device group" means that the first signaling includes at least G1 bits, and the G1 bits each correspond to the G1 device group.
[0401] In one embodiment, the technical feature "the first signaling is associated with the G1 device group" means that the first signaling includes at least a G1 bit, and the G1 bits are used for early paging instructions for the G1 device group, respectively.
[0402] In one embodiment, the technical feature "the first signaling is associated with the G1 device group" includes the meaning that the first signaling includes at least a G1 bit, and the G1 bits are each used by user equipment in the G1 device group to determine whether to monitor the associated paging occasion.
[0403] In one embodiment, the technical feature "the first signaling is associated with the G1 device group" includes the meaning that the first signaling is used to determine whether the devices in each of the G1 device group monitor the associated paging occasions.
[0404] In one embodiment, the technical feature "the first signaling is associated with the G1 device group" includes the meaning that if the target user equipment is a user equipment included in one of the G1 device groups, the first signaling includes at least G1 bits, the G1 bits each correspond to the G1 device group, and the bit value corresponding to the device group to which the target user equipment belongs is equal to "1", the target user equipment monitors the associated paging occasions; otherwise, the target user equipment does not need to monitor the associated paging occasions.
[0405] In one embodiment, the first signaling includes at least G1 bits, and the G1 bits each correspond to a G1 device group. The index of one of the paging occasions and the index of the associated paging occasion are used together to determine the position of the corresponding bit.
[0406] In one embodiment, the second device group is exactly the same as the first device group.
[0407] In one embodiment, the second device group is different from the first device group.
[0408] In one embodiment, the second device group and the first device group include the exact same user equipment.
[0409] In one embodiment, the user equipment included in the second device group is not exactly the same as the user equipment included in the first device group.
[0410] In one embodiment, one user equipment belongs to only one of the second device group or the first device group.
[0411] In one embodiment, the second device group includes all of the user equipment in the first device group.
[0412] In one embodiment, the first device group includes all of the user equipment in the second device group.
[0413] In one embodiment, the second device group is a subset of the first device group.
[0414] In one embodiment, the first device group is a subset of the second device group.
[0415] In one embodiment, the second group of devices includes only monitors for target wakeup signals.
[0416] In one embodiment, the second group of devices also includes user equipment other than the monitor for the target wake-up signal.
[0417] In one embodiment, the instruction value of the second device group is a bit value of a bit that corresponds to the second device group and is included in the first signaling.
[0418] In one embodiment, the instruction value for the second device group is a bit value of a bit that is for the second device group and that is included in the first signaling.
[0419] In one embodiment, the instruction value of the second device group is a bit value of a bit that is intended for the second device group and that is included in the DCI format carried by the first signaling.
[0420] In one embodiment, the command value for the second device group is a value of a paging command used for the second device group and included in the first signaling.
[0421] In one embodiment, "the instruction value that belongs to the second device group and is propagated by the first signaling is used to determine whether to monitor the second signaling." The technical feature "is used by the first node device in the present application to determine whether to monitor the second signaling" includes the meaning that the command value, which belongs to the second device group and is propagated by the first signaling, is used by the first node device in the present application to determine whether to monitor the second signaling.
[0422] As one embodiment, the technical feature "the command value belonging to the second device group and propagated by the first signaling is used to determine whether to monitor the second signaling" includes the meaning that if the command value belonging to the second device group and propagated by the first signaling is equal to a predefined value, the monitor of the target wake-up signal monitors the second signaling, and otherwise, the monitor of the target wake-up signal does not need to monitor the second signaling.
[0423] In one embodiment, the technical feature "the command value belonging to the second device group and propagated by the first signaling is used to determine whether to monitor the second signaling" includes the meaning that if the command value belonging to the second device group and propagated by the first signaling is equal to "1", the monitor of the target wake-up signal monitors the second signaling, and otherwise, the monitor of the target wake-up signal does not need to monitor the second signaling.
[0424] In one embodiment, the technical feature "the instruction value belonging to the second device group and propagated by the first signaling is used to determine whether to monitor the second signaling" includes the meaning that if the instruction value belonging to the second device group and propagated by the first signaling is equal to "1", whether the monitor of the target wake-up signal monitors the second signaling depends on at least one of the target wake-up signal or the first information block, and otherwise, the monitor of the target wake-up signal does not need to monitor the second signaling.
[0425] In one embodiment, the technical feature "the instruction value belonging to the second device group and propagated by the first signaling is used to determine whether to monitor the second signaling" includes the meaning that if the instruction value belonging to the second device group and propagated by the first signaling is equal to "1", the monitor of the target wake-up signal monitors the second signaling, and otherwise, whether the monitor of the target wake-up signal monitors the second signaling depends on at least one of the target wake-up signal or the first information block.
[0426] As one embodiment, the technical feature "the command value belonging to the second device group and propagated by the first signaling is used to determine whether to monitor the second signaling" includes the meaning that if the target wake-up signal propagates a command for the first device group and the command value belonging to the second device group and propagated by the first signaling is equal to "1", the monitor of the target wake-up signal monitors the second signaling; otherwise, the monitor of the target wake-up signal does not need to monitor the second signaling.
[0427] Embodiment 9 Embodiment 9 illustrates a schematic diagram of a target configuration set according to an embodiment of the present application, as shown in Figure 9. In Figure 9, each rectangular box represents one of the X1 configuration sets, and the rectangular box filled with cross lines represents the target configuration set.
[0428] In embodiment 9, the first information block in the present application is used to determine an X1 configuration set, any one of the X1 configuration sets includes at least one configuration parameter value, X1 is a positive integer greater than 1, the target configuration set is one of the X1 configuration sets, the target configuration set includes at least one configuration parameter value of the target wake-up signal in the present application, and the identity of the first device group in the present application is used to determine the target configuration set from the X1 configuration set.
[0429] In one embodiment, X1 is equal to 2.
[0430] In one embodiment, X1 is greater than two.
[0431] In one embodiment, the upper limit of X1 is fixed.
[0432] In one embodiment, any one of the X1 configuration sets includes only one configuration parameter value.
[0433] In one embodiment, any one of the X1 configuration sets includes multiple configuration parameter values.
[0434] In one embodiment, any one of the X1 configuration sets is the value (or state) of one IE (information element).
[0435] In one embodiment, any one of the X1 configuration sets is a combination of values of multiple fields.
[0436] In one embodiment, any one of the X1 configuration sets is a combination of values for at least one field.
[0437] In one embodiment, any one of the X1 configuration sets is one value (or state) of one wake-up signal configuration IE.
[0438] In one embodiment, any one of the X1 configuration sets consists of the values of all fields contained in one IE.
[0439] In one embodiment, any one configuration parameter value included in any one of the X1 configuration sets is the value of one field.
[0440] In one embodiment, the X1 configuration set constitutes one wake-up signal configuration list.
[0441] In one embodiment, any one of the X1 configuration sets is an element included in one list.
[0442] In one embodiment, any two of the X1 configuration sets are two configurations of the same IE.
[0443] In one embodiment, any two of the X1 configuration sets each consist of values for two respective configuration fields of the same IE.
[0444] In one embodiment, any two of the X1 configuration sets are the respective values (or states) of two identical IEs.
[0445] In one embodiment, any two of the X1 configuration sets are configurations of two identical IEs, respectively.
[0446] In one embodiment, any two of the X1 configuration sets each consist of field values that are each composed of two identical IEs.
[0447] In one embodiment, any two of the X1 configuration sets each contain values for the two configuration fields of the same IE.
[0448] In one embodiment, any two of the X1 configuration sets each contain values for the two configuration fields of the same IE.
[0449] In one embodiment, any two of the X1 configuration sets each consist of two respective configuration values of the same field combination.
[0450] In one embodiment, the configuration parameter values included in any two of the X1 configuration sets are independently configured.
[0451] In one embodiment, any one of the X1 configuration sets is configured from the values of fields included in one wake-up signal configuration included in the wake-up signal configuration list.
[0452] In one embodiment, two of the X1 configuration sets are two different IE values (or states), respectively.
[0453] In one embodiment, two of the X1 configuration sets are respective configurations of two different IEs.
[0454] In one embodiment, two of the X1 configuration sets each include a respective value for a different field.
[0455] In one embodiment, at least one of the X1 configuration sets includes values for fields used to configure frequency domain resources for the wake-up signal.
[0456] In one embodiment, at least one of the X1 configuration sets includes values for fields used to configure time domain resources for the wake-up signal.
[0457] In one embodiment, at least one of the X1 configuration sets includes values for fields used to configure sequence resources used by the wake-up signal.
[0458] In one embodiment, at least one of the X1 configuration sets includes values for fields used to configure some information bits propagated by the wake-up signal.
[0459] In one embodiment, at least one of the X1 configuration sets includes values for fields used to configure the format used by the wake-up signal.
[0460] In one embodiment, at least one of the X1 configuration sets is a Paging Information (PEI). Contains the value of a field used to configure whether a wake-up signal is used to direct monitoring of a paging early indication.
[0461] In one embodiment, at least one of the X1 configuration sets includes a value for a field used to configure whether the wake-up signal is used to indicate monitoring of a PDCCH with a PS-RNTI scrambled CRC.
[0462] In one embodiment, at least one of the X1 configuration sets includes values for fields used to configure how the wake-up signal is generated.
[0463] In one embodiment, at least one of the X1 configuration sets includes a value for a field used to configure the type of wake-up signal.
[0464] In one embodiment, at least one of the X1 configuration sets includes a value for a field used to configure the modulation scheme (OOK or FSK) of the wake-up signal.
[0465] As an embodiment, the technical feature "the first information block is used to determine the X1 configuration set" means that the first information block is used by the first node device in the present application to determine the X1 configuration set.
[0466] In one embodiment, the technical feature "the first information block is used to determine the X1 configuration set" means that all or part of the first information block is used to explicitly or implicitly indicate the X1 configuration set.
[0467] In one embodiment, the technical feature "the first information block is used to determine the X1 configuration set" means that all or part of the first information block is used to explicitly or implicitly indicate one of the X1 configuration sets.
[0468] In one embodiment, the technical feature "the first information block is used to determine the X1 configuration set" includes the meaning that all or part of the first information block is used to explicitly or implicitly indicate part of the X1 configuration set, and at least one of the X1 configuration sets is a default configuration set.
[0469] As one embodiment, the technical feature "the first information block is used to determine the X1 configuration set" includes the meaning that the X1 configuration set belongs to one configuration set list, and the first information block is used to add the configuration set to the configuration set list, or the first information block is used to release the configuration set from the configuration set list.
[0470] As one embodiment, the technical feature "the first information block is used to determine the X1 configuration set" includes the meaning that the first information block is used to add a configuration set to a configuration set list to which the X1 configuration set belongs, or the first information block is used to release a configuration set from a configuration set list to which the X1 configuration set belongs.
[0471] In one embodiment, the target configuration set is any one of the X1 configuration sets.
[0472] In one embodiment, any one configuration parameter value included in the target configuration set is used to configure the target wake-up signal.
[0473] In one embodiment, any one configuration parameter value included in the target configuration set is a configuration parameter value for a target wake-up signal.
[0474] In one embodiment, any one configuration parameter value included in the target configuration set is the value of one field in the target configuration set.
[0475] In one embodiment, the target configuration set includes only one configuration parameter value for the target wake-up signal.
[0476] In one embodiment, the target configuration set includes multiple configuration parameter values for the target wake-up signal.
[0477] In one embodiment, any one configuration parameter value included in the target configuration set is used to monitor the target wake-up signal.
[0478] In one embodiment, the target configuration set also includes configuration parameter values for signals other than the target wake-up signal.
[0479] In one embodiment, the "identity of the first device group" and the "index of the first device group" are equivalent or may be used interchangeably.
[0480] In one embodiment, the "identity of the first device group" and the "configuration index of the first node device assigned by the core network" may be equivalent or may be used interchangeably.
[0481] In one embodiment, the "identity of the first device group" and the "subgroup index of the first node device assigned by the core network" may be equivalent or may be used interchangeably.
[0482] In one embodiment, the identity of the first device group is a non-negative integer.
[0483] In one embodiment, the identity of the first device group is assigned by the core network.
[0484] In one embodiment, the identity of the first device group is the identity or index of the target configuration set within the X1 configuration set.
[0485] In one embodiment, the feature identification value is equal to the identity or index value of the target configuration set in the X1 configuration set, and each user equipment included in the first device group is assigned a feature identification value, and the identity of the first device group is equal to the feature identification value.
[0486] In one embodiment, the identity of the first device group is equal to an equal identification value assigned to each of all user equipments included in the first device group.
[0487] In one embodiment, each user equipment included in the first device group is assigned an equal identification value, and the identity of the first device group is equal to the equal identification value assigned to any user equipment included in the first device group.
[0488] In one embodiment, the identity of the first device group is obtained according to the identities of the user equipments included in the first device group.
[0489] In one embodiment, the identity of the first device group is signaling configured or predefined.
[0490] In one embodiment, the identity of the first device group is equal to an equal value obtained by performing the same mathematical operation on the identities of all included user equipment.
[0491] In one embodiment, the identity of the first device group is the index of the first device group within the plurality of device groups.
[0492] As one embodiment, the technical feature "the identity of the first device group is used to determine the target configuration set from the X1 configuration set" includes the meaning that the identity of the first device group is used by the first node device in the present application to determine the target configuration set from the X1 configuration set.
[0493] In one embodiment, the technical feature "the identity of the first device group is used to determine the target configuration set from the X1 configuration set" includes the meaning that a value obtained by performing modulo on X1 by the identity of the first device group is used to determine the target configuration set from the X1 configuration set.
[0494] As an embodiment, the technical feature "the identity of the first device group is used to determine the target configuration set from the X1 configuration set" includes the meaning that the index or identity of the target configuration set in the X1 configuration set is equal to a value obtained by performing modulo on X1 by the identity of the first device group.
[0495] As one embodiment, the technical feature "the identity of the first device group is used to determine the target configuration set from the X1 configuration set" includes the meaning that the identity of the first device group is used to determine a first intermediate value, and a value obtained by performing modulo on X1 by the first intermediate value is used to determine the target configuration set from the X1 configuration set.
[0496] In one embodiment, the technical feature "the identity of the first device group is used to determine the target configuration set from the X1 configuration set" includes the meaning that the identity of the first device group is used to determine the target configuration set from the X1 configuration set according to a predefined mapping relationship or table relationship.
[0497] In one embodiment, the technical feature that "the identity of the first device group is used to determine the target configuration set from the X1 configuration set" is It implies that the index of the target configuration set within the set is equal to the configuration set index assigned to the first node by the core network.
[0498] In one embodiment, the technical feature "the identity of the first device group is used to determine the target configuration set from the X1 configuration set" includes the meaning that the index of the target configuration set in the X1 configuration set is equal to the index of the subgroup assigned to the first node by the core network.
[0499] In one embodiment, the technical feature "the identity of the first device group is used to determine the target configuration set from the X1 configuration set" means that the index of the target configuration set in the X1 configuration set is equal to the identity of the first device group.
[0500] In one embodiment, the technical feature "the identity of the first device group is used to determine the target configuration set from the X1 configuration set" includes the meaning that the identity of the first device group is a configuration index assigned to the first node by the core network, and the index of the target configuration set in the X1 configuration set is equal to the configuration index assigned to the first node by the core network.
[0501] As one embodiment, the technical feature "the identity of the first device group is used to determine the target configuration set from the X1 configuration set" includes the meaning that when the first node device supports the core network to assign a configuration index (or identity), the index of the target configuration set in the X1 configuration set is equal to the configuration index (or identity) assigned to the first node device by the core network; otherwise, the target configuration set is one predefined or fixed configuration set in the X1 configuration set.
[0502] As one embodiment, the technical feature "the identity of the first device group is used to determine the target configuration set from the X1 configuration set" includes the meaning that when the first node device supports the core network to assign the identity (or index) of the device group (or subgroup), the identity (or index) of the device group (or subgroup) assigned to the first node device by the core network is used to determine the target configuration set from the X1 configuration set; otherwise, the target configuration set is one predefined or fixed configuration set in the X1 configuration set.
[0503] As one embodiment, the technical feature "the identity of the first device group is used to determine the target configuration set from the X1 configuration set" includes the meaning that when the first node device supports the core network to assign the identity (or index) of the device group (or subgroup), a value obtained by performing modulo on X1 by the identity (or index) of the device group (or subgroup) assigned to the first node device by the core network is used to determine the target configuration set from the X1 configuration set; otherwise, the target configuration set is one predefined or fixed configuration set in the X1 configuration set.
[0504] In one embodiment, "the identity of the first device group is in the X1 configuration set The technical feature "is used to determine a target configuration set from the X1 configuration set" includes the meaning that the identity of the first device group is used to determine an opportunity to be occupied by the second signaling, and the opportunity occupied by the second signaling is used to determine a target configuration set from the X1 configuration set.
[0505] Embodiment 10 Embodiment 10 illustrates a schematic diagram of a first identity and a second identity device according to an embodiment of the present application, as shown in Figure 10. In Figure 10, each rectangle filled with a slash line represents one user equipment included in a device group corresponding to a first identity, each rectangle filled with a cross line represents one user equipment included in a device group corresponding to a second identity, and a dotted line with an arrow represents that a corresponding identity is assigned.
[0506] In embodiment 10, the first device group in the present application is one of the X2 device groups, the X2 identities correspond to the X2 device groups, any one of the X2 device groups includes at least one user equipment, X2 is a positive integer greater than 1, the first identity and the second identity are two different identities within the X2 identity, and one user equipment included in the device group corresponding to the first identity within the X2 device group is assigned the first identity, and one user equipment included in the device group corresponding to the second identity within the X2 device group is assigned no identity or the second identity.
[0507] In one embodiment, a fallback or default device group is introduced to provide support for user equipment with different capabilities, thereby ensuring system compatibility.
[0508] In one embodiment, X2 is equal to X1 in this application.
[0509] In one embodiment, X2 is greater than X1 in this application.
[0510] In one embodiment, X2 is smaller than X1 in this application.
[0511] In one embodiment, X2 is equal to G1 in this application, and the X2 device group is the G1 device group in this application.
[0512] In one embodiment, X2 is equal to G1 in this application, and the X2 device group is completely the same as the G1 device group in this application.
[0513] In one embodiment, X2 is equal to G1 in this application, and the X2 device group and the G1 device group in this application are equivalent or can be used interchangeably.
[0514] In one embodiment, the X2 device group is different from the G1 device group in this application.
[0515] In one embodiment, X2 is equal to G1 in the present application, and one of the X2 device groups is not a device group in the G1 device group in the present application.
[0516] In one embodiment, X2 is equal to G1 in this application, and one of the G1 device groups is not a device group in the X2 device group.
[0517] In one embodiment, X2 is not equal to G1 in this application.
[0518] In one embodiment, X2 is equal to G1 in this application.
[0519] In one embodiment, X2 is greater than G1 in the present application, and any one of the G1 device groups in the present application is one of the X2 device groups.
[0520] In one embodiment, X2 is smaller than G1 in this application, and any one of the X2 device groups is one of the G1 device groups in this application.
[0521] In one embodiment, the X2 device group and the G1 device group are configured independently and separately.
[0522] In one embodiment, the X2 device group and the G1 device group are each composed of two signalings, two fields, or two IEs.
[0523] In one embodiment, X2 is equal to 2.
[0524] In one embodiment, X2 is greater than two.
[0525] In one embodiment, X2 is configurable or predefined.
[0526] In one embodiment, the X2 device groups are configurable or predefined.
[0527] In one embodiment, the first information block is used to determine the X2 device group.
[0528] In one embodiment, an information block other than the first information block is used to determine the X2 device group.
[0529] In one embodiment, any one of the X2 device groups is a subgroup.
[0530] In one embodiment, any one of the X2 device groups is a subgroup configured by the IE "subgroupConfig".
[0531] In one embodiment, any one of the X2 device groups is a PEI subgroup.
[0532] In one embodiment, one of the X2 device groups is a subgroup assigned by the core network.
[0533] In one embodiment, any one of the X2 device groups is a subgroup divided based on UE_ID.
[0534] In one embodiment, one of the X2 device groups is split based on UE_ID. The other subgroup of the X2 device group is a subgroup assigned by the core network.
[0535] In one embodiment, any two of the X2 device groups are different.
[0536] In one embodiment, two of the X2 device groups are identical.
[0537] In one embodiment, at least one of the X2 device groups is a sub-group assigned by the core network, and one of the X2 device groups consists of user equipment that does not support core network assignment.
[0538] In one embodiment, any one of the X2 device groups includes only one user equipment.
[0539] In one embodiment, at least one of the X2 device groups includes multiple user equipment.
[0540] In one embodiment, the first device group is one of the X2 device groups.
[0541] In one embodiment, any one of the X2 identities is a non-negative integer.
[0542] In one embodiment, any one of the X2 identities is an integer.
[0543] As an embodiment, the technical feature "each X2 identity corresponds to an X2 device group" includes the meaning that each X2 identity is used to identify an X2 device group.
[0544] In one embodiment, the technical feature "each X2 identity corresponds to an X2 device group" includes the meaning that each X2 identity is associated with an X2 device group.
[0545] In one embodiment, the technical feature "each X2 identity corresponds to an X2 device group" includes the meaning that each X2 identity is used for each X2 device group.
[0546] In one embodiment, the technical feature "each X2 identity corresponds to an X2 device group" includes the meaning that each X2 identity is predefined or configured for an X2 device group.
[0547] In one embodiment, the technical feature "each of the X2 identities corresponds to an X2 device group" includes the meaning that each of the X2 identities is an identity of an X2 device group.
[0548] In one embodiment, the technical feature "each X2 identity corresponds to an X2 device group" includes the meaning that each X2 identity is assigned, configured, or defaulted to an X2 device group.
[0549] As an embodiment, the technical feature "each X2 identity corresponds to an X2 device group" includes the meaning that each X2 identity is an identity or index of a configuration set for the X2 device group.
[0550] In one embodiment, one of the X2 identities is assigned to the corresponding device group by the core network.
[0551] In one embodiment, one of the X2 identities is equal to a default value.
[0552] In one embodiment, one of the X2 identities is equal to a default value when the corresponding device group is not assigned or configured.
[0553] In one embodiment, any one of the X2 identities is equal to the identity or index of one of the X1 configuration sets in this application.
[0554] In one embodiment, any one of the X2 identities is equal to the identity or index of one of the subgroups.
[0555] In one embodiment, any one of the X2 identities is equal to the identity or index of one of the subgroups configured by the IE "subgroupConfig".
[0556] In one embodiment, any one of the X2 identities is equal to the identity or index of one of the PEI subgroups.
[0557] In one embodiment, X2 is equal to X1 in the present application, the X2 identity has a one-to-one correspondence with the X1 configuration set in the present application, and the target configuration set is a configuration set corresponding to the identity of the first device group in the X1 configuration set. As a dependent embodiment of the above embodiment, the one-to-one correspondence between the X2 identity and the X1 configuration set is predefined or configurable.
[0558] As an embodiment, X2 is greater than X1 in the present application, and the index of the target configuration set in the X1 configuration set in the present application is equal to the value obtained by performing modulo on X1 by the identity of the first device group.
[0559] In one embodiment, X2 is larger than X1 in the present application, the X2 device group is divided into X1 device sets, the X1 device sets have a one-to-one correspondence with the X1 configuration sets in the present application, and the target configuration set is a configuration set corresponding to the device set to which the first device group in the X1 configuration set belongs. As a dependent embodiment of the above embodiment, the one-to-one correspondence between the X1 device sets and the X1 configuration sets is predefined or configurable.
[0560] In one embodiment, X2 is smaller than X1 in the present application, and any one of the X2 device groups corresponds to at least one of the X1 configuration sets in the present application, and when the first device group corresponds to multiple configurations of the X1 configuration set, the time domain position of the second signaling is used to determine a target configuration set from the multiple corresponding configuration sets.
[0561] In one embodiment, the first identity is not equal to the second identity. .
[0562] In one embodiment, the first identity and the second identity are independent.
[0563] In one embodiment, the first identity is one of the X2 identities and the second identity is one of the X2 identities.
[0564] In one embodiment, each user equipment included in a device group corresponding to a first identity in the X2 device group is assigned a first identity.
[0565] In one embodiment, each user equipment included in a device group corresponding to a first identity in the X2 device group is assigned a first identity by the core network.
[0566] In one embodiment, each user equipment included in a device group corresponding to a first identity in the X2 device group is assigned a first identity by a network device.
[0567] In one embodiment, the identity or index assigned by the core network to each user equipment included in the device group corresponding to the first identity in the X2 device group is equal to the first identity.
[0568] In one embodiment, one user equipment included in a device group corresponding to a first identity in the X2 device group is assigned the first identity by the core network.
[0569] In one embodiment, the device group corresponding to the first identity in the X2 device group includes only one user equipment.
[0570] In one embodiment, the device group corresponding to the first identity in the X2 device group includes multiple user equipments.
[0571] In one embodiment, the device group corresponding to the first identity in the X2 device group is the first device group.
[0572] In one embodiment, the device group corresponding to the first identity in the X2 device group is a device group other than the first device group.
[0573] In one embodiment, "a user equipment has no assigned identity" includes the meaning that the user equipment does not support an assigned identity, or the user equipment supports an assigned identity but no identity has been assigned.
[0574] In one embodiment, one user equipment included in the device group corresponding to the second identity in the X2 device group does not support being assigned an identity.
[0575] In one embodiment, a device corresponding to a second identity in the X2 device group One user device in the device group does not have an assigned identity.
[0576] In one embodiment, a second identity is assigned to one user equipment included in a device group corresponding to the second identity in the X2 device group.
[0577] In one embodiment, each user equipment included in a device group corresponding to a second identity in the X2 device group is assigned a second identity.
[0578] In one embodiment, one user equipment included in a device group corresponding to the second identity in the X2 device group does not have an assigned identity, and another user equipment included in a device group corresponding to the second identity in the X2 device group has an assigned second identity.
[0579] In one embodiment, any user equipment included in a device group corresponding to a second identity in the X2 device group does not support identity assignment, has no identity assigned, or has a second identity assigned.
[0580] In one embodiment, any user equipment included in a device group corresponding to a second identity in the X2 device group does not support identity assignment by the core network, or is not assigned an identity by the core network, or is assigned a second identity by the core network.
[0581] In one embodiment, any user equipment included in a device group corresponding to a second identity in the X2 device group does not support identity assignment by a network device, does not have an identity assigned by a network device, or has a second identity assigned by a network device.
[0582] In one embodiment, the device group corresponding to the second identity in the X2 device group is a fallback device group.
[0583] In one embodiment, the device group corresponding to the second identity in the X2 device group is the default device group.
[0584] In one embodiment, the device group corresponding to the second identity in the X2 device group includes only one user equipment.
[0585] In one embodiment, the device group corresponding to the second identity in the X2 device group includes multiple user equipments.
[0586] In one embodiment, the device group corresponding to the second identity in the X2 device group is the first device group.
[0587] In one embodiment, the device group corresponding to the second identity in the X2 device group is a device group other than the first device group.
[0588] In one embodiment, the X2 identity has a third identity, the third identity is different from the first identity, the third identity is different from the second identity, and each user equipment included in the device group corresponding to the third identity in the X2 device group does not support the identity being assigned.
[0589] In one embodiment, the X2 identity has a third identity, the third identity is different from the first identity, the third identity is different from the second identity, and each user equipment included in the device group corresponding to the third identity in the X2 device group does not have an assigned identity.
[0590] Embodiment 11 Embodiment 11 illustrates a schematic diagram of the relationship between a target wake-up signal, a first signaling, and a second signaling according to an embodiment of the present application, as shown in Figure 11. In Figure 11, the horizontal axis represents time, the rectangular box filled with cross lines represents the target wake-up signal, the rectangular box filled with slash lines represents the first signaling, the rectangular box filled with cross lines represents the second signaling, and the dotted lines with arrows represent the corresponding relationships.
[0591] In embodiment 11, a first information block in the present application is used to determine a time-domain position offset between a first signaling in the present application and a second signaling in the present application, the first information block is used to determine a time-domain position offset between a target wake-up signal in the present application and the second signaling, the time-domain position relationship between the target wake-up signal and the first signaling is used to determine whether to monitor the first signaling, and the identity of the monitor of the target wake-up signal is used to determine the time-domain position of the second signaling.
[0592] In one embodiment, the time-domain positional relationship between the target wake-up signal and the first signaling is used to determine whether to monitor the first signaling, which takes into account the processing delay of the wake-up signal and ensures flexibility in product implementation.
[0593] In one embodiment, the time domain position offset between the first signaling and the second signaling is the position offset between the time domain opportunity occupied by the first signaling and the time domain opportunity occupied by the second signaling.
[0594] In one embodiment, the time domain position offset between the first signaling and the second signaling is the position offset between the time domain opportunity occupied by the first signaling and the frame associated with or belonging to the second signaling.
[0595] In one embodiment, the time domain position offset between the first signaling and the second signaling is the time interval length between the start moment (or end moment) of the first signaling and the start moment (or end moment) of the second signaling.
[0596] In one embodiment, the time domain position offset between the first signaling and the second signaling is the time interval length between the start moment of the first signaling and the start moment of the frame associated with or belonging to the second signaling in the time domain.
[0597] In one embodiment, the time domain position offset between the first signaling and the second signaling is the time interval length between the starting moment of the frame associated with or containing the first signaling and the starting moment of the frame associated with or belonging to the second signaling in the time domain.
[0598] As an embodiment, the technical feature "using the first information block to determine a time-domain position offset between the first signaling and the second signaling" includes the meaning that the first information block is used by the first node device in the present application to determine a time-domain position offset between the first signaling and the second signaling.
[0599] In one embodiment, the technical feature "the first information block is used to determine a time-domain position offset between the first signaling and the second signaling" includes the meaning that all or part of the first information block is used to explicitly or implicitly indicate the time-domain position offset between the first signaling and the second signaling.
[0600] In one embodiment, the technical feature "using a first information block to determine a time domain position offset between the first signaling and the second signaling" includes the meaning that the first information block is used to explicitly or implicitly indicate the number of time domain symbols spaced between the starting moment of the first signaling and the starting moment of the reference frame, and the first information block is used to explicitly or implicitly indicate the number of frames spaced between the starting moment of the reference frame and the starting moment of a frame associated with or belonging to the second signaling in the time domain.
[0601] In one embodiment, the technical feature "using a first information block to determine a time domain position offset between a first signaling and a second signaling" includes the meaning that the first information block is used to explicitly or implicitly indicate a first offset value and a second offset value, wherein the first offset value is equal to the time interval length between a starting moment of the first signaling and a reference time, and the second offset value is equal to the time interval length between a reference time and a starting moment of a frame associated with or belonging to the second signaling in the time domain.
[0602] In one embodiment, the technical feature "using the first information block to determine the time domain position offset between the first signaling and the second signaling" includes the meaning that the first information block is used to explicitly or implicitly indicate the number of time domain symbols spaced between the starting moment of the first signaling and the starting moment of the reference frame, and the first information block is used to explicitly or implicitly indicate the number of frames spaced between the starting moment of the reference frame and the starting moment of a paging frame associated with or belonging to the paging occasion occupied by the second signaling.
[0603] In one embodiment, the time domain position offset between the target wake-up signal and the second signaling is a position offset between a time domain opportunity occupied by the target wake-up signal and a time domain opportunity occupied by the second signaling.
[0604] In one embodiment, the time between the target wake-up signal and the second signaling The domain position offset is the position offset between the time domain opportunity occupied by the target wake-up signal and the frame associated with or belonging to the second signaling.
[0605] In one embodiment, the time domain position offset between the target wake-up signal and the second signaling is the time interval length between the start moment (or end moment) of the target wake-up signal and the start moment (or end moment) of the second signaling.
[0606] In one embodiment, the time-domain position offset between the target wake-up signal and the second signaling is the time interval length between the starting moment (or ending moment) of the target wake-up signal and the reference time, and is the time interval length between the reference time and the time-domain position of the second signaling.
[0607] In one embodiment, the time domain position offset between the target wake-up signal and the second signaling is the time interval length between the start moment (or end moment) of the target wake-up signal and the start moment (or end moment) of the frame associated with or belonging to the second signaling in the time domain.
[0608] In one embodiment, the time domain position offset between the target wake-up signal and the second signaling is the time interval length between the start moment (or end moment) of the frame associated with or containing the target wake-up signal and the start moment (or end moment) of the frame associated with or belonging to the second signaling in the time domain.
[0609] In one embodiment, the time domain position offset between the target wake-up signal and the second signaling comprises a number of time domain symbols spaced between the starting moment (or ending moment) of the target wake-up signal and the starting moment (or ending moment) of the reference frame, and a number of frames spaced between the starting moment (or ending moment) of the reference frame and the starting moment (or ending moment) of a frame associated with or belonging to the second signaling in the time domain.
[0610] In one embodiment, the time domain position offset between the target wake-up signal and the second signaling comprises a number of time domain symbols spaced between a starting moment (or an ending moment) of the target wake-up signal and a starting moment (or an ending moment) of the reference subframe, and a number of subframes spaced between a starting moment (or an ending moment) of the reference subframe and a starting moment (or an ending moment) of a subframe associated with or belonging to the second signaling in the time domain.
[0611] In one embodiment, the time domain position offset between the target wake-up signal and the second signaling comprises a number of time domain symbols spaced apart between the starting moment (or ending moment) of the target wake-up signal and the starting moment (or ending moment) of the reference time slot, and a number of subframes spaced apart between the starting moment (or ending moment) of the reference time slot and the starting moment (or ending moment) of the time slot associated with or belonging to the second signaling in the time domain.
[0612] In one embodiment, the time domain position offset between the target wake-up signal and the second signaling comprises a number of time domain symbols spaced between the starting moment (or ending moment) of the target wake-up signal and the starting moment (or ending moment) of the reference frame, and a number of frames spaced between the starting moment (or ending moment) of the reference frame and the starting moment (or ending moment) of a paging frame associated with or belonging to the paging occasion occupied by the second signaling.
[0613] In one embodiment, the time domain position offset between the target wake-up signal and the second signaling includes the time interval length between the starting moment (or ending moment) of the target wake-up signal and the starting moment (or ending moment) of the reference frame, and the time interval length between the starting moment (or ending moment) of the reference frame and the starting moment (or ending moment) of a paging frame associated with or belonging to the paging occasion occupied by the second signaling.
[0614] As an embodiment, the technical feature "using the first information block to determine a time-domain position offset between the target wake-up signal and the second signaling" includes the meaning that the first information block is used to determine the time-domain position offset between the target wake-up signal and the second signaling by the first node device in the present application.
[0615] In one embodiment, the technical feature "using the first information block to determine the time-domain position offset between the target wake-up signal and the second signaling" includes the meaning that all or part of the first information block is used to explicitly or implicitly indicate the time-domain position offset between the target wake-up signal and the second signaling.
[0616] In one embodiment, the technical feature "using the first information block to determine a time-domain position offset between the target wake-up signal and the second signaling" includes the meaning of using the first information block to determine a priority relationship between the target wake-up signal and the second signaling.
[0617] In one embodiment, the technical feature "using the first information block to determine the time-domain position offset between the target wake-up signal and the second signaling" includes the meaning that the first information block is used to determine the priority relationship between the target wake-up signal and the second signaling, and the time interval length between the target wake-up signal and the second signaling.
[0618] In one embodiment, the technical feature "using the first information block to determine a time domain position offset between the target wake-up signal and the second signaling" includes the meaning of using the first information block to determine a time interval length between the target wake-up signal and the second signaling.
[0619] In one embodiment, the technical feature "using the first information block to determine the time domain position offset between the target wake-up signal and the second signaling" includes the meaning that the first information block is used to determine the time interval length between the start moment (or end moment) of the time domain resource occupied by the target wake-up signal and the start moment (or end moment) of one time window associated with (or belonging to) the second signaling. As a dependent embodiment of the embodiment, a time window associated with (or belonging to) the second signaling includes at least one time slot. As a dependent embodiment of the above embodiment, a time window associated with (or belonging to) the second signaling includes at least one frame. As a dependent embodiment of the above embodiment, a time window associated with (or belonging to) the second signaling includes at least one OFDM symbol. As a dependent embodiment of the above embodiment, a time window associated with (or belonging to) the second signaling includes at least one DRX cycle. As a dependent embodiment of the above embodiment, a time window associated with (or belonging to) the second signaling is a time window associated with (or belonging to) a paging occasion occupied by the second signaling.
[0620] In one embodiment, the technical feature "using the first information block to determine a time-domain position offset between the target wake-up signal and the second signaling" includes the meaning of using the first information block to determine the time-domain position of the target wake-up signal.
[0621] In one embodiment, the technical feature "using the first information block to determine a time-domain position offset between the target wake-up signal and the second signaling" includes the meaning that the first information block is used to determine a start moment or an end moment of a time-domain resource occupied by the target wake-up signal.
[0622] As one embodiment, the technical feature "using a first information block to determine a time-domain position offset between the target wake-up signal and the second signaling" includes the meaning of using the first information block to determine a reference time and a time interval length between the reference time and a start moment or an end moment of a time-domain resource occupied by the target wake-up signal. As a dependent embodiment of the above embodiment, the time-domain position of the second signaling is used to determine the reference time. As a dependent embodiment of the above embodiment, one frame associated with (or belonging to) the second signaling is used to determine the reference time. As a dependent embodiment of the above embodiment, all or a part of the first information block is used to explicitly or implicitly indicate the time interval length between the reference time and the start moment of a frame associated with (or belonging to) the second signaling. As a dependent embodiment of the above embodiment, one DRX cycle associated with (or belonging to) the second signaling is used to determine the reference time.
[0623] In one embodiment, the first information block is used to determine the number of device groups associated with the paging occasion to which the second signaling belongs.
[0624] In one embodiment, the first information block is used to determine the number of paging occasions associated with the target wake-up signal.
[0625] In one embodiment, the technical feature "using the time domain position relationship between the target wake-up signal and the first signaling to determine whether to monitor the first signaling" includes the meaning of determining whether to monitor the first signaling by monitoring the target wake-up signal using the time domain position relationship between the target wake-up signal and the first signaling.
[0626] In one embodiment, the technical feature "using a time domain position relationship between the target wake-up signal and the first signaling to determine whether to monitor the first signaling" includes the meaning of using a time domain relative position relationship between the target wake-up signal and the first signaling to determine whether to monitor the first signaling.
[0627] In one embodiment, the technical feature "using a time domain position relationship between the target wake-up signal and the first signaling to determine whether to monitor the first signaling" includes the meaning of using a priority relationship between the target wake-up signal and the first signaling in the time domain to determine whether to monitor the first signaling.
[0628] In one embodiment, the technical feature "using a time domain positional relationship between the target wake-up signal and the first signaling to determine whether to monitor the first signaling" includes the meaning of using a time domain interval length between the target wake-up signal and the first signaling in the time domain to determine whether to monitor the first signaling.
[0629] In one embodiment, the technical feature "determining whether to monitor the first signaling using a time domain position relationship between the target wake-up signal and the first signaling" includes the meaning of determining whether to monitor the first signaling using a priority relationship between the target wake-up signal and the first signaling in the time domain and a time domain interval length.
[0630] In one embodiment, the technical feature "using the time domain positional relationship between the target wake-up signal and the first signaling to determine whether to monitor the first signaling" includes the meaning that when the target wake-up signal is earlier than the first signaling, the first signaling is monitored, and otherwise, the monitor of the target wake-up signal does not need to monitor the first signaling.
[0631] In one embodiment, the technical feature "using a time domain positional relationship between the target wakeup signal and the first signaling to determine whether to monitor the first signaling" includes the meaning that when the target wakeup signal is earlier than the first signaling, and when the target wakeup signal is detected and carries instructions for the first device group, at least one of the first information block or the target wakeup signal is used to determine whether to monitor the first signaling, and otherwise, the monitor for the target wakeup signal does not need to monitor the first signaling.
[0632] In one embodiment, the technical feature "using a time-domain positional relationship between the target wake-up signal and the first signaling to determine whether to monitor the first signaling" includes the meaning that when the target wake-up signal is earlier than the first signaling by at least a target threshold, the first signaling is monitored; otherwise, the monitor for the target wake-up signal does not need to monitor the first signaling, and the target threshold is predefined, configurable, or related to the capability of the monitor for the target wake-up signal.
[0633] In one embodiment, the technical feature "using a time domain positional relationship between the target wake-up signal and the first signaling to determine whether to monitor the first signaling" may be implemented by determining whether the target wake-up signal is detected by at least a target threshold. When a target wakeup signal is detected earlier than the first signaling and the target wakeup signal carries instructions for the first device group, at least one of the first information block or the target wakeup signal is used to determine whether to monitor the first signaling; otherwise, the monitor for the target wakeup signal does not need to monitor the first signaling.
[0634] In one embodiment, the time domain location of the second signaling is the index of the time slot to which the second signaling belongs in the time domain.
[0635] In one embodiment, the time domain location of the second signaling is the index of the frame to which the second signaling belongs in the time domain.
[0636] In one embodiment, the time domain location of the second signaling is the index of the subframe to which the second signaling belongs in the time domain.
[0637] In one embodiment, the time domain location of the second signaling is the index of the DRX (Discontinuous Reception) cycle to which the second signaling belongs in the time domain.
[0638] In one embodiment, the time domain location of the second signaling is the order or index of the occasion occupied by the second signaling in the time domain among the plurality of occasions to which the second signaling belongs.
[0639] In one embodiment, the time domain location of the second signaling is the order or index of the occasions occupied by the second signaling in the time domain among multiple occasions corresponding to the same one or more DRX cycles.
[0640] In one embodiment, the time domain location of the second signaling is the order or index of the opportunity occupied by the second signaling in the time domain among multiple opportunities corresponding to the same one or more paging frames.
[0641] In one embodiment, the time domain location of the second signaling is the order or index of the opportunities occupied by the second signaling in the time domain among multiple opportunities corresponding to the same one or more time slots.
[0642] In one embodiment, the time domain location of the second signaling is the order or index of the occasion occupied by the second signaling in one time domain among multiple occasions corresponding to the same time window.
[0643] In one embodiment, the time domain location of the second signaling is the order or index of the opportunity occupied by the second signaling in the time domain among the multiple opportunities on the network side.
[0644] In one embodiment, the time domain position of the second signaling is the order or index of the opportunity occupied by the second signaling in the time domain among multiple opportunities associated with the first node device.
[0645] In one embodiment, the time domain location of the second signaling is the time domain location of a paging occasion occupied by the second signaling in the time domain.
[0646] In one embodiment, the identity of the monitor of the target wake-up signal is the TMSI of the monitor of the target wake-up signal.
[0647] In one embodiment, the identity of the monitor of the target wake-up signal is the 5G-S-TMSI of the monitor of the target wake-up signal.
[0648] In one embodiment, the identity of the monitor of the target wakeup signal is the RNTI of the monitor of the target wakeup signal.
[0649] In one embodiment, the identity of the monitor of the target wakeup signal is an ID assigned to the monitor of the target wakeup signal.
[0650] In one embodiment, the identity of the monitor of the target wake-up signal is the IMSI (International Mobile Subscriber Identity) of the monitor of the target wake-up signal.
[0651] As an embodiment, the technical feature "determining the time-domain location of the second signaling using the identity of the monitor of the target wake-up signal" includes the meaning that the time-domain location of the second signaling is determined by the first node device in the present application using the identity of the monitor of the target wake-up signal.
[0652] In one embodiment, the technical feature "determining the time-domain location of the second signaling using the identity of the monitor of the target wake-up signal" includes the meaning of determining the time-domain location of the second signaling using the identity of the monitor of the target wake-up signal according to a predefined operation rule.
[0653] In one embodiment, the technical feature "using the identity of the monitor of the target wake-up signal to determine the time-domain location of the second signaling" includes the meaning of using the identity of the monitor of the target wake-up signal to determine a paging occasion (PO) associated with (or occupied by) the second signaling.
[0654] In one embodiment, the technical feature "using the identity of the monitor of the target wake-up signal to determine the time-domain location of the second signaling" includes the meaning of using the identity of the monitor of the target wake-up signal to determine a paging frame (PF) associated with (or belonging to) the second signaling in the time domain.
[0655] In one embodiment, the technical feature "using the identity of the monitor of the target wake-up signal to determine the time-domain location of the second signaling" includes the meaning of using the identity of the monitor of the target wake-up signal to determine a paging occasion (PO) associated with (or occupied by) the second signaling in the time domain, and using the paging occasion associated with (or occupied by) the second signaling in the time domain together with a configurable or predefined time-domain offset to determine the time-domain location of the second signaling.
[0656] In one embodiment, the technical feature of "using the identity of the monitor of the target wake-up signal to determine the time-domain location of the second signaling" includes satisfying the following formula relationship: (SFN+PF_offset)mod T=(T div N)*(UE_ID mod N) In the formula, SFN represents the PF including the second signaling or the starting point of the second signaling in the time domain, UE_ID represents the identity of the monitor for the target wake-up signal, T represents the DRX cycle, N represents the number of PFs in the DRX cycle, and PF_offset represents a predefined or configured offset value.
[0657] In one embodiment, the technical feature of "using the identity of the monitor of the target wake-up signal to determine the time-domain location of the second signaling" includes satisfying the following formula relationship: i_s=floor(UE_ID / N)mod Ns where i_s represents the index of the opportunity associated with (or occupied by) the second signaling in the time domain, UE_ID represents the identity of the monitor for the target wake-up signal, N represents the number of PFs in the DRX cycle, and Ns represents the number of POs for one PF.
[0658] In one embodiment, the technical feature "determining the time-domain location of the second signaling using the identity of the monitor of the target wake-up signal" includes the meaning that the second signaling is transmitted through the PDCCH, and the identity of the monitor of the target wake-up signal is used to determine the index and / or the type of search space set to which the second signaling belongs.
[0659] Embodiment 12 Embodiment 12 illustrates a structural block diagram of a processing device in a first node device according to one embodiment, as shown in Figure 12. In Figure 12, a processing device 1200 in the first node device includes a first transceiver 1201 and a first receiver 1202. The first transceiver 1201 includes a transmitting device / receiving device 456 (including an antenna 460), a receiving processor 452, a transmitting processor 455, and a controller / processor 490 in Figure 4 of the present application. The first receiver 1202 includes a transmitting device / receiving device 456 (including an antenna 460), a receiving processor 452, and a controller / processor 490 in Figure 4 of the present application.
[0660] In embodiment 12, the first transceiver 1201 receives a first information block and monitors a target wake-up signal, the first information block is used to determine at least one configuration parameter value of the target wake-up signal, the first receiver 1202 determines whether to monitor a first signaling and whether to monitor a second signaling, the monitor for the target wake-up signal belongs to a first device group, the first device group includes at least one user equipment, when the target wake-up signal is detected and the target wake-up signal carries an instruction for the first device group, at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling, the first signaling is used to determine whether to monitor the second signaling, when the target wake-up signal is detected and the target wake-up signal does not carry an instruction for the first device group, the monitor for the target wake-up signal abandons monitoring the second signaling.
[0661] In one embodiment, the target wake-up signal is not detected and the target wake-up signal is The monitor for the target wake-up signal monitors the first signaling, and the first signaling is used to determine whether to monitor the second signaling, or the monitor for the target wake-up signal abandons monitoring the second signaling.
[0662] In one embodiment, the first signaling is associated with a G1 device group, where G1 is a positive integer greater than 1, the second device group is one of the G1 device groups, a monitor for the target wake-up signal belongs to the second device group, and an instruction value of the second device group propagated by the first signaling is used to determine whether to monitor the second signaling.
[0663] In one embodiment, the first information block is used to determine an X1 configuration set, any one of the X1 configuration sets includes at least one configuration parameter value, X1 is a positive integer greater than 1, the target configuration set is one of the X1 configuration sets, the target configuration set includes at least one configuration parameter value of a target wake-up signal, and the identity of the first device group is used to determine the target configuration set from the X1 configuration set.
[0664] In one embodiment, the first transceiver 1201 transmits a second information block, the second information block is used to indicate at least one band, and the target wake-up signal monitor supports receiving a wake-up signal on each band indicated by the second information block.
[0665] In one embodiment, the first device group is one of the X2 device groups, the X2 identities correspond to the X2 device groups, any one of the X2 device groups includes at least one user equipment, X2 is a positive integer greater than 1, the first identity and the second identity are two different identities within the X2 identity, and one user equipment included in the device group corresponding to the first identity within the X2 device group is assigned the first identity, and one user equipment included in the device group corresponding to the second identity within the X2 device group is assigned either no identity or the second identity.
[0666] In one embodiment, the first information block is used to determine a time-domain position offset between the first signaling and the second signaling, the first information block is used to determine a time-domain position offset between the target wake-up signal and the second signaling, the time-domain position relationship between the target wake-up signal and the first signaling is used to determine whether to monitor the first signaling, and the identity of the monitor of the target wake-up signal is used to determine the time-domain position of the second signaling.
[0667] Embodiment 13 Embodiment 13 illustrates a structural block diagram of a processing device in a second node device according to one embodiment, as shown in Figure 13. In Figure 13, a processing device 1300 in the second node device includes a second transceiver 1301 and a first transmitter 1302. The second transceiver 1301 includes a transmitting device / receiving device 416 (including an antenna 460), a receiving processor 412, a transmitting processor 415, and a controller / processor 440 in Figure 4 of the present application. The first transmitter 1302 includes a transmitting device / receiving device 416 (including an antenna 460), a transmitting processor 415, and a controller / processor 440 in Figure 4 of the present application.
[0668] In embodiment 13, the second transceiver 1301 transmits a first information block and transmits a target wake-up signal, the first information block is used to determine at least one configuration parameter value of the target wake-up signal, the first transmitter 1302 transmits a first signaling and transmits a second signaling, a monitor of the target wake-up signal belongs to a first device group, the first device group includes at least one user equipment, when the target wake-up signal is detected and the target wake-up signal carries an instruction for the first device group, at least one of the first information block or the target wake-up signal is used to determine whether the first signaling is to be monitored, the first signaling is used to determine whether the second signaling is to be monitored, when the target wake-up signal is detected and the target wake-up signal does not carry an instruction for the first device group, the monitor of the target wake-up signal abandons monitoring the second signaling.
[0669] In one embodiment, the target wake-up signal is not detected, and the target wake-up signal monitor monitors the first signaling, and the first signaling is used to determine whether to monitor the second signaling, or the target wake-up signal monitor abandons monitoring the second signaling.
[0670] In one embodiment, the first signaling is associated with a G1 device group, where G1 is a positive integer greater than 1, the second device group is one of the G1 device groups, a monitor for the target wake-up signal belongs to the second device group, and an instruction value of the second device group propagated by the first signaling is used to determine whether to monitor the second signaling.
[0671] In one embodiment, the first information block is used to determine an X1 configuration set, any one of the X1 configuration sets includes at least one configuration parameter value, X1 is a positive integer greater than 1, the target configuration set is one of the X1 configuration sets, the target configuration set includes at least one configuration parameter value of a target wake-up signal, and the identity of the first device group is used to determine the target configuration set from the X1 configuration set.
[0672] In one embodiment, the second transceiver 1301 receives a second information block, the second information block is used to indicate at least one band, and the target wake-up signal monitor supports receiving a wake-up signal on each band indicated by the second information block.
[0673] In one embodiment, the first device group is one of the X2 device groups, the X2 identities correspond to the X2 device groups, any one of the X2 device groups includes at least one user equipment, X2 is a positive integer greater than 1, the first identity and the second identity are two different identities within the X2 identity, and one user equipment included in the device group corresponding to the first identity within the X2 device group is assigned the first identity, and one user equipment included in the device group corresponding to the second identity within the X2 device group is assigned either no identity or the second identity.
[0674] In one embodiment, the first information block is used to identify the first signaling and the second signaling. a time-domain position offset between the target wake-up signal and the first signaling using the first information block; a time-domain position offset between the target wake-up signal and the second signaling using the first information block; a time-domain position relationship between the target wake-up signal and the first signaling using the first information block; and a time-domain position of the second signaling using the identity of the monitor of the target wake-up signal.
[0675] Those skilled in the art will understand that all or some of the steps of the above-described method can be implemented by instructing relevant hardware through a program, which can be stored in a computer-readable storage medium such as a read-only memory, a hard disk, or an optical disk. Optionally, all or some of the steps of the above-described embodiments can also be implemented using one or more integrated circuits. Correspondingly, each module unit in the above-described embodiments can be implemented in hardware or as a software functional module. This application is not limited to any specific combination of hardware and software. The first node device or second node device or UE or terminal in this application includes, but is not limited to, a mobile phone, a tablet computer, a laptop, a network card, a low-power device, an eMTC device, an NB-IoT device, a vehicle communication device, an aircraft, an airplane, an unmanned aerial vehicle, a remote-controlled aircraft, and other wireless communication devices. The base station device or base station or network side device in this application includes, but is not limited to, a macrocellular base station, a microcellular base station, a home base station, a relay base station, an eNB, a gNB, a transmitting / receiving node TRP, a relay satellite, a satellite base station, an airborne base station, and other wireless communication devices.
[0676] Those skilled in the art will understand that the present invention may be embodied in other specified forms without departing from its main or essential characteristics. Accordingly, the presently disclosed embodiments should be considered as descriptive and not as limiting in any way. The scope of the present invention is determined by the appended claims, rather than the foregoing description, and all modifications within the meaning and range of equivalents thereof are deemed to be embraced therein.
Claims
1. A first node device for use in wireless communication, a first transceiver for receiving a first information block and monitoring a target wake-up signal, the first information block being used to determine at least one configuration parameter value of the target wake-up signal; a first receiver for determining whether to monitor the first signaling and for determining whether to monitor the second signaling; a first node device, wherein the monitor for the target wakeup signal belongs to a first device group, the first device group including at least one user equipment; when the target wakeup signal is detected and the target wakeup signal carries an instruction for the first device group, at least one of the first information block or the target wakeup signal is used to determine whether to monitor the first signaling, and the first signaling is used to determine whether to monitor the second signaling; and when the target wakeup signal is detected and the target wakeup signal does not carry the instruction for the first device group, the monitor for the target wakeup signal abandons monitoring the second signaling.
2. 2. The first node device of claim 1, wherein the target wakeup signal is not detected, the monitor for the target wakeup signal monitors the first signaling, and the first signaling is used to determine whether to monitor the second signaling, or the monitor for the target wakeup signal abandons monitoring the second signaling.
3. 3. The first node device of claim 1, wherein the first signaling is associated with a G1 device group, G1 is a positive integer greater than 1, a second device group is one of the G1 device groups, the monitor of the target wake-up signal belongs to the second device group, and an instruction value of the second device group propagated by the first signaling is used to determine whether to monitor the second signaling.
4. 4. The first node device of claim 1, wherein the first information block is used to determine an X1 configuration set, any one of the X1 configuration sets including at least one configuration parameter value, the X1 being a positive integer greater than 1, a target configuration set being one of the X1 configuration sets, the target configuration set including at least one configuration parameter value of the target wake-up signal, and an identity of the first device group is used to determine the target configuration set from the X1 configuration set.
5. The first node device of any one of claims 1 to 4, wherein the first transceiver transmits a second information block, the second information block is used to indicate at least one band, and the monitor of the target wake-up signal supports reception of a wake-up signal on each band indicated by the second information block.
6. The first device group is one of X2 device groups, and X2 identities correspond to the X2 device groups, and any one of the X2 device groups includes at least one user equipment, and the X2 6. The first node device according to claim 1, wherein the first identity and the second identity are two different identities within the X2 identity, and the first identity is assigned to one user equipment included in a device group within the X2 device group corresponding to the first identity, and the second identity is assigned to one user equipment included in a device group within the X2 device group corresponding to the second identity, and the first identity is not assigned to one user equipment, or the second identity is assigned to one user equipment.
7. The first node device of any one of claims 1 to 6, wherein the first information block is used to determine a time-domain position offset between the first signaling and the second signaling, the first information block is used to determine a time-domain position offset between the target wake-up signal and the second signaling, a time-domain position relationship between the target wake-up signal and the first signaling is used to determine whether to monitor the first signaling, and an identity of the monitor of the target wake-up signal is used to determine a time-domain position of the second signaling.
8. A second node device for use in wireless communication, a second transceiver for transmitting a first information block and for transmitting a target wake-up signal, the first information block being used to determine at least one configuration parameter value of the target wake-up signal; a first transmitter for transmitting the first signaling and for transmitting the second signaling; a second node device, wherein the monitor of the target wakeup signal belongs to a first device group, the first device group including at least one user equipment; when the target wakeup signal is detected and the target wakeup signal carries instructions for the first device group, at least one of the first information block or the target wakeup signal is used to determine whether the first signaling is to be monitored, and the first signaling is used to determine whether the second signaling is to be monitored; and when the target wakeup signal is detected and the target wakeup signal does not carry the instructions for the first device group, the monitor of the target wakeup signal abandons monitoring the second signaling.
9. 1. A method for use in a first node for wireless communication, comprising: receiving a first information block used to determine at least one configuration parameter value of a target wake-up signal and monitoring the target wake-up signal; determining whether to monitor the first signaling and determining whether to monitor the second signaling; The monitor for the target wake-up signal belongs to a first device group, the first device group includes at least one user equipment, and when the target wake-up signal is detected and the target wake-up signal carries an instruction for the first device group, at least one of the first information block or the target wake-up signal is used to determine whether to monitor the first signaling, and the first signaling is used to determine whether to monitor the second signaling, and when the target wake-up signal is detected and the target wake-up signal carries an instruction for the first device group, the monitor of the target wakeup signal abandons monitoring the second signaling when the monitor does not propagate the instruction of
10. 1. A method for use in a second node for wireless communication, comprising: transmitting a first information block used to determine at least one configuration parameter value of a target wake-up signal, and transmitting the target wake-up signal; transmitting the first signaling and transmitting the second signaling; a first information block or the target wakeup signal is used to determine whether the first signaling is to be monitored when the target wakeup signal is detected and the target wakeup signal does not carry the instructions for the first device group, and the monitor of the target wakeup signal abandons monitoring the second signaling when the target wakeup signal is detected and the target wakeup signal does not carry the instructions for the first device group.