Communication processing method and apparatus, terminal and network-side device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-08
- Publication Date
- 2026-08-11
AI Technical Summary
[0004]本申请实施例提供一种通信处理方法、装置、终端及网络侧设备,能够解决系统消息的发送存在冗余,从而导致资源浪费的问题
[0027]第十三方面,提供了一种计算机程序/程序产品,所述计算机程序/程序产品被存储在存储介质中,所述计算机程序/程序产品被至少一个处理器执行以实现如第一方面所述的方法的步骤,或实现如第二方面所述的方法的步骤。
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Figure CN122554971A_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of communication technology, specifically relating to a communication processing method, apparatus, terminal, and network-side equipment. Background Technology
[0002] With the development of communication technology, in addition to ordinary mobile phone terminals for Enhanced Mobile Broadband (eMBB) services, many low-power wide-area (LPWA) terminal types have emerged in communication systems. These include machine-type communication (MTC) in the Long Term Evolution (LTE) era, narrowband Internet of Things (NB-IoT) and reduced capability (RedCap) and enhanced RedCap (eRedCap) in the New Radio (NR) era.
[0003] In related technologies, in order to be compatible with terminals with different capabilities, the system information of terminals with different capabilities is designed independently. This results in redundancy in the transmission of system messages, leading to a waste of resources. Summary of the Invention
[0004] This application provides a communication processing method, apparatus, terminal, and network-side device that can solve the problem of redundant system message transmission, which leads to resource waste.
[0005] Firstly, a communication processing method is provided, including:
[0006] The terminal receives first system information of the first cell, the first system information including first parameter configuration, or the first system information including first parameter configuration and second parameter configuration;
[0007] Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
[0008] Secondly, a communication processing method is provided, including:
[0009] The network-side device sends the first system information of the first cell, the first system information including the first parameter configuration, or the first system information including the first parameter configuration and the second parameter configuration;
[0010] Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
[0011] Thirdly, a communication processing apparatus is provided, comprising:
[0012] A receiving module is configured to receive first system information of a first cell, wherein the first system information includes a first parameter configuration, or the first system information includes a first parameter configuration and a second parameter configuration.
[0013] Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
[0014] Fourthly, a communication processing apparatus is provided, comprising:
[0015] The sending module is used to send first system information of the first cell, wherein the first system information includes a first parameter configuration, or the first system information includes a first parameter configuration and a second parameter configuration.
[0016] Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
[0017] Fifthly, a communication processing apparatus is provided, the apparatus being configured to perform the steps of the method described in the first aspect, or to implement the steps of the method described in the second aspect.
[0018] In a sixth aspect, a terminal is provided, the terminal including a processor and a memory, the memory storing a program or instructions executable on the processor, the program or instructions, when executed by the processor, implementing the steps of the method as described in the first aspect.
[0019] In a seventh aspect, a terminal is provided, including a processor and a communication interface, wherein the communication interface is used to receive first system information of a first cell, the first system information including a first parameter configuration, or the first system information including a first parameter configuration and a second parameter configuration;
[0020] Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
[0021] Eighthly, a network-side device is provided, the network-side device including a processor and a memory, the memory storing a program or instructions executable on the processor, the program or instructions, when executed by the processor, implementing the steps of the method as described in the second aspect.
[0022] In a ninth aspect, a network-side device is provided, including a processor and a communication interface, wherein the communication interface is used to receive first system information of a first cell, the first system information including a first parameter configuration, or the first system information including a first parameter configuration and a second parameter configuration.
[0023] Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
[0024] In a tenth aspect, a readable storage medium is provided, on which a program or instructions are stored, which, when executed by a processor, implement the steps of the method described in the first aspect, or implement the steps of the method described in the second aspect.
[0025] Eleventhly, a wireless communication system is provided, comprising: a terminal and a network-side device, wherein the terminal can be used to perform the steps of the method as described in the first aspect, and the network-side device can be used to perform the steps of the method as described in the second aspect.
[0026] In a twelfth aspect, a chip is provided, the chip including a processor and a communication interface coupled to the processor, the processor being configured to run a program or instructions to implement the steps of the method described in the first aspect, or to implement the steps of the method described in the second aspect.
[0027] In a thirteenth aspect, a computer program / program product is provided, which is stored in a storage medium and is executed by at least one processor to implement the steps of the method as described in the first aspect, or to implement the steps of the method as described in the second aspect.
[0028] This application embodiment receives first system information of a first cell via a terminal. The first system information includes a first parameter configuration, or the first system information includes a first parameter configuration and a second parameter configuration. The first parameter configuration is a common configuration portion of the first system information, and the second parameter configuration is a dedicated configuration portion of the first system information. By distinguishing between the common and dedicated configurations, redundant transmission of the common configuration can be avoided, saving resource overhead. Attached Figure Description
[0029] Figure 1 This is a block diagram of a wireless communication system applicable to embodiments of this application;
[0030] Figure 2 This is a flowchart illustrating a communication processing method provided in an embodiment of this application;
[0031] Figure 3 This is a flowchart illustrating another communication processing method provided in an embodiment of this application;
[0032] Figure 4 This is a schematic diagram of the structure of a communication processing device provided in an embodiment of this application;
[0033] Figure 5 This is a schematic diagram of another communication processing device provided in an embodiment of this application;
[0034] Figure 6 This is a schematic diagram of the structure of a communication device provided in an embodiment of this application;
[0035] Figure 7 This is a schematic diagram of the structure of a terminal provided in an embodiment of this application;
[0036] Figure 8 This is a schematic diagram of the structure of a network-side device provided in an embodiment of this application. Detailed Implementation
[0037] The terms "first," "second," etc., used in this application are used to distinguish similar objects and not to describe a specific order or sequence. It should be understood that such terms can be used interchangeably where appropriate so that embodiments of this application can be implemented in orders other than those illustrated or described herein, and the objects distinguished by "first" and "second" are generally of the same class, not limited in number; for example, the first object can be one or more. Furthermore, "or" in this application indicates at least one of the connected objects. For example, the scope of protection for "A or B" covers at least three scenarios: Scenario 1: including A but not B; Scenario 2: including B but not A; Scenario 3: including both A and B. In addition, the terms "A and / or B," "at least one of A and B," and "at least one of A or B" also cover at least the above three scenarios. The character " / " generally indicates that the preceding and following objects are in an "or" relationship.
[0038] The term "instruction" in this application can be either a direct instruction (or explicit instruction) or an indirect instruction (or implicit instruction). A direct instruction can be understood as the sender explicitly informing the receiver of specific information, the required operation, or the requested result in the instruction sent. An indirect instruction can be understood as the receiver determining the corresponding information based on the instruction sent by the sender, or making a judgment and determining the required operation or requested result based on the judgment result.
[0039] It is worth noting that the technologies described in this application are not limited to Long Term Evolution (LTE) / LTE-Advanced (LTE-A) systems, but can also be used in other wireless communication systems, such as Code Division Multiple Access (CDMA), Time Division Multiple Access (TDMA), Frequency Division Multiple Access (FDMA), Orthogonal Frequency Division Multiple Access (OFDMA), Single-carrier Frequency-Division Multiple Access (SC-FDMA), or other systems. The terms "system" and "network" in this application are often used interchangeably, and the described technologies can be used with the systems and radio technologies mentioned above, as well as with other systems and radio technologies. The following description describes New Radio (NR) systems for illustrative purposes, and the term NR is used in most of the following description; however, these technologies can also be applied to systems other than NR systems, such as 6th generation (6G) radio systems. th Generation 6G communication system.
[0040] Figure 1This diagram illustrates a block diagram of a wireless communication system applicable to embodiments of this application. The wireless communication system includes a terminal 11 and a network-side device 12. The terminal 11 can also be referred to as User Equipment (UE), and can be a mobile phone, tablet computer, laptop computer, notebook computer, personal digital assistant (PDA), handheld computer, netbook, ultra-mobile personal computer (UMPC), mobile internet device (MID), augmented reality (AR), virtual reality (VR) device, robot, wearable device, flight vehicle, vehicle user equipment (VUE), shipboard equipment, pedestrian user equipment (PUE), smart home devices (home appliances with wireless communication capabilities, such as refrigerators, televisions, washing machines, or furniture), game consoles, personal computers (PCs), ATMs, or self-service machines, etc. Wearable devices include: smartwatches, smart bracelets, smart earphones, smart glasses, smart jewelry (smart bracelets, smart chains, smart rings, smart necklaces, smart anklets, smart anklets, etc.), smart wristbands, smart clothing, etc. Among these, in-vehicle devices can also be referred to as in-vehicle terminals, in-vehicle controllers, in-vehicle modules, in-vehicle components, in-vehicle chips, or in-vehicle units, etc. It should be noted that the specific type of terminal 11 is not limited in this application embodiment. Network-side equipment 12 may include access network equipment or core network equipment, wherein access network equipment may also be referred to as Radio Access Network (RAN) equipment, radio access network function, or radio access network unit. Access network equipment may include base stations, Wireless Local Area Network (WLAN) access points (APs), or Wireless Fidelity (WiFi) nodes, etc.Among them, base stations can be referred to as Node B (NB), Evolved Node B (eNB), Next Generation Node B (gNB), New Radio Node B (NR Node B), Access Point, Relay Base Station (RBS), Serving Base Station (SBS), Base Transceiver Station (BTS), Radio Base Station, Radio Transceiver, Basic Service Set (BSS), Extended Service Set (ESS), Home Node B (HNB), Home Evolved Node B, Transmit / Receive Point (TRP), Non-Terrestrial Network (NTN) equipment (such as satellite or high altitude platform stations). The term "base station" can be any suitable term in the field, such as "station" or any other appropriate term in the relevant field, as long as the same technical effect is achieved. The term "base station" is not limited to specific technical terms. It should be noted that the embodiments of this application only use the base station in the NR system as an example for introduction, and do not limit the specific type of base station.
[0041] For ease of understanding, the following describes some aspects of the embodiments of this application:
[0042] I. LPWA Terminal.
[0043] The deployment of 6G is expected to begin around 2030, and existing cellular IoT devices, such as NB-IoT devices, will also reach the end of their lifespan by then. Therefore, 6G presents an opportune time to deploy a new generation of higher-performance, lower-cost, and larger-scale LPWA devices. With the rollout of 6G, the LPWA market is expected to experience strong growth, penetrating a wide variety of commercially valuable application scenarios (such as logistics management, smart homes, smart cities, etc.).
[0044] Existing LPWA solutions, such as NB-IoT and eMBB, are designed as two independent Radio Access Technologies (RATs) and are not well compatible. Due to significant differences in the physical layers of NB-IoT and eMBB user equipment, this not only increases standardization efforts but also raises the cost of NB-IoT user equipment. Furthermore, NB-IoT user equipment requires dedicated NB-IoT base stations, increasing network deployment costs and operational efficiency. When designing 6G LPWA solutions, 6G LPWA and eMBB are required to be as compatible as possible. Accordingly, on the network side, a single 6G base station will simultaneously serve both LPWA and eMBB devices, dynamically optimizing resource allocation for instantaneous service requests. To reduce network deployment and operational costs, future 6G mobile communication systems will consider the organic integration of broadband and narrowband communication as much as possible.
[0045] Optionally, in the description of some embodiments, LPWA may refer to a type of terminal (UE). This type of terminal (e.g., LPWA UE, IoT Device) has at least one of the following wireless capabilities limited compared to a normal-capability terminal (e.g., eMBB UE, Smartphone, etc.): transmission bandwidth capability; radio frequency capability; transmit power capability; error detection / decoding capability, etc. In the description of some embodiments, LPWA may refer to a type of terminal feature or feature combination (UE Feature Combination). This type of terminal feature or feature combination includes at least one of the following: Maximum Coverage Extension Level, Network Energy Saving (NES), Power Saving, Small Data Transmission, etc.
[0046] II. Comparison of NR and NB-IoT / LTE-M system messages.
[0047] The comparison of MIB is shown in Table 1, and the comparison of SIB1 is shown in Table 2.
[0048] Table 1:
[0049]
[0050]
[0051] Table 2:
[0052]
[0053]
[0054]
[0055] Optionally, the terminal in the embodiments of this application can refer to any terminal or device that communicates with the network, such as LPWA terminal (or IoT device, IoT UE, etc.), eMBB UE (or eMBB device, Normal 6G UE, Smart Phone, etc.).
[0056] Optionally, the terminal in the embodiments of this application may also be a terminal that supports or enables specific terminal features (UEFeature) or feature combinations (UE Feature Combination). For example, terminal features include, but are not limited to, at least one of the following: Maximum Coverage Extension Level, Network Energy Saving (NES), Power Saving, Small Data Transmission, etc.
[0057] It should be noted that in the design of existing communication systems, NR and NB-IoT / LTE-M are incompatible, each adopting a completely independent access system design. One manifestation of this is in the design of system messages, where each introduces separate system messages carried on its own physical channel (such as the Physical Downlink Shared Channel, PDSCH). However, the parameter configurations carried in the system messages contain some parameters with the same or similar functions. Considering the trend of unifying the design of LPWA and eMBB air interfaces in future communication systems (such as 6G), from the perspective of network-side equipment, LPWA and eMBB can be co-located and share the cell's common control channel resources. From the perspective of the terminal side, all UEs (including LPWA UEs and eMBB UEs) can be served by the same network node. Therefore, the system message design can also be shared to a certain extent, thereby reducing system message transmission redundancy, achieving efficient network resources, and improving user experience.
[0058] The communication processing method provided in this application will be described in detail below with reference to the accompanying drawings and through some embodiments and application scenarios.
[0059] like Figure 2 As shown, this application provides a communication processing method, such as... Figure 2 As shown, the communication processing method includes:
[0060] Step 201: The terminal receives the first system information of the first cell, the first system information including the first parameter configuration, or the first system information including the first parameter configuration and the second parameter configuration;
[0061] Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
[0062] In this embodiment, the common configuration portion of the first system information can be referred to as the common configuration of the first system information, that is, the first parameter configuration can be referred to as the common configuration, and the dedicated configuration portion of the first system information can be referred to as the dedicated configuration of the first system information, that is, the second parameter configuration can be referred to as the dedicated configuration. Since the network-side device sends the common configuration and the dedicated configuration separately, redundant transmission of the common configuration can be avoided, thereby saving resource overhead.
[0063] Optionally, in some embodiments, the aforementioned first system information can be understood as one or more system information blocks. For example, in some embodiments, the aforementioned first system information can be understood as SIB1. The division of SIB1 corresponding to different parameter configurations can include any of the following:
[0064] Level 1 SIB1 and Level 2 SIB1;
[0065] Category I SIB1 and Category II SIB1;
[0066] First SIB1 and Second SIB1;
[0067] The first part of SIB1; the second part of SIB1.
[0068] The following explanation uses the example of the first system information including first-level SIB1 and second-level SIB1. Here, the first parameter configuration can be understood as the basic parameter configuration included in first-level SIB1, and the second parameter configuration can be understood as the incremental parameter configuration included in second-level SIB1.
[0069] This application embodiment receives first system information of a first cell via a terminal. The first system information includes a first parameter configuration, or the first system information includes a first parameter configuration and a second parameter configuration. The first parameter configuration is a common configuration portion of the first system information, and the second parameter configuration is a dedicated configuration portion of the first system information. By distinguishing between the common and dedicated configurations, redundant transmission of the common configuration can be avoided, saving resource overhead.
[0070] Optionally, in some embodiments, the first system information satisfies at least one of the following:
[0071] The common configuration section contains parameter configurations required by both the first and second services, while the dedicated configuration section contains the remaining parameter configurations required by the second service.
[0072] The common configuration section is used for terminals that meet the first condition and terminals that meet the second condition, while the dedicated configuration section is only used for terminals that meet the second condition.
[0073] The first condition includes at least one of the following: supporting the first service but not supporting the second service; the terminal is in the first state or has changed to the first state; the terminal's capability level is the first level or has changed to the first level.
[0074] The second condition includes at least one of the following: supporting the second service, the terminal being in the second state or changing to the second state; the terminal's capability level being the second level or changing to the second level;
[0075] Wherein, the first state is different from the second state, and the terminal being in the first state includes at least one of the following: the wireless channel conditions of the terminal are in a first coverage range state; the terminal only supports small data packet services; the terminal is in a radio resource control (RRC) non-connected state; the terminal is running in a network power saving mode; the terminal battery level is lower than or equal to a first threshold; the terminal is running in a low power mode.
[0076] Optionally, the terminal changing to the first state can be understood as: the terminal changing from the second state to the first state; alternatively, the terminal changing to the second state can be understood as: the terminal changing from the first state to the second state.
[0077] In this embodiment, the common configuration portion for terminals satisfying the first condition and terminals satisfying the second condition can be understood as follows: both terminals satisfying the first condition and terminals satisfying the second condition can use the first parameter configuration for tasks such as camping or random access after receiving it. The second parameter configuration being used only for terminals satisfying the second condition can be understood as follows: the second parameter configuration can only be used by terminals satisfying the second condition, or in other words, only terminals satisfying the second condition receive and decode the second parameter configuration and can use it to perform related operations. Terminals satisfying the first condition do not receive or decode the second parameter configuration.
[0078] Optionally, being in the first coverage state can be understood or replaced as being in the deep coverage state, or it can also be called being in the deep coverage extension state. For example, when the terminal's wireless channel quality (Reference Signal Receiving Power, RSRP) is lower than or equal to the RSRP threshold, the terminal is in the deep coverage state.
[0079] Optionally, in some embodiments, the first service described above can be a Low Power Wide Area Network (LPWA) access service, and the second service can be an Enhanced Mobile Broadband (eMBB) access service. A terminal satisfying the first condition can be understood as a first type of terminal, for example, an LPWA terminal; a terminal satisfying the second condition can be understood as a second type of terminal, for example, an eMBB terminal, or a regular terminal.
[0080] It should be noted that the aforementioned low-power mode can also be called a power-saving mode. In some embodiments, the terminal's battery level can be used as a criterion for determining whether the terminal is operating in low-power mode. For example, when the terminal's battery level is lower than or equal to a first threshold, the terminal can enter low-power mode.
[0081] It should be noted that the aforementioned capability levels can also be referred to as capability categories or capability profiles. In some embodiments, the capability level of a terminal may correspond to at least one capability parameter.
[0082] Optionally, if the terminal is in the first state, it can be considered as a terminal with reduced capabilities or an LPWA terminal; if the terminal changes to the first state, it can be considered as a terminal with reduced capabilities.
[0083] Optionally, in some embodiments, the first level is different from the second level, and the capability level of the terminal is determined based on at least one of the following: bandwidth information supported by the terminal, peak data rate information supported by the terminal, bandwidth information of the terminal operation, coverage information, power consumption information, energy saving information, terminal type information, radio frequency capability, baseband processing capability, transmit power capability, demodulation capability, decoding capability, and duplex mode.
[0084] It should be understood that in some embodiments, the capability level of the terminal may remain constant, i.e., the capability level of the terminal is always at level one or level two. In some embodiments, the capability level of the terminal may support dynamic changes, for example, it may be changed to level two or level one.
[0085] It should be noted that the terminal's capability level can include two or more capability levels. Changing the terminal's capability level to level one can be understood as changing the terminal's capability level from level two to level one, or from any other level to level one. Similarly, changing the terminal's capability level to level two can be understood as changing the terminal's capability level from level one to level two, or from any other level to level two.
[0086] Optionally, in some embodiments, the first parameter configuration includes at least one of the following:
[0087] Relevant parameters for community selection or residence;
[0088] Relevant parameter information for system information block scheduling;
[0089] This is used to indicate whether the second parameter configuration is broadcast or whether an indication message exists.
[0090] Relevant parameter information for the configuration of community public channel resources;
[0091] Relevant parameter information for terminal timers and constants;
[0092] Access control related parameter information;
[0093] Enhance the relevant parameter information for discontinuous reception.
[0094] In this embodiment, the relevant parameters for cell selection or camping may include cell selection thresholds, offsets, and other related parameters. These parameters are used for basic cell selection, such as for cell selection and camping in LPWA and eMBB terminals.
[0095] Optionally, the relevant parameter information for system information block scheduling may include parameters such as the Public Land Mobile Network (PLMN) identifier list, the Tracking Area Code (TAC) list, and the Cell Identity list.
[0096] Optionally, the indication information used to indicate whether the second parameter configuration is broadcast or exists can be understood as the scheduling-related parameter information of the second-level SIB1. For example, the terminal can learn about the communication scenario by reading this indication information: Scenario 1, only the first-level SIB1 exists (i.e., only the first parameter configuration exists); Scenario 2, both the first-level and second-level SIB1 exist (i.e., only the first and second parameter configurations exist). In this way, the terminal performs corresponding actions based on the current communication scenario.
[0097] Optionally, the relevant parameter information for the configuration of common channel resources in the cell may include the necessary common radio resource configuration for uplink and downlink transmission within the cell, such as paging configuration and random access channel configuration.
[0098] Optionally, the relevant parameter information for terminal timers and constants may include configuration values such as timers and counters of the RRC.
[0099] Optionally, the access control parameters may include unified access control (AC) and barring parameters.
[0100] Optionally, the relevant parameter information for enhancing discontinuous reception may include all or part of the high-order Hyper-SFN values.
[0101] Optionally, in some embodiments, the second parameter configuration includes at least one of the following:
[0102] First configuration information, wherein the first configuration information is an incremental configuration relative to the first parameter configuration;
[0103] The second configuration information is an alternative configuration relative to the first parameter configuration;
[0104] The third configuration information is an additional configuration relative to the first parameter configuration;
[0105] The fourth configuration information consists of parameters for dedicated functions of the second service.
[0106] In this embodiment, the first configuration information can be understood as incremental (delta) configuration. In one implementation, a cell selection threshold value 1 is determined based on field 1a in the first parameter configuration, and a cell selection threshold value 2 is determined jointly based on field 1a in the first parameter configuration and field 1b in the second parameter configuration. For example, the cell selection threshold value is cell selection threshold value 1 plus a threshold offset value, where the threshold offset value is determined based on field 1b in the second parameter configuration. In another implementation, a PLMN index value 1 is determined based on field 2a in the first parameter configuration, and a PLMN index value 2 is determined jointly based on field 2a in the first parameter configuration and field 2b in the second parameter configuration. For example, 5 bits and an additional 3 bits form an 8-bit joint indication of the PLMN index value, where 5 bits are included in field 2a in the first parameter configuration and 3 bits are included in field 2b in the second parameter configuration.
[0107] Optionally, the second configuration information can be understood as an overwrite configuration. In one implementation, a set of terminal timers and constant values is determined based on field 5a in the first parameter configuration; another set of terminal timers and constant values, such as RRC timer and counter configuration values, is determined by replacing field 5a in the first parameter configuration with field 5b in the second parameter configuration. In another implementation, a set of RACH resource configurations is determined based on field 4a in the first parameter configuration; another set of RACH resource configurations is determined by replacing field 4a in the first parameter configuration with field 4b in the second parameter configuration. The main difference between these two sets of RACH resource configurations is that at least one of the following in the RACH resource configuration—the number of Msg 1 repetitions, the number of Msg 3 repetitions, and the resource location of the random access opportunity (RACH Occasion, RO)—has different configuration values.
[0108] Optionally, the third configuration information can be understood as additional configuration, such as additional supplementary list configuration, additional mask configuration, or additional bitmap configuration. In one implementation, the most basic system message block scheduling-related parameter information is determined based on field 3a in the first parameter configuration, and additional system message block scheduling-related parameter information is determined based on field 3b in the second parameter configuration. This additional information is dedicated to extended system message block types (SIBx) or access control parameters specific to eMBB terminals; for example, it can include scheduling-related parameters corresponding to SIB6-SIB25 (assuming that scheduling-related parameter information for SIB2-SIB5 is placed in the first parameter configuration). In another implementation, a set of candidate RACH resource locations is determined based on field 4a in the first parameter configuration, and another set of candidate RACH resources is determined by parsing field 4b in the second parameter configuration based on field 4a in the first parameter configuration. Location, for example, RACH resource configuration + RACH resource configuration list for frequency domain resource expansion (e.g., in the frequency domain resource dimension, 2 available RO resources are dedicated to eMBB terminal use); RACH resource configuration and RACH resource configuration Mask / Bitmap for repetition number limit (e.g., in the time domain resource dimension, a total of 4 available RO resources are indicated to provide LPWA access, and only some of the 4 available RO resources are dedicated to eMBB terminal use); in another embodiment, the most basic access control parameters are determined based on field 6a in the first parameter configuration, and additional access control related parameter information is determined based on field 6b in the first parameter configuration. The additional information is dedicated to higher-level access categories (Access Category, AC) or access control parameters dedicated to eMBB terminal. For example, it can include access control parameters corresponding to AC4-AC15 (assuming AC0-AC3 are configured in the first parameter configuration).
[0109] Optionally, in some embodiments, the fourth configuration information includes at least one of the following:
[0110] Measure relevant parameter information;
[0111] Feature-related parameter information;
[0112] Connection establishment failure control information.
[0113] In this embodiment, the fourth configuration information is dedicated to high-level measurement control or measurement control specific to the eMBB terminal.
[0114] Optionally, the measurement-related parameter information may include enhanced measurement characteristic parameters.
[0115] Optionally, the feature-related parameter information may include, but is not limited to, at least one of the following: whether emergency calls are supported, and whether calls over IP Multimedia Subsystem (IMS) are supported.
[0116] Optionally, connection establishment failure control information may include, but is not limited to, at least one of the following: failure counter, failure offset, and failure offset validity parameter.
[0117] Optionally, in some embodiments, the terminal receiving the first system information of the first cell includes any one of the following:
[0118] The terminal receives the first signaling;
[0119] The terminal receives the first signaling and the second signaling;
[0120] The first signaling includes only the first parameter configuration, and the second signaling includes only the second parameter configuration.
[0121] In this embodiment, the first signaling can be understood as LPWA SIB1 signaling, and the first and second signaling constitute normal 6G SIB1 signaling, also known as eMBB SIB1 signaling. That is, a complete LPWA SIB1 signaling can be formed based on at least one field in the first parameter configuration. The combination of at least one field in the first parameter configuration and at least one field in the second parameter configuration constitutes eMBB SIB1 signaling. From the perspective of system message signaling design of the unified access system, the first and second signaling are respectively designated as SIB1 signaling and SIB1bis signaling in the protocol, or the first and second signaling are respectively designated as SIB1 signaling and SIB2 signaling in the protocol.
[0122] Optionally, in some embodiments, the terminal receiving the first system information of the first cell includes any one of the following:
[0123] The terminal only receives the first parameter configuration;
[0124] The terminal receives the first parameter configuration and the second parameter configuration.
[0125] Optionally, in one implementation, the terminal may only receive the first parameter configuration, thereby reducing the terminal's power consumption. In another implementation, the terminal may receive both the first and second parameter configurations, enabling basic network access based on the first parameter configuration and enhanced network access based on both the second and first parameter configurations, thus improving the terminal's flexibility in accessing the network.
[0126] Optionally, in some embodiments, the terminal only receives the first parameter configuration, which includes:
[0127] If the terminal meets the first condition, the terminal only receives the first parameter configuration;
[0128] The first condition includes at least one of the following: supporting the first service but not supporting the second service; the terminal is in the first state or has changed to the first state; the terminal's capability level is the first level or has changed to the first level.
[0129] In this embodiment of the application, the terminal that meets the first condition can be understood as an LPWA terminal, or as a terminal with reduced capabilities. This type of terminal is limited in capability and cannot support the second service. Therefore, it can only apply the first parameter configuration, so it only needs to receive the first parameter configuration, which can save the terminal's power consumption.
[0130] Optionally, in some embodiments, the terminal receiving the first parameter configuration and the second parameter configuration includes:
[0131] If the terminal meets the second condition, the terminal receives the first parameter configuration and the second parameter configuration;
[0132] The second condition includes at least one of the following: supporting the second service, the terminal being in the second state or changing to the second state; the terminal's capability level being the second level or changing to the second level.
[0133] In this embodiment of the application, the terminal that meets the second condition can be understood as a normal terminal or an eMBB terminal. This type of terminal can support the first service or the second service. Therefore, it can receive the first parameter configuration and the second parameter configuration, thereby realizing the related functions of the first service and the second service.
[0134] Optionally, in some embodiments, the method further includes:
[0135] When the terminal receives the first parameter configuration, the terminal applies the first parameter configuration.
[0136] Optionally, the terminal application's first parameter configuration includes:
[0137] The terminal is configured to perform at least one of the following based on the first parameter:
[0138] Staying in the first residential area;
[0139] Initiate random access in the first cell;
[0140] The first data transmission is performed in the first cell.
[0141] In this embodiment of the application, since the terminal directly applies the first parameter configuration when it receives the first parameter configuration, terminals that meet the second condition can be pre-registered or accessed, thus improving the flexibility of terminal access to the network.
[0142] Optionally, the first data mentioned above can be understood as small data.
[0143] Optionally, in some embodiments, the method further includes:
[0144] When the terminal receives the first parameter configuration and the second parameter configuration, the terminal applies a third parameter configuration, which is the second parameter configuration, or the third parameter configuration is determined based on the first parameter configuration and the second parameter configuration.
[0145] In this embodiment of the application, for a terminal that meets the second condition, upon receiving the first parameter configuration and the second parameter configuration, the third parameter configuration can be determined, and the initial dwell and access operations, as well as subsequent operations, can be performed based on the third parameter configuration.
[0146] For example, in some implementations, the terminal application of the third parameter configuration includes:
[0147] The terminal is configured to perform at least one of the following based on the third parameter:
[0148] Staying in the first residential area;
[0149] Initiate random access in the first cell;
[0150] The second data transmission is performed in the first cell.
[0151] Optionally, the second data and the first data described above have different data rates and / or packet sizes. For example, in some embodiments, the second data described above can be understood as data other than the first data, and this is not further limited here.
[0152] Optionally, in some embodiments, the third parameter configuration includes at least one of the following:
[0153] The first parameter has a first value, wherein the first parameter configuration includes the first parameter, the second parameter configuration does not include the first parameter, and the first value is the parameter value corresponding to the first parameter in the first parameter configuration.
[0154] The second parameter has a second value, wherein the second parameter configuration includes the second parameter and the second value is the parameter value corresponding to the second parameter in the second parameter configuration;
[0155] The third parameter is determined based on a third value and a fourth value. The first parameter configuration includes the third parameter, the second parameter configuration includes the third parameter, the third value is the parameter value corresponding to the third parameter in the first parameter configuration, and the fourth value is the parameter value corresponding to the third parameter in the second parameter configuration.
[0156] The fourth parameter is determined based on the fifth and sixth values. The first parameter configuration includes the fourth parameter, the second parameter configuration includes the fifth parameter, the fifth parameter is associated with the fourth parameter, the fourth value is the parameter value corresponding to the fourth parameter in the first parameter configuration, and the fifth value is the parameter value corresponding to the fifth parameter in the second parameter configuration.
[0157] In some embodiments, the first parameter is included in the first parameter configuration but not in the second parameter configuration. In this case, the parameter value corresponding to the first parameter in the first parameter configuration can be directly determined as the parameter value of the first parameter in the third parameter configuration. This eliminates the need to additionally configure the first parameter through the second parameter configuration, thereby reducing signaling overhead.
[0158] In some embodiments, when the second parameter configuration includes a second parameter, the second parameter can be used as a parameter in the third parameter configuration. In this case, regardless of whether the first parameter configuration includes a second parameter, the second parameter included in the first parameter configuration can be ignored. In this embodiment, the second parameter may include a field from at least one of the first, second, third, and fourth configuration information.
[0159] In some embodiments, when both the first and second parameter configurations include a third parameter, the third parameter in the third parameter configuration can be jointly determined by combining the first and second parameter configurations. For example, if the third parameter in the first parameter configuration is used to configure the lower n bits of the sequence value, and the third parameter in the second parameter configuration configures the higher m bits of the sequence value, then the third parameter in the third parameter configuration is an m+n bit sequence value. In this embodiment, the third parameter may include at least one field from the first and third configuration information described above.
[0160] In some embodiments, the fifth parameter in the second parameter configuration can be understood as an incremental configuration for the fourth parameter. For example, the fifth parameter can be an offset value, and the parameter value corresponding to the fourth parameter in the third parameter configuration is the value corresponding to the fourth parameter in the first parameter configuration plus the offset value corresponding to the fifth parameter. In this embodiment, the fourth parameter may include the fields in the first configuration information described above.
[0161] Optionally, in order to better understand this application, the following explanation will take the first system information as SIB1, the terminal that meets the first condition as an LPWA terminal, and the terminal that meets the second condition as a normal terminal (i.e., an eMBB terminal) as an example.
[0162] In some embodiments, the protocol stipulates that the unified access system SIB1 is divided into two levels of SIB1, which are carried on two Transport Blocks (TBs) or PDSCHs respectively.
[0163] Optionally, the first level SIB1 contains the basic parameter configuration of the cell.
[0164] Optionally, from the perspective of the functions / purposes supported behind the signaling, the basic parameter configuration of a cell includes at least one of the following:
[0165] Cell selection / camping related parameter information (including at least field 1a), which may include cell selection threshold, offset and other related parameters. This cell selection or camping related parameter information is used for basic cell selection, for example, for cell selection and camping of LPWA and eMBB terminals.
[0166] Cell access / mobility related parameter information (including at least field 2a), which may include parameters such as PLMN identifier list, TAC list, and Cell identity list;
[0167] The system message block scheduling parameters (including at least field 3a) generally contain scheduling information for other SIBs in SIB1. It should be noted that the scheduling information for other SIBs may also include scheduling parameters for the second-level SIB1. For example, this field indicates whether the second-level SIB1 is being broadcast or exists. A terminal can determine which of the following scenarios applies by reading this field: Scenario 1) Only the first-level SIB1 exists; Scenario 2) Both the first-level and second-level SIB1 exist. This allows the terminal to execute the subsequent actions of the corresponding implementation examples.
[0168] The relevant parameter information for the configuration of common channel resources in the cell (including at least field 4a) includes the necessary common radio resource configurations that enable a terminal to perform uplink and downlink transmissions within the cell, such as paging configuration and random access channel configuration.
[0169] The relevant parameter information of the terminal timer and constants (including at least field 5a);
[0170] Access control related parameter information (including at least field 6a) may include unified access control (AC) and barring related parameters;
[0171] eDRX related parameter information (including at least field 7a) may include all or part of the high-order Hyper-SFN values.
[0172] Optionally, a complete LPWASIB1 signaling is constituted based on at least one field in the first-level SIB1.
[0173] The second level, SIB1, contains the incremental parameter configuration for the cell.
[0174] Optionally, the second level SIB1 may include at least one of the following:
[0175] The second-level SIB1 includes associated parameters (at least fields 1b, 2b, 3b, 4b, 5b, and 6b) corresponding to the function allocation of the first-level SIB1. The configuration method for the associated parameters includes at least one of the following:
[0176] Method 1: Compared to the parameter configuration of the first-level SIB1, incremental (delta) configuration is used.
[0177] In one implementation: the cell selection threshold 1 is determined based on field 1a in the first-level SIB1; the cell selection threshold 2 is determined by combining field 1a in the first-level SIB1 and field 1b in the second-level SIB1, for example: cell selection threshold 1 plus threshold offset.
[0178] In another implementation: the PLMN index value 1 is determined based on field 2a in the first-level SIB1; the PLMN index value 2 is determined based on field 2a in the first-level SIB1 and field 2b in the second-level SIB1, for example, 5 bits and an additional 3 bits form an 8-bit joint indicator PLMN index value.
[0179] Method 2: Compared to the parameter configuration of the first-level SIB1, an overwrite configuration is used.
[0180] In one implementation: a set of terminal timers and constant values are determined based on field 5a in the first-level SIB1; another set of terminal timers and constant values are determined based on field 5b in the second-level SIB1 instead of field 5a in the first-level SIB1, such as those related to the configuration of RRC timer and counter.
[0181] In another implementation: a set of RACH resource configurations is determined based on field 4a in the first-level SIB1; another set of RACH resource configurations is determined by replacing field 4a in the first-level SIB1 with field 4b in the second-level SIB1. The main difference between these two sets of RACH resource configurations is that at least one of the following in the RACH resource configuration—the number of Msg 1 repetitions, the number of Msg 3 repetitions, and the resource location of the random access opportunity (RO)—has a different configuration value.
[0182] Method 3: Compared to the parameter configuration of the first-level SIB1, additional additional list, Mask, and Bitmap configurations are used.
[0183] In one implementation: the most basic system message block scheduling-related parameter information is determined based on field 3a in the first-level SIB1, and additional system message block scheduling-related parameter information is determined based on field 3b in the second-level SIB1. The additional information is dedicated to extended system message block types (SIBx) or access control parameters specific to eMBB terminals. For example, it can include scheduling-related parameters corresponding to SIB6-SIB25 (assuming that the scheduling-related parameter information of SIB2-SIB5 is configured in the first-level SIB1).
[0184] In one implementation: a set of candidate RACH resource locations is determined based on field 4a in the first-level SIB1; another set of candidate RACH resource locations is determined by parsing field 4b in the second-level SIB1 based on field 4a of the first-level SIB1. For example, frequency domain resource expansion is performed by adding a list of RACH resource configurations (e.g., in the frequency domain resource dimension, two available RO resources are dedicated to eMBB terminals); repetition count is limited by adding RACH resource configurations to the RACH resource configuration Mask / Bitmap (e.g., in the time domain resource dimension, a total of four available RO resources are indicated to provide LPWA access, and only some of the four available RO resources are dedicated to eMBB terminals).
[0185] In one implementation: the most basic access control parameters are determined based on field 6a in the first-level SIB1, and additional access control related parameter information is determined based on field 6b in the first-level SIB1. The additional information is dedicated to higher-level access types or access control parameters specific to eMBB terminals. For example, it can include access control parameters corresponding to AC4-AC15 (assuming AC0-AC3 are configured in the first-level SIB1).
[0186] Optionally, the second-level SIB1 may also include parameters that are functionally independent of the first-level SIB1 (i.e., support enhanced features / higher-order functions), including at least one of the following from the perspective of the functions / purposes supported behind the signaling:
[0187] Measurement-related parameter information may include enhanced measurement characteristic parameters; this information is dedicated to high-order measurement control or measurement control specific to the eMBB terminal.
[0188] Feature-related parameter information, such as whether emergency calls are supported, whether Call over IMS is supported, etc.; this information is dedicated to high-level feature support or feature support specific to eMBB terminals;
[0189] Connection establishment failure control information may include a failure counter, failure offset, failure offset validity parameters, etc.; this information is dedicated to high-level connection establishment failure control or connection establishment failure control parameters specific to eMBB terminals.
[0190] Optionally, a normal 6G SIB1 (or eMBB SIB1) signaling is formed by combining at least one field in the first-level SIB1 and at least one field in the second-level SIB1.
[0191] Optionally, in some embodiments, the network-side device only provides LPWA access services, and the network-side device's sending behavior and the corresponding terminal-side receiving behavior include:
[0192] Step 1: The network-side equipment only sends the first level SIB1 of the cell.
[0193] Step 2: Any terminal listens for or receives the first level SIB1.
[0194] Step 3: Upon receiving the first-level SIB1, the terminal applies the first-level SIB1 to determine the parameter configuration of the first function, i.e., the first parameter configuration.
[0195] Step 4: The terminal executes at least one of the following based on the parameter configuration of the first function:
[0196] Stay in this community;
[0197] Initiate access in this cell;
[0198] The first data transmission takes place in this cell.
[0199] In some embodiments, the network-side device provides LPWA access service and eMBB access service, and the network-side device's sending behavior and the corresponding terminal-side receiving behavior include:
[0200] Step 1A: The network-side equipment sends the first-level SIB1 and the second-level SIB1 of the cell;
[0201] Step 2A: The LPWA UE only listens to or receives Level 1 SIB1;
[0202] Step 3A: Same as described in Step 3.
[0203] Step 4A: Same as described in Step 4.
[0204] Alternatively, the network-side device's sending behavior and the corresponding terminal-side receiving behavior include:
[0205] Step 1A: The network-side equipment sends the first-level SIB1 and the second-level SIB1 of the cell;
[0206] Step 2B: The eMBB UE performs at least one of the following behavior options:
[0207] Option 1: Follow the behavior described in steps 2A, 3A, and 4A;
[0208] Option 2: The eMBB UE listens to or receives the first-level SIB1 and listens to or receives the second-level SIB1;
[0209] Step 3B: After receiving the first-level SIB1 and the second-level SIB1, the eMBB UE applies the parameter configurations in the first-level SIB1 and the second-level SIB1 of the cell to determine the parameter configuration of the second function, i.e. the third configuration parameter.
[0210] Step 4B: The terminal performs at least one of the following actions based on the third configuration parameter:
[0211] Stay in this community;
[0212] Initiate access in this cell;
[0213] The second data transmission takes place in this cell.
[0214] Optionally, in some embodiments, option 2 is executed by default for the eMBB UE; or, option 2 can be determined based on the indication in the MIB / first SIB1 (whether the second-level SIB1 is broadcast or exists).
[0215] Optionally, in some embodiments, the eMBB UE may execute option 1 or switch from option 2 to option 1 if its own capabilities support (e.g., radio capabilities are reduced to support or enable LPWA operating mode) and / or its own conditions are met (e.g., radio channel conditions are in deep coverage state, small packet service, RRC disconnected state, power saving, low power or low power mode).
[0216] It should be noted that the LPWA working mode generally refers to a type of working mode that meets at least one of the terminal characteristics of "Maximum Coverage Extension Level, Network Energy Saving (NES), Terminal Power Saving, and Small Data Transmission".
[0217] Optionally, regarding conditions met by the terminal itself: For example, how the UE determines that the wireless channel conditions are in a deep coverage state can be determined based on the UE's coverage level. Determining the UE's coverage level is equivalent to the UE performing wireless channel measurements to obtain a certain measurement value, such as the RSRP measurement value, and determining a coverage level based on the range to which this measurement value belongs. How the UE determines whether it is a small data packet service can be determined based on indications from the UE's upper layer (NAS layer, application layer) or network-side equipment. How the UE determines whether it is in power-saving, low-power, or low-consumption mode can be determined based on indications from the UE's upper layer (NAS layer, application layer) or network-side equipment; no further limitations are made here.
[0218] Optionally, if the network-side device enables specific terminal features or feature combinations, the eMBB UE may execute option 1 or switch from option 2 to option 1.
[0219] Optionally, the eMBB UE executes option 1 or switches from option 2 to option 1 during certain time periods (e.g., at night); optionally, the eMBB UE determines at least one of the following based on a notification from the network-side device: the effective or start time of the time period (i.e., based on this notification, the UE determines that option 1 can be executed), the maximum duration of the time period (i.e., based on this notification, the UE determines that option 1 can be executed for the maximum duration), and the expiration or end time of the time period (i.e., based on this notification, the UE determines that option 1 can be prohibited from being executed).
[0220] Optionally, before executing option 1, the eMBB UE performs a capability change negotiation process with the network-side equipment and / or core network equipment. If the negotiation process is successful or completed, the UE executes option 1 or switches from option 2 to option 1.
[0221] Reference Figure 3 This application also provides a communication processing method, such as... Figure 3 As shown, the communication processing method includes:
[0222] Step 301: The network-side device sends the first system information of the first cell, the first system information including the first parameter configuration, or the first system information including the first parameter configuration and the second parameter configuration;
[0223] Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
[0224] Optionally, the first system information satisfies at least one of the following:
[0225] The common configuration section contains parameter configurations required by both the first and second services, while the dedicated configuration section contains the remaining parameter configurations required by the second service.
[0226] The common configuration section is used for terminals that meet the first condition and terminals that meet the second condition, while the dedicated configuration section is only used for terminals that meet the second condition.
[0227] The first condition includes at least one of the following: supporting the first service but not supporting the second service; the terminal is in the first state or has changed to the first state; the terminal's capability level is the first level or has changed to the first level.
[0228] The second condition includes at least one of the following: supporting the second service, the terminal being in the second state or changing to the second state; the terminal's capability level being the second level or changing to the second level;
[0229] Wherein, the first state is different from the second state, and the terminal being in the first state includes at least one of the following: the wireless channel conditions of the terminal are in a first coverage range state; the terminal only supports small data packet services; the terminal is in a radio resource control (RRC) non-connected state; the terminal is running in a network power saving mode; the terminal battery level is lower than or equal to a first threshold; the terminal is running in a low power mode.
[0230] Optionally, the first service is a low-power wide-area network (LPWA) access service, and the second service is an enhanced mobile broadband (eMBB) access service.
[0231] Optionally, the first parameter configuration includes at least one of the following:
[0232] Relevant parameters for community selection or residence;
[0233] Relevant parameter information for system information block scheduling;
[0234] This is used to indicate whether the second parameter configuration is broadcast or whether an indication message exists.
[0235] Relevant parameter information for the configuration of community public channel resources;
[0236] Relevant parameter information for terminal timers and constants;
[0237] Access control related parameter information;
[0238] Enhance the relevant parameter information for discontinuous reception.
[0239] Optionally, the second parameter configuration includes at least one of the following:
[0240] First configuration information, wherein the first configuration information is an incremental configuration relative to the first parameter configuration;
[0241] The second configuration information is an alternative configuration relative to the first parameter configuration;
[0242] The third configuration information is an additional configuration relative to the first parameter configuration;
[0243] The fourth configuration information consists of parameters for dedicated functions of the second service.
[0244] Optionally, the fourth configuration information includes at least one of the following:
[0245] Measure relevant parameter information;
[0246] Feature-related parameter information;
[0247] Connection establishment failure control information.
[0248] Optionally, the network-side device sending the first system information of the first cell includes any one of the following:
[0249] The network-side device sends a first signaling message;
[0250] The network-side device sends the first signaling and the second signaling;
[0251] The first signaling includes only the first parameter configuration, and the second signaling includes only the second parameter configuration.
[0252] The communication processing method provided in this application can be executed by a communication processing device. This application uses an example of a communication processing device executing the communication processing method to illustrate the communication processing device provided in this application.
[0253] This application provides a communication processing apparatus. As an example, the communication processing apparatus may be a communication device or a component within a communication device, such as a chip. The communication device may be a terminal, a network-side device, or a server, etc. Exemplarily, the terminal may include, but is not limited to, the type of terminal 11 listed above, and the network-side device may include, but is not limited to, the type of network-side device 12 listed above. This application does not impose specific limitations.
[0254] The communication processing device includes a receiving module, a transmitting module, and a processing module. These modules can be implemented in software or hardware. When implemented in hardware, the processing module can be implemented by a processor. For example, the processor can include general-purpose processors, special-purpose processors, etc., such as central processing units (CPUs), microprocessors, digital signal processors (DSPs), artificial intelligence (AI) processors, graphics processing units (GPUs), application-specific integrated circuits (ASICs), network processors (NPs), field-programmable gate arrays (FPGAs), or other programmable logic devices, gate circuits, transistors, discrete hardware components, etc. The receiving and transmitting modules can be implemented by a communication interface, which can include one or more of the following: transceivers, pins, circuits, buses, radio frequency units, etc.
[0255] For details, see Figure 4 When the communication processing device is a terminal or a component within a terminal, the communication processing device 400 includes:
[0256] The receiving module 401 is used to receive first system information of the first cell, wherein the first system information includes a first parameter configuration, or the first system information includes a first parameter configuration and a second parameter configuration.
[0257] Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
[0258] Optionally, the first system information satisfies at least one of the following:
[0259] The common configuration section contains parameter configurations required by both the first and second services, while the dedicated configuration section contains the remaining parameter configurations required by the second service.
[0260] The common configuration section is used for terminals that meet the first condition and terminals that meet the second condition, while the dedicated configuration section is only used for terminals that meet the second condition.
[0261] The first condition includes at least one of the following: supporting the first service but not supporting the second service; the terminal is in the first state or has changed to the first state; the terminal's capability level is the first level or has changed to the first level.
[0262] The second condition includes at least one of the following: supporting the second service, the terminal being in the second state or changing to the second state; the terminal's capability level being the second level or changing to the second level;
[0263] Wherein, the first state is different from the second state, and the terminal being in the first state includes at least one of the following: the wireless channel conditions of the terminal are in a first coverage range state; the terminal only supports small data packet services; the terminal is in a radio resource control (RRC) non-connected state; the terminal is running in a network power saving mode; the terminal battery level is lower than or equal to a first threshold; the terminal is running in a low power mode.
[0264] Optionally, the first service is a low-power wide-area network (LPWA) access service, and the second service is an enhanced mobile broadband (eMBB) access service.
[0265] Optionally, the first parameter configuration includes at least one of the following:
[0266] Relevant parameters for community selection or residence;
[0267] Relevant parameter information for system information block scheduling;
[0268] This is used to indicate whether the second parameter configuration is broadcast or whether an indication message exists.
[0269] Relevant parameter information for the configuration of community public channel resources;
[0270] Relevant parameter information for terminal timers and constants;
[0271] Access control related parameter information;
[0272] Enhance the relevant parameter information for discontinuous reception.
[0273] Optionally, the second parameter configuration includes at least one of the following:
[0274] First configuration information, wherein the first configuration information is an incremental configuration relative to the first parameter configuration;
[0275] The second configuration information is an alternative configuration relative to the first parameter configuration;
[0276] The third configuration information is an additional configuration relative to the first parameter configuration;
[0277] The fourth configuration information consists of parameters for dedicated functions of the second service.
[0278] Optionally, the fourth configuration information includes at least one of the following:
[0279] Measure relevant parameter information;
[0280] Feature-related parameter information;
[0281] Connection establishment failure control information.
[0282] Optionally, the terminal receiving the first system information of the first cell includes any one of the following:
[0283] The terminal receives the first signaling;
[0284] The terminal receives the first signaling and the second signaling;
[0285] The first signaling includes only the first parameter configuration, and the second signaling includes only the second parameter configuration.
[0286] Optionally, the receiving module 401 is specifically configured to include any of the following:
[0287] Only the first parameter configuration is received;
[0288] Receive the first parameter configuration and the second parameter configuration.
[0289] Optionally, the receiving module 401 is specifically configured to: receive only the first parameter configuration when the terminal meets the first condition;
[0290] The first condition includes at least one of the following: supporting the first service but not supporting the second service; the terminal is in the first state or has changed to the first state; the terminal's capability level is the first level or has changed to the first level.
[0291] Optionally, the receiving module 401 is specifically configured to: receive the first parameter configuration and the second parameter configuration when the terminal meets the second condition;
[0292] The second condition includes at least one of the following: supporting the second service, the terminal being in the second state or changing to the second state; the terminal's capability level being the second level or changing to the second level.
[0293] Optionally, the receiving module 401 is further configured to: apply the first parameter configuration when the terminal receives the first parameter configuration.
[0294] Optionally, the receiving module 401 is specifically configured to: perform at least one of the following based on the first parameter configuration:
[0295] Staying in the first residential area;
[0296] Initiate random access in the first cell;
[0297] The first data transmission is performed in the first cell.
[0298] Optionally, the receiving module 401 is further configured to: when the terminal receives the first parameter configuration and the second parameter configuration, apply a third parameter configuration, wherein the third parameter configuration is the second parameter configuration, or the third parameter configuration is determined based on the first parameter configuration and the second parameter configuration.
[0299] Optionally, the receiving module 401 is further configured to: perform at least one of the following based on the third parameter:
[0300] Staying in the first residential area;
[0301] Initiate random access in the first cell;
[0302] The second data transmission is performed in the first cell.
[0303] Optionally, the third parameter configuration includes at least one of the following:
[0304] The first parameter has a first value, wherein the first parameter configuration includes the first parameter, the second parameter configuration does not include the first parameter, and the first value is the parameter value corresponding to the first parameter in the first parameter configuration.
[0305] The second parameter has a second value, wherein the second parameter configuration includes the second parameter and the second value is the parameter value corresponding to the second parameter in the second parameter configuration;
[0306] The third parameter is determined based on a third value and a fourth value. The first parameter configuration includes the third parameter, the second parameter configuration includes the third parameter, the third value is the parameter value corresponding to the third parameter in the first parameter configuration, and the fourth value is the parameter value corresponding to the third parameter in the second parameter configuration.
[0307] The fourth parameter is determined based on the fifth and sixth values. The first parameter configuration includes the fourth parameter, the second parameter configuration includes the fifth parameter, the fifth parameter is associated with the fourth parameter, the fourth value is the parameter value corresponding to the fourth parameter in the first parameter configuration, and the fifth value is the parameter value corresponding to the fifth parameter in the second parameter configuration.
[0308] See Figure 5 When the communication processing device is a network-side device or a component within a network-side device, the communication processing device 500 includes:
[0309] The sending module 501 is used to send the first system information of the first cell, wherein the first system information includes a first parameter configuration, or the first system information includes a first parameter configuration and a second parameter configuration.
[0310] Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
[0311] Optionally, the first system information satisfies at least one of the following:
[0312] The common configuration section contains parameter configurations required by both the first and second services, while the dedicated configuration section contains the remaining parameter configurations required by the second service.
[0313] The common configuration section is used for terminals that meet the first condition and terminals that meet the second condition, while the dedicated configuration section is only used for terminals that meet the second condition.
[0314] The first condition includes at least one of the following: supporting the first service but not supporting the second service; the terminal is in the first state or has changed to the first state; the terminal's capability level is the first level or has changed to the first level.
[0315] The second condition includes at least one of the following: supporting the second service, the terminal being in the second state or changing to the second state; the terminal's capability level being the second level or changing to the second level;
[0316] Wherein, the first state is different from the second state, and the terminal being in the first state includes at least one of the following: the wireless channel conditions of the terminal are in a first coverage range state; the terminal only supports small data packet services; the terminal is in a radio resource control (RRC) non-connected state; the terminal is running in a network power saving mode; the terminal battery level is lower than or equal to a first threshold; the terminal is running in a low power mode.
[0317] Optionally, the first service is a low-power wide-area network (LPWA) access service, and the second service is an enhanced mobile broadband (eMBB) access service.
[0318] Optionally, the first parameter configuration includes at least one of the following:
[0319] Relevant parameters for community selection or residence;
[0320] Relevant parameter information for system information block scheduling;
[0321] This is used to indicate whether the second parameter configuration is broadcast or whether an indication message exists.
[0322] Relevant parameter information for the configuration of community public channel resources;
[0323] Relevant parameter information for terminal timers and constants;
[0324] Access control related parameter information;
[0325] Enhance the relevant parameter information for discontinuous reception.
[0326] Optionally, the second parameter configuration includes at least one of the following:
[0327] First configuration information, wherein the first configuration information is an incremental configuration relative to the first parameter configuration;
[0328] The second configuration information is an alternative configuration relative to the first parameter configuration;
[0329] The third configuration information is an additional configuration relative to the first parameter configuration;
[0330] The fourth configuration information consists of parameters for dedicated functions of the second service.
[0331] Optionally, the fourth configuration information includes at least one of the following:
[0332] Measure relevant parameter information;
[0333] Feature-related parameter information;
[0334] Connection establishment failure control information.
[0335] Optionally, the network-side device sending the first system information of the first cell includes any one of the following:
[0336] The network-side device sends a first signaling message;
[0337] The network-side device sends the first signaling and the second signaling;
[0338] The first signaling includes only the first parameter configuration, and the second signaling includes only the second parameter configuration.
[0339] The communication processing device provided in this application embodiment can achieve... Figures 2 to 3 The various processes implemented in the method embodiments achieve the same technical effect, and will not be described again here to avoid repetition.
[0340] like Figure 6 As shown, this application embodiment also provides a communication device 600, including a processor 601 and a memory 602. The memory 602 stores a program or instructions that can run on the processor 601. When the program or instructions are executed by the processor 601, they implement the various steps of the above-described communication processing method embodiment and can achieve the same technical effect. To avoid repetition, they will not be described again here.
[0341] This application embodiment also provides a terminal, including a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement, for example... Figure 2 The steps in the method embodiment shown are illustrated. This terminal embodiment corresponds to the above-described terminal-side method embodiment. All implementation processes and methods of the above-described method embodiments can be applied to this terminal embodiment and achieve the same technical effect. The terminal can be... Figure 4 The communication processing device shown. Specifically, Figure 7 A schematic diagram of the hardware structure of a terminal to implement an embodiment of this application.
[0342] The terminal 700 includes, but is not limited to, at least some of the following components: radio frequency unit 701, network module 702, audio output unit 703, input unit 704, sensor 705, display unit 706, user input unit 707, interface unit 708, memory 709, and processor 710.
[0343] Those skilled in the art will understand that the terminal 700 may also include a power supply (such as a battery) for supplying power to various components. The power supply may be logically connected to the processor 710 through a power management system, thereby enabling functions such as managing charging, discharging, and power consumption through the power management system. Figure 7The terminal structure shown does not constitute a limitation on the terminal. The terminal may include more or fewer components than shown, or combine certain components, or have different component arrangements, which will not be elaborated here.
[0344] It should be understood that, in this embodiment, the input unit 704 may include a graphics processor 7041 and a microphone 7042. The graphics processor 7041 processes image data of still images or videos obtained by an image capture device (such as a camera) in video capture mode or image capture mode. The display unit 706 may include a display panel 7061, which may be configured in the form of a liquid crystal display, an organic light-emitting diode, or the like. The user input unit 707 includes at least one of a touch panel 7071 and other input devices 7072. The touch panel 7071 is also called a touch screen. The touch panel 7071 may include a touch detection device and a touch controller. Other input devices 7072 may include, but are not limited to, physical keyboards, function keys (such as volume control buttons, power buttons, etc.), trackballs, mice, and joysticks, which will not be described in detail here.
[0345] In this embodiment, after receiving downlink data from the network-side device, the radio frequency unit 701 can transmit it to the processor 710 for processing; in addition, the radio frequency unit 701 can send uplink data to the network-side device. Typically, the radio frequency unit 701 includes, but is not limited to, antennas, amplifiers, transceivers, couplers, low-noise amplifiers, duplexers, etc.
[0346] The memory 709 can be used to store software programs or instructions, as well as various data. The memory 709 may primarily include a first storage area for storing programs or instructions and a second storage area for storing data. The first storage area may store the operating system, application programs or instructions required for at least one function (such as sound playback, image playback, etc.). Furthermore, the memory 709 may include volatile memory or non-volatile memory. The non-volatile memory may be read-only memory (ROM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), electrically erasable programmable read-only memory (EEPROM), or flash memory. Volatile memory can be random access memory (RAM), static random access memory (SRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (SDRAM), double data rate synchronous dynamic random access memory (DDRSDRAM), enhanced synchronous dynamic random access memory (ESDRAM), synchronous link dynamic random access memory (SLDRAM), and direct memory bus RAM (DRRAM). The memory 709 in the embodiments of this application includes, but is not limited to, these and any other suitable types of memory.
[0347] Processor 710 may include one or more processing units; optionally, processor 710 integrates an application processor and a modem processor, wherein the application processor mainly handles operations involving the operating system, user interface, and applications, and the modem processor mainly handles wireless communication signals, such as a baseband processor. It is understood that the aforementioned modem processor may also not be integrated into processor 710.
[0348] The radio frequency unit 701 is used to receive first system information of the first cell, wherein the first system information includes a first parameter configuration, or the first system information includes a first parameter configuration and a second parameter configuration.
[0349] Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
[0350] It is understood that the implementation process of each implementation method mentioned in this embodiment can refer to the relevant description of the terminal side method embodiment and achieve the same or corresponding technical effects. To avoid repetition, it will not be described again here.
[0351] This application embodiment also provides a network-side device, including a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement, for example... Figure 3 The steps of the method embodiment shown are illustrated. This network-side device embodiment corresponds to the above-described network-side device method embodiment. All implementation processes and methods of the above-described method embodiments can be applied to this network-side device embodiment and can achieve the same technical effect.
[0352] Specifically, embodiments of this application also provide a network-side device, which can be... Figure 5 The communication processing device shown. (e.g.) Figure 8 As shown, the network-side device 800 includes: an antenna 801, a radio frequency (RF) device 802, a baseband device 803, a processor 804, and a memory 805. The antenna 801 is connected to the RF device 802. In the uplink direction, the RF device 802 receives information through the antenna 801 and transmits the received information to the baseband device 803 for processing. In the downlink direction, the baseband device 803 processes the information to be transmitted and sends it to the RF device 802. The RF device 802 processes the received information and transmits it through the antenna 801.
[0353] The method executed by the network-side device in the above embodiments can be implemented in the baseband device 803, which includes a baseband processor.
[0354] The baseband device 803 may, for example, include at least one baseband board on which multiple chips are disposed, such as... Figure 8 As shown, one of the chips is, for example, a baseband processor, which is connected to the memory 805 via a bus interface to call the program or instructions in the memory 85 to execute the network-side device operations shown in the above method embodiment.
[0355] The network-side device may also include a network interface 806, such as a Common Public Radio Interface (CPRI).
[0356] The radio frequency device 802 is used to transmit the first system information of the first cell, wherein the first system information includes a first parameter configuration, or the first system information includes a first parameter configuration and a second parameter configuration.
[0357] Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
[0358] Furthermore, the network-side device 800 in this embodiment of the application also includes: a program or instructions stored in a memory 805 and executable on a processor 804, wherein the processor 804 calls the program or instructions in the memory 805 to execute. Figure 5 The methods executed by each module shown achieve the same technical effect, and to avoid repetition, they will not be described in detail here.
[0359] This application also provides a readable storage medium storing a program or instructions. When the program or instructions are executed by a processor, they implement the various processes of the above-described communication processing method embodiments and achieve the same technical effects. To avoid repetition, they will not be described again here.
[0360] The processor mentioned above is either the processor in the terminal described in the above embodiments or the processor in the network-side device. The readable storage medium includes computer-readable storage media, such as computer read-only memory (ROM), random access memory (RAM), magnetic disk, or optical disk. In some examples, the readable storage medium may be a non-transient readable storage medium.
[0361] This application embodiment also provides a chip, which includes a processor and a communication interface. The communication interface is coupled to the processor. The processor is used to run programs or instructions to implement the various processes of the above-described communication processing method embodiments and can achieve the same technical effect. To avoid repetition, it will not be described again here.
[0362] It should be understood that the chip mentioned in the embodiments of this application may also be referred to as a system-on-a-chip, system chip, chip system, or system-on-a-chip, etc.
[0363] This application also provides a computer program / program product, which includes computer instructions. The computer program / program product is executed by at least one processor to implement the various processes of the above-described communication processing method embodiments and can achieve the same technical effect. To avoid repetition, it will not be described again here.
[0364] This application also provides a wireless communication system, including: a terminal and a network-side device, wherein the terminal can be used to execute the steps of the communication processing method of the terminal side as described above, and the network-side device can be used to execute the steps of the communication processing method of the network-side device as described above.
[0365] It should be noted that, in this document, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element. Furthermore, it should be noted that the scope of the methods and apparatuses in the embodiments of this application is not limited to performing functions in the order shown or discussed, but may also include performing functions substantially simultaneously or in the reverse order, depending on the functions involved. For example, the described methods may be performed in a different order than described, and various steps may be added, omitted, or combined. Additionally, features described with reference to certain examples may be combined in other examples.
[0366] From the above description of the embodiments, those skilled in the art can clearly understand that the methods of the above embodiments can be implemented by means of computer software products plus necessary general-purpose hardware platforms, and of course, they can also be implemented by hardware. The computer software product is stored in a storage medium (such as ROM, RAM, magnetic disk, optical disk, etc.) and includes several instructions to cause the terminal or network-side device to execute the methods described in the various embodiments of this application.
[0367] The embodiments of this application have been described above with reference to the accompanying drawings. However, this application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other implementations under the guidance of this application without departing from the spirit and scope of the claims. All of these implementations are within the protection scope of this application.
Claims
1. A communication processing method characterized by comprising: include: The terminal receives first system information of the first cell, the first system information including first parameter configuration, or the first system information including first parameter configuration and second parameter configuration; Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
2. The method of claim 1, wherein, The first system information satisfies at least one of the following: The common configuration section contains parameter configurations required by both the first and second services, while the dedicated configuration section contains the remaining parameter configurations required by the second service. The common configuration section is used for terminals that meet the first condition and terminals that meet the second condition, while the dedicated configuration section is only used for terminals that meet the second condition. The first condition includes at least one of the following: supporting the first service but not supporting the second service; the terminal is in the first state or has changed to the first state; the terminal's capability level is the first level or has changed to the first level. The second condition includes at least one of the following: supporting the second service, the terminal being in the second state or changing to the second state; the terminal's capability level being the second level or changing to the second level; Wherein, the first state is different from the second state, and the terminal being in the first state includes at least one of the following: the wireless channel conditions of the terminal are in a first coverage range state; the terminal only supports small data packet services; the terminal is in a radio resource control (RRC) non-connected state; the terminal is running in a network power saving mode; the terminal battery level is lower than or equal to a first threshold; the terminal is running in a low power mode.
3. The method of claim 2, wherein, The first service is Low Power Wide Area Network (LPWA) access service, and the second service is Enhanced Mobile Broadband (eMBB) access service.
4. The method according to any one of claims 1 to 3, characterized in that, The first parameter configuration includes at least one of the following: Relevant parameters for community selection or residence; Relevant parameter information for system information block scheduling; This is used to indicate whether the second parameter configuration is broadcast or whether an indication message exists. Relevant parameter information for the configuration of community public channel resources; Relevant parameter information for terminal timers and constants; Access control related parameter information; Enhance the relevant parameter information for discontinuous reception.
5. The method according to any one of claims 1 to 4, characterized in that, The second parameter configuration includes at least one of the following: First configuration information, wherein the first configuration information is an incremental configuration relative to the first parameter configuration; The second configuration information is an alternative configuration relative to the first parameter configuration; The third configuration information is an additional configuration relative to the first parameter configuration; The fourth configuration information consists of parameters for dedicated functions of the second service.
6. The method of claim 5, wherein, The fourth configuration information includes at least one of the following: Measure relevant parameter information; Feature-related parameter information; Connection establishment failure control information.
7. The method according to any one of claims 1 to 6, characterized in that, The terminal receives first system information from the first cell, including any one of the following: The terminal receives the first signaling; The terminal receives the first signaling and the second signaling; The first signaling includes only the first parameter configuration, and the second signaling includes only the second parameter configuration.
8. The method according to any one of claims 1 to 7, characterized in that, The terminal receives first system information from the first cell, including any one of the following: The terminal only receives the first parameter configuration; The terminal receives the first parameter configuration and the second parameter configuration.
9. The method according to claim 8, characterized in that, The terminal only receives the first parameter configuration, including: If the terminal meets the first condition, the terminal only receives the first parameter configuration; The first condition includes at least one of the following: supporting the first service but not supporting the second service; the terminal is in the first state or has changed to the first state; the terminal's capability level is the first level or has changed to the first level.
10. The method according to claim 8, characterized in that, The terminal receiving the first parameter configuration and the second parameter configuration includes: If the terminal meets the second condition, the terminal receives the first parameter configuration and the second parameter configuration; The second condition includes at least one of the following: supporting the second service, the terminal being in the second state or changing to the second state; the terminal's capability level being the second level or changing to the second level.
11. The method according to any one of claims 1 to 10, characterized in that, The method further includes: When the terminal receives the first parameter configuration, the terminal applies the first parameter configuration.
12. The method of claim 11, wherein, The first parameter configuration of the terminal application includes: The terminal is configured to perform at least one of the following based on the first parameter: Stay in the first residential area; Initiate random access in the first cell; The first data transmission is performed in the first cell.
13. The method according to any one of claims 1 to 10, characterized in that, The method further includes: When the terminal receives the first parameter configuration and the second parameter configuration, the terminal applies a third parameter configuration, which is the second parameter configuration, or the third parameter configuration is determined based on the first parameter configuration and the second parameter configuration.
14. The method of claim 13, wherein, The third parameter configuration of the terminal application includes: The terminal is configured to perform at least one of the following based on the third parameter: Stay in the first residential area; Initiate random access in the first cell; The second data transmission is performed in the first cell.
15. The method of claim 14, wherein, The third parameter configuration includes at least one of the following: The first parameter has a first value, wherein the first parameter configuration includes the first parameter, the second parameter configuration does not include the first parameter, and the first value is the parameter value corresponding to the first parameter in the first parameter configuration. The second parameter has a second value, wherein the second parameter configuration includes the second parameter and the second value is the parameter value corresponding to the second parameter in the second parameter configuration; The third parameter is determined based on a third value and a fourth value. The first parameter configuration includes the third parameter, the second parameter configuration includes the third parameter, the third value is the parameter value corresponding to the third parameter in the first parameter configuration, and the fourth value is the parameter value corresponding to the third parameter in the second parameter configuration. The fourth parameter is determined based on the fifth and sixth values. The first parameter configuration includes the fourth parameter, the second parameter configuration includes the fifth parameter, the fifth parameter is associated with the fourth parameter, the fourth value is the parameter value corresponding to the fourth parameter in the first parameter configuration, and the fifth value is the parameter value corresponding to the fifth parameter in the second parameter configuration.
16. A communication processing method characterized by comprising: include: The network-side device sends the first system information of the first cell, the first system information including the first parameter configuration, or the first system information including the first parameter configuration and the second parameter configuration; Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
17. The method of claim 16, wherein, The first system information satisfies at least one of the following: The common configuration section contains parameter configurations required by both the first and second services, while the dedicated configuration section contains the remaining parameter configurations required by the second service. The common configuration section is used for terminals that meet the first condition and terminals that meet the second condition, while the dedicated configuration section is only used for terminals that meet the second condition. The first condition includes at least one of the following: supporting the first service but not supporting the second service; the terminal is in the first state or has changed to the first state; the terminal's capability level is the first level or has changed to the first level. The second condition includes at least one of the following: supporting the second service, the terminal being in the second state or changing to the second state; the terminal's capability level being the second level or changing to the second level; Wherein, the first state is different from the second state, and the terminal being in the first state includes at least one of the following: the wireless channel conditions of the terminal are in a first coverage range state; the terminal only supports small data packet services; the terminal is in a radio resource control (RRC) non-connected state; the terminal is running in a network power saving mode; the terminal battery level is lower than or equal to a first threshold; the terminal is running in a low power mode.
18. The method of claim 17, wherein, The first service is Low Power Wide Area Network (LPWA) access service, and the second service is Enhanced Mobile Broadband (eMBB) access service.
19. The method according to any one of claims 16 to 18, characterized in that, The first parameter configuration includes at least one of the following: Relevant parameters for community selection or residence; Relevant parameter information for system information block scheduling; This is used to indicate whether the second parameter configuration is broadcast or whether an indication message exists. Relevant parameter information for the configuration of community public channel resources; Relevant parameter information for terminal timers and constants; Access control related parameter information; Enhance the relevant parameter information for discontinuous reception.
20. The method according to any one of claims 16 to 19, characterized in that, The second parameter configuration includes at least one of the following: First configuration information, wherein the first configuration information is an incremental configuration relative to the first parameter configuration; The second configuration information is an alternative configuration relative to the first parameter configuration; The third configuration information is an additional configuration relative to the first parameter configuration; The fourth configuration information consists of parameters for dedicated functions of the second service.
21. The method of claim 20, wherein, The fourth configuration information includes at least one of the following: Measure relevant parameter information; Feature-related parameter information; Connection establishment failure control information.
22. The method according to any one of claims 16 to 21, characterized in that, The network-side device sending the first system information of the first cell includes any one of the following: The network-side device sends the first signaling; The network-side device sends the first signaling and the second signaling; The first signaling includes only the first parameter configuration, and the second signaling includes only the second parameter configuration.
23. A communication processing device, characterized by comprising: include: A receiving module is configured to receive first system information of a first cell, wherein the first system information includes a first parameter configuration, or the first system information includes a first parameter configuration and a second parameter configuration. Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
24. The apparatus of claim 23, wherein, The first system information satisfies at least one of the following: The common configuration section contains parameter configurations required by both the first and second services, while the dedicated configuration section contains the remaining parameter configurations required by the second service. The common configuration section is used for terminals that meet the first condition and terminals that meet the second condition, while the dedicated configuration section is only used for terminals that meet the second condition. The first condition includes at least one of the following: supporting the first service but not supporting the second service; the terminal is in the first state or has changed to the first state; the terminal's capability level is the first level or has changed to the first level. The second condition includes at least one of the following: supporting the second service, the terminal being in the second state or changing to the second state; the terminal's capability level being the second level or changing to the second level; Wherein, the first state is different from the second state, and the terminal being in the first state includes at least one of the following: the wireless channel conditions of the terminal are in a first coverage range state; the terminal only supports small data packet services; the terminal is in a radio resource control (RRC) non-connected state; the terminal is running in a network power saving mode; the terminal battery level is lower than or equal to a first threshold; the terminal is running in a low power mode.
25. A communication processing device, comprising: include: The sending module is used to send first system information of the first cell, wherein the first system information includes a first parameter configuration, or the first system information includes a first parameter configuration and a second parameter configuration. Wherein, the first parameter is configured as a common configuration part of the first system information, and the second parameter is configured as a dedicated configuration part of the first system information.
26. The apparatus of claim 25, wherein, The first system information satisfies at least one of the following: The common configuration section contains parameter configurations required by both the first and second services, while the dedicated configuration section contains the remaining parameter configurations required by the second service. The common configuration section is used for terminals that meet the first condition and terminals that meet the second condition, while the dedicated configuration section is only used for terminals that meet the second condition. The first condition includes at least one of the following: supporting the first service but not supporting the second service; the terminal is in the first state or has changed to the first state; the terminal's capability level is the first level or has changed to the first level. The second condition includes at least one of the following: supporting the second service, the terminal being in the second state or changing to the second state; the terminal's capability level being the second level or changing to the second level; Wherein, the first state is different from the second state, and the terminal being in the first state includes at least one of the following: the wireless channel conditions of the terminal are in a first coverage range state; the terminal only supports small data packet services; the terminal is in a radio resource control (RRC) non-connected state; the terminal is running in a network power saving mode; the terminal battery level is lower than or equal to a first threshold; the terminal is running in a low power mode.
27. A terminal, characterized by It includes a processor and a memory, the memory storing a program or instructions that can run on the processor, the program or instructions being executed by the processor to implement the steps of the communication processing method as described in any one of claims 1 to 15.
28. A network-side device, comprising: It includes a processor and a memory, the memory storing a program or instructions that can run on the processor, the program or instructions being executed by the processor to implement the steps of the communication processing method as described in any one of claims 16 to 22.
29. A readable storage medium, characterized by, The readable storage medium stores a program or instructions that, when executed by a processor, implement the steps of the communication processing method as described in any one of claims 1 to 22.
30. A computer program product, characterised in that, It includes computer instructions, which, when executed by a processor, implement the steps of the communication processing method as described in any one of claims 1 to 22.