Resource Conflict Handling Method and Related Device

By obtaining the priority of conflicting resources and handling channel and signal conflicts, the problem of low information transmission efficiency in the communication system is solved, and the correct transmission and efficient transmission of information are achieved.

CN115190504BActive Publication Date: 2025-07-25BEIJING SPREADTRUM HI TECH COMM TECH CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202110364951.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-04-02
Publication Date
2025-07-25
Estimated Expiration
2041-04-02

Smart Images

  • Figure CN115190504B_ABST
    Figure CN115190504B_ABST
Patent Text Reader

Abstract

Embodiments of the present application disclose a method and related device for resource conflict handling, including obtaining conflict resources corresponding to the first information, where the conflict resources include conflict channels and / or conflict signals, the conflict channels include a first physical channel and at least one second physical channel in conflict with the first physical channel, and the conflict signals include at least one physical signal in conflict with the first physical channel; respectively obtaining priorities corresponding to the first physical channel and the at least one second physical channel and / or the at least one physical signal according to the conflict resources; processing the first information according to the priorities to obtain second information; and sending the second information to a network device. This can ensure the correct sending of information and improve the efficiency of information sending in the case of resource conflicts in the information sent by the terminal.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of communication technologies, and particularly to a method for handling resource conflicts and related devices. Background Art

[0002] With the evolution of communication technologies and the increasing requirements for communications by people, communication systems are required to adapt to diverse scenarios and service requirements, and these scenarios all pose requirements such as high reliability, low latency, large bandwidth, and wide coverage for communication systems. However, when a terminal sends information, it may occur that the physical channels corresponding to multiple pieces of information overlap on the same symbol, or the signals corresponding to multiple pieces of information overlap with other channels on the same symbol. At this time, channel conflicts or signal conflicts will occur, affecting the correct transmission of information and reducing the efficiency of information transmission. If the channels or information used for the maximum allowable exposure event conflict with other channels or signals, there is currently no specific solution for how to handle the above conflicts. Summary of the Invention

[0003] Embodiments of this application provide a method for handling resource conflicts and related devices, in order to ensure the correct transmission of information and improve the efficiency of information transmission in the case of resource conflicts.

[0004] In a first aspect, embodiments of this application provide a method for handling resource conflicts, which is applied to a terminal. The method includes:

[0005] Obtain the conflict resources corresponding to the first information. The conflict resources include conflict channels and / or conflict signals. The conflict channels include a first physical channel and at least one second physical channel that conflicts with the first physical channel. The conflict signals include at least one physical signal that conflicts with the first physical channel;

[0006] Obtain the priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal respectively according to the conflict resources;

[0007] Process the first information according to the priorities to obtain second information;

[0008] Send the second information to a network device.

[0009] In a second aspect, embodiments of this application provide a method for handling resource conflicts, which is applied to a network device. The method includes:

[0010] Receive second information from a terminal, where the second information is that the terminal obtains conflict resources corresponding to the first information, the conflict resources including conflict channels and / or conflict signals, the conflict channels including a first physical channel and at least one second physical channel in conflict with the first physical channel, and the conflict signals including at least one physical signal in conflict with the first physical channel; and respectively obtain priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resources; and process the first information according to the priorities to obtain second information; and send the second information to the network device.

[0011] In a third aspect, an embodiment of the present application provides a resource conflict processing device, which is applied to a terminal. The device includes:

[0012] A detection unit, configured to obtain conflict resources corresponding to the first information, the conflict resources including conflict channels and / or conflict signals, the conflict channels including a first physical channel and at least one second physical channel in conflict with the first physical channel, and the conflict signals including at least one physical signal in conflict with the first physical channel;

[0013] An obtaining unit, configured to respectively obtain priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resources;

[0014] A processing unit, configured to process the first information according to the priorities to obtain second information;

[0015] A sending unit, configured to send the second information to a network device.

[0016] In a fourth aspect, an embodiment of the present application provides a resource conflict processing device, which is applied to a network device. The device includes:

[0017] A receiving unit, configured to receive second information from a terminal, where the second information is that the terminal obtains conflict resources corresponding to the first information, the conflict resources including conflict channels and / or conflict signals, the conflict channels including a first physical channel and at least one second physical channel in conflict with the first physical channel, and the conflict signals including at least one physical signal in conflict with the first physical channel; and respectively obtain priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resources; and process the first information according to the priorities to obtain second information; and send the second information to the network device.

[0018] Fifth aspect, an embodiment of the present application provides a terminal, including a processor, a memory, a communication interface, and one or more programs. Wherein, the one or more programs are stored in the memory and are configured to be executed by the processor. The programs include instructions for performing the steps in any of the methods in the first aspect of the embodiments of the present application.

[0019] Sixth aspect, an embodiment of the present application provides a network device, including a processor, a memory, a communication interface, and one or more programs. Wherein, the one or more programs are stored in the memory and are configured to be executed by the processor. The programs include instructions for performing the steps in any of the methods in the second aspect of the embodiments of the present application.

[0020] Seventh aspect, an embodiment of the present application provides a chip, including: a processor, configured to call and run a computer program from a memory, so that a device installed with the chip executes some or all of the steps described in any of the methods in the first aspect or the second aspect of the embodiments of the present application.

[0021] Eighth aspect, an embodiment of the present application provides a chip module, including the chip described in the seventh aspect of the embodiments of the present application.

[0022] Ninth aspect, an embodiment of the present application provides a computer-readable storage medium. Wherein, the computer-readable storage medium stores a computer program for electronic data exchange. Wherein, the computer program enables a computer to execute some or all of the steps described in any of the methods in the first aspect or the second aspect of the embodiments of the present application.

[0023] Tenth aspect, an embodiment of the present application provides a computer program. Wherein, the computer program is operable to enable a computer to execute some or all of the steps described in any of the methods in the first aspect or the second aspect of the embodiments of the present application. This computer program can be a software installation package.

[0024] It can be seen that in the embodiments of the present application, the terminal first obtains the conflicting resources corresponding to the first information. The conflicting resources include a conflicting channel and / or a conflicting signal. The conflicting channel includes a first physical channel and at least one second physical channel conflicting with the first physical channel. The conflicting signal includes at least one physical signal conflicting with the first physical channel. Then, according to the conflicting resources, the priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal are respectively obtained. Then, the first information is processed according to the priorities to obtain second information. Finally, the second information is sent to the network device. In this way, when there are resource conflicts in the information sent by the terminal, the correct sending of the information can be ensured, and the efficiency of information sending can be improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the accompanying drawings required in the description of the embodiments or the prior art. Obviously, the accompanying drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other accompanying drawings can also be obtained based on these drawings.

[0026] Figure 1a is the system architecture diagram of an example communication system provided by an embodiment of the present application;

[0027] Figure 1b is the structural schematic diagram of a terminal provided by an embodiment of the present application;

[0028] Figure 2a is the flow schematic diagram of a resource conflict handling method provided by an embodiment of the present application;

[0029] Figure 2b is the resource conflict schematic diagram provided by an embodiment of the present application;

[0030] Figure 3 is the block diagram of the functional units of a resource conflict handling device provided by an embodiment of the present application;

[0031] Figure 4 is the block diagram of the functional units of another resource conflict handling device provided by an embodiment of the present application;

[0032] Figure 5 is the block diagram of the functional units of another resource conflict handling device provided by an embodiment of the present application;

[0033] Figure 6 is the block diagram of the functional units of another resource conflict handling device provided by an embodiment of the present application. Detailed implementation manners

[0034] To enable those skilled in the art of this technology to better understand the solutions of the present application, the following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.

[0035] The terms "first", "second", etc. in the description, claims, and the above-mentioned drawings of this application are used to distinguish different objects, rather than to describe a specific order. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units is not limited to the listed steps or units, but may optionally further include steps or units not listed, or may optionally further include other steps or units inherent to these processes, methods, products, or devices.

[0036] Reference to "embodiments" herein means that a particular feature, structure, or characteristic described in connection with the embodiments can be included in at least one embodiment of the present application. The phrase appears in various places in the specification and does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0037] To better understand the technical solutions of the embodiments of this application, the technical solutions in the embodiments of this application will be described below with reference to the drawings.

[0038] The technical solutions of the embodiments of this application can be applied to, for example, Figure 1a the exemplary communication system 100 shown. The exemplary communication system 100 includes a terminal 110 and a network device 120, and the terminal 110 is communicatively connected to the network device 120.

[0039] The exemplary communication system 100 can be, for example: Global System of Mobilecommunication (GSM) system, Code Division Multiple Access (CDMA) system, Wideband Code Division Multiple Access (WCDMA) system, General Packet Radio Service (GPRS), Long Term Evolution (LTE) system, Advanced long term evolution (LTE-A) system, New Radio (NR) system, an evolved system of the NR system, LTE-based access to unlicensed spectrum (LTE-U) system, NR-based access to unlicensed spectrum (NR-U) system, Universal Mobile Telecommunication System (UMTS), next-generation communication system, or other communication systems, etc.

[0040] Generally speaking, traditional communication systems support a limited number of connections and are easy to implement. However, with the development of communication technologies, mobile communication systems will not only support traditional communication, but also support, for example, Device to Device (D2D) communication, Machine to Machine (M2M) communication, Machine Type Communication (MTC), and Vehicle to Vehicle (V2V) communication, etc. The embodiments of the present application can also be applied to these communication systems. Optionally, the communication system in the embodiments of the present application can be applied to a Carrier Aggregation (CA) scenario, can also be applied to a Dual Connectivity (DC) scenario, and can also be applied to a Standalone (SA) networking scenario.

[0041] The embodiments of the present application do not limit the spectrum to be applied. For example, the embodiments of the present application can be applied to licensed spectrum or can also be applied to unlicensed spectrum.

[0042] The terminal 110 in the embodiments of the present application may refer to a user equipment, an access terminal, a user unit, a user station, a mobile station, a mobile device, a remote station, a remote terminal, a mobile device, a user terminal, a terminal, a wireless communication device, a user agent, or a user device. The terminal may also be a cellular phone, a cordless phone, a session initiation protocol (SIP) phone, a wireless local loop (WLL) station, a personal digital assistant (PDA), a handheld device with wireless communication capabilities, a computing device, or other processing devices connected to a wireless modem, a relay device, a vehicle-mounted device, a wearable device, a terminal in a future 5G network, or a terminal in a future evolved public land mobile network (PLMN). The embodiments of the present application are not limited thereto. As Figure 1b shown, the terminal 110 in the terminal of the embodiments of the present application may include one or more of the following components: a processor 1101, a memory 1201, and an input / output device 1301. The processor 1101 is communicatively connected to the memory 1201 and the input / output device 1301, respectively.

[0043] The network device 120 in the embodiments of the present application may be a device for communicating with the terminal. The network device may be an evolved NodeB (eNB or eNodeB) in an LTE system, or a radio controller in a cloud radio access network (CRAN) scenario. Alternatively, the network device may be a relay device, an access point, a vehicle-mounted device, a wearable device, a network device in a future 5G network, or a network device in a future evolved PLMN network. It may also be one or a group (including multiple antenna panels) of antenna panels of a base station in a 5G system, or a network node constituting a gNB or a transmission point, such as a baseband unit (BBU) or a distributed unit (DU). The embodiments of the present application are not limited thereto.

[0044] In some deployments, the gNB may include a centralized unit (CU) and a DU. The gNB may also include an active antenna unit (AAU). The CU implements some functions of the gNB, and the DU implements some functions of the gNB. For example, the CU is responsible for processing non-real-time protocols and services, and implementing the functions of the radio resource control (RRC) and packet data convergence protocol (PDCP) layers. The DU is responsible for processing physical layer protocols and real-time services, and implementing the functions of the radio link control (RLC), media access control (MAC), and physical (PHY) layers. The AAU implements some physical layer processing functions, radio frequency processing, and related functions of the active antenna. Since the information of the RRC layer will ultimately become the information of the PHY layer, or is transformed from the information of the PHY layer, therefore, in this architecture, high-layer signaling, such as RRC layer signaling, can also be considered to be sent by the DU, or sent by the DU + AAU. It can be understood that the network device may be a device including one or more of the CU node, DU node, and AAU node. In addition, the CU may be classified as a network device in the radio access network (RAN), or the CU may be classified as a network device in the core network (CN), and this application does not make any limitations in this regard.

[0045] In an embodiment of the present application, the terminal 110 or the network device 120 includes a hardware layer, an operating system layer running on the hardware layer, and an application layer running on the operating system layer. The hardware layer includes hardware such as a central processing unit (CPU), a memory management unit (MMU), and a memory (also referred to as main memory). The operating system can be any one or more computer operating systems that implement service processing through processes. For example, the Linux operating system, the Unix operating system, the Android operating system, the iOS operating system, or the Windows operating system, etc. The application layer includes applications such as a browser, an address book, a word processing software, an instant messaging software, etc. Moreover, the embodiment of the present application does not particularly limit the specific structure of the execution subject of the method provided by the embodiment of the present application. As long as it can communicate according to the method provided by the embodiment of the present application by running a program that records the code of the method provided by the embodiment of the present application. For example, the execution subject of the method provided by the embodiment of the present application can be a terminal, or a functional module in the terminal that can call and execute the program.

[0046] The definitions or explanations of the concepts and terms involved in the present application are as follows.

[0047] The physical uplink control channel PUCCH is a physical channel in the uplink of the NR system, which carries uplink control information. The user equipment uses the PUCCH to transmit information, including Hybrid automatic repeat request acknowledgement (HARQ-ACK), scheduling request (SR), etc.

[0048] The Maximum Permissible Exposure (MPE) is the exposure limit imposed by the Federal Communications Commission (FCC) on radio frequency (RF) radiation from wireless devices. For frequency bands below 6 GHz, this is designated as the Specific Absorption Rate (SAR), and for frequency bands above 6 GHz, it is designated as the Maximum Permissible Exposure (MPE). It can be understood that higher frequencies tend to interact with the skin surface, while lower frequencies tend to be absorbed in the volume, so the MPE can represent the power per unit area. An MPE event can be that due to the constraint of the MPE, the signal carried by one or more transmission beams of the User Equipment (UE) or the uplink beam corresponding to one or more panels needs to reduce the transmission power; it can also be that due to the constraint of the MPE, the UE recommends one or more transmission beams or the uplink beam corresponding to one or more panels for carrying the uplink signal; it can also be that due to the constraint of the MPE, the UE explicitly or implicitly notifies the network that one or more transmission beams or the uplink beam corresponding to one or more panels are no longer applicable to uplink transmission. It should be noted that the beam can be characterized by a reference signal.

[0049] Beam Failure Recovery (BFR). In some high-frequency communication systems (such as 5G communication systems), due to the short wavelength of wireless signals, signal propagation is easily blocked, etc., resulting in signal propagation interruption. Therefore, a BFR mechanism is adopted in some communication systems.

[0050] Currently, when the terminal sends information, if at least two resources correspond to the same symbol during transmission, channel conflict or signal conflict will occur at this time. If the channel or information for the Maximum Permissible Exposure event conflicts with other channels or signals, there is currently no specific solution to handle the above conflicts. This not only affects the correct transmission of information but also reduces the efficiency of information transmission.

[0051] In view of the above problems, the embodiments of the present application propose a resource conflict resolution method and related devices, which will be described in detail below with reference to the drawings.

[0052] Please refer to Figure 2a , Figure 2a which is a schematic flowchart of a resource conflict handling method provided by the embodiments of the present application. As shown in the figure, this method is applied to a terminal and includes:

[0053] Step 201, the terminal obtains the conflicting resources corresponding to the first information.

[0054] Among them, the conflicting resources include conflicting channels and / or conflicting signals. The conflicting channels include a first physical channel and at least one second physical channel that conflicts with the first physical channel. The conflicting signals include at least one physical signal that conflicts with the first physical channel. That is to say, the first information includes one or more sub-information, and these sub-information can correspond to multiple channels, each channel carrying at least one sub-information. At the same time, these sub-information can also correspond to a signal to be sent. Please refer to Figure 2b , Figure 2b Figure 2b is a schematic diagram of resource conflict provided by an embodiment of the present application. As shown in the figure, it can be seen that when channels A and B are transmitting, there is an overlap at symbol 6. Then it can be determined that channels A and B are conflicting channels.

[0055] Similarly, in the first information, there is a first physical channel. When there is an overlap of symbols when other physical channels, that is, at least one second physical channel, and the first physical channel are transmitting, then the conflicting resource is a conflicting channel, and this conflicting channel includes the first physical channel and at least one second physical channel; when there is an overlap of symbols when a physical signal and the first physical channel are transmitting, then the conflicting resource is a conflicting signal, and this conflicting signal includes the physical signal that conflicts with the first physical channel; when other physical channels, that is, at least one second physical channel and a physical signal, both have an overlap of symbols with the first physical channel when transmitting, then the conflicting resource includes both a conflicting channel and a conflicting signal. Of course, at least one second physical channel and this physical signal can overlap with the first physical channel on the same symbol or on different symbols.

[0056] Step 202, the terminal respectively obtains the priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflicting resources.

[0057] Among them, when the conflicting resources only include conflicting channels, the priorities corresponding to the first physical channel and the at least one second physical channel are obtained; when the conflicting resources only include conflicting signals, the priorities corresponding to the first physical channel and the at least one physical signal are obtained; when the conflicting resources include both conflicting channels and conflicting signals, the priorities of the first physical channel, the at least one second physical channel, and the at least one physical signal are obtained.

[0058] Step 203, the terminal processes the first information according to the priorities to obtain second information.

[0059] Among them, the terminal processes the first information in a manner of discarding and / or multiplexing and / or reducing power according to the obtained priorities of the channels and / or signals to obtain second information that can be sent to the network device.

[0060] Step 204, send the second information to the network device

[0061] Step 205, the network device receives the second information from the terminal.

[0062] It can be seen that in this example, the terminal first obtains the conflicting resources corresponding to the first information, where the conflicting resources include conflicting channels and / or conflicting signals. The conflicting channels include a first physical channel and at least one second physical channel conflicting with the first physical channel, and the conflicting signals include at least one physical signal conflicting with the first physical channel. Then, the terminal respectively obtains the priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflicting resources, and then processes the first information according to the priorities to obtain the second information. Finally, the terminal sends the second information to the network device. This can ensure the correct sending of information and improve the efficiency of information sending in the case of resource conflicts in the information sent by the terminal.

[0063] In a possible example, the processing of the first information according to the priorities includes: discarding the information carried by the physical channels with priorities lower than a first preset priority and / or the physical signals with priorities lower than the first preset priority in the conflicting resources.

[0064] Wherein, when the conflicting resources only include conflicting channels, discard some or all of the information carried by the physical channels with priorities lower than the first preset priority in the conflicting channels.

[0065] When the conflicting resources only include conflicting signals, if there are signals with priorities lower than the first preset priority among the at least one signal and the priority of the first physical channel is also lower than the first preset priority, then discard the information carried by the first physical channel and / or some or all of the signals with priorities lower than the first preset priority; if there are signals with priorities lower than the first preset priority among the at least one signal while the priority of the first physical channel is not lower than the first preset priority, then discard some or all of the signals with priorities lower than the first preset priority; if the priorities of all the signals among the at least one signal are not lower than the first preset priority while the priority of the first physical channel is lower than the first preset priority, then discard the information carried by the first physical channel.

[0066] When the conflicting resources include both conflicting channels and conflicting signals, discard some or all of the information carried by the physical channels with priorities lower than the first preset priority in the conflicting channels, and / or discard some or all of the signals with priorities lower than the first preset priority in the conflicting signals.

[0067] In a specific implementation, the first preset priority may be a preset priority level, or a priority level agreed upon by a protocol, or determined according to the priorities of physical channels and / or physical signals in a conflict channel and / or conflict signal. For example, the first preset priority may be the priority corresponding to the physical channel or physical signal with the lowest priority in the conflict resources, or the first preset priority may be the priority corresponding to the physical channel or physical signal with the highest priority in the conflict resources, or the first preset priority may be the priority corresponding to the physical channel or physical signal with a relatively low priority in the conflict resources, or the first preset priority may be the priority corresponding to the physical channel or physical signal with a relatively high priority in the conflict resources. Among them, the relatively low or relatively high can be determined by comparing with the average value or median value of the corresponding priorities in the conflict resources, etc.

[0068] It can be seen that in this example, discarding the physical channels and / or physical signals in the conflict resources according to the obtained priority can ensure the correct transmission of information and improve the efficiency of information transmission.

[0069] In a possible example, the processing of the first information according to the priority includes: multiplexing the information carried by the physical channels in the conflict channel with a priority lower than the second preset priority to the physical channels in the conflict channel with a priority not lower than the third preset priority.

[0070] Among them, the second preset priority and the third preset priority may be a preset priority level, or determined according to the priorities of physical channels and / or physical signals in a conflict channel and / or conflict signal. For example, the second preset priority may be the priority corresponding to the physical channel with the lowest priority in the conflict channel, or the second preset priority may be the priority corresponding to the physical channel with the highest priority in the conflict channel; the second preset priority may be the priority corresponding to the physical channel with a relatively low priority in the conflict channel, or the second preset priority may be the priority corresponding to the physical channel with a relatively high priority in the conflict channel; the third preset priority may be the priority corresponding to the physical channel with the highest priority in the conflict channel, or the third preset priority may be the priority corresponding to the physical channel with a relatively high priority in the conflict channel. Among them, the relatively low or relatively high can be determined by comparing with the average value or median value of the corresponding priorities in the conflict resources, etc. The second preset priority and the third preset priority may be the same level, that is to say, physical channels with the same priority can also be multiplexed with each other.

[0071] It can be seen that in this example, multiplexing the channels in the conflict channel according to the obtained priority can ensure the correct transmission of information and improve the efficiency of information transmission.

[0072] In a possible example, processing the first information according to the priority includes: adjusting the transmission power of a physical channel and / or a physical signal in the conflicting resources whose priority is lower than a fourth preset priority.

[0073] Wherein, when the conflicting resources only include conflicting channels, adjust the transmission power of some or all of the physical channels in the conflicting channels whose priority is lower than the fourth preset priority.

[0074] When the conflicting resources only include conflicting signals, if there is a signal in the at least one signal whose priority is lower than the fourth preset priority, and the priority of the first physical channel is also lower than the fourth preset priority, then adjust the transmission power of the first physical channel and / or some or all of the signals in the signals whose priority is lower than the fourth preset priority; if there is a signal in the at least one signal whose priority is lower than the fourth preset priority, and the priority of the first physical channel is not lower than the fourth preset priority, then adjust the transmission power of some or all of the signals in the signals whose priority is lower than the fourth preset priority; if the priorities of all the signals in the at least one signal are not lower than the fourth preset priority, and the priority of the first physical channel is lower than the fourth preset priority, then adjust the transmission power of the first physical channel.

[0075] When the conflicting resources include both conflicting channels and conflicting signals, adjust the transmission power of some or all of the physical channels in the conflicting channels whose priority is lower than the fourth preset priority, and / or adjust the transmission power of some or all of the signals in the signals whose priority is lower than the fourth preset priority in the conflicting signals.

[0076] In a specific implementation, the fourth preset priority may be a pre-determined priority level, or may be determined according to the priorities of the physical channels and / or physical signals in the conflicting channels and / or conflicting signals. For example, the fourth preset priority may be the priority corresponding to the physical channel or physical signal with the lowest priority in the conflicting resources, or the fourth preset priority may be the priority corresponding to the physical channel or physical signal with the highest priority in the conflicting resources. The fourth preset priority may be the priority corresponding to the physical channel or physical signal with a relatively low priority in the conflicting resources, or the fourth preset priority may be the priority corresponding to the physical channel or physical signal with a relatively high priority in the conflicting resources. Among them, the relatively low or high priority may be determined by comparing with the average value or median value of the corresponding priorities in the conflicting resources.

[0077] It can be seen that in this example, adjusting the transmission power of the channels and / or signals in the conflicting resources according to the obtained priority can ensure the correct transmission of information and improve the efficiency of information transmission.

[0078] In a possible example, discarding the information carried by the physical channels with priorities lower than the first preset priority and / or the physical signals with priorities lower than the first preset priority among the conflicting resources includes: discarding the information carried by the first physical channel or discarding the information carried by the at least one second physical channel or discarding the at least one physical signal.

[0079] Among them, when the conflicting resources only include conflicting channels, the information carried by the first physical channel or the information carried by the at least one second physical channel can be discarded; when the conflicting resources only include conflicting signals, the information carried by the first physical channel or the information carried by the at least one physical signal can be discarded; when the conflicting resources include both conflicting channels and conflicting signals, the information carried by the first physical channel or the information carried by the at least one second physical channel and / or the at least one physical signal can be discarded.

[0080] It can be seen that in this example, only discarding the information carried by the first physical channel or the information carried by the second physical channel or the physical signal can ensure the correct transmission of information and improve the efficiency of information transmission.

[0081] In a possible example, multiplexing the information carried by the physical channels with priorities lower than the second preset priority in the conflicting channels to the physical channels with priorities not lower than the third preset priority in the conflicting channels includes: multiplexing the information carried by the first physical channel to the fourth physical channel; or multiplexing the information carried by the first physical channel and the information carried by at least one third physical channel to the fourth physical channel, where the at least one third physical channel and the fourth physical channel are both physical channels among the at least one second physical channel.

[0082] Among them, the priorities of the first physical channel and the third physical channel are both lower than the second preset priority, and the priority of the fourth physical channel is not lower than the third preset priority. When there are conflicting channels, the information carried by the first physical channel can be multiplexed to the fourth physical channel, or the information carried by the first physical channel and the information carried by at least one third physical channel can be multiplexed to the fourth physical channel. That is, when there is a first physical channel, as long as the priority of the first physical channel is lower than the second preset priority, the information carried by the first physical channel will be multiplexed to other physical channels.

[0083] It can be seen that in this example, according to the obtained priorities, multiplexing the signals carried by the first physical channel and / or the information carried by the third physical channel to other physical channels can ensure the correct transmission of information and improve the efficiency of information transmission.

[0084] In a possible example, the first physical channel is a physical uplink control channel PUCCH-MPE for a maximum allowable exposure event, and the at least one physical signal is a sounding reference signal SRS.

[0085] Among them, when the conflict resources only include conflict signals, the information carried by the first physical channel, that is, PUCCH-MPE, or the physical signal, that is, SRS, can be discarded. When the conflict resources include both conflict signals and conflict channels, since the conflict channels include the first physical channel, the information carried by the first physical channel, that is, PUCCH-MPE, or the physical signal, that is, SRS, in the conflict channels can be discarded. In a specific implementation, when the priorities of PUCCH-MPE and SRS are different, the information carried by the physical channel or physical signal with a lower priority can be selected to be discarded.

[0086] Optionally, the priority of PUCCH-MPE is higher than that of SRS.

[0087] It can be seen that in this example, when there is a conflict between PUCCH-MPE and SRS, PUCCH-MPE or SRS can be discarded, which can ensure the correct transmission of information and improve the efficiency of information transmission.

[0088] In a possible example, the first physical channel is PUCCH-MPE, and the scheduling request SR carried by the PUCCH-MPE is a positive SR, the physical uplink control channel PUCCH format corresponding to the PUCCH-MPE is format 0, and the at least one second physical channel includes a PUCCH carrying a hybrid automatic repeat request acknowledgment signal HARQ-ACK, and the PUCCH format corresponding to the PUCCH is format 1.

[0089] Among them, when the conflict channels include a PUCCH-MPE with format 0 carrying a positive SR and a PUCCH with format 1 carrying HARQ-ACK, the information carried by any one of these two physical channels can be selected to be discarded. In a specific implementation, when the priorities of these two physical channels are different, the information carried by the physical channel with a lower priority can be selected to be discarded.

[0090] Optionally, the priority of the PUCCH-MPE with format 0 carrying a positive SR is lower than that of the PUCCH with format 1 carrying HARQ-ACK.

[0091] It can be seen that in this example, when there is a channel conflict between the PUCCH-MPE with a carried SR of positive SR in format 0 and the PUCCH carrying HARQ-ACK in format 1, discarding the information carried by any one of these two physical channels can ensure the correct transmission of information and improve the efficiency of information transmission.

[0092] In a possible example, the first physical channel is a PUCCH-MPE, and the carried SR of the PUCCH-MPE is positive SR, and the PUCCH format corresponding to the PUCCH-MPE is format 0 or format 1. The at least one second physical channel includes a physical uplink control channel PUCCH-BFR for a beam failure recovery event or a link recovery process of a secondary serving cell, and the carried SR of the PUCCH-BFR is positive SR, and the PUCCH format corresponding to the PUCCH-BFR is format 0 or format 1.

[0093] Among them, when there is a conflict between the PUCCH-MPE in PUCCH format 0 carrying positive SR and the PUCCH-BFR in PUCCH format 0 carrying positive SR, the information carried by the PUCCH-MPE or the PUCCH-BFR is discarded. In a specific implementation, the information carried by the physical channel with a lower priority among these two physical channels can be discarded.

[0094] Optionally, the priority of the PUCCH-MPE in PUCCH format 0 carrying positive SR is lower than that of the PUCCH-BFR in PUCCH format 0 carrying positive SR.

[0095] When there is a conflict between the PUCCH-MPE in PUCCH format 1 carrying positive SR and the PUCCH-BFR in PUCCH format 1 carrying positive SR, the information carried by the PUCCH-MPE or the PUCCH-BFR is discarded. In a specific implementation, the information carried by the physical channel with a lower priority among these two physical channels can be discarded.

[0096] Optionally, the priority of the PUCCH-MPE in PUCCH format 1 carrying positive SR is lower than that of the PUCCH-BFR in PUCCH format 1 carrying positive SR.

[0097] When there is a conflict between PUCCH-MPE of PUCCH format 1 carrying positive SR and PUCCH-BFR of PUCCH format 0 carrying positive SR, then discard the information carried by PUCCH-MPE or PUCCH-BFR. In a specific implementation, the information carried by the physical channel with a lower priority among these two physical channels can be discarded.

[0098] Optionally, the priority of PUCCH-MPE of PUCCH format 1 carrying positive SR is lower than that of PUCCH-BFR of PUCCH format 0 carrying positive SR.

[0099] When there is a conflict between PUCCH-MPE of PUCCH format 0 carrying positive SR and PUCCH-BFR of PUCCH format 1 carrying positive SR, then discard the information carried by PUCCH-MPE or PUCCH-BFR. In a specific implementation, the information carried by the physical channel with a lower priority among these two physical channels can be discarded.

[0100] Optionally, the priority of PUCCH-MPE of PUCCH format 0 carrying positive SR is lower than that of PUCCH-BFR of PUCCH format 1 carrying positive SR.

[0101] It can be seen that in this example, when there is a conflict between PUCCH-MPE of format 0 or 1 carrying SR as positive SR and PUCCH-BFR of format 0 or 1 carrying SR as positive SR, discarding the information carried by PUCCH-MPE or PUCCH-BFR can ensure the correct transmission of information and improve the efficiency of information transmission.

[0102] In a possible example, the first physical channel is PUCCH-MPE, the at least one second physical channel includes K first PUCCHs carrying SR and a second PUCCH carrying HARQ-ACK or channel state information CSI, where K is an integer, and the PUCCH format corresponding to the second PUCCH is format 2 or format 3 or format 4. The multiplexing of the information carried by the first physical channel and the information carried by at least one third physical channel to the fourth physical channel includes: multiplexing K + 1 SRs into the second PUCCH in bits.

[0103] Among them, the third physical channel is K first PUCCHs carrying SR, and the fourth physical channel is a second PUCCH carrying HARQ-ACK or channel state information CSI. The K + 1 SRs are the SRs carried by the first PUCCH and the SR carried by the first physical channel PUCCH-MPE. Among them, the expression is expressed as rounding up, that is, obtaining the smallest integer greater than or equal to log2(K + 1).

[0104] It can be seen that in this example, multiplexing the first physical channel in the conflict channel to other physical channels can ensure the correct transmission of information and improve the efficiency of information transmission.

[0105] In a possible example, when the SR carried by the PUCCH-MPE is the positive SR, the bits are used to indicate the SR carried by the PUCCH-MPE, and the SR carried by the PUCCH-MPE is the positive SR; when the bits are all 0, the bits are used to indicate the K SRs carried by the first PUCCH, and the K SRs are negative SRs.

[0106] Among them, when the SR carried by the PUCCH-MPE is the positive SR and the SR carried by the first PUCCH is also the positive SR, the priority of the PUCCH-MPE is higher than that of the first PUCCH.

[0107] It can be seen that in this example, multiplexing the first physical channel in the conflict channel to other physical channels can ensure the correct transmission of information and improve the efficiency of information transmission.

[0108] In a possible example, the first physical channel is PUCCH-MPE, the at least one second physical channel includes a PUCCH-BFR, M third PUCCHs carrying SR, and a fourth PUCCH carrying HARQ-ACK or CSI, M is an integer, and the PUCCH format corresponding to the fourth PUCCH is format 2 or format 3 or format 4. Multiplexing the information carried by the first physical channel and the information carried by at least one third physical channel to the fourth physical channel includes: multiplexing M + 2 SRs with bits to the fourth PUCCH.

[0109] Among them, the third physical channel includes a PUCCH-BFR and M third PUCCHs carrying SRs, and the fourth physical channel is a fourth PUCCH carrying HARQ-ACK or CSI. The M + 2 SRs are respectively the M SRs carried by the third PUCCH, the SR carried by the PUCCH-BFR, and the SR carried by the PUCCH-MPE. Among them, the expression represents rounding up, that is, obtaining the smallest integer greater than or equal to log2(M + 2).

[0110] It can be seen that in this example, multiplexing the first physical channel in the conflicting channels to other physical channels can ensure the correct transmission of information and improve the efficiency of information transmission.

[0111] In a possible example, when the SR carried by the PUCCH-MPE is the positive SR, the bits are used to indicate the SR carried by the PUCCH-MPE, and the SR carried by the PUCCH-MPE is the positive SR; when the bits are all 0, the bits are used to indicate the M SRs carried by the third PUCCH and / or the SR carried by the PUCCH-BFR, and the M SRs are negative SRs.

[0112] Among them, when the SR carried by the PUCCH-MPE is the positive SR and the SR carried by the third PUCCH is also the positive SR, the priority of this PUCCH-MPE is higher than that of the third PUCCH.

[0113] It can be seen that in this example, multiplexing the first physical channel in the conflicting channels to other physical channels can ensure the correct transmission of information and improve the efficiency of information transmission.

[0114] In a possible example, when the SR carried by the PUCCH-BFR is the positive SR, the bits are used to indicate the SR carried by the PUCCH-BFR, and the SR carried by the PUCCH-BFR is the positive SR; when the bits are all 0, the bits are used to indicate the M SRs carried by the third PUCCH and / or the SR carried by the PUCCH-MPE, and the M SRs are negative SRs.

[0115] When the SR carried by PUCCH-MPE is positive SR and the SR carried by PUCCH-BFR is also positive SR, the priority of this PUCCH-MPE is lower than that of PUCCH-BFR.

[0116] It can be seen that in this embodiment, multiplexing the first physical channel in the conflicting channels to other physical channels can ensure the correct transmission of information and improve the efficiency of information transmission.

[0117] In a possible embodiment, the priority classes of the first physical channel and the at least one second physical channel are the same.

[0118] Among them, the same priority type may mean that the information carried by the first physical channel and the at least one second physical channel is related to the bandwidth data eMBB service, or the information carried by the first physical channel and the at least one second physical channel is related to the ultra-reliable and low-latency URLLC service, or the information carried by the first physical channel and the at least one second physical channel is related to the multicast and broadcast service MBS.

[0119] It can be seen that in this embodiment, when the priority classes of the physical channels and / or physical signals in the conflicting resources are the same, processing the first information according to the priority can ensure the correct transmission of information and improve the efficiency of information transmission.

[0120] The embodiment of the present application provides a resource conflict handling device, and the resource conflict handling device may be a terminal. Specifically, the resource conflict handling device is used to execute the steps performed by the terminal in the above resource conflict handling and transmission. The resource conflict handling device provided by the embodiment of the present application may include modules corresponding to the respective steps.

[0121] The embodiment of the present application can divide the function modules of the resource conflict handling device according to the above method examples. For example, each function module can be divided corresponding to each function, or two or more functions can be integrated into one processing module. The above integrated module can be implemented in the form of hardware or in the form of a software function module. The division of modules in the embodiment of the present application is illustrative, and is only a logical function division, and there may be other division methods in actual implementation.

[0122] In the case of dividing each function module corresponding to each function, Figure 3 A possible structural schematic diagram of the resource conflict handling device involved in the above embodiment is shown, as Figure 3As shown in the figure, the resource conflict handling device 3 includes a detection unit 31 configured to obtain the conflicting resources corresponding to the first information, where the conflicting resources include a conflicting channel and / or a conflicting signal. The conflicting channel includes a first physical channel and at least one second physical channel that conflicts with the first physical channel, and the conflicting signal includes at least one physical signal that conflicts with the first physical channel; an obtaining unit 32 configured to obtain the priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal respectively according to the conflicting resources; a processing unit 33 configured to process the first information according to the priorities to obtain second information; and a sending unit 34 configured to send the second information to a network device.

[0123] In a possible example, in terms of processing the first information according to the priorities, the processing unit 33 is specifically configured to: discard the information carried by the physical channels with priorities lower than a first preset priority and / or the physical signals with priorities lower than the first preset priority in the conflicting resources.

[0124] In a possible example, in terms of processing the first information according to the priorities, the processing unit 33 is specifically configured to: multiplex the information carried by the physical channels with priorities lower than a second preset priority in the conflicting channels to the physical channels with priorities not lower than a third preset priority in the conflicting channels.

[0125] In a possible example, in terms of processing the first information according to the priorities, the processing unit 33 is specifically configured to: adjust the transmission power of the physical channels and / or physical signals with priorities lower than a fourth preset priority in the conflicting resources.

[0126] In a possible example, in terms of discarding the information carried by the physical channels with priorities lower than a first preset priority and / or the physical signals with priorities lower than the first preset priority in the conflicting resources, the processing unit 33 is specifically configured to: discard the information carried by the first physical channel or discard the information carried by the at least one second physical channel or discard the at least one physical signal.

[0127] In a possible example, in terms of multiplexing the information carried by the physical channels with priorities lower than a second preset priority in the conflicting channels to the physical channels with priorities not lower than a third preset priority in the conflicting channels, the processing unit 33 is specifically configured to: multiplex the information carried by the first physical channel to a fourth physical channel; or multiplex the information carried by the first physical channel and the information carried by at least one third physical channel to the fourth physical channel, where the at least one third physical channel and the fourth physical channel are both physical channels in the at least one second physical channel.

[0128] In a possible example, the first physical channel is a Physical Uplink Control Channel for Maximum Permitted Exposure Event, PUCCH-MPE, and the at least one physical signal is a Sounding Reference Signal, SRS.

[0129] In a possible example, the first physical channel is PUCCH-MPE, and the Scheduling Request, SR, carried by the PUCCH-MPE is a positive SR. The Physical Uplink Control Channel PUCCH format corresponding to the PUCCH-MPE is format 0. The at least one second physical channel includes a PUCCH carrying a Hybrid Automatic Repeat reQuest - ACK, HARQ-ACK, and the PUCCH format corresponding to the PUCCH is format 1.

[0130] In a possible example, the first physical channel is PUCCH-MPE, and the SR carried by the PUCCH-MPE is a positive SR, and the PUCCH format corresponding to the PUCCH-MPE is format 0 or format 1. The at least one second physical channel includes a Physical Uplink Control Channel for Beam Failure Recovery Event or Link Recovery Procedure for a secondary serving cell, PUCCH-BFR, and the SR carried by the PUCCH-BFR is a positive SR, and the PUCCH format corresponding to the PUCCH-BFR is format 0 or format 1.

[0131] In a possible example, the first physical channel is PUCCH-MPE, the at least one second physical channel includes K first PUCCHs carrying SRs and a second PUCCH carrying HARQ-ACK or Channel State Information, CSI. K is an integer, and the PUCCH format corresponding to the second PUCCH is format 2 or format 3 or format 4. In terms of multiplexing the information carried by the first physical channel and the information carried by at least one third physical channel to the fourth physical channel, the processing unit 33 is specifically configured to: multiplex K + 1 SRs into the second PUCCH in bits.

[0132] In a possible example, when the SR carried by the PUCCH-MPE is the positive SR, the bits are used to indicate the SR carried by the PUCCH-MPE, and the SR carried by the PUCCH-MPE is the positive SR; when the bits are all 0, the bits are used to indicate the K SRs carried by the first PUCCH, and the K SRs are negative SRs.

[0133] In a possible example, the first physical channel is PUCCH-MPE, and the at least one second physical channel includes a PUCCH-BFR, M third PUCCHs carrying SR, and a fourth PUCCH carrying HARQ-ACK or CSI, where M is an integer, and the PUCCH format corresponding to the fourth PUCCH is format 2 or format 3 or format 4. In terms of multiplexing the information carried by the first physical channel and the information carried by at least one third physical channel onto the fourth physical channel, the processing unit 33 is specifically configured to: Multiplex M + 2 SRs in bits onto the fourth PUCCH.

[0134] In a possible example, when the SR carried by the PUCCH-MPE is the positive SR, the bits are used to indicate the SR carried by the PUCCH-MPE, and the SR carried by the PUCCH-MPE is the positive SR; when the bits are all 0, the bits are used to indicate the M SRs carried by the third PUCCH and / or the SR carried by the PUCCH-BFR, and the M SRs are negative SRs.

[0135] In a possible example, when the SR carried by the PUCCH-BFR is the positive SR, the bits are used to indicate the SR carried by the PUCCH-BFR, and the SR carried by the PUCCH-BFR is the positive SR; when the bits are all 0, the bits are used to indicate the M SRs carried by the third PUCCH and / or the SR carried by the PUCCH-MPE, and the M SRs are negative SRs.

[0136] In a possible example, the priority classes of the first physical channel and the at least one second physical channel are the same.

[0137] Among them, all relevant contents of each step involved in the above method embodiment can be cited in the function description of the corresponding functional module, and will not be repeated here. Of course, the resource conflict handling device provided in the embodiments of the present application includes but is not limited to the above modules. For example, the resource conflict handling device may further include a storage unit. The storage unit may be used to store the program code and data of the resource conflict handling device.

[0138] In the case of adopting an integrated unit, the structural schematic diagram of the resource conflict handling device provided by the embodiments of the present application is as Figure 4 shown. In Figure 4 , the resource conflict handling device 4 includes a processing module 40 and a communication module 41. The processing module 40 is used to control and manage the actions of the resource conflict handling device. For example, the steps executed by the detection unit 31, the acquisition unit 32, the processing unit 33, and the sending unit 34, and / or for executing other processes of the technologies described herein. The communication module 41 is used to support the interaction between the resource conflict handling device and other devices. As Figure 4 shown, the resource conflict handling device 4 may further include a storage module 42, and the storage module 42 is used to store the program code and data of the resource conflict handling device 4, such as storing the content saved by the above storage unit.

[0139] Among them, the processing module 40 may be a processor or a controller. For example, it may be a central processing unit (CPU), a general-purpose processor, a digital signal processor (DSP), an ASIC, an FPGA, or other programmable logic devices, transistor logic devices, hardware components, or any combination thereof. It can implement or execute various exemplary logical blocks, modules, and circuits described in connection with the disclosure of the present application. The processor may also be a combination that realizes computing functions, such as a combination including one or more microprocessors, a combination of a DSP and a microprocessor, and so on. The communication module 41 may be a transceiver, an RF circuit, or a communication interface, etc. The storage module 42 may be a memory.

[0140] Among them, all relevant contents of each scenario involved in the above method embodiments can be cited in the function descriptions of the corresponding functional modules, and will not be elaborated here. Both the above resource conflict handling device 3 and the resource conflict handling device 4 can execute the steps executed by the terminal in the resource conflict handling method as Figure 2a shown.

[0141] The embodiments of the present application provide another resource conflict handling device, and this resource conflict handling device may be a network device. Specifically, the resource conflict handling device is used to execute the steps executed by the network device in the above resource conflict handling method. The resource conflict handling device provided by the embodiments of the present application may include modules corresponding to the corresponding steps.

[0142] Embodiments of the present application can divide the resource conflict handling device into functional modules according to the above method examples. For example, each functional module can be divided corresponding to each function, or two or more functions can be integrated into one processing module. The above integrated module can be implemented in the form of hardware or in the form of a software functional module. The division of modules in the embodiments of the present application is illustrative, merely a logical function division, and there can be other division methods in actual implementation.

[0143] Embodiments of the present application provide a resource conflict handling device, and the resource conflict handling device can be a terminal. Specifically, the resource conflict handling device is used to execute the steps performed by the terminal in the above resource conflict handling and sending. The resource conflict handling device provided by the embodiments of the present application can include modules corresponding to the respective steps.

[0144] Embodiments of the present application can divide the resource conflict handling device into functional modules according to the above method examples. For example, each functional module can be divided corresponding to each function, or two or more functions can be integrated into one processing module. The above integrated module can be implemented in the form of hardware or in the form of a software functional module. The division of modules in the embodiments of the present application is illustrative, merely a logical function division, and there can be other division methods in actual implementation.

[0145] In the case of dividing each functional module corresponding to each function, Figure 5 A possible structural schematic diagram of the resource conflict handling device involved in the above embodiments is shown. As Figure 5 shown, the resource conflict handling device 5 includes a receiving unit 51, configured to receive second information from the terminal, where the second information is that the terminal obtains conflict resources corresponding to the first information, and the conflict resources include a conflict channel and / or a conflict signal. The conflict channel includes a first physical channel and at least one second physical channel in conflict with the first physical channel, and the conflict signal includes at least one physical signal in conflict with the first physical channel; and respectively obtaining priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resources; and processing the first information according to the priorities to obtain second information; and sending the second information to the network device.

[0146] Among them, all relevant contents of each step involved in the above method embodiments can be cited in the function descriptions of the corresponding functional modules, and will not be repeated here. Of course, the resource conflict handling device provided by the embodiments of the present application includes but is not limited to the above modules. For example, the resource conflict handling device may further include a storage unit. The storage unit can be used to store the program code and data of the resource conflict handling device.

[0147] In the case of adopting an integrated unit, the structural schematic diagram of the resource conflict handling device provided by the embodiments of the present application is as Figure 6 shown. In Figure 6 , the resource conflict handling device 6 includes a processing module 60 and a communication module 61. The processing module 60 is used to control and manage the actions of the resource conflict handling device. For example, it receives the steps executed by the receiving unit 51, and / or is used to execute other processes of the technologies described herein. The communication module 61 is used to support the interaction between the resource conflict handling device and other devices. As Figure 6 shown, the resource conflict handling device 6 may further include a storage module 62, and the storage module 62 is used to store the program code and data of the resource conflict handling device 6, for example, store the content saved by the above storage unit.

[0148] Among them, the processing module 60 may be a processor or a controller. For example, it may be a central processing unit (CPU), a general-purpose processor, a digital signal processor (DSP), an ASIC, an FPGA or other programmable logic devices, transistor logic devices, hardware components or any combination thereof. It can implement or execute various exemplary logic blocks, modules and circuits described in combination with the disclosure of the present application. The processor may also be a combination that implements computing functions, such as a combination of one or more microprocessors, a combination of a DSP and a microprocessor, and so on. The communication module 61 may be a transceiver, an RF circuit or a communication interface, etc. The storage module 62 may be a memory.

[0149] Among them, all relevant contents of each scenario involved in the above method embodiments can be cited in the function descriptions of the corresponding functional modules, and will not be elaborated here. Both the above resource conflict handling device 5 and the resource conflict handling device 6 can execute the steps executed by the terminal in the resource conflict handling method as Figure 2a shown.

[0150] The embodiments of the present application also provide a computer-readable storage medium. Among them, the computer-readable storage medium stores a computer program for electronic data exchange. Among them, the computer program enables a computer to execute some or all of the steps described by the network-side device in the above method embodiments.

[0151] An embodiment of the present application provides a chip, which is configured to obtain conflict resources corresponding to the first information, where the conflict resources include conflict channels and / or conflict signals, the conflict channels include a first physical channel and at least one second physical channel that conflicts with the first physical channel, and the conflict signals include at least one physical signal that conflicts with the first physical channel; and is configured to respectively obtain priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resources; and is configured to process the first information according to the priorities to obtain second information; and is configured to send the second information to a network device.

[0152] An embodiment of the present application provides a chip module, including a transceiver component and a chip, where the chip is configured to obtain conflict resources corresponding to the first information, the conflict resources include conflict channels and / or conflict signals, the conflict channels include a first physical channel and at least one second physical channel that conflicts with the first physical channel, and the conflict signals include at least one physical signal that conflicts with the first physical channel; and is configured to respectively obtain priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resources; and is configured to process the first information according to the priorities to obtain second information; and is configured to send the second information to a network device.

[0153] An embodiment of the present application provides a chip, which is configured to receive second information from a terminal, where the second information is obtained by the terminal by obtaining conflict resources corresponding to the first information, the conflict resources include conflict channels and / or conflict signals, the conflict channels include a first physical channel and at least one second physical channel that conflicts with the first physical channel, and the conflict signals include at least one physical signal that conflicts with the first physical channel; and respectively obtaining priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resources; and processing the first information according to the priorities to obtain second information; and sending the second information to the network device.

[0154] An embodiment of the present application provides a chip module, including a transceiver component and a chip. The chip is configured to receive second information from a terminal, where the second information is conflict resources obtained by the terminal corresponding to the first information, and the conflict resources include conflict channels and / or conflict signals. The conflict channels include a first physical channel and at least one second physical channel conflicting with the first physical channel, and the conflict signals include at least one physical signal conflicting with the first physical channel; and respectively obtain priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resources; and process the first information according to the priorities to obtain second information; and send the second information to the network device.

[0155] The steps of the method or algorithm described in the embodiments of the present application can be implemented in a hardware manner or in a manner of a processor executing software instructions. The software instructions can be composed of corresponding software modules, and the software modules can be stored in a random access memory (RAM), a flash memory, a read only memory (ROM), an erasable programmable ROM (EPROM), an electrically EPROM (EEPROM), a register, a hard disk, a removable hard disk, a CD-ROM, or any other form of storage medium well known in the art. An exemplary storage medium is coupled to the processor, so that the processor can read information from the storage medium and write information to the storage medium. Of course, the storage medium can also be a component of the processor. The processor and the storage medium can be located in an ASIC. In addition, the ASIC can be located in an access network device, a target network device, or a core network device. Of course, the processor and the storage medium can also exist as discrete components in the access network device, the target network device, or the core network device.

[0156] Those skilled in the art should be able to realize that in one or more of the above examples, the functions described in the embodiments of the present application can be implemented in whole or in part by software, hardware, firmware, or any combination thereof. When implemented using software, it can be implemented in whole or in part in the form of a computer program product. The computer program product includes one or more computer instructions. When the computer program instructions are loaded and executed on a computer, the processes or functions described in the embodiments of the present application are generated in whole or in part. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable devices. The computer instructions can be stored in a computer-readable storage medium or transmitted from one computer-readable storage medium to another. For example, the computer instructions can be transmitted from a website, computer, server, or data center to another website, computer, server, or data center in a wired manner (such as coaxial cable, optical fiber, Digital Subscriber Line (DSL)) or wirelessly (such as infrared, wireless, microwave, etc.). The computer-readable storage medium can be any available medium that can be accessed by a computer or a data storage device such as a server or data center that includes one or more integrated available media. The available medium can be a magnetic medium (such as a floppy disk, hard disk, magnetic tape), an optical medium (such as a Digital Video Disc (DVD)), or a semiconductor medium (such as a Solid State Disk (SSD)), etc.

[0157] The specific embodiments described above further elaborate on the objectives, technical solutions, and beneficial effects of the embodiments of the present application. It should be understood that the above are only specific embodiments of the embodiments of the present application and are not used to limit the protection scope of the embodiments of the present application. Any modifications, equivalent replacements, improvements, etc. made on the basis of the technical solutions of the embodiments of the present application should be included in the protection scope of the embodiments of the present application.

Claims

1. A method for handling resource conflicts, characterized in that, Applied to a terminal, the method includes: Obtain conflict resources corresponding to first information, where the conflict resources include a conflict channel and / or a conflict signal. The conflict channel includes a first physical channel and at least one second physical channel that conflicts with the first physical channel, and the conflict signal includes at least one physical signal that conflicts with the first physical channel; Respectively obtain priorities corresponding to the first physical channel and the at least one second physical channel and / or the at least one physical signal according to the conflict resources; Process the first information according to the priorities to obtain second information; Send the second information to a network device; Wherein, the processing the first information according to the priorities includes: discarding the information carried by the first physical channel or discarding the information carried by the at least one second physical channel or discarding the at least one physical signal. The first physical channel is a physical uplink control channel PUCCH-MPE for a maximum allowed exposure event, and the at least one physical signal is a sounding reference signal SRS.

2. The method according to claim 1, wherein The processing the first information according to the priorities includes: Multiplex the information carried by the physical channels with priorities lower than a second preset priority in the conflict channel to the physical channels with priorities not lower than a third preset priority in the conflict channel.

3. The method according to claim 1, characterized in that, The processing the first information according to the priorities includes: Adjust the transmission power of the physical channels and / or physical signals with priorities lower than a fourth preset priority in the conflict resources.

4. The method according to claim 2, wherein The multiplexing the information carried by the physical channels with priorities lower than a second preset priority in the conflict channel to the physical channels with priorities not lower than a third preset priority in the conflict channel includes: Multiplex the information carried by the first physical channel to a fourth physical channel; Or multiplex the information carried by the first physical channel and the information carried by at least one third physical channel to the fourth physical channel. The at least one third physical channel and the fourth physical channel are both physical channels in the at least one second physical channel.

5. The method according to claim 1, wherein The first physical channel is PUCCH-MPE, and the scheduling request SR carried by the PUCCH-MPE is a positive SR. The physical uplink control channel PUCCH format corresponding to the PUCCH-MPE is format 0. The at least one second physical channel includes a PUCCH carrying a hybrid automatic repeat request acknowledgment signal HARQ-ACK, and the PUCCH format corresponding to the PUCCH is format 1.

6. The method according to claim 1, characterized in that, The first physical channel is PUCCH-MPE, and the SR carried by the PUCCH-MPE is positive SR, and the PUCCH format corresponding to the PUCCH-MPE is format 0 or format 1. The at least one second physical channel includes a physical uplink control channel PUCCH-BFR for a beam failure recovery event or a link recovery process of a secondary serving cell, and the SR carried by the PUCCH-BFR is positive SR, and the PUCCH format corresponding to the PUCCH-BFR is format 0 or format 1.

7. The method according to claim 4, wherein The first physical channel is PUCCH-MPE, the at least one second physical channel includes K first PUCCHs carrying SR and a second PUCCH carrying HARQ-ACK or channel state information CSI, where K is an integer, and the PUCCH format corresponding to the second PUCCH is format 2 or format 3 or format 4. The multiplexing the information carried by the first physical channel and the information carried by at least one third physical channel to the fourth physical channel includes: Multiplex K + 1 SRs with bits to the second PUCCH.

8. The method according to claim 7, wherein: When the SR carried by the PUCCH-MPE is a positive SR, the bits are used to indicate the SR carried by the PUCCH-MPE, and the SR carried by the PUCCH-MPE is the positive SR; In the case where all bits are 0, the bits are used to indicate K SRs carried by the first PUCCH, and the K SRs are negative SRs.

9. The method according to claim 4, wherein The first physical channel is PUCCH-MPE, the at least one second physical channel includes a PUCCH-BFR, M third PUCCHs carrying SR, and a fourth PUCCH carrying HARQ-ACK or CSI, where M is an integer, and the PUCCH format corresponding to the fourth PUCCH is format 2 or format 3 or format 4. The multiplexing the information carried by the first physical channel and the information carried by at least one third physical channel to the fourth physical channel includes: Multiplex M + 2 SRs in bits to the fourth PUCCH.

10. The method according to claim 9, wherein: When the SR carried by the PUCCH-MPE is a positive SR, the bits are used to indicate the SR carried by the PUCCH-MPE, and the SR carried by the PUCCH-MPE is the positive SR; In the case where the bits are all 0, the bits are used to indicate M SRs carried by the third PUCCH and / or SRs carried by the PUCCH-BFR, and the M SRs are negative SRs.

11. The method according to claim 9, wherein: When the SR carried by the PUCCH-BFR is a positive SR, the bits are used to indicate the SR carried by the PUCCH-BFR, and the SR carried by the PUCCH-BFR is a positive SR; In the case where the bits are all 0, the bits are used to indicate M SRs carried by the third PUCCH and / or SRs carried by the PUCCH-MPE, and the M SRs are negative SRs.

12. The method according to any one of claims 1-11, characterized in that, The priority classes of the first physical channel and the at least one second physical channel are the same.

13. A method for handling resource conflicts, characterized in that, Applied to a network device, the method includes: Receiving second information from a terminal, where the second information is that the terminal obtains conflict resources corresponding to first information, the conflict resources include conflict channels and / or conflict signals, the conflict channels include a first physical channel and at least one second physical channel in conflict with the first physical channel, and the conflict signals include at least one physical signal in conflict with the first physical channel; and respectively obtaining priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resources; and processing the first information according to the priorities to obtain second information; and sending the second information to the network device; Among them, the processing of the first information according to the priority includes: discarding the information carried by the first physical channel or discarding the information carried by the at least one second physical channel or discarding the at least one physical signal, where the first physical channel is a physical uplink control channel PUCCH-MPE for a maximum allowed exposure event, and the at least one physical signal is a sounding reference signal SRS.

14. A resource conflict handling device, applied to a terminal, characterized in that, The apparatus includes: a detection unit, configured to obtain a conflict resource corresponding to the first information, where the conflict resource includes a conflict channel and / or a conflict signal, the conflict channel includes a first physical channel and at least one second physical channel conflicting with the first physical channel, and the conflict signal includes at least one physical signal conflicting with the first physical channel; an acquisition unit, configured to respectively obtain priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resource; a processing unit, configured to process the first information according to the priority to obtain second information; a sending unit, configured to send the second information to a network device; Among them, in terms of processing the first information according to the priority, the processing unit is configured to: discard the information carried by the first physical channel or discard the information carried by the at least one second physical channel or discard the at least one physical signal, where the first physical channel is a physical uplink control channel PUCCH-MPE for a maximum allowed exposure event, and the at least one physical signal is a sounding reference signal SRS.

15. A resource conflict handling device, applied to a network device, characterized in that The apparatus includes: a receiving unit, configured to receive second information from a terminal, where the second information is obtained by the terminal by obtaining a conflict resource corresponding to the first information, the conflict resource includes a conflict channel and / or a conflict signal, the conflict channel includes a first physical channel and at least one second physical channel conflicting with the first physical channel, the conflict signal includes at least one physical signal conflicting with the first physical channel; and respectively obtaining priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resource; and processing the first information according to the priority to obtain second information; and sending the second information to the network device; Among them, the processing of the first information according to the priority includes: discarding the information carried by the first physical channel or discarding the information carried by the at least one second physical channel or discarding the at least one physical signal, where the first physical channel is a physical uplink control channel PUCCH-MPE for a maximum allowed exposure event, and the at least one physical signal is a sounding reference signal SRS.

16. A terminal, characterized in that, including a processor, a memory, and one or more programs, where the one or more programs are stored in the memory and are configured to be executed by the processor, and the programs include instructions for performing the steps in the method according to any one of claims 1-12.

17. A network device, characterized in that, Comprising a processor, a memory, and one or more programs, the one or more programs being stored in the memory and configured to be executed by the processor, the programs including instructions for performing the steps in the method according to claim 13.

18. A computer-readable storage medium, characterized in that, A computer program for electronic data interchange, wherein the computer program causes a computer to execute the method according to any one of claims 1-12 or claim 13.

19. A chip, applied to a terminal, characterized in that the chip is configured to obtain conflict resources corresponding to first information, the conflict resources including conflict channels and / or conflict signals, the conflict channels including a first physical channel and at least one second physical channel conflicting with the first physical channel, and the conflict signals including at least one physical signal conflicting with the first physical channel; and configured to respectively obtain priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resources; and configured to process the first information according to the priorities to obtain second information; and configured to send the second information to a network device; wherein, in terms of processing the first information according to the priorities, the chip is configured to: discard the information carried by the first physical channel or discard the information carried by the at least one second physical channel or discard the at least one physical signal, the first physical channel being a physical uplink control channel PUCCH-MPE for a maximum allowed exposure event, and the at least one physical signal being a sounding reference signal SRS.

20. A chip module is applied to a terminal, and is characterized in that, Comprising a transceiver component and a chip the chip is configured to obtain conflict resources corresponding to first information, the conflict resources including conflict channels and / or conflict signals, the conflict channels including a first physical channel and at least one second physical channel conflicting with the first physical channel, and the conflict signals including at least one physical signal conflicting with the first physical channel; and configured to respectively obtain priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resources; and configured to process the first information according to the priorities to obtain second information; and configured to send the second information to a network device; wherein, in terms of processing the first information according to the priorities, the chip is configured to: discard the information carried by the first physical channel or discard the information carried by the at least one second physical channel or discard the at least one physical signal, the first physical channel being a physical uplink control channel PUCCH-MPE for a maximum allowed exposure event, and the at least one physical signal being a sounding reference signal SRS.

21. A chip, applied to a network device, characterized in that The chip is configured to receive second information from the terminal, where the second information is the conflict resources corresponding to the first information obtained by the terminal, and the conflict resources include conflict channels and / or conflict signals. The conflict channels include a first physical channel and at least one second physical channel that conflicts with the first physical channel, and the conflict signals include at least one physical signal that conflicts with the first physical channel; and respectively obtain the priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resources; and process the first information according to the priorities to obtain second information; and send the second information to the network device; Wherein, in terms of processing the first information according to the priorities, the chip is configured to: discard the information carried by the first physical channel or discard the information carried by the at least one second physical channel or discard the at least one physical signal, where the first physical channel is the physical uplink control channel PUCCH-MPE for the maximum allowed exposure event, and the at least one physical signal is the sounding reference signal SRS.

22. A chip module is applied to a network device, and is characterized in that, It includes a transceiver component and a chip, The chip is configured to receive second information from the terminal, where the second information is the conflict resources corresponding to the first information obtained by the terminal, and the conflict resources include conflict channels and / or conflict signals. The conflict channels include a first physical channel and at least one second physical channel that conflicts with the first physical channel, and the conflict signals include at least one physical signal that conflicts with the first physical channel; and respectively obtain the priorities corresponding to the first physical channel, the at least one second physical channel, and / or the at least one physical signal according to the conflict resources; and process the first information according to the priorities to obtain second information; and send the second information to the network device; Wherein, in terms of processing the first information according to the priorities, the chip is configured to: discard the information carried by the first physical channel or discard the information carried by the at least one second physical channel or discard the at least one physical signal, where the first physical channel is the physical uplink control channel PUCCH-MPE for the maximum allowed exposure event, and the at least one physical signal is the sounding reference signal SRS.

Citation Information

Patent Citations

  • Information sending method, user terminal and computer readable storage medium

    CN111182626A