Information processing methods, devices, communication equipment and storage media

By having the UE report its operating mode information to the network device, the network device determines the UE's full-duplex mode configuration, which solves the problem of UE device capability limitations, improves frequency resource utilization, and reduces service latency.

CN115918207BActive Publication Date: 2026-04-17BEIJING XIAOMI MOBILE SOFTWARE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
BEIJING XIAOMI MOBILE SOFTWARE CO LTD
Filing Date
2021-07-06
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

User equipment (UE) in full-duplex mode is limited by device capabilities, which makes uplink and downlink isolation difficult, affecting frequency resource utilization and service latency.

Method used

The UE reports its first information about its operating mode to the network device, including at least the full-duplex mode configuration. The network device determines the UE's operating mode based on this information, including full-duplex mode or non-full-duplex mode.

Benefits of technology

It improves the frequency resource utilization of the UE, reduces service latency, and reduces uplink and downlink transmission interference through precise configuration.

✦ Generated by Eureka AI based on patent content.

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Abstract

This disclosure provides an information processing method, apparatus, communication device, and storage medium. The information processing method is executed by a UE and includes: sending first information of the UE, wherein the first information is at least used for configuring the operating mode of the UE by a network device, wherein the operating mode includes at least a full-duplex mode. Embodiments of this disclosure enable the network device to determine the appropriate operating mode for the UE based on the first information.
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Description

Technical Field

[0001] This disclosure relates to, but is not limited to, the field of communication technology, and in particular to an information processing method, apparatus, communication device, and storage medium. Background Technology

[0002] In related technologies, such as 4G and 5G mobile communication systems, there are two main duplex modes: Time Division Duplexing (TDD) and Frequency Division Duplexing (FDD). The duplex mode is related to the specific frequency band and radio frequency implementation. Existing standards specify the duplex mode for a given frequency band, i.e., TDD or FDD. The primary purpose of using these two duplex modes is to isolate uplink and downlink interference. However, with the continuous improvement of device capabilities and baseband processing algorithms, full-duplex mode has become a hot research topic. Currently, full-duplex mode has been partially applied on the network equipment side and is becoming the evolution direction of 5G New Radio (NR). However, due to limitations in device capabilities, uplink and downlink isolation becomes a bottleneck for User Equipment (UE); but under certain conditions, full-duplex mode can also be applied to UE. Summary of the Invention

[0003] This disclosure provides an information processing method, apparatus, communication device, and storage medium.

[0004] According to a first aspect of the present disclosure, an information processing method is provided, executed by a UE, comprising:

[0005] Send first information about the UE, wherein the first information is used at least for the network device to configure the UE's operating mode, wherein the operating mode includes at least: full-duplex mode.

[0006] According to a second aspect of the present disclosure, an information processing method is provided, executed by a network device, comprising:

[0007] Receive the first information from the UE;

[0008] Based on the first information, the configuration of the UE's working mode is determined; wherein the working mode includes at least: full-duplex mode.

[0009] According to a third aspect of the present disclosure, an information processing apparatus is provided, applied to a UE, comprising:

[0010] The first transmitting module is configured to transmit first information of the UE, wherein the first information is used at least for the network device to configure the working mode of the UE, wherein the working mode includes at least: full-duplex mode.

[0011] According to a fourth aspect of the present disclosure, an information processing apparatus is provided, applied to a network device, comprising:

[0012] The second receiving module is configured to receive first information from the user equipment (UE).

[0013] The second determining module is configured to determine the configuration of the UE's operating mode based on the first information; wherein the operating mode includes at least: full-duplex mode.

[0014] According to a fifth aspect of the present disclosure, a communication device is provided, comprising:

[0015] processor;

[0016] Memory used to store instructions executable by the storage processor;

[0017] The processor is configured to implement the information processing method of any embodiment of this disclosure when running executable instructions.

[0018] According to a sixth aspect of the present disclosure, a computer storage medium is provided, wherein the computer storage medium stores a computer executable program, and when the executable program is executed by a processor, it implements the information processing method of any embodiment of the present disclosure.

[0019] The technical solutions provided in this disclosure may have the following beneficial effects:

[0020] This embodiment of the disclosure transmits first information about the UE via the UE. This first information is at least used by the network device to configure the UE's operating mode, and the operating mode includes at least full-duplex mode. Thus, this embodiment of the disclosure allows the UE to report its first duplex mode information to the network device, enabling the network device to determine the appropriate operating mode for the UE based on this first information; for example, it allows the network device to determine whether the UE is operating in full-duplex mode. Furthermore, if it is determined that the UE is operating in full-duplex mode, it can also improve frequency resource utilization and reduce service latency.

[0021] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and are not intended to limit the embodiments of this disclosure. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the structure of a wireless communication system.

[0023] Figure 2 This is a schematic diagram illustrating a time-division duplex according to an exemplary embodiment.

[0024] Figure 3 This is a schematic diagram illustrating a frequency division duplex according to an exemplary embodiment.

[0025] Figure 4 This is a schematic diagram illustrating a full-duplex mode according to an exemplary embodiment.

[0026] Figure 5 This is a schematic diagram illustrating an information processing method according to an exemplary embodiment.

[0027] Figure 6 This is a schematic diagram illustrating an information processing method according to an exemplary embodiment.

[0028] Figure 7 This is a schematic diagram illustrating an information processing method according to an exemplary embodiment.

[0029] Figure 8 This is a schematic diagram illustrating an information processing method according to an exemplary embodiment.

[0030] Figure 9 This is a schematic diagram illustrating an information processing method according to an exemplary embodiment.

[0031] Figure 10 This is a schematic diagram illustrating an information processing method according to an exemplary embodiment.

[0032] Figure 11 This is a schematic diagram illustrating an information processing method according to an exemplary embodiment.

[0033] Figure 12 This is a block diagram illustrating an information processing apparatus according to an exemplary embodiment.

[0034] Figure 13 This is a block diagram illustrating an information processing apparatus according to an exemplary embodiment.

[0035] Figure 14 This is a block diagram illustrating an information processing apparatus according to an exemplary embodiment.

[0036] Figure 15 This is a block diagram illustrating a UE according to an exemplary embodiment.

[0037] Figure 16 This is a block diagram illustrating a base station according to an exemplary embodiment. Detailed Implementation

[0038] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numerals in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with those of this disclosure. Rather, they are merely examples of apparatuses and methods consistent with some aspects of the embodiments of this disclosure as detailed in the appended claims.

[0039] The terminology used in this disclosure is for the purpose of describing particular embodiments only and is not intended to be limiting of the present disclosure. The singular forms “a” and “the” as used in this disclosure and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise. It should also be understood that the term “and / or” as used herein refers to and includes any and all possible combinations of one or more of the associated listed items.

[0040] It should be understood that although the terms first, second, third, etc., may be used to describe various information in embodiments of this disclosure, such information should not be limited to these terms. These terms are only used to distinguish information of the same type from one another. For example, first information may also be referred to as second information without departing from the scope of embodiments of this disclosure, and similarly, second information may also be referred to as first information. Depending on the context, the word "if" as used herein may be interpreted as "when," "when," or "in response to a determination."

[0041] Please refer to Figure 1 This illustration shows a schematic diagram of the structure of a wireless communication system provided in an embodiment of this disclosure. Figure 1 As shown, the wireless communication system is a communication system based on cellular mobile communication technology. The wireless communication system may include: several user equipment 110 and several base stations 120.

[0042] User equipment 110 can be a device that provides voice and / or data connectivity to a user. User equipment 110 can communicate with one or more core networks via a Radio Access Network (RAN). User equipment 110 can be an Internet of Things (IoT) user equipment, such as sensor devices, mobile phones (or "cellular" phones), and computers with IoT user equipment capabilities. For example, it can be a fixed, portable, pocket-sized, handheld, computer-embedded, or vehicle-mounted device. Examples include a station (STA), subscriber unit, subscriber station, mobile station, mobile station, remote station, access point, remote terminal, access terminal, user terminal, user agent, user device, or user equipment. Alternatively, user equipment 110 can also be a device from an unmanned aerial vehicle (UAV). Alternatively, user equipment 110 can also be a vehicle-mounted device, such as a vehicle computer with wireless communication capabilities, or a wireless user equipment connected to an external vehicle computer. Alternatively, user equipment 110 can also be a roadside device, such as a street light, traffic light, or other roadside device with wireless communication capabilities.

[0043] Base station 120 can be a network-side device in a wireless communication system. This wireless communication system can be a 4G system (also known as Long Term Evolution, LTE); or it can be a 5G system (also known as a New Radio, 5G NR, or 5G NR system). Alternatively, it can be the next generation after 5G. In this case, the access network in the 5G system can be called a New Generation-Radio Access Network (NG-RAN).

[0044] The base station 120 can be an evolved NB (eNB) used in a 4G system. Alternatively, the base station 120 can also be a gNB (gNB) using a centralized-distributed architecture in a 5G system. When the base station 120 adopts a centralized-distributed architecture, it typically includes a central unit (CU) and at least two distributed units (DUs). The central unit is equipped with a protocol stack of the Packet Data Convergence Protocol (PDCP) layer, the Radio Link Control (RLC) layer, and the Medium Access Control (MAC) layer; the distributed units are equipped with a physical (PHY) layer protocol stack. This disclosure does not limit the specific implementation of the base station 120.

[0045] Base station 120 and user equipment 110 can establish a wireless connection via a wireless air interface. In different implementations, the wireless air interface is a wireless air interface based on the fourth-generation mobile communication network technology (4G) standard; or, the wireless air interface is a wireless air interface based on the fifth-generation mobile communication network technology (5G) standard, such as a new air interface; or, the wireless air interface can also be a wireless air interface based on a next-generation mobile communication network technology standard based on 5G.

[0046] In some embodiments, user equipment 110 can also establish E2E (End to End) connections. Examples include vehicle-to-vehicle (V2V) communication, vehicle-to-infrastructure (V2I) communication, and vehicle-to-pedestrian (V2P) communication in vehicle-to-everything (V2X) communication.

[0047] Here, the user equipment mentioned above can be considered as the terminal equipment in the following embodiments.

[0048] In some embodiments, the wireless communication system described above may further include a network management device 130.

[0049] Several base stations 120 are connected to network management device 130. Network management device 130 can be a core network device in a wireless communication system, such as a Mobility Management Entity (MME) in an Evolved Packet Core (EPC). Alternatively, it can be other core network devices, such as a Serving Gateway (SGW), a Public Data Network Gateway (PGW), a Policy and Charging Rules Function (PCRF), or a Home Subscriber Server (HSS). The implementation of network management device 130 is not limited in this embodiment.

[0050] To better understand the technical solutions described in any embodiment of this disclosure, firstly, the duplex mode in the related art will be partially explained:

[0051] In one embodiment, such as Figure 2 As shown, a time-division duplex (TDD) duplex mode is provided. This TDD mode allows only uplink (UL) or downlink (DL) transmission within a time slot; and the DL and UL transmissions can utilize the entire spectrum bandwidth.

[0052] In one embodiment, such as Figure 3 As shown, a frequency division duplex (FDD) duplex mode is provided. This FDD divides the spectrum bandwidth into two parts, allocating one part to the UL and one part to the DL; the UL and DL can transmit simultaneously, but cannot use the entire spectrum bandwidth.

[0053] In one embodiment, such as Figure 4 As shown, a full-duplex duplex mode is provided. Full-duplex means that both DL and UL transmissions can be performed simultaneously, and both DL and UL transmissions can utilize the entire spectrum bandwidth.

[0054] like Figure 5 As shown, this disclosure provides an information processing method, executed by a UE, including:

[0055] Step S51: Send the first information of the UE, wherein the first information is used at least for the network device to configure the working mode of the UE, wherein the working mode includes at least: full-duplex mode.

[0056] In one embodiment, the UE can be a variety of mobile terminals or fixed terminals. For example, the UE can be, but is not limited to, a mobile phone, a computer, a server, a wearable device, a game control platform, or a multimedia device.

[0057] An information processing method provided in this disclosure, executed by a UE, may include: sending first information of the UE to a network device, wherein the first information is at least used for the network device to configure the working mode of the UE, wherein the working mode includes at least: full-duplex mode.

[0058] In one embodiment, the network device may be an access network device or a core network device.

[0059] In one embodiment, the access network device may be, but is not limited to, a base station. The base station can be an interface device for the UE to access the Internet. The base station can be of various types; for example, it can be a 3G base station, a 4G base station, a 5G base station, or other evolved base stations.

[0060] In one embodiment, the core network device may be, but is not limited to, various physical or logical entities of the core network; for example, the core network device may be a mobility management entity or a service gateway, etc.

[0061] Taking a base station as an example, when a UE sends information to the core network equipment, it can mean that the UE sends the information to the base station, and then the base station forwards the information to the core network equipment. When a UE receives information sent by the core network equipment, it can mean that the core network equipment first sends the information to the base station, and then the UE receives the information forwarded by the base station from the core network equipment.

[0062] In one embodiment, the UE's operating mode includes, but is not limited to, one of the following: full-duplex mode and non-full-duplex mode. The non-full-duplex mode here includes, but is not limited to, one of the following: time-division duplex mode, frequency-division duplex mode, and simplex mode.

[0063] In one embodiment, the first information may include information indicating whether full-duplex mode is allowed or not; or, the first information may be indication information indicating whether full-duplex mode is allowed or not. For example, the UE sends first information including information indicating that full-duplex mode is allowed to the network device; thus, the network device determines that the UE is configured to operate in full-duplex mode based on the first information. For example, the UE sends first information including information indicating that full-duplex mode is not allowed to the network device; thus, the network device determines, based on the first information, that the UE is configured to not operate in full-duplex mode or that the UE is configured to operate in non-full-duplex mode.

[0064] In this embodiment of the disclosure, the UE can send first information about the UE to the network device. This first information is at least used by the network device to configure the UE's operating mode, and the operating mode includes at least full-duplex mode. Thus, this embodiment of the disclosure allows the UE to report first information about its duplex mode to the network device, enabling the network device to determine the appropriate operating mode for the UE based on this first information; for example, it can enable the network device to determine whether the UE is operating in full-duplex mode. Furthermore, if it is determined that the UE is operating in full-duplex mode, it can also improve frequency resource utilization and reduce service latency.

[0065] In one embodiment, the first information is used to indicate the transmit power supported by the UE in the operating mode. For example, the UE sends the first information to the network device, wherein the first information is used by the network device to configure the UE's operating mode and indicate the transmit power supported by the UE in the operating mode, wherein the operating mode includes at least: full-duplex mode. Thus, in this embodiment of the disclosure, the UE can send its allowed operating modes and the corresponding transmit power to the network device; this allows the network device to further accurately determine the configuration of the UE's operating mode based on the allowed operating modes and the corresponding transmit power.

[0066] In one embodiment, the first information indicates at least one of the following: the transmit power supported by the UE when operating in full-duplex mode; and the transmit power supported by the UE when operating in non-full-duplex mode. For example, the UE sends the first information to the network device, wherein the first information is used by the network device to configure the UE's operating mode and to indicate the transmit power supported by the UE when operating in full-duplex mode and / or the transmit power supported in non-full-duplex mode.

[0067] In one embodiment, the transmit power supported by the UE in full-duplex mode may be less than or equal to a power threshold; the transmit power of the UE in non-full-duplex mode is greater than the power threshold. This power threshold may be a boundary value separating full-duplex and non-full-duplex modes. For example, this power threshold may be -35 dBm. Of course, in other examples, this power threshold may be other values. Also, in other examples, the first information may indicate the transmit power supported by other operating modes.

[0068] In one embodiment, the first information may include: transmit power or UE power information. The power information here may be transmit power. The transmit power here refers to the UE's current transmit power.

[0069] For example, the UE sends first information to the network device, wherein the first information is shown in Table 1 below:

[0070] Full-duplex mode Power information allow ≤-35dBm Not allowed >-35dBm

[0071] Table 1

[0072] As shown in Table 1, the first information can be: information indicating whether full-duplex mode is allowed and the corresponding power information, or information indicating whether full-duplex mode is not allowed and the corresponding power information. The first predetermined field of the first information carries either the information indicating whether full-duplex mode is allowed or not; the second predetermined field of the first information carries either the power information corresponding to whether full-duplex mode is allowed or not. Thus, in this embodiment, the UE can report the corresponding information regarding whether full-duplex mode is allowed and the power information for whether full-duplex mode is allowed.

[0073] For example, if the UE sends a first message to the network device allowing full-duplex mode and a power threshold less than or equal to a certain value, the network device can determine that the UE is configured to operate in full-duplex mode. If the UE sends a first message to the network device allowing full-duplex mode and a power threshold greater than a certain value, the network device can determine that the UE is configured to operate in non-full-duplex mode. If the UE sends a first message to the network device disallowing full-duplex mode and a power threshold greater than a certain value, the network device can determine that the UE is configured to operate in non-full-duplex mode.

[0074] When the UE's transmit power is less than or equal to the power threshold, after a duplexer is used between the receive and transmit links, the UE's transmit power is very small relative to its receive power. Therefore, the isolation between the receive and transmit links can minimize interference between uplink and downlink transmissions. Consequently, when the transmit power is less than or equal to the power threshold, full-duplex mode can be applied in the UE. Operating the UE in full-duplex mode can improve frequency resource utilization and reduce service latency.

[0075] When the UE's transmit power is very high, the UE's receive power is relatively low because it receives data from a relatively distant network device; for example, the transmit power might be tens of watts, while the receive power is only a few picowatts. Even with a duplexer between the transmit and receive links, duplexer leakage can cause the transmitted signal to be mixed with the received signal, resulting in significant interference between uplink and downlink transmissions. Therefore, when the transmit power exceeds the power threshold, full-duplex mode is not suitable for the UE. Operating in non-full-duplex mode isolates interference between uplink and downlink transmissions, making uplink and downlink data transmission more accurate.

[0076] In this embodiment of the disclosure, the UE can send first information indicating the full-duplex mode allowed by the UE and the transmit power supported by the full-duplex mode, or the non-full-duplex mode allowed and the transmit power supported by the non-full-duplex mode. This allows the network device to further and more accurately determine the configuration of the UE's operating mode based on the first information.

[0077] This disclosure provides an information processing method executed by a UE, which may include sending first information via signaling. For example, the UE may send the first information via Radio Resource Control (RRC) signaling or Service Request signaling. The RRC signaling here may be an RRC connection request or an RRC reconnection request, etc. Thus, this disclosure embodiment can send the first information without adding additional signaling, saving system signaling overhead.

[0078] It should be noted that those skilled in the art will understand that the methods provided in the embodiments of this disclosure can be executed alone or together with some methods in the embodiments of this disclosure or some methods in related technologies.

[0079] like Figure 6 As shown, this disclosure provides an information processing method, executed by a UE, including:

[0080] Step S61: Send second information indicating the mobility status of the UE.

[0081] In some embodiments of this disclosure, the first information is the first information in step S51.

[0082] In one embodiment, the mobility state of the UE includes: a first mobility state and / or a second mobility state.

[0083] In one embodiment, the movement rate of the UE in the first mobility state is less than the movement rate of the UE in the second mobility state. Specifically, the movement rate of the UE in the first mobility state is below a rate threshold.

[0084] In one embodiment, the UE in the first mobility state can be a relatively stationary UE or a relatively low mobility UE, and the UE in the second mobility state can be a relatively high mobility UE.

[0085] In one embodiment, the mobility state of the UE can be determined based on the change in the strength of the received reference signal.

[0086] This disclosure provides an information processing method executed by a UE, which may include: if the change in the signal strength of a reference signal received by the UE within a predetermined time range is less than or equal to a threshold value, determining that the UE is in a first mobility state.

[0087] This disclosure provides an information processing method executed by a UE, which may include: if the change in the signal strength of a reference signal received by the UE within a predetermined time range is greater than a threshold value, determining that the UE is in a second mobility state.

[0088] For example, the UE obtains the maximum and minimum signal strength of the received reference signal within a predetermined time range, determines the difference between the maximum and minimum values, and determines whether the difference is greater than a threshold value. If the difference is less than or equal to the threshold value, the UE is determined to be in a first mobility state; if the difference is greater than the threshold value, the UE is determined to be in a second mobility state. Thus, in this embodiment of the present disclosure, the mobility state of the UE can be accurately determined; thereby facilitating the network device to further configure a suitable operating mode for the UE based on the UE's mobility status after obtaining the UE's mobility state.

[0089] In one embodiment, the second information, together with the first information, is used by the network device to configure the operating mode of the UE.

[0090] For example, the UE sends first information and second information to the network device; wherein the first information includes information enabling full-duplex mode, and the second information indicates that the UE is in a first mobility state. Thus, the network device can determine the UE's configuration for operating in full-duplex mode based on the first and second information.

[0091] For example, the UE sends first information and second information to the network device; wherein, the first information includes information enabling full-duplex mode, and the second information indicates that the UE is in a second mobility state. Thus, the network device can determine the UE's configuration of operating in non-full-duplex mode based on the first and second information.

[0092] For example, the UE sends first information and second information to the network device; wherein, the first information includes information that full-duplex mode is not allowed, and the second information indicates that the UE is in a second mobility state. Thus, the network device can determine the UE's configuration of operating in non-full-duplex mode based on the first and second information.

[0093] For example, the UE sends first information and second information to the network device; wherein, the first information includes information enabling full-duplex mode and an indication of the supported transmit power for full-duplex mode. If the second information indicates that the UE is in a first mobility state, the network device can determine the UE's configuration of operating in full-duplex mode based on the first information and the second information; if the second information indicates that the UE is in a second mobility state, the network device can determine the UE's configuration of operating in non-full-duplex mode based on the first information and the second information.

[0094] In this embodiment of the disclosure, the UE can send second information indicating its mobility status, thereby enabling the network device to determine the UE's operating mode configuration based on the first and second information. For example, the network device can determine the UE's operating mode configuration based on the first information indicating whether full-duplex mode is allowed, and the mobility status (first mobility status or second mobility status) in the second information; or, for instance, the network device can determine the UE's operating mode configuration based on the first information indicating whether full-duplex mode is allowed, information indicating transmit power, and the mobility status in the second information. This allows for a more accurate determination of whether the UE is operating in full-duplex mode.

[0095] In one embodiment, the UE can send the second information via signaling. For example, the UE can send the second information via RRC signaling or service request signaling. Here, the RRC signaling can be an RRC connection request or an RRC reconnection request, etc. Thus, this embodiment of the present disclosure can send the second information without adding extra signaling, saving system signaling overhead.

[0096] It should be noted that those skilled in the art will understand that the methods provided in the embodiments of this disclosure can be executed alone or together with some methods in the embodiments of this disclosure or some methods in related technologies.

[0097] like Figure 7 As shown, this disclosure provides an information processing method, executed by a UE, including:

[0098] Step S71: Send third information indicating the amount of service buffer data in the UE.

[0099] In some embodiments of this disclosure, the first information is the first information in step S51.

[0100] In one embodiment, the third information may indicate one of the following:

[0101] The amount of business cached data is greater than or equal to the predetermined amount of data.

[0102] The amount of data cached by the business is less than the predetermined amount of data.

[0103] In one embodiment, the third information, along with the first information, is used by the network device to configure the operating mode of the UE.

[0104] For example, the UE sends first information and third information to the network device; wherein the first information includes information enabling full-duplex mode, and the third information is used to indicate that the UE's service cache data volume is greater than or equal to a predetermined data volume. Thus, the network device can determine the UE's configuration for operating in full-duplex mode based on the first and third information.

[0105] For example, the UE sends first information and third information to the network device; wherein the first information includes information enabling full-duplex mode, and the third information is used to indicate that the UE's service buffer data volume is less than a predetermined data volume. Thus, the network device can determine the UE's configuration of operating in non-full-duplex mode based on the first and third information.

[0106] For example, the UE sends first information and third information to the network device; wherein the first information includes information that full-duplex mode is not allowed, and the third information is used to indicate that the UE's service buffer data volume is less than a predetermined data volume. In this way, the network device can determine the UE's configuration of operating in non-full-duplex mode based on the first information and the third information.

[0107] In this embodiment, if the UE's service cached data volume is greater than or equal to a predetermined data volume, i.e., the UE needs to cache a relatively large amount of data to perform the service, then it can be determined that the UE is operating in full-duplex mode, enabling the UE to complete the service as quickly as possible and reducing service latency. If the UE's service cached data volume is less than the predetermined data volume, i.e., the UE needs to cache a relatively small amount of data to perform the service, then it can be determined that the UE does not need to operate in full-duplex mode to complete the service as quickly as possible; thus, the UE can operate in non-full-duplex mode to reduce interference between uplink and downlink transmissions.

[0108] In one embodiment, the third information, the second information, and the first information are used for the network device to configure the operating mode of the UE.

[0109] For example, the UE sends first information, second information, and third information to the network device; wherein, the first information includes information enabling full-duplex mode and determining that the UE's transmit power is less than or equal to a power threshold, the second information indicates that the UE is in a first mobility state, and the third information indicates that the UE's service buffer data volume is greater than a predetermined data volume. Thus, the network device can determine the UE's configuration for operating in full-duplex mode based on the first, second, and third information.

[0110] For example, the UE sends first information, second information, and third information to the network device; wherein, the first information includes information enabling full-duplex mode and determining that the UE's transmit power is greater than a power threshold, the second information indicates that the UE is in a second mobility state, and the third information indicates that the UE's service buffer data volume is less than a predetermined data volume. Thus, the network device can determine the UE's configuration for operating in non-duplex mode based on the first, second, and third information.

[0111] In this embodiment of the disclosure, the contents indicated by the first, second, and third information can be combined to determine the configuration of the UE's operating mode using a network device. For example, when the first information includes allowing full-duplex mode and determining that the UE's transmit power is less than or equal to a power threshold, the second information indicates that the UE is in a first mobility state, and the third information indicates that the UE's service buffer data volume is greater than a predetermined data volume, it can be determined that the UE is very suitable for operating in full-duplex mode. Thus, this embodiment of the disclosure can achieve a more accurate determination of the UE's suitable operating mode based on the first, second, and third information.

[0112] In one embodiment, the UE can send third information via signaling. For example, the UE can send third information via RRC signaling or service request signaling. Thus, this embodiment of the present disclosure can send third information without adding extra signaling, saving system signaling overhead.

[0113] It should be noted that those skilled in the art will understand that the methods provided in the embodiments of this disclosure can be executed alone or together with some methods in the embodiments of this disclosure or some methods in related technologies.

[0114] like Figure 8 As shown, this disclosure provides an information processing method, executed by a UE, including:

[0115] Step S81: Based on the triggering condition, send the first information of the UE.

[0116] In some embodiments of this disclosure, the first information is the first information in step S51.

[0117] In one embodiment, the triggering condition includes, but is not limited to, at least one of the following:

[0118] The UE's transmit power is less than or equal to the power threshold;

[0119] The UE is in the first mobility state;

[0120] The UE's transmit power is less than or equal to the power threshold;

[0121] In response to the determination that the amount of service cached data in the UE is greater than the predetermined amount of data.

[0122] In one embodiment, step S51 includes: sending the first information of the UE based on the triggering condition.

[0123] This disclosure provides an information processing method executed by a UE, which may include: in response to determining that the UE's transmit power is less than or equal to a power threshold, sending UE first information. In this disclosure, the first information may include information indicating the transmit power supported by the UE in its operating mode.

[0124] This disclosure provides an information processing method executed by a UE, which may include: in response to determining that the UE is in a first mobility state, sending first information of the UE; wherein the mobility rate of the UE in the first mobility state is lower than a rate threshold.

[0125] This disclosure provides an information processing method executed by a UE, which may include: in response to determining that the UE's transmit power is less than or equal to a power threshold and determining that the UE is in a first mobility state, sending the UE's first information.

[0126] This disclosure provides an information processing method executed by a UE, which may include: in response to determining that the amount of service cached data of the UE is greater than a predetermined amount of data, sending first information of the UE.

[0127] This disclosure provides an information processing method executed by a UE, which may include: in response to determining that the UE's transmit power is less than or equal to a power threshold and determining that the UE's service buffer data volume is greater than a predetermined data volume, sending the UE's first information.

[0128] This disclosure provides an information processing method executed by a UE, which may include: in response to determining that the UE's transmit power is less than or equal to a power threshold, determining that the UE is in a first mobility state, and determining that the UE's service buffer data volume is greater than a predetermined data volume, sending the UE's first information.

[0129] In one embodiment, step S81 includes at least one of the following:

[0130] In response to determining that the UE's transmit power is less than or equal to a power threshold, the UE first information is sent;

[0131] In response to determining that the UE is in a first mobility state, first information of the UE is sent; wherein the mobility rate of the UE in the first mobility state is lower than a rate threshold;

[0132] In response to determining that the UE's transmit power is less than or equal to a power threshold and that the UE is in a first mobility state, the first information of the UE is transmitted;

[0133] In response to determining that the amount of service cached data in the UE is greater than the predetermined amount of data, the first information of the UE is sent.

[0134] In this embodiment, the UE reports the first information only when certain triggering conditions are met. This saves reporting resources and system overhead. Furthermore, since these triggering conditions include the UE's transmit power being less than or equal to a power threshold, the UE being in a first mobility state, and / or the UE's service buffer data volume, these conditions can determine the UE's full-duplex mode configuration if the UE meets the requirements for full-duplex mode. For example, if the transmit power is less than the power threshold, it indicates that the isolation between the transmit and receive links can minimize interference between uplink and downlink transmissions, making the UE suitable for full-duplex mode. Similarly, if the UE's transmit power remains relatively constant within a certain timeframe while in the first mobility state, it is also suitable for full-duplex mode. Moreover, if the UE's service buffer data volume is greater than a predetermined amount, it indicates that the UE needs to process a large amount of data, requiring full-duplex mode to complete the service as quickly as possible. Therefore, sending the first information when these triggering conditions are met helps the network device determine the UE's full-duplex mode configuration, thereby improving UE spectrum utilization and reducing service latency. Furthermore, since the UE is likely to operate in full-duplex mode when these triggering conditions are met, sending the first information only when these triggering conditions are met can save system overhead.

[0135] It should be noted that those skilled in the art will understand that the methods provided in the embodiments of this disclosure can be executed alone or together with some methods in the embodiments of this disclosure or some methods in related technologies.

[0136] The following information processing method is executed by a network device and is similar to the information processing method executed by a UE described above. For technical details not disclosed in the embodiments of the information processing method executed by the network device, please refer to the description of the information processing method example executed by the UE, which will not be described in detail here.

[0137] like Figure 9 As shown, an information processing method is provided, wherein the method is executed by a network device and includes:

[0138] Step S91: Receive the first information from the UE;

[0139] Step S92: Based on the first information, determine the configuration of the UE's working mode; wherein the working mode includes at least: full-duplex mode.

[0140] In some embodiments of this disclosure, the first information is the first information in step S51; the working mode is the working mode in step S51; and the network device can be the network device in step S51.

[0141] In one embodiment, the first information is used at least for configuring the operating mode of the UE by the network device.

[0142] This disclosure provides an information processing method, executed by a network device, which may include: receiving first information of the UE sent by the UE.

[0143] This disclosure provides an information processing method executed by a network device, which may include: determining a UE's configuration to operate in full-duplex mode in response to first information including information allowing full-duplex mode.

[0144] This disclosure provides an information processing method executed by a network device, which may include: in response to first information including information that full-duplex mode is not allowed, determining that the UE is configured to operate in non-full-duplex mode.

[0145] In one embodiment, step S92 includes one of the following:

[0146] In response to the first information, including information that allows full-duplex mode, the configuration for the UE to operate in full-duplex mode is determined;

[0147] In response to the first information, including information that full-duplex mode is not allowed, it is determined that the UE is configured to operate in non-full-duplex mode.

[0148] In this embodiment of the disclosure, a network device can receive first information from the UE and determine the configuration of the UE's operating mode based on the first information. Thus, this embodiment can determine the appropriate operating mode for the UE based on the first information about the duplex mode reported by the UE. For example, if the network device determines that the first information includes information allowing duplex mode, it determines that the UE is configured to operate in full-duplex mode; if the network device determines that the first information includes information disallowing full-duplex mode, it determines that the UE is configured to operate in non-full-duplex mode. Therefore, this embodiment of the disclosure can determine whether the UE is operating in full-duplex mode; and if it is determined that the UE is operating in full-duplex mode, it can also help the UE improve frequency resource utilization and reduce service latency.

[0149] In one embodiment, the first information is used to indicate the transmit power supported by the UE in the operating mode.

[0150] In one embodiment, the first information indicates at least one of the following:

[0151] The transmit power supported by the UE when operating in full-duplex mode;

[0152] The transmit power supported by the UE when operating in non-full-duplex mode.

[0153] An information processing method provided in this disclosure, executed by a network device, may include: determining a UE operating in full-duplex mode in response to first information including information allowing full-duplex mode and the first information indicating that the transmit power is less than or equal to a power threshold; or, determining a UE operating in non-full-duplex mode in response to first information including information disallowing full-duplex mode and / or the first information indicating that the transmit power is greater than a power threshold.

[0154] For example, the network device receives first information; the network device determines that the first information includes information that allows full-duplex mode, and determines that the UE's transmit power is less than or equal to a power threshold, and then determines that the UE is configured to work in full-duplex mode.

[0155] For example, the network device receives first information; the network device determines that the first information includes information that allows full-duplex mode, and determines that the UE's transmit power is greater than a power threshold, then determines that the UE is configured to operate in non-full-duplex mode.

[0156] For example, the network device receives the first information; the network device determines that the first information includes information that full-duplex mode is not allowed, and determines that the UE's transmit power is greater than the power threshold, then determines that the UE is configured to work in non-full-duplex mode.

[0157] In one embodiment, step S92 includes one of the following:

[0158] In response to the first information including information allowing full-duplex mode and the first information indicating that the transmit power is less than or equal to a power threshold, the configuration of the UE operating in full-duplex mode is determined.

[0159] In response to the first information including information that full-duplex mode is not allowed and / or the first information indicating that the transmit power is greater than the power threshold, it is determined that the UE is configured to operate in non-full-duplex mode.

[0160] In this embodiment, if the UE's transmit power is less than or equal to a power threshold, the interference between uplink and downlink transmissions can be minimized by isolating the transmit and receive links through a duplexer or similar means. This allows the UE to be determined to operate in full-duplex mode, thereby improving frequency resource utilization and reducing service latency. If the UE's transmit power is greater than the power threshold, the interference between uplink and downlink transmissions is still relatively large even when the transmit and receive links are isolated through a duplexer or similar means. This allows the UE to be determined to operate in non-full-duplex mode (even if the UE allows full-duplex mode) to isolate the interference between uplink and downlink transmissions, thereby improving the accuracy of uplink and downlink data transmission.

[0161] It should be noted that those skilled in the art will understand that the methods provided in the embodiments of this disclosure can be executed alone or together with some methods in the embodiments of this disclosure or some methods in related technologies.

[0162] like Figure 10 As shown, an information processing method is provided, executed by a network device, including:

[0163] Step S101: Determine the mobility status of the UE.

[0164] In some embodiments of this disclosure, the mobility state is the mobility state in step S61; the second information is the second information in step S61.

[0165] In one embodiment, step S101 includes: receiving second information from the UE, and determining the mobility state of the UE based on the second information.

[0166] This disclosure provides an information processing method, executed by a network device, which may include: receiving second information from a UE; and determining the mobility status of the UE based on the second information.

[0167] In one embodiment, the mobility state of the UE is determined based on the second information, including one of the following:

[0168] If, based on the second information, it is determined that the signal strength change value of the reference signal received by the UE within the predetermined time range is less than or equal to the threshold value, the UE is determined to be in a first mobility state.

[0169] If, based on the second information, it is determined that the signal strength change of the reference signal received by the UE within a predetermined time range is greater than a threshold value, the UE is determined to be in a second mobility state.

[0170] This disclosure provides an information processing method executed by a network device, which may include: if, based on second information, it is determined that the signal strength change value of a reference signal received by the UE within a predetermined time range is less than or equal to a threshold value, determining that the UE is in a first mobility state.

[0171] This disclosure provides an information processing method executed by a network device, which may include: if it is determined based on second information that the signal strength change value of a reference signal received by the UE within a predetermined time range is greater than a threshold value, then determining that the UE is in a second mobility state.

[0172] For example, the network device receives second information sent by the UE, wherein the second information includes the signal strength of the reference signal received by the UE within a predetermined time range; the network device obtains the maximum value and the minimum value of the signal strength of the reference signal received by the UE within the predetermined time range; the network device determines the difference between the maximum value and the minimum value, and determines whether the difference is greater than a threshold value. If the network device determines that the difference is less than or equal to the threshold value, it determines that the UE is in a first mobility state; if it determines that the difference is greater than the threshold value, it determines that the UE is in a second mobility state.

[0173] Thus, in this embodiment of the disclosure, the network device can accurately determine whether the UE is in a first mobility state or a second mobility state based on the second information sent by the UE.

[0174] In one embodiment, step S101 includes: determining the mobility state of the UE based on the mobility state of the UE indicated by the second information.

[0175] This disclosure provides an information processing method executed by a network device, which may include: determining the mobility state of a UE based on the mobility state of a UE indicated by second information.

[0176] For example, the network device receives second information sent by the UE, wherein the second information includes information indicating the mobility state of the UE; if the network device determines that the second information indicates that the UE is in a first mobility state, then the UE is determined to be in a first mobility state; if the network device determines that the second information indicates that the UE is in a second mobility state, then the UE is determined to be in a second mobility state.

[0177] Thus, in this embodiment of the disclosure, the network device can directly determine the mobility state of the UE based on the information sent by the UE indicating the UE's mobility state.

[0178] In one embodiment, step S92 includes:

[0179] Based on the first information and the UE's mobility status, the configuration of the UE's working mode is determined.

[0180] This disclosure provides an information processing method executed by a network device, which may include: determining the configuration of the UE's operating mode based on first information and the UE's mobility state.

[0181] In one embodiment, based on the first information and the UE's mobility state, the configuration of the UE's operating mode is determined, including one of the following:

[0182] In response to the first information including information allowing full-duplex mode and determining that the UE is in a first mobility state, the configuration of the UE operating in full-duplex mode is determined;

[0183] In response to the first information, including information that full-duplex mode is not allowed and / or determining that the UE is in a second mobility state, the configuration of the UE operating in non-full-duplex mode is determined.

[0184] The mobility rate of a UE in the first mobility state is less than that of a UE in the second mobility state.

[0185] This disclosure provides an information processing method executed by a network device, which may include: in response to first information including information allowing full-duplex mode and determining that the UE is in a first mobility state, determining that the UE is configured to operate in full-duplex mode; and / or, in response to the first information including information disallowing full-duplex mode and / or determining that the UE is in a second mobility state, determining that the UE is configured to operate in non-full-duplex mode; wherein the movement rate of the UE in the first mobility state is less than the movement rate of the UE in the second mobility state.

[0186] For example, the network device receives first information and second information; if the network device determines that the first information includes information that allows full-duplex mode and if it determines that the UE is in a first mobility state based on the second information, then it determines that the UE is configured to work in full-duplex mode.

[0187] For example, the network device receives first information and second information; if the network device determines that the first information includes information that allows full-duplex mode and if it determines that the UE is in a second mobility state based on the second information, then it determines that the UE is configured to work in full-duplex mode.

[0188] For example, the network device receives first information and second information; if the network device determines that the first information includes information that full-duplex mode is not allowed and if it determines that the UE is in a second mobility state based on the second information, then it determines that the UE is configured to work in full-duplex mode.

[0189] Thus, in this embodiment of the disclosure, the network device can determine the operating mode of the UE based on whether the first information includes information that allows full-duplex mode and the UE mobility state determined by the second information; in this way, the appropriate operating mode configuration for the UE can be determined more accurately.

[0190] In one embodiment, based on the first information and the UE's mobility state, the configuration of the UE's operating mode is determined, including one of the following:

[0191] In response to the first information including information allowing full-duplex mode, the first information indicating that the transmit power is less than or equal to a power threshold, and determining that the UE is in a first mobility state, the configuration of the UE operating in full-duplex mode is determined.

[0192] In response to information including that full-duplex mode is not allowed, that the first information indicates that the transmit power is greater than a power threshold, and / or that the UE is in a second mobility state, the configuration of the UE operating in non-full-duplex mode is determined.

[0193] An information processing method provided in this disclosure, executed by a network device, may include: responding to first information including information allowing full-duplex mode, the first information indicating that the transmit power is less than or equal to a power threshold, and determining that the UE is in a first mobility state, and determining that the UE is configured to operate in full-duplex mode.

[0194] An information processing method provided in this disclosure, executed by a network device, may include: in response to a first message including information that full-duplex mode is not allowed, the first message indicating that the transmit power is greater than a power threshold, and / or determining that the UE is in a second mobility state, determining that the UE is configured to operate in non-full-duplex mode.

[0195] Thus, in this embodiment of the disclosure, the network device can determine the operating mode of the UE based on whether the first information includes information allowing full-duplex mode, the transmit power in the first information, and the UE mobility status determined by the second information; thus, it can more accurately determine the appropriate operating mode configuration for the UE.

[0196] In one embodiment, the network device receives first information; the network device determines that the first information includes enabling full-duplex mode; if the network device determines based on the first information that the UE's transmit power is less than a first power, which is less than a power threshold, and the difference between the first power and the power threshold is greater than a second power, then it determines that the UE's transmit power is significantly less than the power threshold. The network device then determines that the UE is configured to operate in full-duplex mode. Thus, in this embodiment of the disclosure, since the UE's transmit power is very small, such as significantly less than the power threshold, it is possible to determine that the UE can operate in full-duplex mode without considering the UE's mobility state.

[0197] In one embodiment, the network device receives first information; the network device determines that the first information includes allowing full-duplex mode; if the network device determines based on the first information that the UE's transmit power is less than a third power, and the difference between the third power and a power threshold is less than a fourth power; and the fourth power is less than a second power, then the network device determines that the UE's transmit power is not significantly different from the power threshold. If the network device determines based on second information that the UE is in a first mobility state, then the network device determines that the UE is configured to operate in full-duplex mode; if the network device determines based on second information that the UE is in a second mobility state, then the network device determines that the UE is configured to operate in non-full-duplex mode. Thus, in this embodiment of the disclosure, since the UE's transmit power is not significantly different from the power threshold, the UE's mobility state will affect whether the UE's transmit power exceeds the power threshold by a large margin. For example, if the UE is in the first mobility state, it means that the UE's transmit power will not change significantly within a certain time period (e.g., within a predetermined time range), and the UE's transmit power will not exceed the power threshold by a large margin; therefore, the UE is still suitable for operating in full-duplex mode, and the network device can determine that the UE is configured to operate in full-duplex mode. For example, if the UE is determined to be in a second mobility state, it means that the UE's transmit power may vary greatly within a certain period of time, and the UE's transmit power is likely to be much greater than the power threshold; therefore, the UE is not suitable for operating in full-duplex mode, and the network device can determine the UE's configuration to operate in non-full-duplex mode. In this way, the network device of this embodiment can more accurately determine the appropriate operating mode configuration for the UE.

[0198] It should be noted that those skilled in the art will understand that the methods provided in the embodiments of this disclosure can be executed alone or together with some methods in the embodiments of this disclosure or some methods in related technologies.

[0199] like Figure 11 As shown, an information processing method is provided, executed by a network device, including:

[0200] Step S1101: Receive third information indicating the amount of service buffer data for the UE.

[0201] In some embodiments of this disclosure, the first information is the first information in step S51.

[0202] In one embodiment, step S92 includes: determining the configuration of the UE's operating mode based on the first information and the third information.

[0203] An information processing method provided in this disclosure, executed by a network device, may include: determining the configuration of the operating mode of the UE based on first information and third information.

[0204] In one embodiment, the configuration of the UE's operating mode is determined based on the first information and the third information, including one of the following:

[0205] In response to the first information including information allowing full-duplex mode and the third information indicating that the service cache data volume is greater than or equal to a predetermined data volume, the configuration of the UE working in full-duplex mode is determined.

[0206] In response to first information including information that full-duplex mode is not allowed, and / or third information indicating that the amount of service cached data is less than a predetermined amount of data, it is determined that the UE is configured to operate in non-full-duplex mode.

[0207] An information processing method provided in this disclosure, executed by a network device, may include: in response to first information including information allowing full-duplex mode and third information indicating that the amount of service cached data is greater than or equal to a predetermined amount of data, determining that the UE is configured to work in full-duplex mode.

[0208] An information processing method provided in this disclosure, executed by a network device, may include: in response to first information including information disallowing full-duplex mode, and / or third information indicating that the service cache data volume is less than a predetermined data volume, determining that the UE is configured to operate in non-full-duplex mode.

[0209] In this embodiment of the disclosure, if the network device determines that the UE's service cache data volume, i.e., the amount of data that the UE needs to cache to perform the service, is relatively large, then the network device can determine that the UE is suitable to operate in full-duplex mode, enabling the UE to complete the service as quickly as possible and reducing service latency. Alternatively, if the network device determines that the UE's service cache data volume, i.e., the amount of data that the UE needs to cache to perform the service, is relatively small, then the UE can complete the service quickly without operating in full-duplex mode; thus, it can be determined that the UE is suitable to operate in non-full-duplex mode to reduce interference between uplink and downlink transmissions.

[0210] In one embodiment, step S92 includes: determining the configuration of the UE's operating mode based on the first information, the second information, and the third information.

[0211] An information processing method provided in this disclosure, executed by a network device, may include: determining the configuration of the operating mode of the UE based on first information, second information, and third information.

[0212] In one embodiment, the configuration of the UE's operating mode is determined based on the first information, the second information, and the third information, including one of the following:

[0213] In response to the first information including information allowing full-duplex mode, the first information indicating that the transmit power is less than or equal to a power threshold, the second information indicating that the UE is in a first mobility state, and the third information indicating that the service buffer data volume is greater than a predetermined data volume, the configuration of the UE working in full-duplex mode is determined.

[0214] In response to the first information including information that full-duplex mode is not allowed, the first information indicating that the transmission is greater than the power threshold, the second information indicating that the UE is in a second mobility state and / or the third information indicating that the service buffer data volume is less than the predetermined data volume, the configuration of the UE operating in non-full-duplex mode is determined.

[0215] An information processing method provided in this disclosure, executed by a network device, may include: in response to first information including information allowing full-duplex mode, first information indicating that the transmit power is less than or equal to a power threshold, second information indicating that the UE is in a first mobility state, and third information indicating that the service buffer data volume is greater than a predetermined data volume, determining that the UE is configured to work in full-duplex mode.

[0216] An information processing method provided in this disclosure, executed by a network device, may include: in response to first information including information disallowing full-duplex mode, first information indicating that transmission exceeds a power threshold, second information indicating that the UE is in a second mobility state, and / or third information indicating that the service buffer data volume is less than a predetermined data volume, determining that the UE is configured to operate in non-full-duplex mode.

[0217] Thus, in this embodiment, the appropriate operating mode configuration for the UE can be determined based on the first, second, and third information together. For example, the UE is determined to be suitable for full-duplex mode only when all of the following conditions are met: the first information includes the UE allowing full-duplex mode and determining that the transmit power is less than or equal to a power threshold; the second information indicates that the UE is in a first mobility state; and the third information indicates that the UE's service buffer data volume is greater than a predetermined data volume. Alternatively, the UE is determined to be suitable for non-duplex mode only when at least one of the following conditions is met: the first information includes the UE not allowing full-duplex mode; the first information determines that the transmit power is greater than a power threshold; the second information indicates that the UE is in a second mobility state; and the third information indicates that the UE's service buffer data volume is less than a predetermined data volume. Thus, this embodiment can achieve a more accurate determination of the appropriate operating mode for the UE.

[0218] It should be noted that those skilled in the art will understand that the methods provided in the embodiments of this disclosure can be executed alone or together with some methods in the embodiments of this disclosure or some methods in related technologies.

[0219] like Figure 12 As shown, an information processing apparatus is provided, applied to a UE, comprising:

[0220] The first transmitting module 41 is configured to transmit first information of the UE, wherein the first information is at least used for the network device to configure the working mode of the UE, wherein the working mode includes at least: full-duplex mode.

[0221] This disclosure provides an information processing apparatus for a UE, which may include: a first sending module 41 configured to send first information of the UE to a network device, wherein the first information is at least used for the network device to configure the working mode of the UE, wherein the working mode includes at least: full-duplex mode.

[0222] In one embodiment, the first information is used to indicate the transmit power supported by the UE in the operating mode.

[0223] This disclosure provides an information processing apparatus for a UE, comprising: a first transmitting module 41 configured to transmit first information of the UE, wherein the first information is used for configuring the operating mode of the UE by a network device and for indicating the transmit power supported by the UE in the operating mode; wherein the operating mode includes at least: full-duplex mode.

[0224] In one embodiment, the first information indicates at least one of the following:

[0225] The transmit power supported by the UE when operating in full-duplex mode;

[0226] The transmit power supported by the UE when operating in non-full-duplex mode.

[0227] This disclosure provides an information processing apparatus for a UE, which may include: a first transmitting module 41 configured to transmit second information indicating the mobility status of the UE.

[0228] In one embodiment, the second information, together with the first information, is used by the network device to configure the operating mode of the UE.

[0229] This disclosure provides an information processing apparatus for a UE, which may include: a first transmitting module 41 configured to transmit third information indicating the amount of service cache data of the UE.

[0230] In one embodiment, the third information, along with the first information, is used by the network device to configure the operating mode of the UE.

[0231] In one embodiment, the third information, the first information, and the second information are used for the network device to configure the operating mode of the UE.

[0232] This disclosure provides an information processing device applied to a UE, which may include: a first sending module 41 configured to send first information of the UE based on a triggering condition.

[0233] This disclosure provides an information processing apparatus applied to a UE, which may include: a first transmitting module 41 configured to be at least one of the following:

[0234] In response to determining that the UE's transmit power is less than or equal to a power threshold, the UE first information is sent;

[0235] In response to determining that the UE is in a first mobility state, first information of the UE is sent; wherein the mobility rate of the UE in the first mobility state is lower than a rate threshold;

[0236] In response to determining that the UE's transmit power is less than or equal to a power threshold and that the UE is in a first mobility state, the first information of the UE is transmitted;

[0237] In response to determining that the amount of service buffer data in the UE is greater than the predetermined amount of data, the first information of the UE is sent.

[0238] In response to determining that the UE's transmit power is less than or equal to a power threshold and the UE's service buffer data volume is greater than a predetermined data volume, the first information of the UE is sent.

[0239] In response to determining that the UE's transmit power is less than or equal to a power threshold, determining that the UE is in a first mobility state, and determining that the UE's service buffer data volume is greater than a predetermined data volume, the first information of the UE is sent.

[0240] like Figure 13 As shown, an information processing apparatus is provided, applied to a UE, and may include:

[0241] The first determining module 42 is configured to determine that the UE is in a first mobility state if the change in the signal strength of the reference signal received by the UE within a predetermined time range is less than or equal to a threshold value.

[0242] It should be noted that those skilled in the art will understand that the apparatus provided in the embodiments of this disclosure can be executed alone or together with some apparatus in the embodiments of this disclosure or some apparatus in related technologies.

[0243] Regarding the apparatus in the above embodiments, the specific manner in which each module performs its operation has been described in detail in the embodiments related to the method, and will not be elaborated upon here.

[0244] like Figure 14 As shown, an information processing apparatus is provided, applied to a network device, comprising:

[0245] The second receiving module 61 is configured to receive the first information of the UE;

[0246] The second determining module 62 is configured to determine the configuration of the operating mode of the UE based on the first information; wherein the operating mode includes at least: full-duplex mode.

[0247] This disclosure provides an information processing apparatus for use in a network device, which may include: a second receiving module 61 configured to receive first information of the UE sent by the UE.

[0248] This disclosure provides an information processing apparatus, applied to a network device, which may include:

[0249] The second determining module 62 is configured to determine the UE's configuration of operating in full-duplex mode in response to the first information, including information allowing full-duplex mode; or,

[0250] The second determining module 62 is configured to determine the configuration of the UE operating in non-full-duplex mode in response to the first information, including information that full-duplex mode is not allowed.

[0251] In one embodiment, the first information is also used to indicate the transmit power supported by the UE in the operating mode.

[0252] In one embodiment, the first information indicates at least one of the following:

[0253] The transmit power supported by the UE when operating in full-duplex mode;

[0254] The transmit power supported by the UE when operating in non-full-duplex mode.

[0255] This disclosure provides an information processing apparatus, applied to a network device, which may include:

[0256] The second determining module 62 is configured to determine the UE's configuration of operating in full-duplex mode in response to first information including information allowing full-duplex mode and the first information indicating that the transmit power is less than or equal to a power threshold; or,

[0257] The second determining module 62 is configured to determine the configuration of the UE operating in non-full-duplex mode in response to first information including information that full-duplex mode is not allowed and / or the first information indicating that the transmit power is greater than a power threshold.

[0258] This disclosure provides an information processing apparatus for use in network devices, which may include a second determining module 62 configured to determine the mobility state of a UE.

[0259] This disclosure provides an information processing apparatus applied to a network device, which may include: a second determining module 62 configured to determine the configuration of the operating mode of the UE based on first information and the mobility state of the UE.

[0260] This disclosure provides an information processing apparatus, applied to a network device, which may include:

[0261] The second determining module 62 is configured to, in response to first information including information allowing full-duplex mode and determining that the UE is in a first mobility state, determine that the UE is configured to operate in full-duplex mode; or,

[0262] The second determining module 62 is configured to determine the configuration of the UE operating in non-full-duplex mode in response to first information including information that full-duplex mode is not allowed and / or determining that the UE is in a second mobility state.

[0263] The mobility rate of a UE in the first mobility state is less than that of a UE in the second mobility state.

[0264] This disclosure provides an information processing apparatus, applied to a network device, which may include:

[0265] The second receiving module 61 is configured to receive the second information from the UE.

[0266] The second determining module 62 is configured to determine the mobility state of the UE based on the second information.

[0267] This disclosure provides an information processing apparatus, applied to a network device, which may include:

[0268] The second determining module 62 is configured to determine that the UE is in a first mobility state if, based on the second information, the signal strength change value of the reference signal received by the UE within a predetermined time range is less than or equal to a threshold value; or...

[0269] The second determining module 62 is configured to determine that the UE is in a second mobility state if it is determined based on the second information that the signal strength change value of the reference signal received by the UE within a predetermined time range is greater than a threshold value.

[0270] This disclosure provides an information processing apparatus, applied to a network device, which may include:

[0271] The second determining module 62 is configured to determine that the UE is operating in full-duplex mode in response to first information including information allowing full-duplex mode, the first information indicating that the transmit power is less than or equal to a power threshold, and determining that the UE is in a first mobility state; or,

[0272] The second determining module 62 is configured to determine the configuration of the UE operating in non-full-duplex mode in response to the first information including information that full-duplex mode is not allowed, the first information indicating that the transmit power is greater than a power threshold, and / or determining that the UE is in a second mobility state.

[0273] This disclosure provides an information processing apparatus for use in a network device, which may include: a second receiving module 61 configured to receive third information indicating the amount of service buffer data of a UE.

[0274] This disclosure provides an information processing apparatus applied to a network device, which may include: a second determining module 62, configured to determine the configuration of the operating mode of the UE based on first information and third information.

[0275] This disclosure provides an information processing apparatus, applied to a network device, which may include:

[0276] The second determining module 62 is configured to determine the UE's configuration for operating in full-duplex mode in response to first information including information allowing full-duplex mode and third information indicating that the service cache data volume is greater than or equal to a predetermined data volume; or,

[0277] The second determining module 62 is configured to determine the UE's configuration of operating in non-full-duplex mode in response to first information including information that full-duplex mode is not allowed, and / or third information indicating that the amount of service cached data is less than a predetermined amount of data.

[0278] It should be noted that those skilled in the art will understand that the apparatus provided in the embodiments of this disclosure can be executed alone or together with some apparatus in the embodiments of this disclosure or some apparatus in related technologies.

[0279] This disclosure provides an information processing apparatus for use in network devices, which may include a second determining module 62 configured to determine the configuration of the operating mode of a UE based on first information, second information, and third information.

[0280] This disclosure provides an information processing apparatus, applied to a network device, which may include:

[0281] The second determining module 62 is configured to determine the UE's configuration of operating in full-duplex mode in response to first information including information allowing full-duplex mode, first information indicating that the transmit power is less than or equal to a power threshold, second information indicating that the UE is in a first mobility state, and third information indicating that the service buffer data volume is greater than a predetermined data volume; or,

[0282] The second determining module 62 is configured to determine the configuration of the UE operating in non-full-duplex mode in response to first information including information that full-duplex mode is not allowed, first information indicating that the transmission is greater than a power threshold, second information indicating that the UE is in a second mobility state and / or third information indicating that the service buffer data volume is less than a predetermined data volume.

[0283] Regarding the apparatus in the above embodiments, the specific manner in which each module performs its operation has been described in detail in the embodiments related to the method, and will not be elaborated upon here.

[0284] This disclosure provides a communication device, including:

[0285] processor;

[0286] Memory used to store processor-executable instructions;

[0287] The processor is configured to implement the information processing method of any embodiment of this disclosure when running executable instructions.

[0288] In one embodiment, the communication device can be a network device or a UE. The network device can be a base station or a core network device.

[0289] The processor may include various types of storage media, which are non-transitory computer storage media that can continue to store information after the user equipment loses power.

[0290] The processor can connect to memory via a bus or similar means to read executable programs stored in memory, for example... Figures 5 to 11 At least one of the methods shown.

[0291] This disclosure also provides a computer storage medium storing a computer-executable program, which, when executed by a processor, implements the information processing method of any embodiment of this disclosure. For example, such as... Figures 5 to 11 At least one of the methods shown.

[0292] Regarding the apparatus or storage medium in the above embodiments, the specific manner in which each module performs its operation has been described in detail in the embodiments related to the method, and will not be elaborated upon here.

[0293] Figure 15 This is a block diagram illustrating a user equipment 800 according to an exemplary embodiment. For example, user equipment 800 may be a mobile phone, computer, digital broadcast user equipment, messaging device, game console, tablet device, medical device, fitness equipment, personal digital assistant, etc.

[0294] Reference Figure 15 User equipment 800 may include one or more of the following components: processing component 802, memory 804, power supply component 806, multimedia component 808, audio component 810, input / output (I / O) interface 812, sensor component 814, and communication component 816.

[0295] Processing component 802 typically controls the overall operation of user equipment 800, such as operations associated with display, telephone calls, data communication, camera operation, and recording. Processing component 802 may include one or more processors 820 to execute instructions to perform all or part of the steps of the methods described above. Furthermore, processing component 802 may include one or more modules to facilitate interaction between processing component 802 and other components. For example, processing component 802 may include a multimedia module to facilitate interaction between multimedia component 808 and processing component 802.

[0296] Memory 804 is configured to store various types of data to support the operation of user equipment 800. Examples of this data include instructions for any application or method operating on user equipment 800, contact data, phonebook data, messages, pictures, videos, etc. Memory 804 can be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic storage, flash memory, magnetic disk, or optical disk.

[0297] Power supply component 806 provides power to various components of user equipment 800. Power supply component 806 may include a power management system, one or more power supplies, and other components associated with generating, managing, and distributing power to user equipment 800.

[0298] Multimedia component 808 includes a screen that provides an output interface between the user equipment 800 and the user. In some embodiments, the screen may include a liquid crystal display (LCD) and a touch panel (TP). If the screen includes a touch panel, the screen may be implemented as a touchscreen to receive input signals from the user. The touch panel includes one or more touch sensors to sense touches, swipes, and gestures on the touch panel. The touch sensors may sense not only the boundaries of the touch or swipe action but also the duration and pressure associated with the touch or swipe operation. In some embodiments, multimedia component 808 includes a front-facing camera and / or a rear-facing camera. When the user equipment 800 is in an operating mode, such as a shooting mode or a video mode, the front-facing camera and / or the rear-facing camera may receive external multimedia data. Each front-facing camera and rear-facing camera may be a fixed optical lens system or have focal length and optical zoom capabilities.

[0299] Audio component 810 is configured to output and / or input audio signals. For example, audio component 810 includes a microphone (MIC) configured to receive external audio signals when user equipment 800 is in an operating mode, such as call mode, recording mode, and voice recognition mode. The received audio signals may be further stored in memory 804 or transmitted via communication component 816. In some embodiments, audio component 810 also includes a speaker for outputting audio signals.

[0300] I / O interface 812 provides an interface between processing component 802 and peripheral interface modules, such as keyboards, click wheels, buttons, etc. These buttons may include, but are not limited to, home buttons, volume buttons, power buttons, and lock buttons.

[0301] Sensor assembly 814 includes one or more sensors for providing status assessments of various aspects of user equipment 800. For example, sensor assembly 814 may detect the on / off state of user equipment 800, the relative positioning of components such as the display and keypad of user equipment 800, changes in position of user equipment 800 or a component of user equipment 800, the presence or absence of user contact with user equipment 800, orientation or acceleration / deceleration of user equipment 800, and temperature changes of user equipment 800. Sensor assembly 814 may include a proximity sensor configured to detect the presence of nearby objects without any physical contact. Sensor assembly 814 may also include a light sensor, such as a CMOS or CCD image sensor, for use in imaging applications. In some embodiments, sensor assembly 814 may also include an accelerometer, gyroscope, magnetometer, pressure sensor, or temperature sensor.

[0302] Communication component 816 is configured to facilitate wired or wireless communication between user equipment 800 and other devices. User equipment 800 can access wireless networks based on communication standards, such as WiFi, 2G, or 3G, or combinations thereof. In one exemplary embodiment, communication component 816 receives broadcast signals or broadcast-related information from an external broadcast management system via a broadcast channel. In one exemplary embodiment, communication component 816 also includes a near-field communication (NFC) module to facilitate short-range communication. For example, the NFC module may be implemented based on radio frequency identification (RFID) technology, Infrared Data Association (IrDA) technology, ultra-wideband (UWB) technology, Bluetooth (BT) technology, and other technologies.

[0303] In an exemplary embodiment, the user equipment 800 may be implemented by one or more application-specific integrated circuits (ASICs), digital signal processors (DSPs), digital signal processing devices (DSPDs), programmable logic devices (PLDs), field-programmable gate arrays (FPGAs), controllers, microcontrollers, microprocessors, or other electronic components to perform the methods described above.

[0304] In an exemplary embodiment, a non-transitory computer-readable storage medium including instructions is also provided, such as a memory 804 including instructions, which can be executed by a processor 820 of a user device 800 to perform the above-described method. For example, the non-transitory computer-readable storage medium may be a ROM, random access memory (RAM), CD-ROM, magnetic tape, floppy disk, and optical data storage device, etc.

[0305] like Figure 16 As shown, one embodiment of this disclosure illustrates the structure of a base station. For example, base station 900 can be provided as a network-side device. (Refer to...) Figure 16 The base station 900 includes a processing component 922, which further includes one or more processors, and memory resources represented by a memory 932 for storing instructions executable by the processing component 922, such as application programs. The application programs stored in the memory 932 may include one or more modules, each corresponding to a set of instructions. Furthermore, the processing component 922 is configured to execute instructions to perform any of the methods described above applied to the base station, such as... Figures 9 to 11 The method shown.

[0306] Base station 900 may also include a power supply component 926 configured to perform power management of base station 900, a wired or wireless network interface 950 configured to connect base station 900 to a network, and an input / output (I / O) interface 958. Base station 900 can operate on an operating system stored in memory 932, such as Windows Server™, Mac OS X™, Unix™, Linux™, FreeBSD™, or similar.

[0307] Other embodiments of the invention will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This disclosure is intended to cover any variations, uses, or adaptations of the invention that follow the general principles of the invention and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope and spirit of the invention are indicated by the following claims.

[0308] It should be understood that the present invention is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of the invention is limited only by the appended claims.

Claims

1. An information processing method, wherein, Performed by the user equipment (UE), including: Sending first information of the UE, wherein the first information is at least used for configuring the working mode of the UE by the network device, wherein the working mode includes at least: full-duplex mode; Send second information indicating the mobility state of the UE, wherein the second information, together with the first information, is used for the network device to configure the operating mode of the UE; Wherein, the first information includes information allowing the full-duplex mode, the first information indicating that the transmit power supported by the UE in the operating mode is less than or equal to a power threshold, and the UE being in a first mobility state, the UE operating in the full-duplex mode configuration; or, The first information includes information that the full-duplex mode is not allowed, the first information indicates that the transmit power supported by the UE in the working mode is greater than a power threshold, and / or the UE is in a second mobility state, the UE is working in a non-full-duplex mode configuration; The movement rate of the UE in the first mobility state is less than the movement rate of the UE in the second mobility state.

2. The method according to claim 1, wherein, The method further includes: Send third information indicating the amount of service cache data in the UE.

3. The method according to claim 2, wherein, The third information and the first information are used by the network device to configure the operating mode of the UE.

4. The method according to claim 2, wherein, The third information, the first information, and the second information are used by the network device to configure the operating mode of the UE.

5. The method according to claim 1, wherein, The first information sent to the UE includes: Based on the triggering condition, the first information of the UE is sent.

6. The method according to claim 5, wherein, The first information sent to the UE based on the triggering condition includes at least one of the following: In response to determining that the transmit power of the UE is less than or equal to the power threshold, the first information of the UE is transmitted; In response to determining that the UE is in the first mobility state, the first information of the UE is sent; wherein the mobility rate of the UE in the first mobility state is lower than a rate threshold; In response to determining that the UE's transmit power is less than or equal to the power threshold and determining that the UE is in the first mobility state, the first information of the UE is transmitted; In response to determining that the amount of service cached data of the UE is greater than a predetermined amount of data, the first information of the UE is sent.

7. The method according to claim 6, wherein, The method further includes: If the change in the signal strength of the reference signal received by the UE within a predetermined time range is less than or equal to a threshold value, the UE is determined to be in the first mobility state.

8. An information processing method, wherein, Performed by network devices, including: Receive the first information from the user equipment (UE); Receive the second information from the UE; Based on the second information, the mobility status of the UE is determined; Based on the first information, the configuration of the operating mode of the UE is determined; wherein the operating mode includes at least: full-duplex mode; wherein, the step of determining the configuration of the operating mode of the UE based on the first information includes: determining the configuration of the operating mode of the UE based on the first information and the mobility state of the UE; The step of determining the configuration of the operating mode of the UE based on the first information and the mobility status of the UE includes one of the following: In response to the first information including information allowing the full-duplex mode, the first information indicating that the transmit power supported by the UE in the operating mode is less than or equal to a power threshold, and determining that the UE is in a first mobility state, the configuration of the UE operating in the full-duplex mode is determined; In response to the first information including information that the full-duplex mode is not allowed, the first information indicating that the transmit power supported by the UE in the operating mode is greater than a power threshold, and / or determining that the UE is in a second mobility state, the configuration of the UE operating in non-full-duplex mode is determined; The movement rate of the UE in the first mobility state is less than the movement rate of the UE in the second mobility state.

9. The method according to claim 8, wherein, Determining the mobility status of the UE based on the second information includes one of the following: If, based on the second information, it is determined that the signal strength change value of the reference signal received by the UE within a predetermined time range is less than or equal to a threshold value, the UE is determined to be in the first mobility state. If, based on the second information, it is determined that the signal strength change value of the reference signal received by the UE within a predetermined time range is greater than the threshold value, the UE is determined to be in the second mobility state.

10. The method according to claim 8 or 9, wherein, The method further includes: Receive third information indicating the amount of service cache data of the UE.

11. The method according to claim 10, wherein, The step of determining the configuration of the operating mode of the UE based on the first information includes: Based on the first information and the third information, the configuration of the operating mode of the UE is determined.

12. The method according to claim 11, wherein, The step of determining the configuration of the operating mode of the UE based on the first information and the third information includes one of the following: In response to the first information including information allowing the full-duplex mode, and the third information indicating that the service cache data volume is greater than or equal to a predetermined data volume, the configuration of the UE working in the full-duplex mode is determined; In response to the first information including information disallowing the full-duplex mode, and / or the third information indicating that the service cache data volume is less than the predetermined data volume, it is determined that the UE is configured to operate in the non-full-duplex mode.

13. The method according to claim 10, wherein, The step of determining the configuration of the operating mode of the UE based on the first information includes: Based on the first information, the second information, and the third information, the configuration of the operating mode of the UE is determined.

14. The method according to claim 13, wherein, The step of determining the configuration of the UE's operating mode based on the first information, the second information, and the third information includes one of the following: In response to the first information including information allowing the full-duplex mode, the first information indicating that the transmit power is less than or equal to the power threshold, the second information indicating that the UE is in the first mobility state, and the third information indicating that the service cache data volume is greater than a predetermined data volume, the configuration of the UE working in full-duplex mode is determined; In response to the first information including information that the full-duplex mode is not allowed, the first information indicating that the transmission is greater than the power threshold, the second information indicating that the UE is in the second mobility state, and / or the third information indicating that the service buffer data amount is less than the predetermined data amount, it is determined that the UE is configured to work in the non-full-duplex mode.

15. An information processing apparatus, wherein, Applied to User Equipment (UE), including: The first transmitting module is configured to transmit first information of the UE, wherein the first information is at least used for the network device to configure the working mode of the UE, wherein the working mode includes at least: full-duplex mode; The first transmitting module is configured to transmit second information indicating the mobility state of the UE, wherein the second information and the first information are used for the network device to configure the operating mode of the UE; Wherein, the first information includes information allowing the full-duplex mode, the first information indicating that the transmit power supported by the UE in the operating mode is less than or equal to a power threshold, and the UE being in a first mobility state, the UE operating in the full-duplex mode configuration; or, The first information includes information that the full-duplex mode is not allowed, the first information indicates that the transmit power supported by the UE in the working mode is greater than a power threshold, and / or the UE is in a second mobility state, the UE is working in a non-full-duplex mode configuration; The movement rate of the UE in the first mobility state is less than the movement rate of the UE in the second mobility state.

16. The apparatus according to claim 15, wherein, The first sending module is configured to send third information indicating the amount of service cache data of the UE.

17. The apparatus according to claim 16, wherein, The third information and the first information are used by the network device to configure the operating mode of the UE.

18. The apparatus according to claim 16, wherein, The third information, the first information, and the second information are used by the network device to configure the operating mode of the UE.

19. The apparatus according to claim 15, wherein, The first sending module is configured to send the first information of the UE based on a trigger condition.

20. The apparatus according to claim 19, wherein, The first sending module is configured to be at least one of the following: In response to determining that the transmit power of the UE is less than or equal to the power threshold, the first information of the UE is transmitted; In response to determining that the UE is in the first mobility state, the first information of the UE is sent; wherein the mobility rate of the UE in the first mobility state is lower than a rate threshold; In response to determining that the UE's transmit power is less than or equal to the power threshold and determining that the UE is in the first mobility state, the first information of the UE is transmitted; In response to determining that the amount of service cached data of the UE is greater than a predetermined amount of data, the first information of the UE is sent.

21. The apparatus according to claim 20, wherein, The device further includes: The first determining module is configured to determine that the UE is in the first mobility state if the change in the signal strength of the reference signal received by the UE within a predetermined time range is less than or equal to a threshold value.

22. An information processing apparatus, wherein, Applied to network devices, including: The second receiving module is configured to receive first information from the user equipment (UE). The second receiving module is configured to receive the second information from the UE. The second determining module is configured to determine the mobility state of the UE based on the second information; The second determining module is configured to determine the configuration of the operating mode of the UE based on the first information; wherein the operating mode includes at least: full-duplex mode; Specifically, the second determining module is configured as one of the following: In response to the first information including information allowing the full-duplex mode, the first information indicating that the transmit power supported by the UE in the operating mode is less than or equal to a power threshold, and determining that the UE is in a first mobility state, the configuration of the UE operating in the full-duplex mode is determined; In response to the first information including information that the full-duplex mode is not allowed, the first information indicating that the transmit power supported by the UE in the operating mode is greater than a power threshold, and / or determining that the UE is in a second mobility state, the configuration of the UE operating in non-full-duplex mode is determined; The movement rate of the UE in the first mobility state is less than the movement rate of the UE in the second mobility state.

23. The apparatus according to claim 22, wherein, The second determining module is configured to determine that the UE is in the first mobility state if, based on the second information, the signal strength change value of the reference signal received by the UE within a predetermined time range is less than or equal to a threshold value. or, The second determining module is configured to determine that the UE is in the second mobility state if, based on the second information, it is determined that the signal strength change value of the reference signal received by the UE within a predetermined time range is greater than the threshold value.

24. The apparatus according to claim 22 or 23, wherein, The second receiving module is configured to receive third information indicating the amount of service cache data of the UE.

25. The apparatus according to claim 24, wherein, The second determining module is configured to determine the configuration of the operating mode of the UE based on the first information and the third information.

26. The apparatus according to claim 25, wherein, The second determining module is configured to determine the configuration of the UE working in the full-duplex mode in response to the first information including information allowing the full-duplex mode and the third information indicating that the service cache data volume is greater than or equal to a predetermined data volume; or, The second determining module is configured to determine the configuration of the UE operating in the non-full-duplex mode in response to the first information including information that the full-duplex mode is not allowed, and / or the third information indicating that the service cache data volume is less than the predetermined data volume.

27. The apparatus according to claim 24, wherein, The second determining module is configured to determine the configuration of the operating mode of the UE based on the first information, the second information and the third information.

28. The apparatus according to claim 27, wherein, The second determining module is configured to determine that the UE is operating in full-duplex mode in response to the first information including information allowing the full-duplex mode, the first information indicating that the transmit power is less than or equal to the power threshold, the second information indicating that the UE is in the first mobility state, and the third information indicating that the service buffer data amount is greater than a predetermined data amount; or, The second determining module is configured to determine the configuration of the UE operating in the non-full-duplex mode in response to the first information including information that the full-duplex mode is not allowed, the first information indicating that the transmission is greater than the power threshold, the second information indicating that the UE is in the second mobility state and / or the third information indicating that the service buffer data amount is less than the predetermined data amount.

29. A communication device, wherein, The communication device includes: processor; Memory used to store the processor's executable instructions; When the processor is configured to execute the executable instructions, it implements the information processing method according to any one of claims 1 to 14.

30. A computer storage medium, wherein, The computer storage medium stores a computer-executable program, which, when executed by a processor, implements the information processing method according to any one of claims 1 to 14.

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