Secondary cell configuration method, apparatus, base station and computer readable storage medium

By acquiring terminal status information and sensing intensity information, and selecting an appropriate secondary cell configuration strategy, the problem of low accuracy in secondary cell configuration in traditional technologies is solved, achieving more efficient secondary cell configuration and user data rate recovery.

CN116582869BActive Publication Date: 2025-11-28GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD
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Patent Information

Application Number
CN202310792672.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-29
Publication Date
2025-11-28
Estimated Expiration
2043-06-29

AI Technical Summary

Technical Problem

Traditional secondary cell configuration methods have low accuracy and cannot accurately determine the configuration method of secondary cells in different user scenarios, resulting in long user data rate recovery times.

Method used

By acquiring the terminal's status information, the user's perceived strength information is determined, and an appropriate secondary cell configuration strategy is selected based on the perceived strength information, including blind configuration or measurement-based configuration, and secondary cell configuration is performed in combination with the measurement information of the terminal's neighboring cells.

Benefits of technology

It improves the accuracy of secondary cell configuration, reduces configuration latency and user data rate recovery time, and enhances user experience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application relates to a secondary cell configuration method, device, base station and computer readable storage medium. The method comprises the following steps: obtaining state information of a terminal; determining the perceived intensity information of a user according to the state information; determining the target configuration mode of the secondary cell of the terminal according to the perceived intensity information; and the target configuration mode is used for configuring the secondary cell. The method can improve the accuracy of the determined configuration mode of the secondary cell.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of communication, in particular to a secondary cell configuration method and device, a base station and a computer readable storage medium. BACKGROUND

[0002] With the development of communication technology, in order to improve the data transmission rate of a single user in a wireless network, carrier aggregation allocates multiple frequency blocks (component carriers) to the same user for data service transmission. The carrier aggregation terminal triggers the configuration of the secondary cell when it initially accesses the cell, switches the cell or reestablishes the cell. Generally, the base station has two configuration methods when configuring the secondary cell for the terminal, one is blind configuration, and the other is secondary cell configuration based on measurement.

[0003] In the traditional technology, the base station configures the secondary cell by using a fixed configuration method, that is, the base station configures the secondary cell by using a fixed blind configuration method or a fixed measurement-based configuration method.

[0004] However, the traditional method has the problem of low accuracy of the determined configuration method. SUMMARY

[0005] The embodiments of the present application provide a secondary cell configuration method, device, base station and computer readable storage medium, which can improve the accuracy of the determined secondary cell configuration method.

[0006] In a first aspect, the embodiments of the present application provide a secondary cell configuration method, comprising:

[0007] obtaining state information of a terminal;

[0008] determining user awareness intensity information according to the state information;

[0009] determining a target configuration method of a secondary cell of the terminal according to the awareness intensity information; the target configuration method is used for configuring the secondary cell.

[0010] In a second aspect, the embodiments of the present application provide a secondary cell configuration device, comprising:

[0011] an obtaining module configured to obtain state information of a terminal;

[0012] a first determining module configured to determine user awareness intensity information according to the state information;

[0013] a second determining module configured to determine a target configuration method of a secondary cell of the terminal according to the awareness intensity information; the target configuration method is used for configuring the secondary cell.

[0014] In a third aspect, an embodiment of the present application provides a base station, comprising a transceiver, a memory and a processor, the memory storing a computer program, and the computer program, when executed by the processor, causing the processor to perform the steps of the secondary cell configuration method according to the first aspect.

[0015] In a fourth aspect, an embodiment of the present application provides a computer-readable storage medium, storing a computer program, and the computer program, when executed by a processor, implementing the steps of the method according to the first aspect.

[0016] In a fifth aspect, an embodiment of the present application provides a computer program product, comprising a computer program, and the computer program, when executed by a processor, implementing the steps of the method according to the first aspect.

[0017] The secondary cell configuration method, device, base station and computer-readable storage medium described above can determine the user's perception intensity information according to the state information of the terminal by obtaining the state information of the terminal, so as to determine the target configuration mode of the secondary cell of the terminal according to the user's perception intensity information. Since the influence of the configuration mode of the secondary cell in different user scenarios is considered in the process, and the user's perception intensity information is combined, the target configuration mode of the secondary cell determined is more accurate, thereby improving the accuracy of the target configuration mode of the secondary cell determined. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the drawings needed in the embodiments or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0019] Figure 1 The application environment diagram of the secondary cell configuration method in an embodiment;

[0020] Figure 2 The flowchart of the secondary cell configuration method in an embodiment;

[0021] Figure 3 The flowchart of the secondary cell configuration method in another embodiment;

[0022] Figure 4 The structural block diagram of the secondary cell configuration device in an embodiment;

[0023] Figure 5 The structural block diagram of the secondary cell configuration device in another embodiment;

[0024] Figure 6A structure block diagram of a device for configuring a secondary cell in another embodiment;

[0025] Figure 7 A structure diagram of a base station in an embodiment. DETAILED DESCRIPTION

[0026] In order to make the purposes, technical solutions and advantages of the present application clearer, the present application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and not used to limit the present application.

[0027] It can be understood that the terms "first", "second", and the like used in the present application can be used herein to describe various elements, but these elements are not limited by these terms. These terms are only used to distinguish the first element from another element. For example, without departing from the scope of the present application, the first client can be referred to as the second client, and similarly, the second client can be referred to as the first client. The first client and the second client are both clients, but they are not the same client.

[0028] The secondary cell configuration method provided by the embodiments of the present application can be applied to, for example, Figure 1The application environment shown. Among them, the base station 104 is a device deployed in an access network to provide wireless communication functions for the terminal 102, and the base station 104 can manage one or more cells. In systems using different wireless access technologies, the names of devices with base station functions may be different. For example, in an LTE system, it is called an evolved node (eNodeB, eNB); in a 5G new radio (New Radio, NR) system, it is called gNodeB or gNB. The base station 104 in the embodiment of the present application can be any type of base station device such as a macro base station, a micro base station, or a pico base station. Wireless communication can be performed between the terminal 102 and the base station 104. The terminal 102 can be a device that provides voice and / or other service data connectivity to a user, or a handheld device with wireless connection function, or other processing device connected to a wireless modem. The terminal 102 can be a user equipment (user equipment, UE), an access terminal, a UE unit, a UE station, a mobile station, a mobile station, a remote station, a remote terminal, a mobile device, a UE terminal, a wireless communication device, a UE agent, or a UE device, etc. The access terminal can be a cellular phone, a cordless phone, a session initiation protocol (SIP) phone, a wireless local loop (WLL) station, a personal digital assistant (PDA), a handheld device with wireless communication function, a computing device, or other processing device connected to a wireless modem, a vehicle-mounted device, a wearable device, a terminal in a 5G network, or a terminal in a future evolved public land mobile network (PLMN) network, etc.

[0029] Currently, in order to improve the data transmission rate of a single user in a wireless network, carrier aggregation (Carrier Aggregation, CA) is proposed. Carrier aggregation allocates multiple frequency blocks (component carriers) to the same user for data service transmission, allowing the terminal to simultaneously transmit and receive data on multiple sub-bands. The more frequency blocks allocated to the same user, the higher the data rate the user can download. Typically, a terminal can determine the maximum number of carriers it can use for uplink and downlink transmission according to its own capacity. Carrier aggregation can better utilize cell resources, and the total data flow of the cell will also increase. Carrier aggregation can increase the system transmission bandwidth to meet the requirements of single-user peak rate and system capacity improvement. In addition, carrier aggregation can also achieve inter-cell load balancing.

[0030] In carrier aggregation, each carrier participating in carrier aggregation is called a component carrier, among all component carriers, the component carrier carrying signaling transmission and managing other component carriers is called a primary carrier, also called Pcell (Primary cell); the secondary carrier is also called Scell (Secondary Cell), used to expand bandwidth and improve rate, and the primary carrier decides when to increase or delete.

[0031] Generally, there are three states of carrier aggregation terminals, secondary cell configuration is not activated, secondary cell configuration and activation, secondary cell is not configured, and the base station can uniformly manage the configuration of the secondary cell through the radio resource control (Radio Resource Control, RRC) signaling and the medium access control layer control unit on the primary carrier. The configuration of the secondary cell is triggered when the carrier aggregation terminal initially accesses the cell, switches the cell or reestablishes the cell, and the base station can complete the configuration of the secondary cell through measurement event A4 or blind configuration. Among them, the blind configuration of the secondary cell is to directly configure the secondary cell for the terminal through the RRC signaling message when initially accessing the cell, switching the cell or reestablishing the cell, and the primary carrier and the secondary cell resource are directly configured after the terminal accesses. The blind configuration of the secondary cell has the characteristics of short configuration delay, which is suitable for the scenario where multiple member carriers have similar coverage, and can quickly realize the function configuration of carrier aggregation; the secondary cell configuration based on measurement is that the terminal needs to perform inter-frequency measurement, generally using measurement based on A4 or A5 event, and the base station attempts to configure the secondary cell from high to low according to the reference signal receiving power (Reference Signal Receiving Power, RSRP) of the candidate secondary cell in the measurement report. The secondary cell configuration based on measurement has the characteristics of long configuration delay, which is suitable for the scenario where multiple member carriers have different coverage, and has the advantages of ensuring the reliability of adding the secondary cell, but the disadvantages are the measurement time and signaling overhead, for example, the switching scheme based on the secondary carrier A4 event will first configure the original secondary carrier during the switching process of the primary service cell, and then fall back to the single carrier state. After the switching is completed, the target cell configures the secondary cell according to the A4 measurement result. Compared with the scheme of directly blind configuration by the base station, the scheme increases the measurement time and the time of measurement reporting, resulting in a large increase in time delay and a long recovery time of user data rate.

[0032] In the prior art, there are mainly two methods for the base station to determine whether to use blind configuration or measurement-based configuration for the secondary cell configuration, one is fixed configuration by the base station, and the other is that the base station configures the secondary cell by blind configuration if the signal of the neighbor cell meeting the secondary cell condition is better than a predetermined threshold, and configures the secondary cell by measurement-based configuration if the signal is worse than the predetermined threshold. However, the fixed configuration method in the prior art cannot be dynamically adjusted according to the access terminal, and can only fixedly select blind configuration or measurement-based configuration. In the blind configuration method, the base station sorts the candidate secondary cells and then sends them to the terminal, but the sorting method of the base station cannot truly reflect the service quality of the terminal after the secondary cell is configured, and the secondary cell with high priority at the base station side may not have good actual service quality at the terminal side. If the base station is fixed to use measurement-based configuration, the measurement time and the time for reporting the measurement of all terminals in the coverage of the base station will be increased when the secondary cell is configured, resulting in a large time delay and a long recovery time of the user data rate. Although the base station uses the measurement information of the terminal to dynamically adjust the configuration method in the method of determining whether to use blind configuration or measurement-based configuration according to the measurement information of the terminal, the measurement information of the terminal only reflects the signal quality of the terminal at the current time and location. If the terminal is at the edge of the cell or in a high-speed motion state, the signal environment is complex and changes rapidly, and even if the signal quality is higher than the threshold, the base station may use blind configuration to configure the secondary cell, which may be counterproductive and cannot accurately determine the configuration method of the secondary cell. That is, in the prior art, the base station determines the configuration method of the secondary cell in the carrier aggregation scenario by fixed configuration or measurement information, and does not consider the influence of these configuration methods on different user scenarios, and cannot accurately determine the configuration method of the secondary cell. Therefore, the embodiments of the present application provide a secondary cell configuration method, in which the base station obtains the state information of the terminal, determines the perception intensity information of the user according to the state information of the terminal, and determines the target configuration method for configuring the secondary cell of the terminal according to the perception intensity information of the user. Since the influence of the configuration method of the secondary cell on different user scenarios is considered in this process, and the perception intensity information of the user is combined, the target configuration method of the secondary cell determined is more accurate, and the accuracy of the target configuration method of the secondary cell is improved.

[0033] The technical solutions of the present application and how the technical solutions solve the above technical problems will be described in detail below with specific embodiments. The following specific embodiments can be combined with each other, and the same or similar concepts or processes can not be described again in some embodiments. The embodiments of the present application will be described below with reference to the drawings.

[0034] In one embodiment, asFigure 2 As shown, a secondary cell configuration method is provided, and the method is applied to Figure 1 As shown, a secondary cell configuration method is provided, and the method is applied to

[0035] S201, obtaining state information of a terminal.

[0036] The state information of the terminal includes, but is not limited to, location information of the terminal, speed information of the terminal, and service traffic information of the terminal, etc., which are not limited in the embodiment. Optionally, in the embodiment, the base station can monitor the terminal in real time through the communication connection between the base station and the terminal to obtain the state information of the terminal.

[0037] It can be understood that the location information of the terminal is used to represent the location of the terminal, and the base station can determine the signal strength information of the environment where the terminal is located through the location information of the terminal. For example, if the location of the terminal is a shopping mall, an office building or the like, it can be determined that the terminal is in a place with good signal coverage, and if the location of the terminal is a mountainous area, a suburban area or the like, it can be determined that the terminal is in a place with poor signal coverage. The speed information of the terminal is related to the current state of the user, and the current state information of the user can be reflected through the speed information of the terminal. Optionally, in the embodiment, the speed information of the terminal can be in a stationary state, a micro-motion state, a fast-motion state, etc. Generally, the service traffic information of the terminal corresponding to different network usage conditions of the user is also different, and the current network usage condition of the user can be reflected through the service traffic information of the terminal. For example, if the service traffic of the terminal is small or even no traffic, it can be determined that the terminal is in a screen-off state, if the service traffic of the terminal is small, it can be determined that the terminal is in a normal network browsing state, and if the service traffic of the terminal is large, it can be determined that the terminal is in a game scenario or a video call state.

[0038] S202, determining the perceived intensity information of the user according to the state information.

[0039] Optionally, in the embodiment, the base station can determine the scene information of the terminal according to the state information of the terminal, and determine the perceived intensity information of the user according to the scene information of the terminal. For example, if it is determined according to the state information of the terminal that the terminal is in a high-speed-edge-small-traffic scenario, it can be determined that the perceived intensity information of the user is weak perception; if it is determined according to the state information of the terminal that the terminal is in a stationary-residential-normal-network scenario, it can be determined that the perceived intensity information of the user is weak perception; and if it is determined according to the state information of the terminal that the terminal is in a stationary-residential-video-call scenario, it can be determined that the perceived intensity information of the user is strong perception.

[0040] S203, determine a target configuration mode of the secondary cell of the terminal according to the perceived intensity information; the target configuration mode is used for configuring the secondary cell.

[0041] In the embodiment, the determined target configuration mode for configuring the secondary cell can be a blind configuration mode or a measurement-based configuration mode, which is not limited in the embodiment.

[0042] Optionally, in the embodiment, the base station can determine the configuration mode matching the perceived intensity information of the user as the target configuration mode according to the perceived intensity information of the user.

[0043] It should be noted that the blind configuration is to configure the secondary cell for the terminal directly through the RRC signaling message when the terminal initially accesses the cell, switches the cell or reconfigures the cell. The primary carrier and the secondary cell resource are configured directly after the terminal accesses, the configuration delay is short, and the function configuration of the carrier aggregation can be realized quickly. Therefore, the blind configuration mode can be applied to the scenario where the user has strong perceived intensity. The secondary cell configuration scheme based on measurement is to perform inter-frequency measurement by the terminal, generally based on the measurement of A4 or A5 events. The base station attempts to configure the secondary cell in turn according to the RSRP of the candidate secondary cell from high to low in the measurement report. The configuration delay is long, and the measurement time and signaling overhead are required. Therefore, the measurement-based configuration mode can be applied to the scenario where the user has weak perceived intensity. The tolerance of the service quality in the scenario where the user has weak perceived intensity is improved accordingly, and the side effects of the configuration delay caused by the measurement-based mode can be offset.

[0044] For example, in the embodiment, if the perceived intensity information of the user is strong perception, the base station can determine the configuration mode meeting the strong perception as the target configuration mode, for example, the blind configuration mode can be determined as the target configuration mode of the secondary cell. If the perceived intensity information of the user is weak perception, the base station can determine the configuration mode meeting the weak perception as the target configuration mode, for example, the measurement-based configuration mode can be determined as the target configuration mode of the secondary cell.

[0045] In the above secondary cell configuration method, the state information of the terminal is acquired, the perceived intensity information of the user is determined according to the state information of the terminal, the target configuration mode of the secondary cell of the terminal is determined according to the perceived intensity information of the user, the influence of the configuration mode of the secondary cell in different user scenarios is considered in the process, and the target configuration mode of the secondary cell determined is more accurate in combination with the perceived intensity information of the user, so that the accuracy of the target configuration mode of the secondary cell determined is improved.

[0046] In the scenario of determining the target configuration mode of the secondary cell of the terminal according to the perception intensity information of the user, the configuration strategy of the secondary cell can be determined according to the perception intensity information of the user, so as to determine the target configuration mode of the secondary cell. In an embodiment, as shown in FIG. 7, S203 includes: Figure 3

[0047] S301, determining the configuration strategy of the secondary cell according to the perception intensity information.

[0048] In the embodiment, different perception intensity information corresponds to different configuration strategies. Optionally, in the embodiment, if the perception intensity information of the user represents that the perception intensity of the user is the first perception intensity, the configuration strategy of the secondary cell can be determined as the first configuration strategy, wherein the priority of the blind configuration mode in the first configuration strategy is higher than the priority of the measurement-based configuration mode. If the perception intensity information of the user represents that the perception intensity of the user is the second perception intensity, the configuration strategy of the secondary cell can be determined as the second configuration strategy, wherein the priority of the blind configuration mode in the second configuration strategy is lower than the priority of the measurement-based configuration mode. In the embodiment, the first perception intensity is higher than the second perception intensity. As an example, the first perception intensity in the embodiment can be strong perception, and the second perception intensity can be weak perception.

[0049] S302, determining the target configuration mode of the secondary cell according to the configuration strategy.

[0050] Optionally, in the embodiment, after the configuration strategy of the secondary cell is determined according to the perception intensity information of the user, the target configuration mode of the secondary cell can be determined according to the configuration mode with higher priority in the determined configuration strategy. For example, if the determined configuration strategy is the first configuration strategy, the configuration mode with higher priority in the first configuration strategy can be determined as the target configuration mode of the secondary cell. If the determined configuration strategy is the second configuration strategy, the configuration mode with higher priority in the second configuration strategy can be determined as the target configuration mode of the secondary cell.

[0051] In the embodiment, in the process of determining the configuration strategy of the secondary cell according to the perception intensity information of the user, the influence on the user experience is considered, the configuration strategy of the secondary cell is optimized according to the perception intensity information of the user, so that the determined configuration strategy of the secondary cell is more accurate, and the target configuration mode of the secondary cell can be accurately determined from the configuration strategy with higher accuracy, thereby improving the accuracy of the determined target configuration mode of the secondary cell.

[0052] The detailed process of determining the target configuration mode of the secondary cell according to the configuration strategy will be described in the embodiment. In an embodiment, S302 includes:

[0053] ​If the configuration policy is the first configuration policy, the target configuration mode of the secondary cell is determined as the blind configuration mode; or if the configuration policy is the second configuration policy, the target configuration mode of the secondary cell is determined as the measurement-based configuration mode.

[0054] In the embodiment, an optional implementation is that if the configuration policy of the secondary cell is determined as the first configuration policy according to the perceived intensity information of the user, since the priority of the blind configuration mode is higher than the priority of the measurement-based configuration mode in the first configuration policy, in the embodiment, the blind configuration mode in the first configuration policy can be determined as the target configuration mode of the secondary cell in the case that the configuration policy is the first configuration policy.

[0055] In the embodiment, another optional implementation is that if the configuration policy of the secondary cell is determined as the second configuration policy according to the perceived intensity information of the user, since the priority of the measurement-based configuration mode is higher than the priority of the blind configuration mode in the second configuration policy, in the embodiment, the measurement-based configuration mode can be determined as the target configuration mode of the secondary cell in the case that the configuration policy is the second configuration policy.

[0056] In the embodiment, the priorities of the blind configuration and the measurement-based configuration mode are different in different configuration policies, and the configuration policy of the secondary cell is determined according to the perceived intensity information of the user, the determined configuration policy of the secondary cell considers the influence on the user experience, so that the accuracy of the determined configuration policy of the secondary cell is higher, thereby the target configuration mode of the secondary cell can be accurately determined from the determined configuration policy of the secondary cell with higher accuracy, and the accuracy of the determined target configuration mode of the secondary cell is ensured.

[0057] Further, as an optional implementation, after the target configuration mode of the secondary cell is determined, the secondary cell can be configured according to the target configuration mode of the secondary cell and the measurement information of the neighboring cell of the camped cell of the terminal. In an embodiment, the method further includes: configuring the secondary cell according to the target configuration mode and the measurement information of the neighboring cell of the camped cell of the terminal.

[0058] In the embodiment, the base station can measure the neighboring cell of the camped cell of the terminal to obtain the measurement information of the neighboring cell of the camped cell of the terminal, for example, the base station can obtain the measurement information of the neighboring cell of the camped cell of the terminal through RSRP, signal to interference plus noise ratio (SINR), reference signal receiving quality (RSRQ) and the like.

[0059] Further, as an optional implementation, the base station can determine the secondary cell index according to the determined target configuration mode of the secondary cell and the measurement information of the neighboring cell of the camped cell of the terminal, and further obtain the configuration information of the secondary cell according to the secondary cell index, and configure the secondary cell. Optionally, in the embodiment, if the base station determines that the target configuration mode of the secondary cell is the blind configuration mode, the base station can determine the index of the secondary cell according to the blind configuration mode and the measurement information of the neighboring cell of the camped cell of the terminal, obtain the configuration information of the secondary cell according to the determined index of the secondary cell, and configure the secondary cell; if the base station determines that the target configuration mode of the secondary cell is the measurement-based configuration mode, the base station can determine the index of the secondary cell according to the measurement-based configuration mode and the measurement information of the neighboring cell of the camped cell of the terminal, obtain the configuration information of the secondary cell according to the determined index of the secondary cell, and configure the secondary cell.

[0060] In the embodiment, since the influence on user experience is considered in the process of determining the target configuration mode of the secondary cell, the accuracy of the determined target configuration mode of the secondary cell is high, so that the configuration of the secondary cell according to the determined target configuration mode and the measurement information of the neighboring cell of the camped cell of the terminal can reduce the influence on the user as much as possible in the process of configuring the secondary cell.

[0061] For the convenience of those skilled in the art, the secondary cell configuration method provided in the application is described in detail below in combination with a complete embodiment:

[0062] S1, obtaining the state information of the terminal; wherein the state information of the terminal includes at least one of the position information of the terminal, the speed information of the terminal and the service traffic information of the terminal.

[0063] S2, determining the perceived intensity information of the user according to the state information of the terminal.

[0064] S3, if the perceived intensity information represents that the perceived intensity of the user is the first perceived intensity, determining that the configuration strategy of the secondary cell is the first configuration strategy; the priority of the blind configuration mode in the first configuration strategy is higher than the priority of the measurement-based configuration mode.

[0065] S4, if the perceived intensity information represents that the perceived intensity of the user is the second perceived intensity, determining that the configuration strategy of the secondary cell is the second configuration strategy; the priority of the blind configuration mode in the second configuration strategy is lower than the priority of the measurement-based configuration mode; wherein the first perceived intensity is higher than the second perceived intensity.

[0066] S5, if the configuration strategy is the first configuration strategy, determining that the target configuration mode is the blind configuration mode.

[0067] S6, if the configuration strategy is the second configuration strategy, determining that the target configuration mode is the measurement-based configuration mode.

[0068] S7, configuring the secondary cell according to the target configuration mode and the measurement information of the neighboring cell of the camped cell of the terminal.

[0069] It should be noted that the description in S1-S7 above can refer to the description of the related embodiments above, and the effects are similar, and the embodiments will not be described here.

[0070] It should be understood that although each step in the flowchart involved in the above embodiments is displayed in sequence according to the arrow, these steps are not necessarily executed in the order indicated by the arrow. Unless otherwise stated herein, the execution of these steps has no strict order restriction, and these steps can be executed in other orders. Moreover, at least part of the steps in the flowchart involved in the above embodiments can include multiple steps or multiple stages, which are not necessarily executed at the same time, but can be executed at different times, and the execution order of these steps or stages is not necessarily sequential, but can be alternately executed with other steps or steps or stages in other steps.

[0071] Based on the same inventive concept, the embodiments of the present application also provide a secondary cell configuration device for implementing the above-mentioned secondary cell configuration method. The implementation scheme for solving the problem provided by the device is similar to the implementation scheme described in the above method, so the specific limitations in one or more secondary cell configuration device embodiments provided below can refer to the limitations of the secondary cell configuration method in the above, and will not be described here.

[0072] In one embodiment, as shown in Figure 4 A secondary cell configuration device is provided, comprising: an acquisition module 10, a first determination module 11 and a second determination module 12, wherein:

[0073] The acquisition module 10 is configured to acquire state information of a terminal.

[0074] The first determination module 11 is configured to determine the perceived intensity information of the user according to the state information.

[0075] The second determination module 12 is configured to determine the target configuration mode of the secondary cell of the terminal according to the perceived intensity information; the target configuration mode is used to configure the secondary cell.

[0076] Optionally, the state information includes at least one of the position information of the terminal, the speed information of the terminal, and the service traffic information of the terminal.

[0077] The secondary cell configuration device provided in the embodiment can execute the above-mentioned method embodiments, and the implementation principles and technical effects are similar, which will not be described here.

[0078] On the basis of the above-mentioned embodiments, as shown in Figure 5 Optionally, the second determining module 12 comprises a first determining unit 121 and a second determining unit 122.

[0079] The first determining unit 121 is configured to determine the configuration strategy of the secondary cell according to the perception intensity information.

[0080] The second determining unit 122 is configured to determine the target configuration mode of the secondary cell according to the configuration strategy.

[0081] The secondary cell configuration apparatus provided in the embodiment can execute the above-mentioned method embodiments, and has similar implementation principles and technical effects, which will not be described here.

[0082] On the basis of the above-mentioned embodiments, the first determining unit 121 is specifically configured to determine the configuration strategy of the secondary cell as a first configuration strategy if the perception intensity information represents that the perception intensity of the user is a first perception intensity; and the priority of the blind configuration mode in the first configuration strategy is higher than the priority of the measurement-based configuration mode.

[0083] The secondary cell configuration apparatus provided in the embodiment can execute the above-mentioned method embodiments, and has similar implementation principles and technical effects, which will not be described here.

[0084] On the basis of the above-mentioned embodiments, the first determining unit 121 is specifically configured to determine the configuration strategy of the secondary cell as a second configuration strategy if the perception intensity information represents that the perception intensity of the user is a second perception intensity; the priority of the blind configuration mode in the second configuration strategy is lower than the priority of the measurement-based configuration mode; and the first perception intensity is higher than the second perception intensity.

[0085] The secondary cell configuration apparatus provided in the embodiment can execute the above-mentioned method embodiments, and has similar implementation principles and technical effects, which will not be described here.

[0086] On the basis of the above-mentioned embodiments, the second determining unit 122 is specifically configured to determine the target configuration mode as the blind configuration mode if the configuration strategy is the first configuration strategy.

[0087] The secondary cell configuration apparatus provided in the embodiment can execute the above-mentioned method embodiments, and has similar implementation principles and technical effects, which will not be described here.

[0088] On the basis of the above-mentioned embodiments, the second determining unit 122 is specifically configured to determine the target configuration mode as the measurement-based configuration mode if the configuration strategy is the second configuration strategy.

[0089] The secondary cell configuration apparatus provided in the embodiment can execute the method embodiments, and has similar implementation principles and technical effects, which will not be described here.

[0090] On the basis of the above-mentioned embodiments, as shown in Figure 6 The apparatus can further include a configuration module 13, wherein:

[0091] The configuration module 13 is configured to configure the secondary cell according to the target configuration mode and measurement information of the neighboring cell of the camped cell of the terminal.

[0092] The secondary cell configuration apparatus provided in the embodiment can execute the method embodiments, and has similar implementation principles and technical effects, which will not be described here.

[0093] The modules in the secondary cell configuration apparatus can be implemented by software, hardware or a combination thereof. The modules can be embedded in or independent of the processor in the computer device in hardware form, or stored in the memory in the computer device in software form, so as to be called and executed by the processor to perform the operations corresponding to the modules.

[0094] In one embodiment, as shown in Figure 7 The base station can include a receiver 31, a memory 32, a processor 33, at least one communication bus 34 and a transmitter 35. The communication bus 34 is used to realize the communication connection between the elements. The memory 32 can include a high-speed RAM memory, and can also include a non-volatile storage NVM, such as at least one disk memory. The memory 32 can store various programs for completing various processing functions and implementing the steps of the secondary cell configuration method of the embodiment. In the embodiment, the transmitter 35 can be a radio frequency processing module or a baseband processing module in the access network device, and the receiver 31 can also be a radio frequency processing module or a baseband processing module in the access network device. The transmitter 35 and the receiver 31 can be integrated together to realize a transceiver. The transmitter 35 and the receiver 31 can be coupled to the processor 33, and can realize the receiving or transmitting action under the indication or control of the processor 33.

[0095] Those skilled in the art can understand, Figure 7 The structure shown in the figure is only a block diagram of part of the structure related to the scheme of the present application, and does not constitute a limitation on the computer device to which the scheme of the present application is applied. The specific computer device can include more or fewer components than those shown in the figure, or combine certain components, or have a different arrangement of components.

[0096] In one embodiment, a base station is provided, comprising a transceiver, a memory, and a processor, the memory storing a computer program, and the processor implementing the following steps when executing the computer program:

[0097] obtaining state information of the terminal;

[0098] determining perception intensity information of the user according to the state information;

[0099] determining a target configuration mode of a secondary cell of the terminal according to the perception intensity information; the target configuration mode is used for configuring the secondary cell.

[0100] In one embodiment, the processor further implements the following steps when executing the computer program:

[0101] determining a configuration strategy of the secondary cell according to the perception intensity information;

[0102] determining the target configuration mode of the secondary cell according to the configuration strategy.

[0103] In one embodiment, the processor further implements the following steps when executing the computer program:

[0104] if the perception intensity information represents that the perception intensity of the user is a first perception intensity, determining that the configuration strategy of the secondary cell is a first configuration strategy; in the first configuration strategy, the priority of the blind configuration mode is higher than the priority of the measurement-based configuration mode.

[0105] In one embodiment, the processor further implements the following steps when executing the computer program:

[0106] if the perception intensity information represents that the perception intensity of the user is a second perception intensity, determining that the configuration strategy of the secondary cell is a second configuration strategy; in the second configuration strategy, the priority of the blind configuration mode is lower than the priority of the measurement-based configuration mode; wherein the first perception intensity is higher than the second perception intensity.

[0107] In one embodiment, the processor further implements the following steps when executing the computer program:

[0108] if the configuration strategy is the first configuration strategy, determining that the target configuration mode is the blind configuration mode.

[0109] In one embodiment, the processor further implements the following steps when executing the computer program:

[0110] if the configuration strategy is the second configuration strategy, determining that the target configuration mode is the measurement-based configuration mode.

[0111] In one embodiment, the processor further implements the following steps when executing the computer program:

[0112] The secondary cell is configured according to the target configuration mode and measurement information of a neighboring cell of a camped cell of the terminal.

[0113] In one embodiment, the state information includes at least one of location information of the terminal, speed information of the terminal, and service traffic information of the terminal.

[0114] Embodiments of the present application also provide a computer readable storage medium. One or more nonvolatile computer readable storage media storing computer executable instructions that, when executed by one or more processors, cause the processors to perform the steps of the method for configuring a secondary cell.

[0115] In one embodiment, a computer readable storage medium is provided, which stores a computer program. The computer program is executed by a processor to implement the following steps:

[0116] Obtaining state information of a terminal;

[0117] Determining perception intensity information of a user according to the state information;

[0118] Determining a target configuration mode of a secondary cell of the terminal according to the perception intensity information; the target configuration mode is used to configure the secondary cell.

[0119] In one embodiment, the computer program is executed by the processor to further implement the following steps:

[0120] Determining a configuration strategy of the secondary cell according to the perception intensity information;

[0121] Determining the target configuration mode of the secondary cell according to the configuration strategy.

[0122] In one embodiment, the computer program is executed by the processor to further implement the following steps:

[0123] If the perception intensity information represents that the perception intensity of the user is a first perception intensity, determining that the configuration strategy of the secondary cell is a first configuration strategy; in the first configuration strategy, the priority of the blind configuration mode is higher than the priority of the measurement-based configuration mode.

[0124] In one embodiment, the computer program is executed by the processor to further implement the following steps:

[0125] If the perception intensity information represents that the perception intensity of the user is a second perception intensity, determining that the configuration strategy of the secondary cell is a second configuration strategy; in the second configuration strategy, the priority of the blind configuration mode is lower than the priority of the measurement-based configuration mode; wherein the first perception intensity is higher than the second perception intensity.

[0126] In one embodiment, the computer program is executed by the processor to further implement the following steps:

[0127] If the configuration policy is the first configuration policy, it is determined that the target configuration mode is a blind configuration mode.

[0128] In one embodiment, the computer program, when executed by the processor, further implements the following steps:

[0129] If the configuration policy is the second configuration policy, it is determined that the target configuration mode is a measurement-based configuration mode.

[0130] In one embodiment, the computer program, when executed by the processor, further implements the following steps:

[0131] According to the target configuration mode and the measurement information of the neighboring cell of the camped cell of the terminal, the secondary cell is configured.

[0132] In one embodiment, the state information includes at least one of location information of the terminal, speed information of the terminal, and service traffic information of the terminal.

[0133] Embodiments of the present application also provide a computer program product containing instructions, which, when executed on a computer, cause the computer to execute the secondary cell configuration method.

[0134] In one embodiment, a computer program product is provided, including a computer program, which, when executed by a processor, implements the following steps:

[0135] Obtaining state information of a terminal;

[0136] Determining awareness intensity information of a user according to the state information;

[0137] According to the awareness intensity information, determining a target configuration mode of a secondary cell of the terminal; the target configuration mode is used to configure the secondary cell.

[0138] In one embodiment, the computer program, when executed by the processor, further implements the following steps:

[0139] According to the awareness intensity information, determining a configuration policy of the secondary cell;

[0140] According to the configuration policy, determining the target configuration mode of the secondary cell.

[0141] In one embodiment, the computer program, when executed by the processor, further implements the following steps:

[0142] If the awareness intensity information represents that the awareness intensity of the user is a first awareness intensity, it is determined that the configuration policy of the secondary cell is a first configuration policy; in the first configuration policy, the priority of the blind configuration mode is higher than the priority of the measurement-based configuration mode.

[0143] In one embodiment, the computer program, when executed by the processor, further implements the following steps:

[0144] If the perceived intensity information represents the perceived intensity of the user as a second perceived intensity, a configuration strategy of the secondary cell is determined as a second configuration strategy; the priority of a blind configuration mode in the second configuration strategy is lower than the priority of a measurement-based configuration mode; wherein the first perceived intensity is higher than the second perceived intensity.

[0145] In one embodiment, the computer program, when executed by the processor, further implements the following steps:

[0146] If the configuration strategy is the first configuration strategy, the target configuration mode is determined as the blind configuration mode.

[0147] In one embodiment, the computer program, when executed by the processor, further implements the following steps:

[0148] If the configuration strategy is the second configuration strategy, the target configuration mode is determined as the measurement-based configuration mode.

[0149] In one embodiment, the computer program, when executed by the processor, further implements the following steps:

[0150] According to the target configuration mode and the measurement information of the neighboring cell of the camped cell of the terminal, the secondary cell is configured.

[0151] In one embodiment, the state information includes at least one of the location information of the terminal, the speed information of the terminal, and the service traffic information of the terminal.

[0152] It should be noted that the user information (including but not limited to user equipment information, user personal information, etc.) and data (including but not limited to data for analysis, stored data, displayed data, etc.) involved in the present application are all information and data authorized by the user or authorized by all parties.

[0153] Those skilled in the art can understand that all or part of the processes in the above-mentioned embodiment methods can be completed by instructing the relevant hardware through a computer program. The computer program can be stored in a non-volatile computer readable storage medium, and when the computer program is executed, the processes of the above-mentioned embodiments of the methods can be included. Any reference to memory, database or other medium used in the embodiments provided in the present application can include at least one of non-volatile and volatile memory. Non-volatile memory can include read-only memory (Read-Only Memory, ROM), magnetic tape, floppy disk, flash memory, optical storage, high-density embedded non-volatile memory, resistive memory (ReRAM), magnetoresistive random access memory (Magnetoresistive Random Access Memory, MRAM), ferroelectric memory (Ferroelectric Random Access Memory, FRAM), phase change memory (Phase Change Memory, PCM), graphene memory, etc. Volatile memory can include random access memory (Random Access Memory, RAM) or external cache memory, etc. As an illustration but not limitation, RAM can be in various forms, such as static random access memory (Static Random Access Memory, SRAM) or dynamic random access memory (Dynamic Random Access Memory, DRAM), etc. The database involved in the embodiments provided in the present application can include at least one of a relational database and a non-relational database. The non-relational database can include a distributed database based on a block chain, etc., without being limited thereto. The processor involved in the embodiments provided in the present application can be a general-purpose processor, a central processing unit, a graphics processing unit, a digital signal processor, a programmable logic device, a data processing logic device based on quantum computing, etc., without being limited thereto.

[0154] Any combination of the technical features of the above embodiments can be made. In order to make the description simple, all possible combinations of the technical features in the above embodiments are not described, however, as long as the combination of the technical features does not exist contradictory, it should be considered as the scope of the present application.

[0155] The above embodiments only express several implementation manners of the present application, and the description is more specific and detailed, but it should not be understood as a limitation on the scope of the patent of the present application. It should be noted that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are within the scope of protection of the present application. Therefore, the scope of protection of the present application should be subject to the appended claims.

Claims

1. A secondary cell configuration method, characterized by, The method comprises: obtaining state information of a terminal; the state information comprises at least one of position information of the terminal, speed information of the terminal and service traffic information of the terminal; determining scenario information in which the terminal is located according to the state information, and determining perception intensity information of a user according to the scenario information; determining a configuration strategy of a secondary cell of the terminal according to the perception intensity information, and determining a target configuration mode of the secondary cell according to the configuration strategy; the target configuration mode is used for configuring the secondary cell; the configuration strategy comprises a first configuration strategy and a second configuration strategy, and a priority of a blind configuration mode in the first configuration strategy is higher than a priority of a measurement-based configuration mode; a priority of the blind configuration mode in the second configuration strategy is lower than the priority of the measurement-based configuration mode.

2. The method of claim 1, wherein, The determining of the configuration strategy of the secondary cell of the terminal according to the perception intensity information comprises: if the perception intensity information represents that the perception intensity of the user is a first perception intensity, determining that the configuration strategy of the secondary cell is the first configuration strategy.

3. The method of claim 2, wherein, The determining of the configuration strategy of the secondary cell according to the perception intensity information further comprises: if the perception intensity information represents that the perception intensity of the user is a second perception intensity, determining that the configuration strategy of the secondary cell is the second configuration strategy; wherein the first perception intensity is higher than the second perception intensity.

4. The method of claim 2, wherein, The determining of the target configuration mode of the secondary cell according to the configuration strategy comprises: if the configuration strategy is the first configuration strategy, determining that the target configuration mode is the blind configuration mode.

5. The method of claim 3, wherein, The determining of the target configuration mode of the secondary cell according to the configuration strategy comprises: if the configuration strategy is the second configuration strategy, determining that the target configuration mode is the measurement-based configuration mode.

6. The method according to any one of claims 1 to 5, characterized in that, The method further comprises: configuring the secondary cell according to the target configuration mode and measurement information of a neighboring cell of a camped cell of the terminal.

7. A secondary cell configuration device, characterized in that, The apparatus comprises: an obtaining module configured to obtain state information of a terminal; the state information comprises at least one of position information of the terminal, speed information of the terminal and service traffic information of the terminal; a first determining module configured to determine scenario information in which the terminal is located according to the state information, and determine perception intensity information of a user according to the scenario information; a second determining module configured to determine a configuration strategy of a secondary cell of the terminal according to the perception intensity information, and determine a target configuration mode of the secondary cell according to the configuration strategy; the target configuration mode is used for configuring the secondary cell; the configuration strategy comprises a first configuration strategy and a second configuration strategy, and a priority of a blind configuration mode in the first configuration strategy is higher than a priority of a measurement-based configuration mode; a priority of the blind configuration mode in the second configuration strategy is lower than the priority of the measurement-based configuration mode.

8. A base station comprising a transceiver, a memory, and a processor, the memory having stored therein a computer program, characterized in that, The computer program is executed by the processor, so that the processor performs the steps of the secondary cell configuration method in any one of claims 1 to 6.

9. A computer-readable storage medium having stored thereon a computer program, characterized in that, The computer program, which when executed by the processor, implements the steps of the method of any one of claims 1 to 6.

10. A computer program product comprising a computer program, characterized in that, The computer program, which when executed by the processor, implements the steps of the method of any one of claims 1 to 6.

Citation Information

Patent Citations

  • Secondary cell configuration method and device, base station and storage medium

    CN114554518A