Method, device and electronic device for configuring simulated Bluetooth device parameters
By configuring the method of simulating Bluetooth device parameters, the problem of insufficient coverage of Bluetooth compatibility testing is solved, and comprehensive simulation and testing of a variety of Bluetooth products are achieved.
Patent Information
- Application Number
- CN202210924934.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-02
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2042-08-02
AI Technical Summary
Existing Bluetooth compatibility tests cannot fully cover a variety of Bluetooth products, making compatibility issues difficult to resolve.
Provide a method of configuring simulated Bluetooth device parameters. By receiving user operation instructions, determining the product form and using dynamic settings, fixed settings or preference settings, configuring simulated Bluetooth device parameters to simulate different types of Bluetooth products.
A more comprehensive Bluetooth compatibility test is achieved, which can simulate hundreds or even thousands of device models, improving testing coverage.
Smart Images

Figure CN115361693B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of Bluetooth testing, and in particular to a method, device and electronic equipment for configuring parameters of a simulated Bluetooth device. Background Art
[0002] With the rapid development of short-range communication technology and smart terminals, short-range communication products have become widely used in people's daily lives, with Bluetooth products accounting for half of the market share. However, due to the inconsistent standards and technology among major device manufacturers, compatibility issues with Bluetooth devices continue to arise. Conducting comprehensive and in-depth Bluetooth compatibility testing is a major pain point in the Bluetooth testing field. Existing Bluetooth compatibility testing suffers from the following issues: The wide variety of Bluetooth products makes comprehensive and comprehensive compatibility coverage impossible. Summary of the Invention
[0003] In order to solve the above problems, the present invention proposes a method, apparatus and electronic device for configuring simulated Bluetooth device parameters, which can personalize the simulated Bluetooth device parameters to simulate different types of Bluetooth products.
[0004] In one aspect, the present invention provides a method for configuring parameters of a simulated Bluetooth device, the method comprising:
[0005] receiving a first operation instruction from a user, and determining a product form to be implemented by the simulated Bluetooth device according to the first operation instruction;
[0006] receiving a second operation instruction from the user, and determining a parameter setting mode according to the second operation instruction, wherein the parameter setting mode includes: dynamic setting, fixed setting, and preference setting;
[0007] According to the parameter setting method, configure the parameters corresponding to the product form;
[0008] The configured parameters are sent to the simulated Bluetooth device so that the simulated Bluetooth device can realize the corresponding product form.
[0009] Optionally, configuring parameters corresponding to the product form according to the parameter setting method includes:
[0010] If the parameter setting mode is dynamic setting, the parameters corresponding to the product form are configured according to the user's parameter setting operation instruction, and the parameters are checked to see whether they comply with the Bluetooth protocol specification;
[0011] If the parameter setting mode is fixed setting, the parameters corresponding to the product form are configured according to the built-in parameter set;
[0012] If the parameter setting method is preference setting, all parameter sets covering the preference parameters set by the user are automatically filtered out, and the parameters corresponding to the product form are configured according to the filtered parameter sets.
[0013] Optionally, the product forms include: speakers, car Bluetooth, bracelets, mice, keyboards, and handles.
[0014] Optionally, if the product form to be implemented by the simulated Bluetooth device is a speaker, the parameters corresponding to the speaker include:
[0015] General parameters, including whether to grab the master and the channel;
[0016] HFP related parameters, including HFP version, bandwidth, encoding method and packet type;
[0017] A2DP related parameters, including A2DP version, encoding method, and AVRCP version;
[0018] If the simulated Bluetooth device is to be implemented as a car Bluetooth product, the parameters corresponding to the car Bluetooth include:
[0019] General parameters, including whether to grab the master and the channel;
[0020] HFP related parameters, including HFP version, bandwidth, encoding method and packet type;
[0021] A2DP-related parameters, including A2DP version, encoding method, and AVRCP version;
[0022] PBAP-related parameters, including PBAP version and MAP version.
[0023] Optionally, in the HFP related parameters, the encoding method includes CVSD and mSBC;
[0024] Among the A2DP related parameters, the encoding methods include SBC, ACC, aptX, LDAC and LHDC.
[0025] In another aspect, the present invention provides a method for configuring parameters of a simulated Bluetooth device, comprising:
[0026] receiving a third operation instruction from a user, determining a set of product forms to be implemented by the simulated Bluetooth device based on the third operation instruction, the set of product forms including a plurality of compatible devices that are frequently tested, and configuring parameters corresponding to the set of product forms based on a pre-stored parameter set;
[0027] The configured parameter set is sent to the simulated Bluetooth device so that the simulated Bluetooth device can realize the corresponding product form.
[0028] In another aspect, the present invention provides an apparatus for configuring parameters of a simulated Bluetooth device, the apparatus comprising:
[0029] A first determining module is configured to receive a first operation instruction from a user and determine a product form to be implemented by the simulated Bluetooth device according to the first operation instruction;
[0030] a second determining module, configured to receive a second operation instruction from a user and determine a parameter setting mode according to the second operation instruction, wherein the parameter setting mode includes: dynamic setting, fixed setting, and preference setting;
[0031] A parameter configuration module, configured to configure parameters corresponding to the product form according to the parameter setting method;
[0032] The parameter sending module is used to send the configured parameters to the simulated Bluetooth device so that the simulated Bluetooth device can realize the corresponding product form.
[0033] Optionally, the parameter configuration module includes:
[0034] a first configuration unit configured to configure parameters corresponding to the product form according to a user's parameter setting operation instruction if the parameter setting mode is dynamic setting, and to check whether the parameters comply with Bluetooth protocol specifications;
[0035] A second configuration unit is configured to configure parameters corresponding to the product form according to a built-in parameter set if the parameter setting mode is a fixed setting;
[0036] The third configuration unit is used to automatically filter out all parameter sets that cover the preference parameters set by the user if the parameter setting method is preference setting, and configure parameters corresponding to the product form according to the filtered parameter sets.
[0037] In another aspect, the present invention provides an electronic device, comprising:
[0038] at least one processor; and
[0039] a memory communicatively connected to the at least one processor; wherein,
[0040] The memory stores instructions that can be executed by the at least one processor. The instructions are executed by the at least one processor to enable the at least one processor to perform the above method for configuring parameters of a simulated Bluetooth device.
[0041] On the other hand, the present invention provides a computer-readable storage medium, wherein the computer-readable storage medium stores computer instructions, and when the computer instructions are executed by a processor, the method for configuring parameters of a simulated Bluetooth device is implemented.
[0042] The method, apparatus, and electronic device for configuring simulated Bluetooth device parameters provided by the embodiments of the present invention can personalize the parameters of the simulated Bluetooth device. The simulated Bluetooth device can simulate various Bluetooth devices through personalized configuration parameters, making Bluetooth compatibility testing more comprehensive and sufficient. BRIEF DESCRIPTION OF THE DRAWINGS
[0043] Figure 1 A flowchart of a method for configuring parameters of a simulated Bluetooth device according to an embodiment of the present invention;
[0044] Figure 2 A schematic diagram of a parameter setting interface for dynamic settings of a speaker function module according to an embodiment of the present invention;
[0045] Figure 3 This is a schematic diagram of the parameter setting interface after the dynamic settings of the speaker function module are restored to default according to one embodiment of the present invention;
[0046] Figure 4 A schematic diagram of real-time parameter checking of a parameter setting interface for dynamic settings of a speaker function module according to an embodiment of the present invention;
[0047] Figure 5 A schematic diagram of a parameter setting interface for dynamic settings of an on-board functional module according to an embodiment of the present invention;
[0048] Figure 6 A schematic diagram of a parameter setting interface for a fixedly set speaker function module according to an embodiment of the present invention;
[0049] Figure 7 A schematic diagram of a parameter setting interface for speaker function module preference settings according to an embodiment of the present invention;
[0050] Figure 8 A schematic diagram of a parameter setting interface for vehicle function module preference settings according to an embodiment of the present invention;
[0051] Figure 9 This is a schematic diagram of an interface for quickly issuing tasks according to an embodiment of the present invention;
[0052] Figure 10 A schematic diagram of an apparatus for configuring simulated Bluetooth device parameters according to an embodiment of the present invention. DETAILED DESCRIPTION
[0053] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts shall fall within the scope of protection of the present invention.
[0054] The embodiment of the present invention provides a method for configuring parameters of a simulated Bluetooth device, which is applied to a control host, such as Figure 1 As shown, the method includes:
[0055] S101, receiving a first operation instruction from a user, and determining a product form to be implemented by the simulated Bluetooth device according to the first operation instruction;
[0056] S102, receiving a second operation instruction from the user, and determining a parameter setting method according to the second operation instruction, the parameter setting method including: dynamic setting, fixed setting, and preference setting;
[0057] S103, configuring parameters corresponding to the product form according to the parameter setting method;
[0058] S104: Send the configured parameters to the simulated Bluetooth device, so that the simulated Bluetooth device can realize the corresponding product form.
[0059] Specifically, according to the user's first operation instruction, the product form to be realized by the simulated Bluetooth device can be switched. The product form may include: speaker, car Bluetooth, bracelet, mouse, keyboard, and handle.
[0060] After determining the product form, parameters are set for the current product form. The embodiment of the present invention supports three personalized parameter setting methods: dynamic setting, fixed setting, and preference setting. The following is a detailed introduction to the three parameter setting methods.
[0061] 1. Dynamic settings
[0062] Dynamic settings mean that all parameters can be combined in any way. If the parameter setting method is dynamic, the parameters corresponding to the product form will be configured according to the user's parameter setting operation instructions, and the parameters will be checked to see if they comply with the Bluetooth protocol specifications.
[0063] Figure 2 A schematic diagram of the parameter setting interface for dynamic settings of the speaker function module is shown. Specifically, if the product form to be realized by the simulated Bluetooth device is a speaker, select "Speaker Function Module" and select "Dynamic Settings", then you can see the following Figure 2 The parameter setting interface shown in the figure. The parameters that need to be set include:
[0064] General parameters: whether to grab master, mono, dual channel, etc.
[0065] HFP (Hands-free Profile) related parameters: HFP version, bandwidth, coding method, packet type, etc. Coding methods include CVSD (Continuously Variable Slope Delta) and mSBC (modified SBC, enhanced sub-band coding).
[0066] A2DP (Advanced Audio Distribution Profile) parameters include: A2DP version, encoding method, AVRCP (Audio / Video Remote Control Profile) version, etc. Encoding methods include SBC (Sub-Band Coding), ACC (Advanced Audio Coding), aptX (an audio coding technology superior to ACC, proposed by Qualcomm, no full name), LDAC (a certified codec for "Hi-ResAudio Wireless", no full name, produced by Sony), and LHDC (Low-Latency Hi-Definition Audio Codec, promoted by Huawei).
[0067] Figure 2 A complete set of parameter combinations is selected according to the user's parameter setting operation instructions. The CVSD and SBC codes selected in gray in the figure are mandatory for Bluetooth devices with audio functions, so they are selected by default and cannot be changed.
[0068] If the parameters are set, click Save to proceed to the next step. If you want to reset, click Restore Default to get the following result: Figure 3 The interface shown above will restart the parameter setting.
[0069] During the parameter selection process, the selected parameters will be checked in real time to confirm whether they comply with the Bluetooth protocol specifications. Figure 4 The function of real-time parameter checking is demonstrated. If the selected parameters do not comply with the Bluetooth protocol specifications, they will be displayed in gray and cannot be selected. For example, if the mSBC encoding method of HFP and the HV1 and HV3 packet types cannot meet the two parameters at the same time, when mSBC is selected, HV1 and HV3 will automatically be set to gray and cannot be selected, preventing the tester from making invalid selections.
[0070] Of course, different product forms require different parameter settings. If the product form to be realized by the simulated Bluetooth device is car Bluetooth, select "Car Function Module" and select "Dynamic Settings", then you can see the following Figure 5 The parameter setting interface shown. Figure 5 The displayed interface includes general parameters for the "Speaker Function Module," HFP-related parameters, and A2DP-related parameters, as well as PBAP (Phone Book Access Profile)-related parameters, such as the PBAP version and MAP (Message Access Profile) version. Other product forms require different parameter settings depending on the protocols they comply with.
[0071] 2. Fixed settings
[0072] Fixed settings refer to a set of parameters already built into the system. Users can select the default parameter set to quickly issue tasks, saving time on parameter setup and verification. If the parameter setting method is fixed, the parameters corresponding to the product form are configured based on the built-in parameter set.
[0073] Figure 6 A schematic diagram of the parameter setting interface for the fixed settings of the speaker function module is shown. The user selects "speaker function module" and selects "fixed settings", and then sees the following Figure 6 The parameter setting interface is shown. The system lists all built-in parameter sets suitable for the current product form. Users can scroll through the page numbers in the lower right corner to view detailed parameter settings. If the user wants to remove certain parameter sets, they can simply uncheck each set. After confirming, they can proceed to the next step. The cancellation function is also supported. The operation of other functional modules is the same.
[0074] 3. Preferences
[0075] Preference settings limit the testing to only the parameters of particular interest. If the tester only wants to test compatible devices with a specific parameter or parameters, they can select only the parameters they want to cover. If the parameter setting method is Preference Settings, all parameter sets that meet the criteria for the product form factor will be automatically filtered based on the parameters to be covered.
[0076] Figure 7 A schematic diagram of the parameter setting interface of the speaker function module preference setting is shown. The user selects "speaker function module" and selects "preference setting", and then can see the following Figure 7 The parameter setting interface is shown. After selecting the parameters to be overwritten, click OK to view the parameters that meet the conditions in the parameter screening results. If you want to cancel the selection, click Restore Default. The operation of other function modules is the same.
[0077] Figure 8 A schematic diagram of the parameter setting interface of the vehicle function module preference settings is shown. In addition to the general parameters, HFP-related parameters, and A2DP-related parameters in the "speaker function module", there are also PBAP-related parameters, such as PBAP version, MAP version and other parameters.
[0078] There are a few more notes for the above three personalized parameter setting methods:
[0079] 1. Mono only supports HFP by default. Therefore, after selecting mono, all A2DP-related parameters are grayed out and cannot be set.
[0080] 2. You can select multiple encoding modes for HFP and A2DP parameters, but only one can be selected for the other parameters.
[0081] 3. Dynamic parameter setting: The system will check the parameter compliance in real time. This setting method requires the tester to have a certain understanding of Bluetooth protocol.
[0082] 4. The parameter setting interface shown in the above embodiment is only an example. In actual application, the interface presentation format can be changed as needed and continuously optimized. For example, if the A2DP version or encoding method is updated, the parameter setting interface can be adjusted accordingly.
[0083] The method for configuring simulated Bluetooth device parameters provided by the embodiment of the present invention provides three parameter setting methods: dynamic setting, fixed setting and preference setting. The dynamic parameter setting method is mostly used to simulate Bluetooth devices with specific parameters. For example, when a Bluetooth compatibility device used by a customer is missing, coverage testing can be performed in this way. The fixed parameter setting method has a built-in set of parameter sets in the system. Selecting this default parameter set can quickly issue test tasks, and the operation is simple and convenient. The preference parameter setting method is suitable for testing a certain type of compatible device with special parameters. It is more targeted and improves the probability of problem discovery to a certain extent.
[0084] Through the three parameter setting methods mentioned above, the simulated Bluetooth device parameters can be personalized, and various Bluetooth products can be simulated in a more targeted and comprehensive manner, covering hundreds or even thousands of device models, thereby improving the product coverage of Bluetooth compatibility testing.
[0085] On the other hand, in order to facilitate rapid testing, an embodiment of the present invention further provides a method for configuring parameters of a simulated Bluetooth device, the method comprising:
[0086] receiving a third operation instruction from the user, determining a set of product forms to be implemented by the simulated Bluetooth device based on the third operation instruction, the set of product forms including a plurality of frequently tested compatible devices, and configuring parameters corresponding to the set of product forms based on a pre-stored parameter set;
[0087] The configured parameter set is sent to the simulated Bluetooth device so that the simulated Bluetooth device can realize the corresponding product form.
[0088] refer to Figure 9 , Figure 9 The quick task delivery interface is shown, which includes two selection methods: one-click selection of key compatible devices and quick selection of functional modules.
[0089] The one-click selection function for key compatible devices can quickly select the key compatible devices that are frequently tested, such as 20, 50, 100 or even more, including but not limited to various product forms such as speakers and car Bluetooth. For example, 20 key compatible devices may include 8 Bluetooth speakers, 4 car Bluetooth, 2 bracelets, 2 mice, 2 keyboards, and 2 controllers. The system has stored and maintained the parameters of these 20, 50, 100... key compatible devices, and can optimize and update the key compatible device library in real time based on big data analysis. After determining a set of product forms to be implemented by the simulated Bluetooth device according to the user's instructions, the parameters corresponding to this set of product forms are configured according to the pre-stored parameter set and sent to the simulated Bluetooth device.
[0090] The function module quick selection feature allows you to select specific product form factors as needed. You can choose one or more. The selected product form factors correspond to the default parameter sets. Once the product form is selected, the parameter settings are set and can be directly issued. Function module quick selection can be used in conjunction with fixed parameter settings. For example, after selecting the product form to implement the simulated Bluetooth device, you can enter the corresponding function module interface and uncheck the unnecessary parameter sets.
[0091] The above two selection methods are mutually exclusive and cannot be set at the same time.
[0092] The embodiment of the present invention also provides a device for configuring parameters of a simulated Bluetooth device, such as Figure 10 As shown, the device includes:
[0093] A first determining module 1001 is configured to receive a first operation instruction from a user and determine a product form to be implemented by the simulated Bluetooth device according to the first operation instruction;
[0094] The second determining module 1002 is configured to receive a second operation instruction from the user and determine a parameter setting method according to the second operation instruction. The parameter setting methods include dynamic setting, fixed setting, and preference setting.
[0095] Parameter configuration module 1003, configured to configure parameters corresponding to the product form according to the parameter setting method;
[0096] The parameter sending module 1004 is used to send the configured parameters to the simulated Bluetooth device so that the simulated Bluetooth device can realize the corresponding product form.
[0097] Furthermore, the parameter configuration module 1003 may include:
[0098] A first configuration unit is configured to configure parameters corresponding to the product form according to the user's parameter setting operation instruction if the parameter setting mode is dynamic setting, and check whether the parameters comply with the Bluetooth protocol specification;
[0099] A second configuration unit is configured to configure parameters corresponding to the product form according to a built-in parameter set if the parameter setting mode is fixed setting;
[0100] The third configuration unit is used to automatically filter out all parameter sets that cover the preference parameters according to the preference parameters set by the user if the parameter setting method is preference setting, and configure the parameters corresponding to the product form according to the filtered parameter sets.
[0101] In addition, the embodiment of the present invention supports quick testing. In this case, the parameter configuration module 1003 is configured to receive a third operation instruction from the user, determine a set of product forms to be implemented by the simulated Bluetooth device based on the third operation instruction, the set of product forms including multiple compatible devices that are frequently tested, and configure parameters corresponding to the set of product forms based on a pre-stored parameter set.
[0102] The parameter sending module 1004 is used to send the configured parameter set to the simulated Bluetooth device so that the simulated Bluetooth device can realize the corresponding product form.
[0103] The apparatus for configuring simulated Bluetooth device parameters provided in the embodiment of the present invention can be used to implement the technical solution of the above method embodiment. Its implementation principle and technical effects are similar and will not be described in detail here.
[0104] An embodiment of the present invention further provides an electronic device, comprising:
[0105] at least one processor; and
[0106] a memory communicatively connected to the at least one processor; wherein,
[0107] The memory stores instructions that can be executed by the at least one processor. The instructions are executed by the at least one processor to enable the at least one processor to perform the above method for configuring parameters of a simulated Bluetooth device.
[0108] As an implementation method, the electronic device may be a control host or a mobile terminal, such as a mobile phone, etc., for implementing the above-mentioned method for configuring parameters of a simulated Bluetooth device.
[0109] An embodiment of the present invention further provides a computer-readable storage medium, wherein the computer-readable storage medium stores computer instructions, and when the computer instructions are executed by a processor, the method for configuring parameters of a simulated Bluetooth device is implemented.
[0110] Those skilled in the art will appreciate that all or part of the processes in the above method embodiments can be implemented by instructing related hardware through a computer program. The program can be stored in a computer-readable storage medium, and when executed, the program can include the processes in the above method embodiments. The storage medium can be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).
[0111] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in the present invention should be included in the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be based on the scope of protection of the claims.
Claims
1. A method for configuring parameters of a simulated Bluetooth device, applied to a control host, characterized in that: The method comprises: receiving a first operation instruction from a user, and determining a product form to be implemented by the simulated Bluetooth device according to the first operation instruction, wherein the simulated Bluetooth device has configurable parameters, and different product forms are simulated based on different parameters; receiving a second operation instruction from the user, and selecting one of three parameter setting methods provided according to the second operation instruction, the three parameter setting methods including: dynamic setting, fixed setting, and preference setting; Configuring parameters corresponding to the product form according to the selected parameter setting method, including: if the selected parameter setting method is dynamic setting, configuring the parameters corresponding to the product form according to the user's parameter setting operation instructions, and checking whether the parameters comply with the Bluetooth protocol specification; if the selected parameter setting method is fixed setting, configuring the parameters corresponding to the product form according to a built-in parameter set; if the selected parameter setting method is preference setting, automatically screening all parameter sets covering the preference parameters set by the user, and configuring the parameters corresponding to the product form according to the screened parameter set; The configured parameters are sent to the simulated Bluetooth device so that the simulated Bluetooth device can realize the corresponding product form.
2. The method according to claim 1, characterized in that The product forms include: speakers, car Bluetooth, bracelets, mice, keyboards, and handles.
3. The method according to claim 2, characterized in that If the simulated Bluetooth device is implemented as a speaker, the parameters corresponding to the speaker include: General parameters, including whether to grab the master and the channel; HFP related parameters, including HFP version, bandwidth, encoding method and packet type; A2DP related parameters, including A2DP version, encoding method, and AVRCP version; If the simulated Bluetooth device is to be implemented as a car Bluetooth product, the parameters corresponding to the car Bluetooth include: General parameters, including whether to grab the master and the channel; HFP related parameters, including HFP version, bandwidth, encoding method and packet type; A2DP-related parameters, including A2DP version, encoding method, and AVRCP version; PBAP-related parameters, including PBAP version and MAP version.
4. The method according to claim 3, characterized in that Among the HFP-related parameters, the encoding methods include CVSD and mSBC; Among the A2DP related parameters, the encoding methods include SBC, ACC, aptX, LDAC and LHDC.
5. A device for configuring parameters of a simulated Bluetooth device, used for controlling a host, characterized in that: The device comprises: a first determining module, configured to receive a first operation instruction from a user, and determine a product form to be implemented by the simulated Bluetooth device according to the first operation instruction, wherein the simulated Bluetooth device has configurable parameters and is used to simulate multiple product forms based on different parameters; a second determining module, configured to receive a second operation instruction from a user, and select one of three parameter setting methods provided according to the second operation instruction, the three parameter setting methods comprising: dynamic setting, fixed setting, and preference setting; a parameter configuration module, configured to configure parameters corresponding to the product form according to a selected parameter setting method, including: if the selected parameter setting method is dynamic setting, configuring the parameters corresponding to the product form according to the user's parameter setting operation instructions, and checking whether the parameters comply with the Bluetooth protocol specification; if the selected parameter setting method is fixed setting, configuring the parameters corresponding to the product form according to a built-in parameter set; if the selected parameter setting method is preference setting, automatically screening all parameter sets covering the preference parameters set by the user, and configuring the parameters corresponding to the product form according to the screened parameter set; The parameter sending module is used to send the configured parameters to the simulated Bluetooth device so that the simulated Bluetooth device can realize the corresponding product form.
6. An electronic device, characterized in that: The electronic device comprises: at least one processor; and a memory communicatively connected to the at least one processor; wherein, The memory stores instructions that can be executed by the at least one processor, and the instructions are executed by the at least one processor to enable the at least one processor to perform the method according to any one of claims 1 to 4.
7. A computer-readable storage medium, wherein: The computer-readable storage medium stores computer instructions, which implement the method according to any one of claims 1 to 4 when executed by a processor.
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