Bluetooth connection detection method, device, equipment and storage medium thereof

By automatically detecting the Bluetooth connection of the Bluetooth remote control and using the number of interface icons and jump judgment, the problem of low Bluetooth remote control detection efficiency is solved, and fast and accurate connection detection is achieved.

CN116721532BActive Publication Date: 2025-09-19GEER TECH CO LTD
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Patent Information

Application Number
CN202310776841.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-28
Publication Date
2025-09-19
Estimated Expiration
2043-06-28

AI Technical Summary

Technical Problem

The Bluetooth connection detection efficiency of the Bluetooth remote control is low and requires manual operation, resulting in long detection time and low efficiency.

Method used

By responding to the remote control test request, triggering the Bluetooth connection button, obtaining the number of Bluetooth icons in the Bluetooth search interface of the display device, comparing it with the preset standard value, and combining the interface jump to determine whether the connection is successful or not, automatic detection is achieved.

Benefits of technology

Without manual intervention, it can quickly and accurately determine whether the Bluetooth connection is successful or not, improve detection efficiency and accuracy, and reduce errors.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application discloses a Bluetooth connection detection method, apparatus, device and storage medium thereof, which belongs to the field of Bluetooth remote control testing technology. The Bluetooth connection detection method includes: in response to a remote control test request, triggering the Bluetooth connection key of the remote control to be tested to send a Bluetooth connection request to the associated display device; obtaining the Bluetooth search interface that the display device responds to based on the Bluetooth connection request, and determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first number standard value; if the first number of Bluetooth icons is equal to the first number standard value, establishing a Bluetooth connection between the display device and the remote control to be tested, and obtaining a jump interface; when the jump interface is the target interface, determining that the Bluetooth connection is successful. The present application solves the technical problem of low efficiency of Bluetooth connection detection of remote controls in the prior art.
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Description

Technical Field

[0001] The present application relates to the technical field of Bluetooth remote control testing, and in particular to a Bluetooth connection detection method, apparatus, device, and storage medium thereof. Background Art

[0002] Remote controls are widely used in our lives as an input device. Common remote controls use infrared to transmit signals. This technology is highly mature, has low production costs, and is relatively inexpensive. However, its disadvantage is that it cannot add more functions due to the limitation of the amount of data transmitted. The new generation of remote controls adds Bluetooth transmission on the original basis, giving the originally one-way remote control more exciting applications.

[0003] During the mass production inspection process of the Bluetooth remote control project, it is required to quickly test the product functions. The inspectors need to perform Bluetooth connection testing on the Bluetooth remote control according to specific test steps and disconnect the Bluetooth connection after the button test is completed. The above test process needs to be completed manually, which takes a long time and has low detection efficiency.

[0004] The above content is only used to assist in understanding the technical solution of this application and does not constitute an admission that the above content is prior art. Summary of the Invention

[0005] The main purpose of this application is to provide a Bluetooth connection detection method, device, equipment and storage medium thereof, aiming to solve the technical problem of low efficiency of Bluetooth connection detection of Bluetooth remote controls.

[0006] To achieve the above objectives, the present application provides a Bluetooth connection detection method, which includes:

[0007] In response to the remote control test request, triggering a Bluetooth connection key of the remote control to be tested to send a Bluetooth connection request to the associated display device;

[0008] Obtaining a Bluetooth search interface that the display device responds to based on the Bluetooth connection request, and determining a relationship between a first number of Bluetooth icons in the Bluetooth search interface and a preset first number standard value;

[0009] If the first number of Bluetooth icons is equal to the first standard number, establishing a Bluetooth connection between the display device and the remote control to be tested, and obtaining a jump interface;

[0010] When the jump interface is the target interface, it is determined that the Bluetooth connection is successful.

[0011] Optionally, after the step of obtaining the jump interface, the method further includes:

[0012] Extracting a jump interface identifier from the jump interface, and judging whether the jump interface identifier is consistent with a target interface identifier based on a preset interface identifier library;

[0013] If so, it is determined that the jump interface is the target interface.

[0014] Optionally, before the step of establishing a Bluetooth connection between the display device and the remote control to be tested, the method further includes:

[0015] Determine whether the cursor is on the Bluetooth icon in the Bluetooth search interface;

[0016] If yes, executing the step of establishing a Bluetooth connection between the display device and the remote control to be tested;

[0017] If not, the cursor is moved, and the Bluetooth search interface is re-acquired, and the step of determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first number standard value is performed.

[0018] Optionally, after the step of determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and a preset first number standard value, the method further includes:

[0019] If the first number of Bluetooth icons is greater than the first standard number, the Bluetooth detection is determined to be in a first abnormal state, and a preset first fault signal is output;

[0020] If the first number of Bluetooth icons is less than the first standard number value, the Bluetooth search is performed again to obtain a new Bluetooth search interface, and the step of determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first standard number value is executed.

[0021] Optionally, before the step of re-performing the Bluetooth search, the method further includes:

[0022] The number of test exceptions of the remote control to be tested is accumulated by one, and a new number of test exceptions is obtained;

[0023] If the new test abnormality number is greater than the preset test abnormality threshold, it is determined that the Bluetooth connection fails;

[0024] If the new test abnormality number is less than or equal to the preset test abnormality threshold, the step of re-performing the Bluetooth search is performed.

[0025] Optionally, before the step of obtaining a Bluetooth search interface to which the display device responds based on the Bluetooth connection request, the method further includes:

[0026] Obtaining a first Bluetooth connection interface, and determining a second number of Bluetooth icons in the first Bluetooth connection interface;

[0027] Determining whether the second number of Bluetooth icons is equal to a preset second number standard value;

[0028] If yes, executing the step of obtaining the Bluetooth search interface responded by the display device based on the Bluetooth connection request;

[0029] If not, the Bluetooth detection is determined to be in the second abnormal state, and a preset second fault signal is output.

[0030] Optionally, after the step of determining whether the Bluetooth connection is successful, the method further includes:

[0031] In response to a remote control test completion instruction, obtaining a second Bluetooth connection interface, and determining a third number of Bluetooth icons in the second Bluetooth connection interface;

[0032] Determining a relationship between the third number of Bluetooth icons and a preset third number standard value;

[0033] If the third number of Bluetooth icons is greater than the third standard value, deleting the Bluetooth icon of the remote control to be tested, and executing the step of obtaining the second Bluetooth connection interface;

[0034] If the third number of the Bluetooth icons is equal to a preset third number standard value, it is determined that the Bluetooth connection with the remote control to be tested has been disconnected.

[0035] The present application also provides a Bluetooth connection detection device, which includes:

[0036] a trigger module, configured to trigger a Bluetooth connection key of the remote control to be tested in response to a remote control test request, so as to send a Bluetooth connection request to an associated display device;

[0037] an acquisition module, configured to acquire a Bluetooth search interface to which the display device responds based on the Bluetooth connection request, and determine a relationship between a first number of Bluetooth icons in the Bluetooth search interface and a preset first number standard value;

[0038] a connection module, configured to establish a Bluetooth connection between the display device and the remote control to be tested, and obtain a jump interface if the first number of Bluetooth icons is equal to the first standard number value;

[0039] The determination module is used to determine whether the Bluetooth connection is successful when the jump interface is the target interface.

[0040] The present application also provides a Bluetooth connection detection device, which includes: a memory, a processor, and a Bluetooth connection detection program stored in the memory and executable on the processor, wherein the Bluetooth connection detection program is configured to implement the steps of the above-mentioned Bluetooth connection detection method.

[0041] The present application also provides a storage medium, which is a computer-readable storage medium. A Bluetooth connection detection program is stored on the computer-readable storage medium. The Bluetooth connection detection program is executed by a processor to implement the steps of the above-mentioned Bluetooth connection detection method.

[0042] The present application discloses a Bluetooth connection detection method, which triggers the Bluetooth connection button of the remote control to be tested in response to a remote control test request to send a Bluetooth connection request to an associated display device; then obtains the Bluetooth search interface that the display device responds to based on the Bluetooth connection request, and determines the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first number standard value; through the acquisition of the Bluetooth search interface and the precise identification of the Bluetooth icon in the image, it is possible to quickly and accurately determine whether the remote control to be tested can send Bluetooth signals normally, thereby realizing the first-level detection of the Bluetooth connection of the remote control; and since the Bluetooth connection is exclusive, therefore, by determining the number of Bluetooth icons in the interface, it is possible to quickly determine whether there are other abnormal conditions in the detection environment of the Bluetooth connection, so as to improve the accuracy of Bluetooth connection detection. Accuracy; and then if the first number of the Bluetooth icons is equal to the first number standard value, a Bluetooth connection is established between the display device and the remote control to be tested, and a jump interface is obtained; and when the jump interface is the target interface, the Bluetooth connection is determined to be successful; since the interface jump is automatically performed after the Bluetooth connection with the remote control is established, the jump interface can be used to quickly determine whether the Bluetooth connection detection of the remote control to be tested is successful, thereby realizing the secondary detection of the Bluetooth connection detection of the remote control and improving the detection efficiency and accuracy; the present application obtains the relevant interface of the Bluetooth connection detection, combines the identification of icons and interfaces, and quickly and accurately judges the Bluetooth connection status of the remote control without manual assistance, thereby reducing the error factors caused by manual participation and greatly improving the accuracy of remote control detection and test efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0043] Figure 1 A schematic diagram of the structure of a Bluetooth connection detection device in the hardware operating environment involved in the embodiment of the present application;

[0044] Figure 2 This is a flowchart of a Bluetooth connection detection method according to an embodiment of the present application;

[0045] Figure 3 This is a schematic diagram of the interface identification library involved in the embodiment of the present application;

[0046] Figure 4 This is a schematic diagram of the jump interface involved in the embodiment of the present application;

[0047] Figure 5 This is a flow chart of a relatively complete embodiment of the present application;

[0048] Figure 6 This is a schematic diagram of the framework structure of the Bluetooth connection detection device involved in the embodiment of the present application.

[0049] The realization of the objectives, functional features and advantages of this application will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0050] It should be understood that the specific embodiments described herein are only used to explain the present application and are not intended to limit the present application.

[0051] In addition, the descriptions of "first", "second", etc. in this application are for descriptive purposes only and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of such features. In addition, "and / or" in the full text includes three solutions. Taking A and / or B as an example, it includes technical solution A, technical solution B, and technical solution that satisfies both A and B. In addition, the technical solutions between the various embodiments can be combined with each other, but they must be based on the ability of ordinary technicians in this field to implement them. When the combination of technical solutions is mutually contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by this application.

[0052] Reference Figure 1 , Figure 1 This is a schematic diagram of the structure of the Bluetooth connection detection device in the hardware operating environment involved in the embodiment of the present application.

[0053] like Figure 1As shown, the Bluetooth connection detection device may include: a processor 1001, such as a central processing unit (CPU), a communication bus 1002, a user interface 1003, a network interface 1004, and a memory 1005. Among them, the communication bus 1002 is used to realize the connection and communication between these components. The user interface 1003 may include a display screen (Display), an input unit such as a keyboard (Keyboard), and the user interface 1003 may also include a standard wired interface and a wireless interface. The network interface 1004 may optionally include a standard wired interface and a wireless interface (such as a wireless fidelity (WIreless-FIdelity, WI-FI) interface). The memory 1005 may be a high-speed random access memory (Random Access Memory, RAM) memory, or a stable non-volatile memory (Non-Volatile Memory, NVM), such as a disk memory. The memory 1005 may also be a storage device independent of the aforementioned processor 1001.

[0054] Those skilled in the art will understand that Figure 1 The structure shown in the figure does not constitute a limitation on the Bluetooth connection detection device, and may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently.

[0055] like Figure 1 As shown, the memory 1005 as a storage medium may include an operating system, a data storage module, a network communication module, a user interface module and a Bluetooth connection detection program.

[0056] exist Figure 1 In the Bluetooth connection detection device shown, the network interface 1004 is mainly used for data communication with other devices; the user interface 1003 is mainly used for data interaction with the user; the processor 1001 and the memory 1005 in the Bluetooth connection detection device of the present application can be set in the Bluetooth connection detection device, and the Bluetooth connection detection device calls the Bluetooth connection detection program stored in the memory 1005 through the processor 1001 and performs the following operations:

[0057] In response to the remote control test request, triggering a Bluetooth connection key of the remote control to be tested to send a Bluetooth connection request to the associated display device;

[0058] Obtaining a Bluetooth search interface that the display device responds to based on the Bluetooth connection request, and determining a relationship between a first number of Bluetooth icons in the Bluetooth search interface and a preset first number standard value;

[0059] If the first number of Bluetooth icons is equal to the first standard number, establishing a Bluetooth connection between the display device and the remote control to be tested, and obtaining a jump interface;

[0060] When the jump interface is the target interface, it is determined that the Bluetooth connection is successful.

[0061] Furthermore, the processor 1001 may call a Bluetooth connection detection program stored in the memory 1005 and perform the following operations:

[0062] After the operation of obtaining the jump interface, the method further includes:

[0063] Extracting a jump interface identifier from the jump interface, and judging whether the jump interface identifier is consistent with a target interface identifier based on a preset interface identifier library;

[0064] If so, it is determined that the jump interface is the target interface.

[0065] Furthermore, the processor 1001 may call a Bluetooth connection detection program stored in the memory 1005 and perform the following operations:

[0066] Before the operation of establishing a Bluetooth connection between the display device and the remote controller to be tested, the method further includes:

[0067] Determine whether the cursor is on the Bluetooth icon in the Bluetooth search interface;

[0068] If yes, executing the operation of establishing a Bluetooth connection between the display device and the remote control to be tested;

[0069] If not, the cursor is moved, and the Bluetooth search interface is re-acquired, and the operation of determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first number standard value is performed.

[0070] Furthermore, the processor 1001 may call a Bluetooth connection detection program stored in the memory 1005 and perform the following operations:

[0071] After determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and a preset first number standard value, the method further includes:

[0072] If the first number of Bluetooth icons is greater than the first standard number, the Bluetooth detection is determined to be in a first abnormal state, and a preset first fault signal is output;

[0073] If the first number of Bluetooth icons is less than the first number standard value, the Bluetooth search is performed again, a new Bluetooth search interface is obtained, and the operation of determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first number standard value is performed.

[0074] Furthermore, the processor 1001 may call a Bluetooth connection detection program stored in the memory 1005 and perform the following operations:

[0075] Before the operation of re-performing the Bluetooth search, the method further includes:

[0076] Accumulate the number of test exceptions of the remote control to be tested by one, and obtain a new number of test exceptions;

[0077] If the new test abnormality number is greater than the preset test abnormality threshold, it is determined that the Bluetooth connection fails;

[0078] If the new test abnormality number is less than or equal to the preset test abnormality threshold, the operation of re-performing the Bluetooth search is performed.

[0079] Furthermore, the processor 1001 may call a Bluetooth connection detection program stored in the memory 1005 and perform the following operations:

[0080] Before the operation of obtaining the Bluetooth search interface responded by the display device based on the Bluetooth connection request, the method further includes:

[0081] Obtaining a first Bluetooth connection interface, and determining a second number of Bluetooth icons in the first Bluetooth connection interface;

[0082] Determining whether the second number of Bluetooth icons is equal to a preset second number standard value;

[0083] If yes, executing the operation of obtaining the Bluetooth search interface responded by the display device based on the Bluetooth connection request;

[0084] If not, the Bluetooth detection is determined to be in the second abnormal state, and a preset second fault signal is output.

[0085] Furthermore, the processor 1001 may call a Bluetooth connection detection program stored in the memory 1005 and perform the following operations:

[0086] After the operation of determining whether the Bluetooth connection is successful, the method further includes:

[0087] In response to a remote control test completion instruction, obtaining a second Bluetooth connection interface, and determining a third number of Bluetooth icons in the second Bluetooth connection interface;

[0088] Determining a relationship between the third number of Bluetooth icons and a preset third number standard value;

[0089] If the third number of Bluetooth icons is greater than the third standard value, deleting the Bluetooth icon of the remote control to be tested, and performing the operation of obtaining the second Bluetooth connection interface;

[0090] If the third number of the Bluetooth icons is equal to a preset third number standard value, it is determined that the Bluetooth connection with the remote control to be tested has been disconnected.

[0091] Based on the above structure, various embodiments of a Bluetooth connection detection method are proposed.

[0092] Reference Figure 2 , Figure 2 This is a flowchart of the first embodiment of the Bluetooth connection detection method of the present application.

[0093] In this embodiment, the execution subject of the Bluetooth connection detection method can be a Bluetooth connection detection device, which can be a local device or a network device, such as a mobile phone, a laptop computer, a desktop computer, a TV, etc., or a Bluetooth connection detection program running in the device. This is not limited in this embodiment. For ease of description, the following description of each embodiment will be omitted. In this embodiment, the Bluetooth connection detection method includes:

[0094] Step S10, in response to the remote control test request, triggering the Bluetooth connection key of the remote control to be tested to send a Bluetooth connection request to the associated display device;

[0095] When a remote control test request is received, the Bluetooth connection key of the remote control to be tested is triggered, so that the remote control to be tested sends a Bluetooth connection request to the associated display device.

[0096] Exemplarily, the remote control to be tested is a Bluetooth remote control, that is, a remote control that adds Bluetooth transmission function on the basis of the original remote control infrared transmission; the Bluetooth connection key is a key for sending a Bluetooth connection request, which can be a voice key, up key, down key and other function keys on the remote control, or a key combination formed by pressing multiple keys at the same time. This embodiment does not limit this.

[0097] Exemplarily, when it is detected that the remote control to be tested is placed in a preset detection position and the remote control to be tested is scanned for identification, a remote control test request is generated and responded to; the scanned identification code can be the product serial number of the remote control.

[0098] Exemplarily, the associated display device can be a device with a display screen, such as a television, a computer, or a mobile phone. Since the remote control is used in conjunction with a display device such as a television during actual use, the display device is used to check the Bluetooth connection of the remote control to reduce the failure rate of the remote control in actual use.

[0099] In one feasible embodiment, an associated pressing device is controlled to simulate a manual key press on the Bluetooth connection button on the remote control under test, which is the target of the remote control test request. This simulated manual key press on the remote control under test is achieved through the associated pressing device, thereby avoiding missed or false detection of remote control buttons and reducing the false detection rate. The pressing device can be a miniature cylinder; each button on the remote control corresponds to a miniature cylinder, and the cylinders are combined to form a pressing device to simulate pressing the remote control buttons.

[0100] Step S20: obtaining a Bluetooth search interface that the display device responds to based on the Bluetooth connection request, and determining a relationship between a first number of Bluetooth icons in the Bluetooth search interface and a preset first number standard value;

[0101] After triggering the Bluetooth connection button of the remote control to be tested, if the display device normally receives the Bluetooth connection request sent by the remote control to be tested, it will respond to the request and enter the Bluetooth search interface; then perform icon recognition on the Bluetooth search interface, determine the number of Bluetooth icons in the Bluetooth search interface (hereinafter referred to as the first number of Bluetooth icons for distinction), and determine the size relationship between the first number of Bluetooth icons and the preset first number standard value.

[0102] Exemplarily, the Bluetooth search interface displays the Bluetooth icons of various devices that the display device can receive. The first standard quantity value is a preset standard quantity value of the Bluetooth icons that the display device can receive when the remote control to be tested and the detection environment of the Bluetooth connection are both normal. This value can be preset based on the actual detection situation and is not limited in this embodiment of the present application. Exemplarily, the preset first standard quantity value is 1, that is, when performing Bluetooth connection detection, there is only one Bluetooth icon in the Bluetooth search interface.

[0103] Exemplarily, icon recognition is performed on the Bluetooth search interface and matched with a preset icon library to determine the number of Bluetooth icons in the Bluetooth search interface.

[0104] Exemplarily, the Bluetooth search interface may be obtained by taking a screenshot, taking a photo, or calling it from a background program, etc., which is not limited in this embodiment.

[0105] In one feasible implementation, after triggering the Bluetooth connection button of the remote control to be tested, if the display device receives a Bluetooth connection request sent by the remote control to be tested, it will automatically jump to the Bluetooth search interface; if the current display interface does not change within a preset time after triggering the Bluetooth connection button of the remote control to be tested, or the current display interface after the jump is not the Bluetooth search interface, it is determined that the Bluetooth connection of the remote control to be tested has failed; the current display interface is the interface displayed on the display of the Bluetooth connection detection device.

[0106] In another feasible embodiment, after controlling the associated pressing device to simulate pressing the Bluetooth connection button of the remote control to be tested, the current display interface is dynamically obtained within a preset time length, and it is determined whether the current display interface is a Bluetooth search interface; if so, the step of determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first number standard value is executed; if not, it is determined that the Bluetooth connection of the remote control to be tested has failed.

[0107] In another feasible implementation, after controlling the associated pressing device to simulate pressing the Bluetooth connection button of the remote control to be tested, the current display interface is obtained, and the current display interface is matched with a preset interface identification library to determine whether the current display interface is a Bluetooth search interface.

[0108] Step S30: If the first number of Bluetooth icons is equal to the first standard number, a Bluetooth connection is established between the display device and the remote control to be tested, and a jump interface is obtained;

[0109] If the first number of Bluetooth icons is equal to the first number standard value, it indicates that the Bluetooth connection button of the remote control to be tested is triggered to send a Bluetooth connection request normally, and the display device can receive the request, and the detection environment is also normal, then a Bluetooth connection is established between the display device and the remote control to be tested, and the interface jumped after the Bluetooth connection is obtained.

[0110] The jump interface is the next interface after switching from the Bluetooth search interface after establishing a Bluetooth connection with the remote control to be tested; illustratively, after establishing a Bluetooth connection with the remote control to be tested, the current display interface is dynamically obtained within a preset time period; if the current display interface is not the Bluetooth search interface, indicating that an interface switch has occurred, the current display interface after the interface switch will be used as the jump interface; if the preset time is exceeded and the current display interface is still the Bluetooth search interface, indicating that no interface switch has occurred, then it is determined that the Bluetooth connection of the remote control to be tested has failed.

[0111] In a feasible implementation manner, after the step of obtaining the jump interface in step S30, the method further includes:

[0112] Step S31, extracting the jump interface identifier in the jump interface, and judging whether the jump interface identifier is consistent with the target interface identifier according to a preset interface identifier library;

[0113] The Bluetooth connection detection device is pre-installed with an interface identification library, and the interface identification library stores the unique and fixed interface feature identification corresponding to each interface. Therefore, by extracting the jump interface identification in the jump interface and comparing it with the target interface identification in the interface identification library, it is possible to quickly and accurately determine whether the jump interface identification is consistent with the target interface identification.

[0114] For example, the interface identification library is a set of identifications obtained by clipping, identifying feature points and transforming color space of unique and fixed feature identifications in each interface. Figure 3 ; Since the interface layout, thumbnails, icons, etc. in each interface of the TV will change with the update when using the TV for remote control testing, using the unique and fixed feature identifier in each interface to determine the interface type can ensure the accuracy of interface judgment.

[0115] For example, refer to Figure 4 This is a schematic diagram of the jump interface. There are three identifiers in the jump interface, among which identifier 1 is the unique and fixed characteristic identifier of the interface, that is, the jump interface identifier. Then identifier 1 is compared with the target interface identifier in the interface identifier library to determine whether the jump interface is the target interface.

[0116] Step S32: If yes, determine that the jump interface is the target interface.

[0117] Determine whether the jump interface identifier of the jump interface is consistent with the target interface identifier; if so, it indicates that after the Bluetooth connection with the remote control to be tested, the interface switching is normal, that is, the Bluetooth connection and transmission are normal, and the Bluetooth connection is determined to be successful; if not, it indicates that after the Bluetooth connection with the remote control to be tested, the interface switching is abnormal, and the Bluetooth connection is determined to be failed.

[0118] Exemplarily, the target interface is a preset reference interface switched after the remote controller is connected to Bluetooth, and can determine whether the Bluetooth connection with the remote controller to be tested is successful.

[0119] In this embodiment, by extracting the jump interface identifier in the jump interface and judging whether the jump interface identifier is consistent with the target interface identifier according to the preset interface identifier library, the jump interface can be quickly and accurately judged whether it is the target interface, so as to realize fast and accurate detection of the Bluetooth connection and Bluetooth transmission of the remote control without manual assistance, reducing the error factors caused by manual participation, and greatly improving the accuracy of remote control detection and testing efficiency.

[0120] Step S40: When the jump interface is the target interface, it is determined that the Bluetooth connection is successful.

[0121] When the jump interface is the target interface, it indicates that the Bluetooth connection between the remote control to be tested and the display device is normal, and the Bluetooth connection is determined to be successful.

[0122] In this embodiment, by responding to the remote control test request, the Bluetooth connection button of the remote control to be tested is triggered to send a Bluetooth connection request to the associated display device; then, the Bluetooth search interface responded by the display device based on the Bluetooth connection request is obtained, and the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first number standard value is determined; by obtaining the Bluetooth search interface and accurately identifying the Bluetooth icon in the image, it is possible to quickly and accurately determine whether the remote control to be tested can send Bluetooth signals normally, thereby realizing the first-level detection of the Bluetooth connection of the remote control; and since the Bluetooth connection is exclusive, therefore, by determining the number of Bluetooth icons in the interface, it is possible to quickly determine whether there are other abnormal conditions in the detection environment of the Bluetooth connection, so as to improve the accuracy of the Bluetooth connection detection; and then If the first number of Bluetooth icons is equal to the first number standard value, a Bluetooth connection is established between the display device and the remote control to be tested, and a jump interface is obtained; and when the jump interface is the target interface, the Bluetooth connection is determined to be successful; since the interface jumps automatically after the Bluetooth connection with the remote control, by judging the jump interface, it is possible to quickly determine whether the Bluetooth connection detection of the remote control to be tested is successful, thereby realizing the secondary detection of the Bluetooth connection detection of the remote control and improving the detection efficiency and accuracy; the present application obtains the relevant interface of the Bluetooth connection detection, combines the identification of icons and interfaces, and quickly and accurately judges the Bluetooth connection status of the remote control without manual assistance, thereby reducing the error factors caused by manual participation and greatly improving the accuracy of remote control detection and testing efficiency.

[0123] Furthermore, based on the above-mentioned first embodiment, a second embodiment of the Bluetooth connection detection method of the present application is proposed. In this embodiment, before step S20, the method further includes:

[0124] Step S11, obtaining a first Bluetooth connection interface, and determining a second number of Bluetooth icons in the first Bluetooth connection interface;

[0125] Step S12, determining whether the second number of Bluetooth icons is equal to a preset second number standard value;

[0126] Before performing a Bluetooth connection test on the remote control to be tested, first obtain the Bluetooth connection interface (hereinafter referred to as the first Bluetooth connection interface for distinction), and determine the number of Bluetooth icons in the first Bluetooth connection interface (hereinafter referred to as the second number of Bluetooth icons for distinction), and then judge the relationship between the second number of Bluetooth icons and the second number standard value.

[0127] In one feasible implementation, the first Bluetooth connection interface is matched with a preset icon library to determine a second number of Bluetooth icons in the first Bluetooth connection interface, thereby determining whether there are any abnormal Bluetooth connected devices in the Bluetooth connection detection device.

[0128] The second quantity standard value is the standard quantity value of the Bluetooth icons received when the Bluetooth connection detection environment is normal, that is, there are no abnormal Bluetooth connected devices; for example, the first quantity standard value is 0, that is, before the Bluetooth connection detection is performed, there is no Bluetooth connected device in the Bluetooth connection interface.

[0129] Exemplarily, the icon library is a collection of identifiers obtained after the unique and fixed feature identifiers in each icon are processed, cropped, feature point identified, and color space transformed; since the color, shape, layout, etc. of each icon will change with the version update when testing the remote control, the use of the unique and fixed feature identifier in each function icon to determine the icon type can ensure the accuracy of icon judgment.

[0130] In a feasible implementation, the icon library and the interface logo library may be included in the same feature library.

[0131] Step S13: If yes, then executing the step of obtaining the Bluetooth search interface responded by the display device based on the Bluetooth connection request;

[0132] If the second number of Bluetooth icons is equal to the second standard value, it indicates that there is no device with abnormal Bluetooth connection to the Bluetooth connection detection device, the detection environment is normal, and Bluetooth connection detection can be performed, then the subsequent steps are executed.

[0133] Step S14: If not, the Bluetooth detection is determined to be in a second abnormal state, and a preset second fault signal is output.

[0134] If the second number of Bluetooth icons is not equal to the second number standard value, it indicates that there is a device with an abnormal Bluetooth connection to the Bluetooth connection detection device. For example, the last remote control to be detected is not disconnected from the Bluetooth connection detection device, or other Bluetooth-connectable devices are incorrectly connected to the Bluetooth connection detection device, or the device that should be connected to the Bluetooth connection detection device is abnormally disconnected, etc., then the Bluetooth detection is determined to be in the second abnormal state. The second abnormal state may be that there is a device with an abnormal Bluetooth connection to the Bluetooth connection detection device, and / or the detection environment is abnormal, and a preset second fault signal is output to prompt manual troubleshooting.

[0135] In this embodiment, by obtaining the first Bluetooth connection interface and determining the second number of Bluetooth icons in the first Bluetooth connection interface, it is quickly determined whether the second number of Bluetooth icons is equal to the preset second number standard value, that is, whether there is a device with an abnormal Bluetooth connection to the Bluetooth connection detection device, thereby realizing the judgment of the detection environment, ensuring the normal progress of the Bluetooth connection detection, and improving the detection accuracy.

[0136] Furthermore, based on the above-mentioned first and / or second embodiments, a third embodiment of the Bluetooth connection detection method of the present application is proposed. In this embodiment, after step S20, the method further includes:

[0137] Step S21: If the first number of Bluetooth icons is greater than the first standard number, the Bluetooth detection is determined to be in a first abnormal state, and a preset first fault signal is output;

[0138] If the first number of Bluetooth icons in the Bluetooth search interface is greater than the first standard value, it indicates that there may be multiple remote controls or other Bluetooth devices to be connected in the detection environment. Since it is difficult to select the target icon from the excess number of Bluetooth icons, the Bluetooth detection is determined to be in the first abnormal state, and the preset first fault signal is output.

[0139] Exemplarily, the first abnormal state is that there are more than a preset number of connected Bluetooth devices in the detection environment, so as to prompt manual troubleshooting;

[0140] Step S22: If the first number of Bluetooth icons is less than the first standard number value, re-perform the Bluetooth search, obtain a new Bluetooth search interface, and execute the step of determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first standard number value.

[0141] If the first number of Bluetooth icons in the Bluetooth search interface is less than the first standard value, it indicates that the Bluetooth connection detection device may not be synchronized with the remote control to be tested, or the remote control to be tested cannot send Bluetooth signals normally and cannot be connected to Bluetooth. Then, re-search Bluetooth, obtain a new Bluetooth search interface, and execute subsequent steps.

[0142] In this embodiment, by comparing the number of Bluetooth icons in the Bluetooth search interface with the first quantity standard value, the type of abnormal situation of the Bluetooth connection detection is quickly determined, and corresponding abnormal handling measures are executed to ensure that the Bluetooth connection detection is carried out quickly and normally, thereby improving the detection efficiency and accuracy.

[0143] In a feasible implementation manner, before step S22, the method further includes:

[0144] Step S221, adding one to the number of test abnormalities of the remote control to be tested, and obtaining a new number of test abnormalities;

[0145] If the first number of Bluetooth icons is less than the first standard value, it indicates that the Bluetooth connection detection device may not be synchronized with the remote control to be tested, or the remote control to be tested cannot send Bluetooth signals normally and cannot establish a Bluetooth connection. The number of test abnormalities of the remote control to be tested is accumulated by one, and a new number of test abnormalities is obtained.

[0146] Step S222: If the new test abnormality number is greater than the preset test abnormality threshold, it is determined that the Bluetooth connection fails;

[0147] Step S223: If the new number of test abnormalities is less than or equal to the preset test abnormality threshold, the step of re-performing the Bluetooth search is executed.

[0148] If the new number of test abnormalities is greater than the preset test abnormality threshold, it indicates that after multiple re-Bluetooth searches, the Bluetooth signal of the remote control to be tested cannot be searched, and the Bluetooth connection of the remote control to be tested is determined to have failed; if the new number of test abnormalities is less than or equal to the preset test abnormality threshold, it indicates that the Bluetooth connection detection device may not be synchronized with the remote control to be tested, and the step of re-searching Bluetooth is executed.

[0149] In this embodiment, by accumulating the number of test anomalies of the remote control to be tested and obtaining and judging the new number of test anomalies, the reason why the Bluetooth identifier of the remote control to be tested is not found is quickly determined, thereby ensuring that the Bluetooth connection detection is carried out quickly.

[0150] Furthermore, based on the above-mentioned first, second and / or third embodiments, a fourth embodiment of the Bluetooth connection detection method of the present application is proposed. In this embodiment, before step S30, the method further includes:

[0151] Step S33, determining whether the cursor is on the Bluetooth icon in the Bluetooth search interface;

[0152] When the Bluetooth icon corresponding to the remote control to be tested is selected by the cursor, the display device can perform a Bluetooth connection operation with it. Therefore, after determining that the first number of Bluetooth icons is equal to the first number standard value, whether the cursor stays on the Bluetooth icon in the Bluetooth search interface.

[0153] Optionally, the cursor can be a symbol or graphic on the display device that responds to the movement of a pointing device (such as a mouse, touchpad, digital pen, etc.), which can display the selected location point in the interface; then, when there is a cursor on the Bluetooth icon in the Bluetooth search interface, it indicates that the Bluetooth icon is the selected location point in the Bluetooth search interface, that is, the Bluetooth icon has been selected, and the next inspection step can be performed; if there is no cursor on the Bluetooth icon in the Bluetooth search interface, it indicates that other non-Bluetooth icon location points are selected in the Bluetooth search interface. If the next operation is performed, other interfaces may be triggered, which may cause the Bluetooth connection detection to be mistakenly judged as a detection failure.

[0154] In one feasible implementation, the method for determining whether the cursor is on the Bluetooth icon in the Bluetooth search interface can be to match the Bluetooth icon in the Bluetooth search interface with a preset icon library to determine whether there is a cursor in the Bluetooth icon in the Bluetooth search interface.

[0155] Step S34: If yes, then executing the step of establishing a Bluetooth connection between the display device and the remote controller to be tested;

[0156] Step S35: If not, move the cursor position, reacquire the Bluetooth search interface, and execute the step of determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first number standard value.

[0157] If the cursor is resting on the Bluetooth icon in the Bluetooth search interface, i.e., it is selected by the cursor, then the step of establishing a Bluetooth connection between the display device and the remote control to be tested is executed. If the cursor is not resting on the Bluetooth icon in the Bluetooth search interface, i.e., it is not selected by the cursor, then the cursor position is moved, and the Bluetooth search interface is retrieved again, and the step of determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first number standard value is executed until the cursor rests on the Bluetooth icon in the Bluetooth search interface.

[0158] In this embodiment, by judging whether the Bluetooth icon in the Bluetooth search interface is selected by the cursor, it is quickly determined whether the Bluetooth connection can be made, and when it is found that the cursor is not on the Bluetooth icon, the cursor position is moved to realize the Bluetooth connection detection of the remote control and improve the detection efficiency.

[0159] In a feasible implementation manner, after step S40, the method further includes:

[0160] Step S50, in response to the remote control test completion instruction, obtaining a second Bluetooth connection interface, and determining a third number of Bluetooth icons in the second Bluetooth connection interface;

[0161] After successfully establishing a Bluetooth connection with the remote control to be tested, other buttons or functions of the remote control to be tested can be tested, and after all tests are completed, the Bluetooth disconnect button of the remote control to be tested can be triggered, wherein the Bluetooth disconnect button can be a function button on a preset remote control, or a combination of multiple function buttons, which is not limited in this embodiment; and the Bluetooth disconnect signal sent by the remote control to be tested can be used as a remote control test completion instruction; and then the Bluetooth connection interface after the remote control test is completed (hereinafter referred to as the second Bluetooth connection interface for distinction) is obtained, and the number of Bluetooth icons in the second Bluetooth connection interface (hereinafter referred to as the third number of Bluetooth icons for distinction) is determined.

[0162] Step S60, determining the relationship between the third number of Bluetooth icons and a preset third number standard value;

[0163] Step S70: If the third number of Bluetooth icons is greater than the third standard number, the Bluetooth icon of the remote control to be tested is deleted, and the step of obtaining the second Bluetooth connection interface is performed;

[0164] Step S80: If the third number of the Bluetooth icons is equal to a preset third number standard value, it is determined that the Bluetooth connection with the remote control to be tested has been disconnected.

[0165] Determine the size relationship between the third number of Bluetooth icons and the third number standard value, wherein the third number standard value can be a reference value for judging whether the Bluetooth connection detection device is normally disconnected from the remote control to be tested and deleting the connection record; and since some Bluetooth connection detection devices have a rigid requirement to retain at least a preset number of remote controls when performing Bluetooth connection detection, the third number standard value can also be a reference value for judging whether the test environment of the Bluetooth connection detection device is normal; and further, if the third number of Bluetooth icons is greater than the third number standard value, it indicates that there are abnormal Bluetooth connection devices that have not been deleted, which may be that the remote control to be tested has disconnected the Bluetooth connection with the display device, but the connection of the remote control to be tested is still retained in the display device. record, delete the Bluetooth icon of the remote control to be tested to delete the connection record, and execute the step of obtaining the second Bluetooth connection interface; if the third number of Bluetooth icons is equal to the preset third number standard value, it indicates that the connection record of the remote control to be tested has been deleted in the Bluetooth connection detection device, and the Bluetooth connection detection of the next remote control to be tested can be performed, then it is determined that the Bluetooth connection with the remote control to be tested has been disconnected, and wait for subsequent detection; if the third number of Bluetooth icons is less than the preset third number standard value, since some Bluetooth connection detection devices may have a rigid requirement to retain at least a preset number of remote controls when performing Bluetooth connection detection, there is an abnormality in the inspection environment of the Bluetooth connection detection device, and a preset third fault signal is sent.

[0166] In this embodiment, by responding to the remote control test completion instruction, the second Bluetooth connection interface is obtained, and the third number of Bluetooth icons in the second Bluetooth connection interface is determined; then the relationship between the third number of Bluetooth icons and the preset third number standard value is determined, so as to quickly judge the Bluetooth connection record between the display device and the remote control to be tested, and whether all Bluetooth connections are deleted, thereby ensuring the continuation of subsequent detections, realizing rapid and uninterrupted detection of the remote control Bluetooth connection detection, and improving the test efficiency of the remote control detection.

[0167] Further, based on the above first, second, third and / or fourth embodiments, a more complete embodiment of the Bluetooth connection detection method of the present application is proposed, referring to Figure 5 In this embodiment, the display device is a TV; in response to a remote control test request, a Bluetooth connection test is started, and the associated pressing device is controlled to press a preset home screen button on the remote control to be tested to reset the test interface of the TV; then the associated pressing device is controlled to press the voice button (i.e., the Bluetooth connection button) on the remote control to be tested, and a Bluetooth connection interface is obtained to determine whether there is a test remote control that has been connected to the TV via Bluetooth mode; if so, it indicates that the previous test remote control has not been disconnected, an error is reported, a preset fault signal is sent, and the Bluetooth connection of the remote control to be tested is disconnected, and the test is exited; if not, the Bluetooth search state is entered, the Bluetooth search interface is obtained, and the first number of Bluetooth icons in the Bluetooth search interface and the relationship between the first number standard value are determined, where , the first quantity standard value is 1; if the first quantity of Bluetooth icons is less than 1, that is, the remote control is not found, the number of abnormalities of the remote control to be tested is accumulated by 1, and then the Bluetooth search state is re-entered to obtain the Bluetooth search interface; if the first number of Bluetooth icons is greater than 1, that is, multiple remote controls are found, or if the number of abnormalities of the remote control to be tested exceeds the set abnormality threshold, an error is reported, a preset fault signal is sent, and the Bluetooth connection detection is exited; if the first number of Bluetooth icons is equal to 1, it is continued to determine whether the Bluetooth icon is selected by the cursor; if it is not selected by the cursor, that is, the cursor position is incorrect, the cursor position is moved, for example, upward, until the Bluetooth icon is selected by the cursor, and a Bluetooth connection is established with the remote control to be tested, and the screen jumps to the main interface (target interface), and the Bluetooth connection is determined to be successful.

[0168] Furthermore, the present invention also provides a Bluetooth connection detection device, referring to Figure 6 The Bluetooth connection detection device is applied to a Bluetooth connection detection device, and the Bluetooth connection detection device includes:

[0169] The trigger module 10 is configured to trigger the Bluetooth connection key of the remote control to be tested in response to the remote control test request, so as to send a Bluetooth connection request to the associated display device;

[0170] an acquisition module 20, configured to acquire a Bluetooth search interface that the display device responds to based on the Bluetooth connection request, and determine a relationship between a first number of Bluetooth icons in the Bluetooth search interface and a preset first number standard value;

[0171] a connection module 30, configured to establish a Bluetooth connection between the display device and the remote control to be tested, and obtain a jump interface if the first number of Bluetooth icons is equal to the first standard number value;

[0172] The determination module 40 is configured to determine whether the Bluetooth connection is successful when the jump interface is the target interface.

[0173] The connection module 30 is further configured to extract a jump interface identifier from the jump interface and determine whether the jump interface identifier is consistent with a target interface identifier based on a preset interface identifier library;

[0174] If so, it is determined that the jump interface is the target interface.

[0175] The connection module 30 is further configured to, before the step of establishing a Bluetooth connection between the display device and the remote controller to be tested, further include:

[0176] Determine whether the cursor is on the Bluetooth icon in the Bluetooth search interface;

[0177] If yes, executing the step of establishing a Bluetooth connection between the display device and the remote control to be tested;

[0178] If not, the cursor is moved, and the Bluetooth search interface is re-acquired, and the step of determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first number standard value is performed.

[0179] The acquisition module 20 is further configured to determine that the Bluetooth detection is in a first abnormal state and output a preset first fault signal if the first number of Bluetooth icons is greater than the first standard number value;

[0180] If the first number of Bluetooth icons is less than the first standard number value, the Bluetooth search is performed again to obtain a new Bluetooth search interface, and the step of determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first standard number value is executed.

[0181] The acquisition module 20 is further configured to add one to the number of test abnormalities of the remote control to be tested, and acquire a new number of test abnormalities;

[0182] If the new test abnormality number is greater than the preset test abnormality threshold, it is determined that the Bluetooth connection fails;

[0183] If the new test abnormality number is less than or equal to the preset test abnormality threshold, the step of re-performing the Bluetooth search is performed.

[0184] The acquisition module 20 is further configured to acquire a first Bluetooth connection interface and determine a second number of Bluetooth icons in the first Bluetooth connection interface;

[0185] Determining whether the second number of Bluetooth icons is equal to a preset second number standard value;

[0186] If yes, executing the step of obtaining the Bluetooth search interface responded by the display device based on the Bluetooth connection request;

[0187] If not, the Bluetooth detection is determined to be in the second abnormal state, and a preset second fault signal is output.

[0188] The determination module 40 is further configured to obtain a second Bluetooth connection interface in response to a remote control test completion instruction, and determine a third number of Bluetooth icons in the second Bluetooth connection interface;

[0189] Determining a relationship between the third number of Bluetooth icons and a preset third number standard value;

[0190] If the third number of Bluetooth icons is greater than the third standard value, deleting the Bluetooth icon of the remote control to be tested, and executing the step of obtaining the second Bluetooth connection interface;

[0191] If the third number of the Bluetooth icons is equal to a preset third number standard value, it is determined that the Bluetooth connection with the remote control to be tested has been disconnected.

[0192] The specific implementation of the Bluetooth connection detection device of the present application is basically the same as the embodiments of the above-mentioned Bluetooth connection detection method, and will not be repeated here.

[0193] It should be noted that, in this document, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or system comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or system. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or system comprising the element.

[0194] Through the description of the above implementation methods, those skilled in the art can clearly understand that the above-mentioned embodiment methods can be implemented by means of software plus the necessary general hardware platform, and of course can also be implemented by hardware, but in many cases the former is a better implementation method. Based on this understanding, the technical solution of the present application is essentially or the part that contributes to the prior art can be embodied in the form of a software product, which is stored in a storage medium (such as ROM / RAM, magnetic disk, optical disk) as described above, and includes a number of instructions for enabling a terminal device (which can be a mobile phone, computer, server, or network device, etc.) to execute the methods described in each embodiment of the present application.

[0195] The above are only preferred embodiments of the present application and do not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the present application specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.

Claims

1. A Bluetooth connection detection method, characterized in that: The Bluetooth connection detection method comprises the following steps: In response to the remote control test request, triggering a Bluetooth connection key of the remote control to be tested to send a Bluetooth connection request to the associated display device; Obtaining a first Bluetooth connection interface, and determining a second number of Bluetooth icons in the first Bluetooth connection interface; Determining whether the second number of Bluetooth icons is equal to a preset second number standard value; If not, the Bluetooth detection is determined to be in a second abnormal state, and a preset second fault signal is output; If so, obtaining a Bluetooth search interface that the display device responds to based on the Bluetooth connection request, and determining a relationship between a first number of Bluetooth icons in the Bluetooth search interface and a preset first number standard value; If the first number of Bluetooth icons is equal to the first standard number, establishing a Bluetooth connection between the display device and the remote control to be tested, and obtaining a jump interface; When the jump interface is the target interface, it is determined that the Bluetooth connection is successful.

2. The Bluetooth connection detection method according to claim 1, wherein: After the step of obtaining the jump interface, the method further includes: Extracting a jump interface identifier from the jump interface, and judging whether the jump interface identifier is consistent with a target interface identifier based on a preset interface identifier library; If so, it is determined that the jump interface is the target interface.

3. The Bluetooth connection detection method according to claim 1, wherein: Before the step of establishing a Bluetooth connection between the display device and the remote controller to be tested, the method further includes: Determine whether the cursor is on the Bluetooth icon in the Bluetooth search interface; If yes, executing the step of establishing a Bluetooth connection between the display device and the remote control to be tested; If not, the cursor is moved, and the Bluetooth search interface is re-acquired, and the step of determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first number standard value is performed.

4. The Bluetooth connection detection method according to claim 1, wherein: After the step of determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and a preset first number standard value, the method further includes: If the first number of Bluetooth icons is greater than the first standard number, the Bluetooth detection is determined to be in a first abnormal state, and a preset first fault signal is output; If the first number of Bluetooth icons is less than the first standard number value, the Bluetooth search is performed again to obtain a new Bluetooth search interface, and the step of determining the relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first standard number value is executed.

5. The Bluetooth connection detection method according to claim 4, wherein: Before the step of re-performing the Bluetooth search, the method further includes: The number of test exceptions of the remote control to be tested is accumulated by one, and a new number of test exceptions is obtained; If the new test abnormality number is greater than the preset test abnormality threshold, it is determined that the Bluetooth connection fails; If the new test abnormality number is less than or equal to the preset test abnormality threshold, the step of re-performing the Bluetooth search is performed.

6. The Bluetooth connection detection method according to any one of claims 1 to 5, characterized in that: After the step of determining whether the Bluetooth connection is successful, the method further includes: In response to a remote control test completion instruction, obtaining a second Bluetooth connection interface, and determining a third number of Bluetooth icons in the second Bluetooth connection interface; Determining a relationship between the third number of Bluetooth icons and a preset third number standard value; If the third number of Bluetooth icons is greater than the third standard value, deleting the Bluetooth icon of the remote control to be tested, and executing the step of obtaining the second Bluetooth connection interface; If the third number of the Bluetooth icons is equal to a preset third number standard value, it is determined that the Bluetooth connection with the remote control to be tested has been disconnected.

7. A Bluetooth connection detection device, characterized in that: The device comprises: a trigger module, configured to trigger a Bluetooth connection key of the remote control to be tested in response to a remote control test request, so as to send a Bluetooth connection request to an associated display device; an acquisition module, configured to acquire a first Bluetooth connection interface and determine a second number of Bluetooth icons in the first Bluetooth connection interface; determine whether the second number of Bluetooth icons is equal to a preset second number standard value; if not, determine that the Bluetooth detection is in a second abnormal state and output a preset second fault signal; if so, acquire a Bluetooth search interface to which the display device responds based on the Bluetooth connection request, and determine a relationship between the first number of Bluetooth icons in the Bluetooth search interface and the preset first number standard value; a connection module, configured to establish a Bluetooth connection between the display device and the remote control to be tested, and obtain a jump interface if the first number of Bluetooth icons is equal to the first standard number value; The determination module is used to determine whether the Bluetooth connection is successful when the jump interface is the target interface.

8. A Bluetooth connection detection device, characterized in that: The device includes: a memory, a processor, and a Bluetooth connection detection program stored in the memory and executable on the processor, wherein the Bluetooth connection detection program is configured to implement the steps of the Bluetooth connection detection method according to any one of claims 1 to 6.

9. A storage medium, characterized in that: The storage medium stores a Bluetooth connection detection program, which, when executed by a processor, implements the steps of the Bluetooth connection detection method according to any one of claims 1 to 6.

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