Installation indication method, apparatus and system for network bridge, and electronic device and storage medium
By leveraging the computing power of smartphones and servers, combined with AR technology and voice broadcasting, the correction instructions for bridge installation is provided, and the installation difficulties of bridges in areas not covered by optical cables is solved, and efficient and accurate bridge installation and signal alignment is achieved, reducing costs and difficulty.
Patent Information
- Application Number
- PCT/CN2024/072389
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-01-15
- Publication Date
- 2025-07-24
AI Technical Summary
In areas where optical cables are not covered by islands, villages and cities, there are problems such as difficulty in signal alignment, low installation efficiency, high cost and high installation difficulty during the installation of existing bridges.
Use the GPS and compass module of the smartphone to obtain the geographical location information of the bridge, combine the computing power and data analysis of the server to determine the differences between the current installation information of the bridge and the target installation information, and provide clear correction instructions to installers or assist personnel through augmented reality AR technology and voice broadcasting to guide the installation and alignment of the bridge.
It improves the installation efficiency and accuracy of the bridge, reduces installation difficulty and cost, enhances installation flexibility and adaptability, and improves communication performance and signal stability.
Smart Images

Figure CN2024072389_24072025_PF_FP_ABST
Abstract
Description
Network bridge installation instruction method, device, system, electronic device and storage medium Technical Field
[0001] The present application relates to wireless communication technology, specifically to bridge installation technology, and more particularly to a bridge installation instruction method, device, system, electronic device and storage medium. Background Art
[0002] Currently, in areas not covered by optical fiber cables, such as islands, rural areas, and urban areas, wireless bridges are generally used for long-distance data transmission in video surveillance backhaul, such as overseas Wireless Internet Service Provider (WISP) scenarios and video surveillance scenarios. The distance in long-distance scenarios is usually 3-15 kilometers, or even tens of kilometers.
[0003] The wireless bridge has the function of transmitting and receiving wireless network signals at the same time. Therefore, the signal antennas of the transmitting and receiving ends of the wireless bridge must be aligned to ensure that the sensitivity of the received signal remains at a high level and to ensure the stability of the entire transmission signal.
[0004] Summary of the Invention
[0005] The present invention provides a method, device, system, electronic device and storage medium for indicating the installation of a network bridge.
[0006] In one aspect, the present application provides a method for indicating installation of a network bridge, the method comprising:
[0007] Obtaining current installation information and installation scenarios of the network bridge, wherein the current installation information is determined based on geographic location information of the network bridge, and the installation scenarios include: scenarios requiring human assistance and scenarios not requiring human assistance;
[0008] determining correction instruction information of the network bridge according to the target installation information of the network bridge and the current installation information;
[0009] Control the corresponding terminal device to display the correction instruction information according to the installation scenario.
[0010] By adopting the above method, it is possible to select the appropriate installation instruction method according to different installation scenarios and environmental factors, provide clear and easy-to-understand correction instructions to the installers, facilitate the installers to align and adjust the signal of the bridge, ensure that the installation position and direction of the bridge meet the design requirements, improve the efficiency and accuracy of the installation, and thus improve the communication performance and reliability of the bridge.
[0011] In an optional implementation manner, determining the correction instruction information of the network bridge according to the target installation information and the current installation information of the network bridge includes:
[0012] Obtaining a difference between the target installation information of the bridge and the current installation information;
[0013] According to the difference between the target installation information and the current installation information, correction instruction information of the network bridge is determined.
[0014] By adopting the above method and steps, the correction instruction information of the bridge can be determined more quickly and accurately, the installation efficiency and accuracy of the bridge can be improved, the difficulty and cost of the bridge installation can be reduced, and the transmission performance and stability of the bridge can be improved.
[0015] In an optional implementation manner, determining the correction instruction information of the network bridge according to the target installation information and the current installation information of the network bridge includes:
[0016] Determining a current installation state corresponding to the network bridge according to the current installation information of the network bridge;
[0017] Determining a target installation form corresponding to the bridge according to the target installation information of the bridge;
[0018] According to the current installation form and the target installation form, correction instruction information of the network bridge is determined.
[0019] By adopting the above method and steps, the correction instruction information of the bridge can be determined and displayed more intuitively and clearly, the installation efficiency and accuracy of the bridge can be improved, the difficulty and cost of the bridge installation can be reduced, and the transmission performance and stability of the bridge can be improved.
[0020] In an optional implementation, controlling a corresponding terminal device to display the correction instruction information according to the installation scenario includes:
[0021] If the installation scenario is a scenario that does not require human assistance, the correction instruction information is sent to the first device in the terminal device, and the first device is controlled to display the correction instruction information to the installer, wherein the first device is held by the installer or detachably set on the bridge.
[0022] By using the above method and steps, different terminal devices and display methods can be selected according to different installation scenarios to adapt to different installation environments and needs, improve the installation flexibility and adaptability of the bridge, and enhance the installation experience and user satisfaction of the bridge.
[0023] In an optional implementation, controlling a corresponding terminal device to display the correction instruction information according to the installation scenario includes:
[0024] If the installation scenario of the network bridge requires human assistance, the current installation information and the correction instruction information are sent to the second device in the terminal device, and the second device is controlled to display the correction instruction information to the assisting personnel, wherein the second device is held by the assisting personnel.
[0025] By using the above method and steps, different terminal devices and display methods can be selected according to different installation scenarios to adapt to different installation environments and needs, improve the installation flexibility and adaptability of the bridge, and enhance the installation experience and user satisfaction of the bridge.
[0026] In an optional implementation manner, the displaying of the correction instruction information includes at least one of the following:
[0027] Using voice playback to broadcast the correction instruction information;
[0028] Using augmented reality (AR) to display the current installation configuration and the target installation configuration of the network bridge within an AR three-dimensional visualization image, wherein the AR three-dimensional visualization image is generated based on an image containing the network bridge and the current installation information;
[0029] The correction instruction information is displayed in text form on the AR three-dimensional visualization image.
[0030] By adopting the above method and steps, a variety of ways of displaying correction instruction information are provided to adapt to the needs and preferences of different installers or assistants, improve the installation efficiency and accuracy of the bridge, reduce the installation difficulty and cost of the bridge, and improve the transmission performance and stability of the bridge.
[0031] In another aspect, the present application provides a method for indicating installation of a network bridge, the method comprising:
[0032] Obtaining geographic location information and installation scenarios of the network bridge, wherein the installation scenarios include: scenarios requiring human assistance and scenarios not requiring human assistance;
[0033] Determining current installation information of the network bridge according to the geographical location information of the network bridge;
[0034] Uploading the current installation information of the network bridge and the installation scenario to a server, wherein correction instruction information of the network bridge is determined according to the current installation information of the network bridge and the target installation information;
[0035] In response to receiving the modification instruction information sent by the server according to the installation scenario, the modification instruction information is displayed.
[0036] Compared to traditional bridge installation methods, this method uses terminal devices to obtain the bridge's geographic location information and, based on this location, determines the bridge's current installation information. Leveraging the server's computing power and data analysis capabilities, it quickly and accurately determines bridge correction instructions based on the bridge's geographic location and installation scenario, eliminating errors associated with manual measurement and judgment. This improves the efficiency and accuracy of bridge installation, reduces the difficulty and cost of installation, and enhances the bridge's transmission performance and stability.
[0037] In an optional implementation manner, determining the current installation information of the network bridge according to the geographical location information of the network bridge includes:
[0038] Real-time detection of geographical location information of the bridge;
[0039] The current installation information of the bridge is calculated based on the geographical location information.
[0040] By using the above method and steps, the current installation information of the bridge can be obtained more timely and accurately, adapting to the position changes that may occur during the installation of the bridge, improving the installation efficiency and accuracy of the bridge, reducing the difficulty and cost of the bridge installation, and improving the transmission performance and stability of the bridge.
[0041] In an optional implementation manner, if the network bridge is installed in a scenario where no human assistance is required, displaying the correction instruction information includes:
[0042] In response to the correction instruction information sent by the server, a first device is used to display the correction instruction information, wherein the first device is held by the installer or detachably set on the network bridge.
[0043] By adopting the above method and steps, different terminal devices and display methods are selected according to different installation scenarios to adapt to different installation environments and needs, improve the installation flexibility and adaptability of the bridge, and enhance the installation experience and user satisfaction of the bridge.
[0044] In an optional implementation manner, if the installation scenario of the network bridge requires human assistance, displaying the correction instruction information includes:
[0045] In response to the correction instruction information sent by the server, a second device is used to display the correction instruction information, wherein the second device is held by the assisting person.
[0046] By adopting the above method and steps, different terminal devices and display methods are selected according to different installation scenarios to adapt to different installation environments and needs, improve the installation flexibility and adaptability of the bridge, and enhance the installation experience and user satisfaction of the bridge.
[0047] In an optional implementation, displaying the correction instruction information includes:
[0048] broadcasting the correction instruction information in a voice broadcasting manner; and / or
[0049] Displaying the correction instruction information in a graphical manner;
[0050] The correction indication information is used to indicate at least one of the following information: a correction indication azimuth, a correction indication inclination, a correction indication altitude, and a correction port status.
[0051] By adopting the above method and steps, a variety of ways of displaying correction instruction information are provided to adapt to the needs and preferences of different installers or assistants, improve the installation efficiency and accuracy of the bridge, reduce the installation difficulty and cost of the bridge, and improve the transmission performance and stability of the bridge.
[0052] In an optional embodiment, the correction instruction information is displayed in a graphical manner, including:
[0053] Acquire an image containing the bridge;
[0054] Generating an AR three-dimensional visualization image corresponding to the image according to the image and the current installation information;
[0055] The correction instruction information is displayed in a graphical manner within the AR three-dimensional visualization image.
[0056] By adopting the above method and steps and utilizing AR technology, the correction instruction information of the bridge can be presented in the form of a three-dimensional image in the field of vision of the installer or assistant, thereby improving the installation efficiency and accuracy of the bridge, reducing the installation difficulty and cost of the bridge, and improving the transmission performance and stability of the bridge.
[0057] In an optional embodiment, the correction instruction information is displayed in a graphical manner within the AR three-dimensional visualization image, including:
[0058] Displaying the current installation configuration and the target installation configuration of the network bridge in an AR three-dimensional visualization image using an AR method; and / or
[0059] The correction instruction information is displayed on the AR three-dimensional visualization image in the form of text or icons.
[0060] By adopting the above method and steps, different graphical methods are provided to display the correction instruction information to meet the visual needs of different installers or assistants, improve the installation efficiency and accuracy of the bridge, reduce the installation difficulty and cost of the bridge, and improve the transmission performance and stability of the bridge.
[0061] In another aspect, the present application provides a network bridge installation indication system, the system comprising:
[0062] A first device is configured to obtain geographic location information and an installation scenario of a network bridge, and determine current installation information of the network bridge according to the geographic location information of the network bridge, wherein the installation scenario includes a scenario requiring human assistance and a scenario requiring no human assistance;
[0063] The server is configured to determine, based on the current installation information of the network bridge and the installation scenario, whether the first device and / or the second device should display the correction indication information;
[0064] The first device and / or the second device are used to display the modified display information, wherein the first device is held by the installer or is detachably arranged on the bridge, and the second device is held by the assistant.
[0065] Compared with traditional bridge installation methods, this system can utilize the server's computing power and data analysis capabilities to quickly and accurately determine the bridge's correction instruction information based on the bridge's geographical location information and installation scenario, avoid errors in manual measurement and judgment, improve the efficiency and accuracy of bridge installation, reduce the difficulty and cost of bridge installation, and improve the bridge's transmission performance and stability.
[0066] In an optional implementation manner, the installation position of the first device on the network bridge is determined based on real-time detection or a pre-defined address location detection area.
[0067] According to different installation scenarios and requirements, different methods are selected to determine the installation position of the first device on the bridge, thereby improving the installation flexibility and adaptability of the bridge and enhancing the installation experience and user satisfaction of the bridge.
[0068] In another aspect, the present application provides a bridge installation indication device, the device comprising:
[0069] A first acquisition module is configured to acquire current installation information and an installation scenario of the network bridge, wherein the current installation information is determined based on geographic location information of the network bridge, and the installation scenario includes a scenario requiring human assistance and a scenario requiring no human assistance;
[0070] a first determining module, configured to determine correction instruction information of the network bridge according to the target installation information of the network bridge and the current installation information;
[0071] A control module is used to control the corresponding terminal device to display the correction instruction information according to the installation scenario.
[0072] In an optional implementation manner, the first determining module includes:
[0073] an acquiring unit, configured to acquire a difference between the target installation information of the bridge and the current installation information;
[0074] The first determining unit is configured to determine correction instruction information of the network bridge according to a difference between the target installation information and the current installation information.
[0075] In an optional implementation manner, the first determining module further includes:
[0076] a second determining unit, configured to determine a current installation form corresponding to the network bridge according to the current installation information of the network bridge;
[0077] a third determining unit, configured to determine a target installation form corresponding to the network bridge according to the target installation information of the network bridge;
[0078] The fourth unit is configured to determine correction instruction information of the network bridge according to the current installation form and the target installation form.
[0079] In an optional implementation manner, the control module includes:
[0080] The first control unit is used to send the correction instruction information to the first device in the terminal device if the installation scenario is a scenario that does not require human assistance, and control the first device to display the correction instruction information to the installer, wherein the first device is held by the installer or detachably set on the network bridge.
[0081] In an optional implementation manner, the control module includes:
[0082] The second control unit is used to send the current installation information and the correction instruction information to the second device in the terminal device if the installation scenario of the bridge requires personnel assistance, and control the second device to display the correction instruction information to the assisting personnel, wherein the second device is held by the assisting personnel.
[0083] In an optional implementation manner, controlling the terminal device to display the correction instruction information includes at least one of the following methods:
[0084] Using voice playback to broadcast the correction instruction information;
[0085] Using augmented reality (AR) to display the current installation configuration and the target installation configuration of the network bridge within an AR three-dimensional visualization image, wherein the AR three-dimensional visualization image is generated based on an image containing the network bridge and the current installation information;
[0086] The correction instruction information is displayed in text form on the AR three-dimensional visualization image.
[0087] In another aspect, the present application provides a bridge installation indication device, the device comprising:
[0088] A second acquisition module is configured to acquire geographic location information and an installation scenario of the network bridge, wherein the installation scenario includes a scenario requiring human assistance and a scenario requiring no human assistance;
[0089] a second determining module, configured to determine current installation information of the network bridge according to the geographical location information of the network bridge;
[0090] an uploading module, configured to upload the current installation information of the network bridge and the installation scenario to a server, wherein the server is configured to determine correction instruction information of the network bridge according to the current installation information and target installation information of the network bridge;
[0091] A display module is used to display the correction instruction information in response to receiving the correction instruction information sent by the server according to the installation scenario.
[0092] In an optional implementation manner, the second determining module includes:
[0093] A detection unit, configured to detect the geographical location information of the bridge in real time;
[0094] A calculation unit is configured to calculate current installation information of the network bridge according to the geographical location information.
[0095] In an optional implementation manner, if the installation scenario of the network bridge is a scenario that does not require human assistance, the display module includes:
[0096] The first display unit is configured to respond to the correction instruction information sent by the server and display the correction instruction information using a first device, wherein the first device is held by the installer or detachably mounted on the network bridge.
[0097] In an optional implementation manner, if the installation scenario of the network bridge requires human assistance, the display module further includes:
[0098] The second display unit is configured to display the correction instruction information using a second device in response to the correction instruction information sent by the server, wherein the second device is held by the assisting person.
[0099] In an optional implementation manner, the display module displays the correction instruction information in the following manner:
[0100] broadcasting the correction instruction information in a voice broadcasting manner; and / or
[0101] Displaying the correction instruction information in a graphical manner;
[0102] The correction indication information is used to indicate at least one of the following information: a correction indication azimuth, a correction indication inclination, a correction indication altitude, and a correction port status.
[0103] In an optional implementation manner, the display module is further configured to:
[0104] Acquire an image screen containing the network bridge; generate an AR three-dimensional visualization image corresponding to the image screen based on the image screen and the current installation information; and display the correction instruction information in a graphical manner within the AR three-dimensional visualization image.
[0105] In an optional implementation manner, the display module displays the correction instruction information in a graphical manner, including at least one of the following:
[0106] In the AR three-dimensional visualization image, the current installation form and the target installation form of the network bridge are displayed in an AR manner; on the AR three-dimensional visualization image, the correction instruction information is displayed in a text or icon manner.
[0107] On the other hand, the present application provides an electronic device comprising: a processor, and a memory connected to the processor; the memory stores computer-executable instructions; the processor executes the computer-executable instructions stored in the memory to implement any of the above methods.
[0108] On the other hand, the present application provides a computer-readable storage medium, wherein the computer-readable storage medium stores computer-executable instructions, and when the computer-executable instructions are executed by a processor, they are used to implement any of the above methods.
[0109] On the other hand, the present application provides a computer program product, comprising a computer program, which implements any of the above methods when executed by a processor.
[0110] The present application provides a method, device, system, electronic device and storage medium for indicating the installation of a network bridge. The method obtains the current installation information and installation scenario of the network bridge, wherein the current installation information is determined based on the geographical location information of the network bridge. The method can monitor the installation status of the network bridge in real time, promptly discover and correct installation errors, and ensure the signal quality and stability of the network bridge. The installation scenarios include: scenarios requiring personnel assistance and scenarios not requiring personnel assistance. The correction indication information of the network bridge is determined based on the target installation information and current installation information of the network bridge. The corresponding terminal device is controlled to display the correction indication information based on the installation scenario. Different devices and methods can be used according to different installation scenarios to provide clear and easy-to-understand correction instructions to the installers, making it convenient for the installers to align and adjust the signal of the network bridge. BRIEF DESCRIPTION OF THE DRAWINGS
[0111] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.
[0112] FIG1 is a flow chart of a method for indicating the installation of a network bridge according to an embodiment of the present application;
[0113] FIG2 is a flow chart of an optional bridge installation instruction method provided in an embodiment of the present application;
[0114] FIG3 is a flow chart of another optional bridge installation instruction method provided in an embodiment of the present application;
[0115] FIG4 is a flow chart of another method for indicating the installation of a network bridge according to an embodiment of the present application;
[0116] FIG5 is a schematic structural diagram of an installation indication device for a network bridge provided in an embodiment of the present application;
[0117] FIG6 is a structural block diagram of a bridge installation indication device provided in an embodiment of the present application;
[0118] FIG7 is a schematic structural diagram of an electronic device provided in an embodiment of the present application.
[0119] The above drawings illustrate specific embodiments of the present application, which will be described in more detail below. These drawings and the textual description are not intended to limit the scope of the present application in any way, but rather to illustrate the concepts of the present application to those skilled in the art by reference to specific embodiments. DETAILED DESCRIPTION
[0120] Exemplary embodiments will be described in detail herein, with examples illustrated in the accompanying drawings. In the following description, when referring to the drawings, identical numerals in different figures represent identical or similar elements, unless otherwise indicated. The embodiments described in the following exemplary embodiments are not intended to represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present application, as detailed in the appended claims.
[0121] First, let’s explain the terms involved in this application:
[0122] Bridge: A bridge is a store / forward device that connects two local area networks.
[0123] Wireless bridge: As the name suggests, it is a wireless network bridge. It uses wireless transmission to build a communication bridge between two or more networks.
[0124] In areas not covered by optical fiber cables, such as islands, rural areas, and urban areas, wireless bridges are often used for long-distance data transmission, such as in overseas Wireless Internet Service Provider (WISP) scenarios and video surveillance backhaul. These long-distance scenarios typically range from 3 to 15 kilometers, or even tens of kilometers. Wireless bridges can simultaneously transmit and receive wireless network signals. The transmitting and receiving antennas of a wireless bridge must be aligned to ensure high signal sensitivity and stable transmission.
[0125] At present, there are two traditional solutions for bridge installation. One is the automatic direction finding and adjustment solution of the wireless bridge, which uses automatic control chips and motors to automatically turn to find the best alignment direction. The other is to add a mobile phone holder to the bridge to place the mobile phone vertically and horizontally, read the GPS and compass information of the mobile phones at both ends, and calculate the access and pitch angles of both ends for alignment.
[0126] The first solution mentioned above has the following disadvantages and problems: adding automatic control chips, chip integration and implementation complexity increase significantly; automatic rotation to find a better signal cannot solve the problem of tilt mismatch, resulting in the problem of not being able to find the signal; the addition of automatic control components leads to a significant increase in the overall cost of the bridge.
[0127] The second solution mentioned above has the following shortcomings and problems: the location, orientation, and inclination information of the two ends of the bridge are calculated during the installation process, which is inefficient; when the distance between towers and poles is high, the installer relies on checking the mobile phone values, but in dark weather or strong sunlight reflection, it is not only inconvenient to check, but also difficult to see the values clearly.
[0128] The installation indication method of the bridge provided in this application and the embodiments of this application can at least achieve the following technical effects: make full use of the GPS and compass modules of the smartphone, and accurately and efficiently align the installation orientation, installation height, etc. of the bridge without investing in hardware costs; and use AR three-dimensional physical stereo projection to display the current installation information, correction indication information and target installation information of the bridge. In an intuitive and easy-to-understand manner, different terminal devices are used in different installation scenarios to display the correction indication information corresponding to the installation scenario, guiding the installer to complete the installation calibration of the bridge, thereby greatly improving the installation efficiency.
[0129] The following specific embodiments describe in detail the technical solution of the present application and how the technical solution of the present application solves the above-mentioned technical problems. The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be repeated in some embodiments. The embodiments of the present application will be described below in conjunction with the accompanying drawings.
[0130] FIG1 is a flow chart of a method for indicating the installation of a network bridge provided in an embodiment of the present application. As shown in FIG1 , the method includes:
[0131] S101, obtaining current installation information and installation scenarios of a network bridge, wherein the current installation information is determined based on geographical location information of the network bridge, and the installation scenarios include: scenarios requiring human assistance and scenarios not requiring human assistance.
[0132] S102: Determine correction instruction information of the network bridge according to the target installation information of the network bridge and the current installation information.
[0133] S103: Control the corresponding terminal device to display the above-mentioned correction instruction information according to the above-mentioned installation scenario.
[0134] In the embodiment of the present application, the executor of the installation indication method of the bridge is a server. There is no need to increase any hardware cost on the bridge. By using the server and terminal equipment, it is possible to select a suitable installation indication method according to different installation scenarios and environmental factors, and provide clear and easy-to-understand correction instructions to the installers, so as to facilitate the installers to align and adjust the signals of the bridge, ensure that the installation position and direction of the bridge meet the design requirements, improve the efficiency and accuracy of the installation, and thereby improve the communication performance and reliability of the bridge.
[0135] Optionally, the geographical location information of the bridge is detected by the first device in the terminal device.
[0136] In one example, the server can receive geographic location information uploaded by the first device and determine the current installation information of the bridge based on the geographic location information of the bridge. For example, the location sensor (such as a GPS module, a compass module) of the first device (such as a smart phone) is used to detect the geographic location information of the bridge on the tower in real time. The first device uploads the geographic location information to the server, and the server calculates the current installation information of the bridge based on the geographic location information.
[0137] In another example, the server further receives current installation information uploaded by the first device, where the current installation information is determined by the first device according to geographic location information of the bridge.
[0138] Optionally, the above installation scenario may be determined by the server, or uploaded to the server by the first device or the second device.
[0139] Optionally, the first device is held by the installer or detachably mounted on the network bridge.
[0140] Optionally, the second device is held by an assisting person on the ground.
[0141] In an optional implementation manner, the installation position of the first device on the network bridge is determined based on real-time detection or a pre-defined address location detection area.
[0142] Optionally, in an embodiment of the present application, taking the first device as a smartphone as an example, a magnetic pole iron sheet can be used to suck the smartphone onto the address position detection area of the bridge (such as adsorbed on the back of the bridge), or a bracket can be set on the bridge to place the smartphone in the above-mentioned address position detection area. For example, the smartphone can be placed flat on a horizontally placed bracket. In this way, the geographic location information of the smartphone is regarded as the geographic location information of the bridge, and the azimuth and inclination of the smartphone can be regarded as the azimuth and inclination of the bridge.
[0143] Alternatively, the aforementioned attachment method can be achieved by using a magnetic phone clip, placing a magnetic patch at the center of the back of the bridge (i.e., the address detection area), and attaching the phone clip to the patch. For added security and reliability, the phone can also be placed in a transparent waterproof bag, connected to the bag with one end of a rope, and tied to the bridge mounting bracket with the other end. This way, the phone can be prevented from falling at a low cost.
[0144] In one example, a bridge installation auxiliary application is installed on the first device, and the bridge installation auxiliary application can be used to scan the QR code on the bridge to quickly deploy a wireless network, thereby facilitating monitoring of the bridge to be collected or calibrated.
[0145] Optionally, the azimuth angle reflects the horizontal direction of the bridge, such as east, south, west, north, etc.; the inclination angle can reflect the vertical direction of the bridge, such as up, down, horizontal, etc.
[0146] For example, the first device or server can be used to calculate the current installation information of the bridge based on the geographic location information. For example, the installation inclination angle of the bridge center plane can be obtained by subtracting the compensation angle of the bridge from the inclination angle currently read by the smartphone. The compensation angle is obtained by subtracting the inclination angle read by the smartphone when the bridge is placed horizontally from the inclination angle read by the smartphone when the smartphone is adsorbed on the bridge plane.
[0147] Optionally, the above installation scenarios include: scenarios requiring human assistance and scenarios not requiring human assistance.
[0148] In one example, the above installation scenario can be determined based on the working mode and installation environment of the bridge, such as whether human assistance is required, whether there are any obstacles blocking the view, etc.
[0149] Optionally, the target installation information refers to target or preset installation information of the bridge, such as signal strength, azimuth, inclination, altitude, etc.
[0150] Optionally, the correction indication information refers to installation information that needs to be adjusted for the bridge, and the correction indication information is used to indicate the correction indication azimuth, the correction indication inclination, the correction indication altitude, the correction port status, and the like.
[0151] In the example of the present application, the server determines the correction instruction information of the bridge based on the target installation information of the bridge and the current installation information, and calculates the correction instruction information of the bridge based on the target installation information of the bridge, that is, the expected installation position, direction, angle and other parameters of the bridge, and the current installation information of the bridge, that is, the position, direction, angle and other parameters that the bridge needs to adjust to meet the requirements of the target installation information. These correction instruction information can be expressed in text, graphics, voice and other ways to facilitate the understanding and execution of the installer or assistant. Furthermore, the server can control different terminal devices and display methods based on the installation scenario to display the correction instruction information of the bridge. For example, using the first device and / or the second device (such as a mobile phone, tablet, smart glasses, etc.), using text, graphics, voice playback and augmented reality AR methods, it provides the installer with clear and easy-to-understand correction instructions, which facilitates the installer to install the bridge according to the correction instruction information, and align and adjust the bridge signal.
[0152] In an optional embodiment, the server can control the first device and the second device to display the current installation information using text, icons, etc. The server can also control the first device and the second device to broadcast the current installation information using voice playback, which can facilitate installers or assistants to hear the installation status of the bridge, such as signal strength, azimuth, inclination, altitude, etc., without having to check the device screen or indicator light, saving installation time and effort.
[0153] In addition, the server can also control the first device and the second device to display the current installation information using augmented reality (AR), and superimpose the installation information of the bridge in the form of an AR image on the real scene, so that the installer or assistant can intuitively see the installation effect of the bridge, such as the installation azimuth, inclination, height and port status, etc., thereby improving the accuracy and effect of the installation.
[0154] In an optional implementation manner, determining the modification instruction information of the network bridge based on the target installation information and the current installation information of the network bridge includes:
[0155] S201, obtaining the difference between the target installation information of the bridge and the current installation information;
[0156] S202: Determine correction instruction information of the bridge according to the difference between the target installation information and the current installation information.
[0157] In the above example, when determining the correction indication information of the bridge, a simple method is adopted, that is, first obtaining the difference between the target installation information and the current installation information of the bridge, such as position difference, direction difference, angle difference, etc., and then based on these differences, determining the position, direction, angle and other parameters that need to be adjusted for the bridge as correction indication information.
[0158] By using the above method example, the correction instruction information of the bridge can be determined more quickly and accurately, the installation efficiency and accuracy of the bridge can be improved, the difficulty and cost of the bridge installation can be reduced, and the transmission performance and stability of the bridge can be improved.
[0159] In an optional implementation manner, determining the modification instruction information of the network bridge based on the target installation information and the current installation information of the network bridge includes:
[0160] S301, determining the current installation mode corresponding to the bridge according to the current installation information of the bridge;
[0161] S302, determining a target installation form corresponding to the bridge according to the target installation information of the bridge;
[0162] S303: Determine correction instruction information of the network bridge according to the current installation form and the target installation form.
[0163] In the example of this application, an intuitive method can also be used to determine the correction instruction information of the bridge, that is, first determine the current installation form of the bridge based on the current installation information of the bridge, such as the position, direction, angle, etc. of the bridge, which can be represented by graphics or numbers. Then, determine the target installation form of the bridge based on the target installation information of the bridge, such as the expected position, direction, angle, etc. of the bridge, which can also be represented by graphics or numbers. Finally, based on the current installation form and the target installation form, determine the correction instruction information of the bridge, such as the distance the bridge needs to move, the angle of rotation, etc., which can be represented by AR images, or graphical methods such as arrows and text.
[0164] By using the above method example, the correction instruction information of the bridge can be determined and displayed more intuitively and clearly, thereby improving the installation efficiency and accuracy of the bridge, reducing the difficulty and cost of the bridge installation, and improving the transmission performance and stability of the bridge.
[0165] In an optional implementation, controlling the corresponding terminal device to display the correction instruction information according to the above installation scenario includes:
[0166] If the above installation scenario is a scenario that does not require human assistance, the above correction instruction information will be sent to the first device in the above terminal device, and the above first device will be controlled to display the above correction instruction information to the installer, wherein the above first device is held by the above installer or detachably installed on the above network bridge.
[0167] In the above example, when the server controls the terminal device to display the bridge correction instruction information, the appropriate terminal device and display method can be selected based on the bridge installation scenario. For example, if the bridge installation does not require human assistance, such as the bridge installation location is low or the installation difficulty is relatively low, then the correction instruction information is sent to the first device, such as a mobile phone, tablet, smart glasses, etc. These devices can be held by the installer themselves or can be detachably installed on the bridge to facilitate the installer to install the bridge according to the correction instruction information.
[0168] By adopting the above method and steps, different terminal devices and display methods are selected according to different installation scenarios to adapt to different installation environments and needs, improve the installation flexibility and adaptability of the bridge, and enhance the installation experience and user satisfaction of the bridge.
[0169] In one example, the aforementioned installation instruction method for scenarios requiring no human assistance is applicable when the bridge's installation position or orientation can be directly observed or adjusted, such as when the bridge is installed in a low or open area. For example, some bridges are installed on towers that are not too high, or on rooftops that do not require climbing poles. In these scenarios, the bridge installer can complete the installation themselves without the need for assistance from personnel on the ground. For example, the current installation information of the bridge can be viewed using the installation assistance app on the first device.
[0170] Optionally, in an embodiment of the present application, there are multiple optional display methods to feedback current installation information and correction instruction information to the installer. For example, one is to use augmented display AR technology to display the difference between the target installation form and the current installation form of the bridge in a three-dimensional manner; another is to use voice broadcast to the installer about the angle and signal alignment of the bridge; and another is to display it in the form of text or icons.
[0171] It is understandable that augmented reality (AR) technology can overlay virtual information on real scenes, allowing users to see more information on their phone screens. Voice broadcasting is a technology that can convert text information into voice information, allowing users to hear information through their phone speakers. In the embodiment of the present application, the installer can choose one of the methods to complete the installation according to their preference. In addition, the embodiment of the present application does not require additional costs, allowing the installer to efficiently complete the signal alignment and installation of the two ends of the bridge.
[0172] In the example of this application, by controlling the first device to display correction instruction information to the installer, the installer can be helped to adjust and optimize the bridge according to the design or preset requirements, thereby improving the installation effect and communication performance of the bridge.
[0173] Optionally, as shown in FIG2 , in an embodiment of the present application, a first device A can be fixed at the center of the back of the bridge. The network management software App installed on the first device A can send installation information to a server (cloud server) or a local message channel in real time. The server or local message channel is a service that can synchronize messages between the first device A and other mobile phones, and can transmit the current installation information or correction instructions of the bridge via the Internet or Bluetooth.
[0174] Then, the same first device A can be used to view or listen to the current installation information of the bridge, and adjust and optimize the bridge according to the correction instructions given by the installation auxiliary application App, for example, adjusting the installation height, angle, etc. of the bridge. If the installer chooses to use AR technology, based on the display interface of the installation auxiliary application, the gap between the target installation form and the current installation form of the bridge can be seen, as well as an indicator arrow. It is only necessary to adjust the height, angle, etc. of the bridge in the direction of the indicator arrow until the target installation form of the bridge coincides with the current installation form and the indicator arrow disappears, indicating that the bridge has been aligned.
[0175] Still as shown in Figure 2, on the first device A, the display interface of the auxiliary application installed can also display an AR three-dimensional visualization image, with prompts on whether the bridge signal is aligned, and target installation information such as the latitude, longitude, azimuth, and tilt of the bridge, for example, latitude Lat: 26.067023, longitude Lon: 119.229846, azimuth Azimuth 260°w (west), and tilt: -16.7°.
[0176] In an optional implementation, controlling the corresponding terminal device to display the correction instruction information according to the above installation scenario includes:
[0177] If the installation scenario of the above-mentioned network bridge requires personnel assistance, the above-mentioned current installation information and the above-mentioned correction instruction information will be sent to the second device in the above-mentioned terminal device, and the above-mentioned second device will be controlled to display the above-mentioned correction instruction information to the assisting personnel, wherein the above-mentioned second device is held by the above-mentioned assisting personnel.
[0178] In the above example, if the installation of the bridge requires human assistance, for example, the installation location of the bridge is high or the installation is difficult, then the current installation information and correction instruction information will be sent to a second device, such as a mobile phone, tablet, smart glasses, etc. These devices can be held by the assisting personnel themselves, so that the assisting personnel can assist the installer in installing the bridge according to the correction instruction information.
[0179] By adopting the above method and steps, different terminal devices and display methods are selected according to different installation scenarios to adapt to different installation environments and needs, improve the installation flexibility and adaptability of the bridge, and enhance the installation experience and user satisfaction of the bridge.
[0180] In the example of this application, the installation instruction method for scenarios requiring human assistance is suitable for situations where the installation position or direction of the bridge is difficult to directly observe or adjust, such as when the bridge is installed in a high or obstructed place.
[0181] Since assisting personnel are involved in the scenario requiring human assistance, two devices are used, a first device and a second device. The first device is held by the installer or detachably set on the bridge to obtain the current installation information of the bridge, such as signal strength, azimuth, inclination, altitude, etc.; the second device is held by the assisting personnel to receive correction indication information issued by the server, such as correction indication azimuth, inclination, altitude, etc.
[0182] Afterwards, the server controls the second device to display the correction instruction information to the assistant, for example, the correction instruction information is broadcasted by voice. After that, the assistant can directly use the voice announcer (speaker) to shout the correction instruction information to the installer, or use the first device's voice playback method, or make a voice call to the first device to say the correction instruction information, so as to help the installer adjust and optimize the bridge according to the assistant's instructions, and improve the installation effect and communication performance of the bridge.
[0183] Since the purpose of bridge installation and comparison is to wirelessly connect two distant bridges to form a stable network link, to achieve this goal, the embodiment of the present application requires adjusting the azimuth, inclination, height, etc. of the bridges so that they can align with each other's signals. However, because the bridges are installed on relatively high towers, it is difficult for installers who climb the tower to simultaneously view the current installation information of the bridge and the current installation information and correction instructions displayed in the application app of the first device.
[0184] In order to solve this problem, in scenarios requiring human assistance, the embodiment of the present application utilizes a first device and a second device (such as a smart phone) to implement enhanced display AR technology, and can send the current installation information and target installation information of the bridge uploaded by the first device to the second device. In this way, the assisting personnel on the ground can also use the second device to view the current installation form and target installation form of the bridge.
[0185] In an optional example, the second device can use voice playback and / or augmented reality (AR) to display the current installation information of the bridge to the assisting personnel. For example, it can allow personnel on the ground to intuitively see the gap between the target installation form and the current installation form of the bridge.
[0186] It should be noted that the first device and the second device may use a message middleware to synchronize information in real time. The current installation information and the correction instruction information may also be calculated or determined by the server and synchronized to the first device and the second device after determining the correction instruction message.
[0187] The installers on the tower and the assistants on the ground can complete real-time message synchronization through their respective smartphones (first device and second device), the bridge installation auxiliary application App (used to obtain the geographic location information and current installation information of the bridge), and the message middleware (used to achieve message synchronization between the first device and the second device). The assistants on the ground use the second device to grasp the current installation information of the bridge on the tower collected by the first device in real time, making it convenient for the assistants to guide the installers to align and install the bridge. The embodiment of the present application integrates AR technology into the adjustment process of bridge alignment and installation. The application App on the first device and the second device uses AR technology to project the real-time position of the bridge, which can intuitively guide the installers to adjust the orientation, angle, height, etc. of the bridge. The installers on the tower only need to follow the guidance of the correction instructions to complete the alignment and fixed installation of the bridge signal.
[0188] By adopting the embodiment of the present application, the bridge does not need to add GPS and compass modules, avoiding increasing development complexity and cost. Assistants on the ground can grasp the current installation information of the bridge in real time and efficiently assist in signal alignment of the bridges at both ends.
[0189] As an optional implementation, as shown in FIG3 , the embodiment of the present application can also be implemented using the following specific method:
[0190] The first device A can detect the geographic location of the bridge in real time and send the geographic location information to a server or a local message channel. For example, a geological survey and planning tool on an electronic map of the first device A can be used to detect the geographic location of the bridge and output the current installation information of the bridge, such as the azimuth, inclination, and altitude of the bridge. The current installation information indicates the current location, height, and angle of the bridge installation.
[0191] Next, in an embodiment of the present application, an assistant on the ground can use another smartphone, namely a second device B, which has the same bridge installation assistance application app installed on it as the first device A, and subscribe to the current installation information sent by the first device A from a server or a local message channel. Both the first device A and the second device B can install the assistance application app based on the bridge to implement voice broadcast and augmented reality (AR) display functions. For example, the difference between the target installation form and the current installation form of the bridge can be displayed in an AR three-dimensional stereoscopic manner, providing the installer or assistant with instructions on how to adjust the bridge. For example, if the current bridge signal is "misaligned", a correction instruction message of the bridge signal "misaligned" will be given. Moreover, if the current installation angle of the bridge is too far to the left, a right-pointing arrow and the adjustment angle will be graphically displayed in the AR three-dimensional visualization image. If the bridge is currently installed too high, a downward arrow will be graphically displayed in the AR three-dimensional visualization image to prompt the installer to make adjustments. Finally, a prompt indicating that the bridge signal is "aligned" will be given.
[0192] In an optional example, the display interface of the installation assistance application on the first device A and / or the second device B may also display an AR three-dimensional visualization image, as shown in Figure 3, indicating whether the bridge signal is aligned, the current latitude and longitude, azimuth, tilt and other target installation information of the bridge, such as latitude Lat: 26.067023, longitude Lon: 119.229846, azimuth Azimuth 260°w (west), and tilt: -16.7°.
[0193] As an optional example, during the actual implementation of this solution, support personnel can also use a voice announcer such as an intercom to instruct the installer on the tower, broadcasting correction instructions to the installer, instructing them to align the signals at both ends of the bridge, and then perform the final fixed installation after alignment. For example, once the bridge is adjusted to the planned parameters, the signal alignment is automatically successful. Support personnel on the ground can also use the app to view signal strength in real time, make fine-tuning and verify link quality, and complete the installation.
[0194] In an optional implementation manner, the display of the correction instruction information includes at least one of the following:
[0195] The above correction instruction information is broadcasted by voice playback.
[0196] The current installation form and the target installation form of the above-mentioned bridge are displayed in an AR three-dimensional visualization image using augmented reality (AR), wherein the above-mentioned AR three-dimensional visualization image is generated based on an image screen containing the above-mentioned bridge and the above-mentioned current installation information.
[0197] The correction instruction information is displayed in text form on the AR three-dimensional visualization image.
[0198] In one example, when displaying correction instructions for a network bridge, multiple methods can be used to accommodate the needs and preferences of different installers or assistants. For example, voice playback can be used to facilitate installers or assistants to listen to correction instructions during operation. Augmented reality (AR) can also be used to present the current and target installation configurations of the network bridge in a three-dimensional image in the installer's or assistant's field of view, allowing them to intuitively see the installation status of the bridge and the direction that needs to be adjusted. Correction instructions can also be displayed in text on the AR three-dimensional visualization image, making it easier for installers or assistants to review and confirm.
[0199] By using the above method and steps, multiple ways of displaying correction instruction information can be provided to adapt to the needs and preferences of different installers or assistants, improve the installation efficiency and accuracy of the bridge, reduce the installation difficulty and cost of the bridge, and improve the transmission performance and stability of the bridge.
[0200] The embodiments given in the above method steps describe in detail the specific implementation steps and technical solutions for displaying correction instruction information using augmented reality (AR).
[0201] For example, a pre-captured image of a bridge can be directly captured. Based on the image and the bridge's current installation information, an AR 3D visualization can be generated and displayed. This utilizes existing image resources, eliminating the need for additional image acquisition equipment and reducing installation costs and complexity. Furthermore, converting the 2D bridge image into a 3D image enhances the three-dimensionality and realism of the installation instructions.
[0202] Furthermore, by utilizing intelligent position recognition technology, the display position on the AR three-dimensional visualization image is determined according to the display position of the bridge on the AR three-dimensional visualization image. In this way, the correction instruction information can be projected at an appropriate position, for example, directly marked on the bridge or in the area around the bridge as shown in Figures 2 and 3, with adjustment arrows and adjustment angles, etc., thereby avoiding obstruction or misalignment of information and improving the clarity and readability of the installation instructions.
[0203] Using the above example, by displaying the correction instruction information at the display location, the installer can see the correction instruction information while viewing the AR three-dimensional visualization image, which facilitates the installer to make adjustments and optimizations, thereby improving the installation effect and communication performance of the bridge.
[0204] For example, if the current bridge signal is "misaligned", a prompt of "misaligned" will be given, and if the current installation angle of the bridge is biased to the left, a right-pointing arrow and the specific adjustment angle will be highlighted in the AR three-dimensional visualization image; if the current installation angle of the bridge is too high, a downward arrow will be highlighted in the AR three-dimensional visualization image to prompt the installer to make adjustments, and finally a prompt of "aligned" will be given.
[0205] Still as shown in Figure 2, if the installer chooses to use voice playback to broadcast the current installation information and correction instructions of the bridge, the installation angle and signal alignment status of the bridge can be broadcast through the speaker of the first device A. The installer only needs to adjust the port status, installation angle, direction, height, etc. of the bridge according to the content of the voice instructions until "alignment successful" is heard, indicating that the bridge has been aligned with the matching bridge signal and the automatic bridging is successful.
[0206] Finally, after the bridge is successfully connected, installers and other users can also view the signal strength in real time through the App, make fine adjustments and verify the link quality, and complete the installation.
[0207] In embodiments of the present application, the quality of a bridge installation can be determined based on the signal transmission strength of the bridge after installation. Signal transmission strength refers to the ability of bridges to transmit data, and can be measured using metrics such as the signal-to-noise ratio (SNR) or the received signal strength indicator (RSSI). Higher signal transmission strength indicates a more stable connection between bridges, faster data transmission, and better network quality.
[0208] It is understandable that the signal transmission strength is affected by factors such as the azimuth, inclination, altitude, distance, obstacles, weather, etc. of the bridge. The embodiment of the present application uses a mobile phone app to view the signal transmission strength in real time and judge the installation quality of the bridge based on preset standards or ranges.
[0209] Afterwards, the bridge will be determined to be properly tuned, calibrated, and installed based on its installation quality. If the bridge installation quality meets the expected goals or requirements, the installation can be completed. If the bridge installation quality is not ideal or unstable, the bridge will need to be tuned, calibrated, and installed.
[0210] Optionally, in an embodiment of the present application, tuning, calibration and installation refer to fine-tuning and optimizing the network bridge so that it can achieve better signal transmission effects. For example, suggestions for tuning, calibration and installation can be given through a mobile phone app, and the installer can be guided to perform the operation.
[0211] According to one or more embodiments of the present application, FIG4 is a flow chart of another method for indicating installation of a network bridge provided in an embodiment of the present application. As shown in FIG4 , the present application provides a method for indicating installation of a network bridge, the method comprising:
[0212] S401, obtaining geographic location information and installation scenarios of the network bridge, wherein the installation scenarios include: scenarios requiring human assistance and scenarios not requiring human assistance;
[0213] S402, determining current installation information of the bridge according to the geographical location information of the bridge;
[0214] S403, uploading the current installation information of the network bridge and the installation scenario to the server, wherein correction instruction information of the network bridge is determined based on the current installation information of the network bridge and the target installation information;
[0215] S404: In response to receiving the modification instruction information sent by the server according to the installation scenario, display the modification instruction information.
[0216] In an optional embodiment, the first device may also directly send the geographical location information to the server, and the server may determine the current installation information of the bridge according to the geographical location information of the bridge.
[0217] When installing a bridge, the system first obtains the bridge's geographic location information, such as its longitude, latitude, and altitude, as well as the bridge's installation scenario, such as whether assistance is required or if there are any obstructions. The system then determines the bridge's current installation information, such as its azimuth, inclination, and altitude, based on the bridge's geographic location information. The server then uploads the bridge's current installation information and installation scenario to the server. The server determines the bridge's correction instructions, such as the direction, angle, and distance that need to be adjusted, based on the bridge's current installation information and target installation information (such as the preset azimuth, inclination, and altitude). Finally, the server displays the correction instructions received from the server to the installer or assistant, allowing them to install the bridge according to the correction instructions.
[0218] Compared to traditional bridge installation methods, this method uses terminal devices to obtain the bridge's geographic location information and, based on this location, determines the bridge's current installation information. Leveraging the server's computing power and data analysis capabilities, it quickly and accurately determines bridge correction instructions based on the bridge's geographic location and installation scenario, eliminating errors associated with manual measurement and judgment. This improves the efficiency and accuracy of bridge installation, reduces the difficulty and cost of installation, and enhances the bridge's transmission performance and stability.
[0219] In an optional implementation manner, determining the current installation information of the bridge according to the geographical location information of the bridge includes:
[0220] The geographical location information of the bridge is detected in real time; and the current installation information of the bridge is calculated based on the geographical location information.
[0221] In the example of this application, when a terminal device, such as a first device, determines the current installation information of a network bridge, it uses a dynamic method to detect the geographic location information of the network bridge in real time, such as longitude and latitude, altitude, etc., and then calculates the current installation information of the network bridge, such as azimuth, inclination, altitude, etc., based on these geographic location information.
[0222] By using the above method and steps, the current installation information of the bridge can be obtained more timely and accurately, adapting to the position changes that may occur during the installation of the bridge, improving the installation efficiency and accuracy of the bridge, reducing the difficulty and cost of the bridge installation, and improving the transmission performance and stability of the bridge.
[0223] In an optional implementation manner, if the installation scenario of the network bridge is a scenario where no human assistance is required, displaying the correction instruction information includes:
[0224] In response to the correction instruction information sent by the server, a first device is used to display the correction instruction information, wherein the first device is held by the installer or detachably installed on the network bridge.
[0225] For example, if the installation of the bridge does not require human assistance, such as the installation location of the bridge is low, or the installation is not difficult, then the first device is used to display the correction instruction information, such as a mobile phone, tablet, smart glasses, etc. These devices can be held by the installer himself, or can be removably installed on the bridge to facilitate the installer to install the bridge according to the correction instruction information.
[0226] By using the above method and steps, different terminal devices and display methods can be selected according to different installation scenarios to adapt to different installation environments and needs, improve the installation flexibility and adaptability of the bridge, and enhance the installation experience and user satisfaction of the bridge.
[0227] In an optional implementation, if the installation scenario of the network bridge requires human assistance, the correction instruction information is displayed, including:
[0228] In response to the correction instruction information sent by the server, a second device is used to display the correction instruction information, wherein the second device is held by the assisting personnel.
[0229] For example, if the installation of the bridge requires human assistance, such as the installation location of the bridge is high or the installation is difficult, then a second device is used to display correction instructions, such as a mobile phone, tablet, smart glasses, etc. These devices can be held by the assisting personnel themselves, so that the assisting personnel can assist the installer in installing the bridge according to the correction instructions.
[0230] By using the above method and steps, different terminal devices and display methods can be selected according to different installation scenarios to adapt to different installation environments and needs, improve the installation flexibility and adaptability of the bridge, and enhance the installation experience and user satisfaction of the bridge.
[0231] In an optional embodiment, displaying the correction instruction information includes:
[0232] Announce the above correction instructions by voice broadcast; and / or
[0233] The above correction instruction information is displayed in a graphical manner;
[0234] The correction indication information is used to indicate at least one of the following information: a correction indication azimuth, a correction indication inclination, a correction indication altitude and a correction port status.
[0235] Optionally, in the example of this application, when displaying the correction instruction information of the bridge, a variety of methods can be used to adapt to the needs and preferences of different installers or assistants. For example, a voice playback method can be used to facilitate the installer or assistant to listen to the correction instruction information during operation; or a graphical method can be used to display the correction instruction information in the form of text or icons on the screen of the terminal device, so that the installer or assistant can see the direction, angle, distance and other parameters that need to be adjusted for the bridge. The correction instruction information includes at least one information for indicating the installation status of the bridge, such as the correction indication azimuth, the correction indication inclination, the correction indication altitude and the correction port status.
[0236] By using the above method and steps, multiple ways of displaying correction instruction information can be provided to adapt to the needs and preferences of different installers or assistants, improve the installation efficiency and accuracy of the bridge, reduce the installation difficulty and cost of the bridge, and improve the transmission performance and stability of the bridge.
[0237] An optional implementation manner is to display the correction instruction information in a graphical manner, including:
[0238] Acquire an image containing the bridge;
[0239] Generate an AR three-dimensional visualization image corresponding to the image according to the image and the current installation information;
[0240] In the above-mentioned AR three-dimensional visualization image, the above-mentioned correction instruction information is displayed in a graphical manner.
[0241] In the example of this application, a more intuitive method is adopted when displaying the correction instruction information of the bridge, that is, AR (augmented reality) technology is used to combine the image of the bridge and the current installation information to generate an AR three-dimensional visualization image corresponding to the actual scene. Then, within this image, the correction instruction information is displayed in a graphical manner, such as arrows, circles, numbers, etc., to facilitate installers or assistants to see the current installation form and target installation form of the bridge, as well as parameters such as direction, angle, distance, etc. that need to be adjusted.
[0242] By adopting the above method and steps and utilizing AR technology, the correction instruction information of the bridge can be presented in the form of a three-dimensional image in the field of vision of the installer or assistant, thereby improving the installation efficiency and accuracy of the bridge, reducing the installation difficulty and cost of the bridge, and improving the transmission performance and stability of the bridge.
[0243] In an optional embodiment, the correction instruction information is displayed graphically in the AR three-dimensional visualization image, including:
[0244] In the AR three-dimensional visualization image, the current installation form and the target installation form of the above-mentioned bridge are displayed in an AR manner.
[0245] In an optional implementation manner, the correction instruction information is displayed in a graphical manner within the AR three-dimensional visualization image, including: displaying the correction instruction information in a text or icon manner on the AR three-dimensional visualization image.
[0246] When displaying correction instructions for the bridge, different graphical methods can be used to adapt to the visual needs of different installers or assistants. For example, AR can be used to display the current and target installation configurations of the bridge in a three-dimensional manner within an AR 3D visualization, making it easier for installers or assistants to see the installation status and the direction that needs to be adjusted. Alternatively, text or icons can be used to concisely display correction instructions on the AR 3D visualization, making it easier for installers or assistants to review and confirm.
[0247] By using the above method and steps, different graphical methods can be provided to display correction instruction information to meet the visual needs of different installers or assistants, improve the installation efficiency and accuracy of the bridge, reduce the installation difficulty and cost of the bridge, and improve the transmission performance and stability of the bridge.
[0248] It should be noted that the optional embodiments of the bridge installation instruction method executed by the terminal device provided in the embodiments of the present application can refer to one or more optional embodiments given in the above-mentioned bridge installation instruction method executed by the server, and will not be repeated here.
[0249] According to one or more embodiments of the present application, the present application provides a network bridge installation indication system, the system comprising:
[0250] The first device is configured to obtain geographic location information and an installation scenario of the network bridge, and determine current installation information of the network bridge based on the geographic location information of the network bridge, wherein the installation scenario includes a scenario requiring human assistance and a scenario requiring no human assistance;
[0251] The server is configured to determine, based on the current installation information of the network bridge and the installation scenario, whether the first device and / or the second device should display the correction indication information;
[0252] The above-mentioned first device and / or second device are used to display the above-mentioned revised display information, wherein the above-mentioned first device is held by the installer or detachably set on the above-mentioned bridge, and the above-mentioned second device is held by the assistant.
[0253] When installing a network bridge, first use the first device to obtain the geographical location information of the network bridge, such as longitude and latitude, altitude, etc., as well as the installation scenario of the network bridge, such as whether personnel assistance is needed, whether there are any obstacles blocking the view, etc. Then, based on the geographical location information of the network bridge, determine the current installation information of the network bridge, such as azimuth, inclination, altitude, etc. Next, upload the current installation information and installation scenario of the network bridge to the server. The server determines the correction instruction information of the network bridge, such as the direction, angle, distance, etc. that need to be adjusted, based on the current installation information and target installation information of the network bridge (such as the preset azimuth, inclination, altitude, etc.). Finally, according to the installation scenario, select the first device or the second device to display the correction instruction information, such as a mobile phone, tablet, smart glasses, etc. These devices can be held by the installer or assistant themselves, or can be detachably installed on the network bridge to facilitate them to install the network bridge according to the correction instruction information.
[0254] Compared with traditional bridge installation methods, this system can utilize the server's computing power and data analysis capabilities to quickly and accurately determine the bridge's correction instruction information based on the bridge's geographical location information and installation scenario, avoid errors in manual measurement and judgment, improve the efficiency and accuracy of bridge installation, reduce the difficulty and cost of bridge installation, and improve the bridge's transmission performance and stability.
[0255] In an optional implementation manner, the installation position of the first device on the network bridge is determined based on real-time detection or a pre-defined address location detection area.
[0256] When determining the installation position of the first device on the bridge, two methods can be used. One is real-time detection, that is, dynamically adjusting the installation position of the first device according to the geographical location information of the bridge to ensure the signal connection between the first device and the bridge; the other is pre-demarcation, that is, pre-determining an address location detection area according to the installation scenario of the bridge. As long as the first device is within this area, it can be connected to the signal of the bridge.
[0257] According to different installation scenarios and requirements, different methods can be selected to determine the installation position of the first device on the bridge, thereby improving the installation flexibility and adaptability of the bridge and enhancing the installation experience and user satisfaction of the bridge.
[0258] For optional embodiments of the network bridge installation indication system provided in the embodiments of the present application, reference may be made to one or more optional embodiments provided in the network bridge installation indication method, which will not be described in detail here.
[0259] It should be noted that the user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data used for analysis, stored data, displayed data, etc.) involved in this application are all information and data authorized by the user or fully authorized by all parties, and the collection, use and processing of relevant data must comply with the relevant laws, regulations and standards of relevant countries and regions, and provide corresponding operation entrances for users to choose to authorize or refuse.
[0260] According to one or more embodiments of the present application, an embodiment of a network bridge installation indication device is provided. FIG5 is a schematic structural diagram of a network bridge installation indication device provided in an embodiment of the present application. As shown in FIG5 , the device includes:
[0261] A first acquisition module 501 is configured to acquire current installation information and an installation scenario of the network bridge, wherein the current installation information is determined based on the geographical location information of the network bridge, and the installation scenarios include: a scenario requiring human assistance and a scenario not requiring human assistance;
[0262] A first determining module 502 is configured to determine modification instruction information of the network bridge according to the target installation information of the network bridge and the current installation information;
[0263] The control module 503 is used to control the corresponding terminal device to display the above-mentioned correction instruction information according to the above-mentioned installation scenario.
[0264] In an optional implementation manner, the first determining module includes:
[0265] an acquiring unit, configured to acquire a difference between the target installation information of the bridge and the current installation information;
[0266] The first determining unit is configured to determine correction instruction information of the network bridge according to a difference between the target installation information and the current installation information.
[0267] In an optional implementation manner, the first determining module further includes:
[0268] A second determining unit, configured to determine a current installation state corresponding to the network bridge according to the current installation information of the network bridge;
[0269] a third determining unit, configured to determine a target installation form corresponding to the network bridge according to the target installation information of the network bridge;
[0270] The fourth unit is used to determine the correction instruction information of the above-mentioned bridge according to the above-mentioned current installation form and the above-mentioned target installation form.
[0271] In an optional implementation manner, the control module includes:
[0272] The first control unit is used to send the above-mentioned correction instruction information to the first device in the above-mentioned terminal device if the above-mentioned installation scenario is a scenario that does not require human assistance, and control the above-mentioned first device to display the above-mentioned correction instruction information to the installer, wherein the above-mentioned first device is held by the above-mentioned installer or is detachably set on the above-mentioned network bridge.
[0273] In an optional implementation manner, the control module includes:
[0274] The second control unit is used to send the current installation information and the correction instruction information to the second device in the terminal device if the installation scenario of the above-mentioned network bridge is a scenario requiring personnel assistance, and control the second device to display the correction instruction information to the assisting personnel, wherein the second device is held by the assisting personnel.
[0275] In an optional implementation manner, controlling the terminal device to display the correction instruction information includes at least one of the following methods:
[0276] Using voice playback to broadcast the above correction instruction information;
[0277] Using augmented reality (AR) to display the current installation configuration and the target installation configuration of the network bridge within an AR three-dimensional visualization image, wherein the AR three-dimensional visualization image is generated based on an image containing the network bridge and the current installation information;
[0278] The correction instruction information is displayed in text form on the AR three-dimensional visualization image.
[0279] According to one or more embodiments of the present application, a bridge installation indication device is further provided. FIG6 is a structural block diagram of a bridge installation indication device provided in an embodiment of the present application. As shown in FIG6 , the device includes:
[0280] The second acquisition module 601 is used to obtain the geographical location information and installation scenario of the network bridge, wherein the installation scenario includes: a scenario requiring human assistance and a scenario not requiring human assistance;
[0281] A second determining module 602 is configured to determine current installation information 603 of the network bridge according to the geographical location information of the network bridge;
[0282] an uploading module, configured to upload the current installation information of the network bridge and the installation scenario to a server, wherein the server is configured to determine correction instruction information of the network bridge based on the current installation information and target installation information of the network bridge;
[0283] The display module 604 is configured to display the modification instruction information in response to receiving the modification instruction information sent by the server according to the installation scenario.
[0284] In an optional implementation manner, the second determining module includes:
[0285] A detection unit, used for detecting the geographical location information of the bridge in real time;
[0286] The calculation unit is used to calculate the current installation information of the above-mentioned bridge according to the above-mentioned geographical location information.
[0287] In an optional implementation, if the installation scenario of the above-mentioned network bridge is a scenario that does not require human assistance, the display module includes:
[0288] The first display unit is used to respond to the correction instruction information sent by the server and use a first device to display the correction instruction information, wherein the first device is held by the installer or detachably installed on the network bridge.
[0289] In an optional implementation, if the installation scenario of the network bridge requires human assistance, the display module further includes:
[0290] The second display unit is configured to display the correction instruction information by using a second device in response to the correction instruction information sent by the server, wherein the second device is held by the assisting personnel.
[0291] In an optional embodiment, the display module displays the correction instruction information in the following manner:
[0292] Announce the above correction instructions by voice broadcast; and / or
[0293] The above correction instruction information is displayed in a graphical manner;
[0294] The correction indication information is used to indicate at least one of the following information: a correction indication azimuth, a correction indication inclination, a correction indication altitude and a correction port status.
[0295] In an optional embodiment, the display module is further used to:
[0296] Acquire an image screen including the above-mentioned network bridge; generate an AR three-dimensional visualization image corresponding to the above-mentioned image screen based on the above-mentioned image screen and the above-mentioned current installation information; and display the above-mentioned correction instruction information in a graphical manner within the above-mentioned AR three-dimensional visualization image.
[0297] In an optional embodiment, the display module displays the correction instruction information in a graphical manner, including at least one of the following:
[0298] In the AR three-dimensional visualization image, the current installation form and the target installation form of the above-mentioned bridge are displayed in AR form; on the above-mentioned AR three-dimensional visualization image, the above-mentioned correction instruction information is displayed in text or icon form.
[0299] In an exemplary embodiment, the present application also provides an electronic device, including: a processor, and a memory connected to the processor;
[0300] The memory stores computer-executable instructions;
[0301] The processor executes the computer-executable instructions stored in the memory to implement any one of the methods.
[0302] In an exemplary embodiment, the embodiment of the present application further provides a computer-readable storage medium, in which computer-executable instructions are stored. When the computer-executable instructions are executed by a processor, they are used to implement any one of the methods.
[0303] In an exemplary embodiment, the present application further provides a computer program product, including a computer program, which implements any one of the methods when executed by a processor.
[0304] In order to implement the above-mentioned embodiment, the embodiment of the present application further provides an electronic device. Referring to Figure 7, it shows a structural schematic diagram of an electronic device 700 suitable for implementing the embodiment of the present application, and the electronic device 700 can be a terminal device or a server. Among them, the terminal device can include but is not limited to mobile terminals such as mobile phones, laptops, digital broadcast receivers, messaging devices, game consoles, medical devices, fitness equipment, personal digital assistants (PDAs), tablet computers (Portable Android Devices, PADs), portable multimedia players (PMPs), vehicle-mounted terminals (such as vehicle-mounted navigation terminals), etc., and fixed terminals such as digital TVs, desktop computers, etc. The electronic device shown in Figure 7 is only an example and should not bring any limitations to the functions and scope of use of the embodiments of the present application.
[0305] As shown in FIG7 , the electronic device 700 may include a processing device (e.g., a central processing unit, a graphics processing unit, etc.) 701, which can perform various appropriate actions and processes according to a program stored in a read-only memory (ROM) 702 or a program loaded from a storage device 708 into a random access memory (RAM) 703. Various programs and data required for the operation of the electronic device 700 are also stored in the RAM 703. The processing device 701, the ROM 702, and the RAM 703 are connected to each other via a bus 704. An input / output (I / O) interface 705 is also connected to the bus 704.
[0306] Typically, the following devices may be connected to the I / O interface 705: an input device 706 including, for example, a touch screen, a touchpad, a keyboard, a mouse, a camera, a microphone, an accelerometer, a gyroscope, etc.; an output device 707 including, for example, a liquid crystal display (LCD), a speaker, a vibrator, etc.; a storage device 708 including, for example, a magnetic tape, a hard disk, etc.; and a communication device 709. The communication device 709 may allow the electronic device 700 to communicate with other devices wirelessly or by wire to exchange data. Although FIG. 7 shows an electronic device 700 having various devices, it should be understood that it is not required to implement or have all of the devices shown. More or fewer devices may be implemented or have alternatively.
[0307] In particular, according to an embodiment of the present application, the process described above with reference to the flowchart can be implemented as a computer software program. For example, an embodiment of the present application includes a computer program product, which includes a computer program carried on a computer-readable medium, and the computer program includes program code for executing the method shown in the flowchart. In such an embodiment, the computer program can be downloaded and installed from the network via the communication device 709, or installed from the storage device 708, or installed from the ROM 702. When the computer program is executed by the processing device 701, the above-mentioned functions defined in the method of the embodiment of the present application are performed.
[0308] It should be noted that the computer-readable medium mentioned above in this application can be a computer-readable signal medium or a computer-readable storage medium, or any combination of the two. Computer-readable storage media can be, for example, but not limited to, electrical, magnetic, optical, electromagnetic, infrared, or semiconductor systems, devices, or components, or any combination of the above. More specific examples of computer-readable storage media can include, but are not limited to: an electrical connection with one or more wires, a portable computer disk, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, a non-volatile storage medium, or any suitable combination of the above. In this application, a computer-readable storage medium can be any tangible medium that contains or stores a program that can be used by or in conjunction with an instruction execution system, device, or device. In this application, a computer-readable signal medium can include a data signal propagated in baseband or as part of a carrier wave, which carries computer-readable program code. This propagated data signal can take a variety of forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination of the above. A computer-readable signal medium may also be any computer-readable medium other than a computer-readable storage medium that can transmit, propagate, or transport a program for use by or in conjunction with an instruction execution system, apparatus, or device. The program code contained on the computer-readable medium may be transmitted using any suitable medium, including but not limited to wires, optical cables, RF (radio frequency), etc., or any suitable combination thereof.
[0309] The computer-readable medium may be included in the electronic device, or may exist independently without being incorporated into the electronic device.
[0310] The computer-readable medium carries one or more programs. When the one or more programs are executed by the electronic device, the electronic device executes the method shown in the above embodiment.
[0311] Computer program code for performing the operations of the present application can be written in one or more programming languages, or a combination thereof, including object-oriented programming languages such as Java, Smalltalk, C++, and conventional procedural programming languages such as "C" or similar programming languages. The program code can be executed entirely on the user's computer, partially on the user's computer, as a separate software package, partially on the user's computer and partially on a remote computer, or entirely on a remote computer or server. In cases involving a remote computer, the remote computer can be connected to the user's computer through any type of network, including a local area network (LAN) or a wide area network (WAN), or can be connected to an external computer (e.g., via the Internet using an Internet service provider).
[0312] The flow charts and block diagrams in the accompanying drawings illustrate the possible architecture, functions and operations of the systems, methods and computer program products according to various embodiments of the present application. In this regard, each box in the flow chart or block diagram can represent a module, program segment or a part of code, and the module, program segment or a part of code contains one or more executable instructions for realizing the specified logical function. It should also be noted that in some alternative implementations, the functions marked in the box can also occur in a different order than that marked in the accompanying drawings. For example, two boxes represented in succession can actually be executed substantially in parallel, and they can sometimes be executed in the opposite order, depending on the functions involved. It should also be noted that each box in the block diagram and / or flow chart, and the combination of the boxes in the block diagram and / or flow chart can be implemented by a dedicated hardware-based system that performs the specified function or operation, or can be implemented by a combination of dedicated hardware and computer instructions.
[0313] The units involved in the embodiments described in this application may be implemented in software or hardware. The name of a unit does not necessarily limit the unit itself. For example, the first acquisition unit may also be described as a "unit for acquiring at least two Internet Protocol addresses."
[0314] The functions described above herein may be performed, at least in part, by one or more hardware logic components. For example, and without limitation, exemplary types of hardware logic components that may be used include: field programmable gate arrays (FPGAs), application specific integrated circuits (ASICs), application specific standard products (ASSPs), systems on chip (SOCs), complex programmable logic devices (CPLDs), and the like.
[0315] In the context of the present application, a machine-readable medium can be a tangible medium that can contain or store a program for use by an instruction execution system, device or equipment or used in combination with an instruction execution system, device or equipment. A machine-readable medium can be a machine-readable signal medium or a machine-readable storage medium. A machine-readable medium can include, but is not limited to, an electronic, magnetic, optical, electromagnetic, infrared or semiconductor system, device or equipment, or any suitable combination of the foregoing. A more specific example of a machine-readable storage medium can include an electrical connection based on one or more lines, a portable computer disk, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the foregoing.
[0316] Those skilled in the art will readily appreciate other embodiments of the present application after considering the specification and practicing the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of the present application that follow the general principles of the present application and include common knowledge or customary techniques in the art not disclosed herein. The description and examples are to be considered as exemplary only, and the true scope and spirit of the present application are indicated by the following claims.
[0317] It should be understood that the present application is not limited to the exact structure described above and shown in the drawings, and that various modifications and changes may be made without departing from the scope thereof. The scope of the present application is limited only by the appended claims.
Claims
1. A method for installing instructions of a bridge, characterized in that, The method includes: Obtain the current installation information and installation scenario of the network bridge, where the current installation information is determined according to the geographical location information of the network bridge, and the installation scenario includes: a scenario requiring personnel assistance and a scenario not requiring personnel assistance; Determine the correction indication information of the network bridge according to the target installation information and the current installation information of the network bridge; Control the corresponding terminal device to display the correction indication information according to the installation scenario.
2. The method according to claim 1, characterized in that The determining the correction indication information of the network bridge according to the target installation information and the current installation information of the network bridge includes: Obtain the difference between the target installation information and the current installation information of the network bridge; Determine the correction indication information of the network bridge according to the difference between the target installation information and the current installation information.
3. The method according to claim 1, wherein The determining the correction indication information of the network bridge according to the target installation information and the current installation information of the network bridge includes: Determine the current installation form corresponding to the network bridge according to the current installation information of the network bridge; Determine the target installation form corresponding to the network bridge according to the target installation information of the network bridge; Determine the correction indication information of the network bridge according to the current installation form and the target installation form.
4. The method according to claim 1, wherein Controlling the corresponding terminal device to display the correction indication information according to the installation scenario includes: If the installation scenario is a scenario not requiring personnel assistance, send the correction indication information to the first device in the terminal device, and control the first device to display the correction indication information to the installation personnel, where the first device is held by the installation personnel or detachably arranged on the network bridge.
5. The method according to claim 1, characterized in that Controlling the corresponding terminal device to display the correction indication information according to the installation scenario includes: If the installation scenario of the network bridge is a scenario requiring personnel assistance, send the current installation information and the correction indication information to the second device in the terminal device, and control the second device to display the correction indication information to the assisting personnel, where the second device is held by the assisting personnel.
6. The method according to claim 4 or 5, characterized in that, The displaying the correction indication information includes at least one of the following: Broadcast the correction indication information by voice playback; In an augmented reality (AR) manner, display the current installation form and the target installation form of the network bridge in the AR three-dimensional visualization image, where the AR three-dimensional visualization image is generated according to the image screen including the network bridge and the current installation information; Display the correction indication information in text on the AR three-dimensional visualization image.
7. A method for installing instructions of a bridge, characterized in that The method includes: Obtain the geographical location information and installation scenario of the network bridge, where the installation scenario includes: a scenario requiring personnel assistance and a scenario not requiring personnel assistance; Determine the current installation information of the network bridge according to the geographical location information of the network bridge; Upload the current installation information and the installation scenario of the network bridge to the server, and determine the correction indication information of the network bridge according to the current installation information and the target installation information of the network bridge; In response to receiving the correction indication information sent by the server according to the installation scenario, display the correction indication information.
8. The method according to claim 7, wherein Determine the current installation information of the bridge according to the geographical location information of the bridge, including: Real-time detect the geographical location information of the bridge; Calculate the current installation information of the bridge according to the geographical location information.
9. The method according to claim 7, wherein If the installation scenario of the bridge is a scenario without personnel assistance, display the correction instruction information, including: In response to the correction instruction information sent by the server, use a first device to display the correction instruction information, where the first device is held by the installer or detachably arranged on the bridge.
10. The method according to claim 7, wherein If the installation scenario of the bridge is a scenario requiring personnel assistance, display the correction instruction information, including: In response to the correction instruction information sent by the server, use a second device to display the correction instruction information, where the second device is held by the assisting personnel.
11. The method according to claim 9 or 10, characterized in that, Display the correction instruction information, including: Broadcast the correction instruction information in a voice playback manner; and / or Display the correction instruction information in a graphical manner; Wherein, the correction instruction information is used to indicate at least one of the following information: correction instruction azimuth, correction instruction inclination angle, correction instruction height, and correction port status.
12. The method according to claim 11, wherein Display the correction instruction information in a graphical manner, including: Obtain an image screen including the bridge; Generate an AR three-dimensional visualization image corresponding to the image screen according to the image screen and the current installation information; In the AR three-dimensional visualization image, display the correction instruction information in a graphical manner.
13. The method according to claim 12, characterized in that, In the AR three-dimensional visualization image, displaying the correction instruction information in a graphical manner includes at least one of the following: In the AR three-dimensional visualization image, use the AR method to display the current installation form and the target installation form of the bridge; On the AR three-dimensional visualization image, display the correction instruction information in text or icon form.
14. An installation indication system for a bridge, characterized in that, The system includes: A first device for obtaining the geographical location information and installation scenario of the bridge, and determining the current installation information of the bridge according to the geographical location information of the bridge, where the installation scenario includes: a scenario requiring personnel assistance and a scenario without personnel assistance; A server for determining, according to the current installation information of the bridge and the installation scenario, that the correction instruction information is displayed by the first device and / or the second device; The first device and / or the second device for displaying the correction display information, where the first device is held by the installer or detachably arranged on the bridge, and the second device is held by the assisting personnel.
15. The system according to claim 14, wherein The installation position of the first device on the bridge is determined based on real-time detection or a pre-defined address position detection area.
16. An installation indication device for a bridge, characterized in that, The device includes: A first acquisition module for acquiring the current installation information and installation scenario of the bridge, where the current installation information is determined according to the geographical location information of the bridge, and the installation scenario includes: a scenario requiring personnel assistance and a scenario without personnel assistance; A first determination module for determining the correction instruction information of the bridge according to the target installation information and the current installation information of the bridge; A control module, configured to control a corresponding terminal device to display the correction indication information according to the installation scenario.
17. An installation indication device for a bridge, characterized in that, The device includes: A second acquisition module, configured to acquire the geographical location information and installation scenario of the bridge, where the installation scenario includes: a scenario requiring personnel assistance and a scenario not requiring personnel assistance; A second determination module, configured to determine the current installation information of the bridge according to the geographical location information of the bridge; An upload module, configured to upload the current installation information and the installation scenario of the bridge to a server, where the server is configured to determine the correction indication information of the bridge according to the current installation information and target installation information of the bridge; A display module, configured to display the correction indication information in response to receiving the correction indication information sent by the server according to the installation scenario.
18. An electronic device, characterized in that, It includes: A processor and a memory connected to the processor; The memory stores computer-executable instructions; The processor executes the computer-executable instructions stored in the memory to implement the method according to any one of claims 1 to 13.
19. A computer-readable storage medium, characterized in that, Computer-executable instructions are stored in the computer-readable storage medium, and when the computer-executable instructions are executed by a processor, they are used to implement the method according to any one of claims 1 to 13.
20. A computer program product, characterized in that, It includes a computer program, and when the computer program is executed by a processor, it implements the method according to any one of claims 1 to 13.
Citation Information
Patent Citations
Network bridge connection method
CN111970184A
Method and device for acquiring installation information of network access equipment
CN113365207A
Registration method, device and system of network device
CN115396805A
Wireless mesh network analysis and configuration
US20170310590A1