An Internet remote monitoring device for automobile protection
The battery system powered by solar panels and automotive generators, combined with video monitors and radar monitors, realizes information management of the Internet remote monitoring device for automotive protection, solves the problems of useless information deletion and monitoring interruption, and improves query convenience and stability.
Patent Information
- Application Number
- CN202210917620.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-01
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2042-08-01
AI Technical Summary
The existing Internet remote monitoring device for automobile protection cannot effectively delete useless information during use, resulting in cumbersome query and easy to accidentally delete important information, and monitoring may be interrupted or affected in rainy weather or low temperature environments.
The battery system powered by solar panels and automotive generators is combined with a video monitor and a radar monitor to manage information through cloud storage and comparison databases, and set up an administrator login interface and query portal to realize the automatic deletion of useless information and independent storage of important information.
It realizes automatic deletion of useless information and independent storage of important information, improves query convenience, prevents the error deletion of important information, and ensures stable monitoring under various weather conditions.
Smart Images

Figure CN115412582B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of remote monitoring, and specifically to an Internet remote monitoring device for vehicle protection. Background Art
[0002] Literally, remote monitoring can be divided into two parts: "monitoring" and "controlling". Among them, "monitoring" mainly refers to obtaining information through the network, while "controlling" refers to the method of operating a remote computer through the network, such as restarting, shutting down the remote computer, and also includes the work of performing daily settings on the remote computer. The remote monitoring used in vehicles has been popularized to a certain extent. However, most of the Internet remote monitoring devices used in vehicles on the market do not have the setting to delete useless information during actual use, which makes the query process for users more cumbersome. Moreover, some devices with the function of deleting useless information may accidentally delete information during the actual operation of the device as a whole, resulting in the problem that queries cannot be carried out. Therefore, an Internet remote monitoring device for vehicle protection is proposed for the above problems. Summary of the Invention
[0003] The purpose of the present invention is to provide an Internet remote monitoring device for vehicle protection, which can delete useless information during monitoring and store it independently while being able to save the overall information.
[0004] To achieve the above purpose, the present invention provides the following technical solutions:
[0005] An Internet remote monitoring device for vehicle protection, including a storage battery, a solar panel, and a controller. The solar panel is fixedly connected to the inner side of the upper end of the car roof, the car roof is fixedly connected to the top of the vehicle, the bottom end of the solar panel is fixedly connected to the storage battery, the bottom end of the storage battery is fixedly connected to the controller and a scissor lift, the bottom end of the scissor lift is fixedly connected to a box body, and video monitors and radar monitors are fixedly connected to the front, rear, left, and right of the box body. The controller is electrically connected to the scissor lift, the video monitors, and the radar monitors.
[0006] Preferably, the storage battery is powered by the solar panel and the vehicle generator during driving. The storage battery supplies power to the scissor lift, the controller, the video monitors, the radar monitors, and the vehicle defogging respectively.
[0007] Preferably, the controller is connected to the video monitors, the radar monitors, the scissor lift, and the vehicle computer through signal lines. The vehicle computer is connected to the vehicle defogging system through signal lines. The signal lines are set with a colorful surface, and the signal lines are incorporated into the vehicle main wiring harness for fixed limiting.
[0008] Preferably, the radar monitor utilizes the Doppler effect and measures the phase difference of the echo after phase modulation to obtain the distance of stationary objects. The video monitor can perform type recognition and replication, and the video monitor can perform tracking monitoring.
[0009] Preferably, the video monitor and the radar monitor are connected to cloud storage. The cloud storage is connected to the storage terminal through a comparison database. Both the cloud storage and the storage terminal are connected to the user terminal through the Internet.
[0010] Preferably, the user terminal is provided with an administrator login interface. The administrator login interface is provided with an administrator account and an administrator password login window. The user query interface is provided with a cloud storage query entry and a storage terminal query entry. Both the cloud storage query page and the storage terminal query entry are provided with a query date interface and a query time interface. The storage terminal query page is provided with a data deletion and data formatting entry. The cloud storage query interface is provided with a logged-in personnel query page.
[0011] Preferably, the administrator login interface is used for administrators to log in. The administrator account and administrator password login window are used for the input of keys. The cloud storage query entry and the storage terminal query entry are used for cloud query and storage terminal query. The query date interface and the query time interface are used to select the query date and time. The data deletion and data formatting entry are used for data deletion and storage terminal formatting. The logged-in personnel query page is used to query the administrator login record.
[0012] Preferably, the comparison database can store duplicate data, the comparison database can perform automated retrieval through images, and the comparison database is predefined to include various common item types and parking scenarios.
[0013] Compared with the prior art, the beneficial effects of the present invention are:
[0014] 1. In the present invention, during the process of remotely monitoring and protecting the vehicle, useless information can be deleted and independently stored, and at the same time, the overall monitoring information can be stored, which is convenient for users to query the monitoring information later and can prevent the problem that important information cannot be retrieved after being accidentally deleted by the system.
[0015] 2. In the present invention, the battery is powered bidirectionally by the solar panel and the vehicle generator, which can prevent the problem that the vehicle battery runs out of power during continuous rainy weather, resulting in monitoring interruption. At the same time, powering the vehicle defogger by the battery can prevent a large amount of water mist and snow from accumulating inside the vehicle glass, which is not convenient for monitoring, and can prevent the problem that the vehicle defogger uses the vehicle power supply, resulting in the vehicle driving power running out and unable to start.
[0016] 3. In the present invention, the provided user terminal can improve the convenience during the user's query process. Meanwhile, it can be protected by a secret key, effectively preventing the problem of strangers logging in for queries, and can record the query personnel. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a block diagram of the controller control system of the present invention;
[0018] Figure 2 It is a block diagram of the cloud storage system of the present invention;
[0019] Figure 3 It is a schematic structural diagram of the installation position of the roof of the present invention;
[0020] Figure 4 For the present invention Figure 3 Schematic diagram of the structure at position A.
[0021] In the figure: 1 - vehicle, 2 - roof, 3 - battery, 4 - solar panel, 5 - scissor lift, 6 - controller, 7 - box body, 8 - video monitor, 9 - radar monitor. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] Embodiment 1:
[0023] Please refer to Figures 1-4 , the present invention provides a technical solution:
[0024] An Internet remote monitoring device for vehicle protection, including a battery 3, a solar panel 4 and a controller 6. The solar panel 4 is fixedly connected to the inner side of the upper end of the roof 2. The roof 2 is fixedly connected to the top of the vehicle 1. The bottom end of the solar panel 4 is fixedly connected to the battery 3. The bottom end of the battery 3 is fixedly connected to the controller 6 and the scissor lift 5. The bottom end of the scissor lift 5 is fixedly connected to the box body 7. The box body 7 is fixedly connected with video monitors 8 and radar monitors 9 on the front, rear, left and right. The controller 6 is electrically connected to the scissor lift 5, the video monitor 8 and the radar monitor 9.
[0025] The battery 3 is powered by the solar panel 4 and the generator of the vehicle 1 during driving. The battery 3 powers the scissor lift 5, the controller 6, the video monitor 8, the radar monitor 9, and the vehicle defogging respectively, facilitating the power supply of the video monitor 8 and the radar monitor 9 driven by the scissor lift 5 while being powered by the solar panel 4 and the generator of the vehicle 1. The controller 6 is connected to the video monitor 8, the radar monitor 9, the scissor lift 5, and the vehicle computer through signal lines. The vehicle computer is connected to the vehicle defogging system through signal lines. The signal lines are set with a colorful surface and are incorporated into the vehicle main wiring harness for fixed positioning. Controlling through the signal lines can improve the stability of the control system, and fixing the signal lines inside the main wiring harness is convenient for fixing. At the same time, the colorful surface of the signal lines facilitates the inspection of the signal lines during later maintenance. The radar monitor 9 uses the Doppler effect and measures the phase difference of the echo after phase modulation to obtain the distance of stationary objects. The video monitor 8 can perform type identification and replication. The video monitor 8 can perform tracking monitoring, can be applied to most scenarios, and can improve the quality during monitoring. The video monitor 8 and the radar monitor 9 are connected to cloud storage. The cloud storage is connected to the storage terminal through a comparison database. Both the cloud storage and the storage terminal are connected to the user terminal through the Internet, facilitating the storage of monitored data and preventing the loss of stored data when the device is damaged. The user terminal is provided with an administrator login interface. The administrator login interface is provided with an administrator account and an administrator password login window. The user query interface is provided with a cloud storage query entry and a storage terminal query entry. Both the cloud storage query page and the storage terminal query entry are provided with a query date interface and a query time interface. The storage terminal query page is provided with a data deletion and data formatting entry. The cloud storage query interface is provided with a logged-in personnel query page, improving the comfort of user use. The overall interface is relatively simple, which can improve the convenience during user query. The administrator login interface is used for administrators to log in. The administrator account and administrator password login window are used for the input of the encryption key. The cloud storage query entry and the storage terminal query entry are used for cloud query and storage terminal query. The query date interface and the query time interface are used to select the query date and time. The data deletion and data formatting entry are used for data deletion and formatting of the storage terminal. The logged-in personnel query page is used to query the administrator login record, facilitating the retrieval and query of various data. The comparison database can store duplicate data. The comparison database can perform automated retrieval through images. The comparison database is predefined to include various common item types and parking scenarios, and can automatically delete duplicate content, improving the convenience during user query.
[0026] Workflow: During the use of an Internet remote monitoring device for vehicle protection, the entire device needs to be installed inside the vehicle during the manufacturing process of the vehicle 1. After the vehicle 1 is produced, the device is powered on through the vehicle 1. In this way, during the use of the vehicle 1, the battery 3 can continuously supply power to the vehicle. The battery 3 is powered by the solar panel 4 and the vehicle generator. The battery 3 only supplies power to the scissor lift 5, vehicle defogger, video monitor 8, radar monitor 9, and controller 6. During the operation of the vehicle 1, the video monitor 8 and radar monitor 9 are hidden inside the roof ceiling 2 under the drive of the scissor lift 5 and do not work. When the vehicle stops with the engine off, the controller will control the scissor lift 5 to push out the video monitor 8 and radar monitor 9 from inside the roof ceiling 2 to work. During the work process, the video monitor 8 and radar monitor 9 work simultaneously. When it is detected that the external environment of the vehicle is in a static state, the video monitor 8 and radar rangefinder 9 will filter the stored information and do not transmit it to the cloud storage. When the video monitor 8 and radar rangefinder 9 detect that the external environment of the vehicle is dynamic, the monitored data will be directly transmitted to the cloud storage through the Internet. After receiving the transmitted data, the cloud storage will compare it with the comparison database, delete the same data, and transmit the different data to the storage database. When the user needs to consult the data monitored by the radar monitor 9 and video monitor 8, they log in through the user terminal. After logging in, they can query and retrieve the information stored in the cloud storage and the data stored in the storage terminal according to their needs. During the query process, important information can be quickly queried through the data stored in the terminal, which can reduce the time used to query important information. Through the set cloud storage data, detailed data can be queried, and at the same time, it can prevent the problem that important data cannot be queried after being accidentally deleted by the cloud storage during the process of transmitting data to the storage terminal through the comparison database. Such a setting has good practical value and convenience in the actual use process and is worthy of extensive promotion and use.
[0027] Embodiment 2:
[0028] Please refer to Figures 1-4 , the present invention provides a technical solution:
[0029] An Internet remote monitoring device for vehicle protection, including a battery 3, a solar panel 4, and a controller 6. The solar panel 4 is fixedly connected to the inner side of the upper end of the roof ceiling 2. The roof ceiling 2 is fixedly connected to the top of the vehicle 1. The bottom end of the solar panel 4 is fixedly connected to the battery 3. The bottom end of the battery 3 is fixedly connected to the controller 6 and the scissor lift 5. The bottom end of the scissor lift 5 is fixedly connected to a box body 7. The box body 7 is fixedly connected with a video monitor 8 and a radar monitor 9 on the front, rear, left, and right. The controller 6 is electrically connected to the scissor lift 5, the video monitor 8, and the radar monitor 9.
[0030] The storage battery 3 is powered by the solar panel 4 and the generator of the vehicle 1 during driving. The storage battery 3 supplies power to the scissor lift 5, the controller 6, the video monitor 8, the radar monitor 9, and the vehicle defogging respectively, facilitating the power supply of the video monitor 8 and the radar monitor 9 driven by the scissor lift 5 while being powered by the solar panel 4 and the generator of the vehicle 1. The controller 6 is connected to the video monitor 8, the radar monitor 9, the scissor lift 5, and the vehicle computer through signal lines. The vehicle computer is connected to the vehicle defogging system through signal lines. The signal lines are set with a colorful surface, and the signal lines are incorporated into the vehicle main harness for fixing and limiting. Controlling through the signal lines can improve the stability of the control system, and fixing the signal lines inside the main harness is convenient for fixing. At the same time, the colorful surface of the signal lines is convenient for checking the signal lines during later maintenance. The radar monitor uses the Doppler effect and measures the phase difference of the echo after phase modulation to obtain the distance of stationary objects. The video monitor 8 can perform type recognition and replication. The video monitor 8 can perform tracking monitoring, can be applied to most scenarios, and can improve the quality during monitoring. The video monitor 8 and the radar monitor 9 are connected to the cloud storage. The cloud storage is connected to the storage terminal through the comparison database. Both the cloud storage and the storage terminal are connected to the user terminal through the Internet, facilitating the storage of monitoring data and preventing the problem of data loss when the device is damaged. The user terminal is provided with an administrator login interface. The administrator login interface is provided with an administrator account and an administrator password login window. The user query interface is provided with a cloud storage query entry and a storage terminal query entry. Both the cloud storage query page and the storage terminal query entry are provided with a query date interface and a query time interface. The storage terminal query page is provided with a data deletion and data formatting entry. The cloud storage query interface is provided with a logged-in personnel query page, improving the comfort of user use. The overall interface is relatively simple, which can improve the convenience during user query. The administrator login interface is used for administrator login. The administrator account and the administrator password login window are used for the input of the key. The cloud storage query entry and the storage terminal query entry are used for cloud query and storage terminal query. The query date interface and the query time interface are used for selecting the query date and time. The data deletion and data formatting entry are used for data deletion and formatting of the storage terminal. The logged-in personnel query page is used for querying the administrator login record, facilitating the retrieval and query of various data. The comparison database can store duplicate data. The comparison database can perform automated retrieval through images. The comparison database is predefined to include various common item types and parking scenarios, and can automatically delete duplicate content, improving the convenience during user query.
[0031] Parts identical to those in Embodiment 1 will not be elaborated. The differences are as follows: When the external temperature is relatively low, the on-board computer installed inside the vehicle 1 will transmit the signals monitored by the vehicle temperature sensor to the controller 6. After receiving the signals, the controller 6 will control the vehicle defogging to work. Such a setting can prevent a large amount of water mist and snow accumulation inside the vehicle glass, which is not convenient for monitoring when monitoring through the video monitor 8 and the radar monitor 9.
[0032] In this article, specific examples are used to elaborate on the principle and implementation mode of the present invention. The description of the above examples is only used to help understand the method and its core idea of the present invention. The above is only the preferred implementation mode of the present invention. It should be noted that due to the limited nature of language expression and objectively existing infinite specific structures, for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements, refinements or changes can be made, and the above technical features can also be combined in an appropriate manner; these improvements, refinements, changes or combinations, or directly applying the concept and technical solution of the invention to other occasions without improvement, should all be regarded as the protection scope of the present invention.
Claims
1. An Internet remote monitoring device for vehicle protection, characterized in that: It includes a storage battery (3), a solar panel (4) and a controller (6). The solar panel (4) is fixedly connected to the inner side of the upper end of the roof (2), and the roof (2) is fixedly connected to the top of the vehicle (1). The bottom end of the solar panel (4) is fixedly connected to the storage battery (3), the bottom end of the storage battery (3) is fixedly connected to the controller (6) and the scissor lift (5), the bottom end of the scissor lift (5) is fixedly connected to the box body (7), and video monitors (8) and radar monitors (9) are fixedly connected to the front, back, left and right of the box body (7). The controller (6) is electrically connected to the scissor lift (5), the video monitors (8) and the radar monitors (9); The storage battery (3) is powered by the solar panel (4) and the vehicle (1) generator during driving. The storage battery (3) supplies power to the scissor lift (5), the controller (6), the video monitors (8), the radar monitors (9) and vehicle defogging respectively; The controller (6) is connected to the video monitors (8), the radar monitors (9), the scissor lift (5) and the vehicle computer through signal lines. The vehicle computer is connected to the vehicle defogging system through signal lines. The signal lines are set with a colorful surface, and the signal lines are incorporated into the vehicle main wiring harness for fixed limiting; The video monitors (8) and the radar monitors (9) are connected to cloud storage. The cloud storage is connected to the storage terminal through a comparison database. Both the cloud storage and the storage terminal are connected to the user terminal through the Internet; The user terminal is provided with an administrator login interface, and the administrator login interface is provided with an administrator account and an administrator password login window. The user query interface is provided with a cloud storage query entry and a storage terminal query entry. Both the cloud storage query entry and the storage terminal query entry are provided with a query date interface and a query time interface. The storage terminal query entry is provided with a data deletion and data formatting entry, and the cloud storage query entry is provided with a logged-in personnel query page; The administrator login interface is used for the administrator to log in. The administrator account and administrator password login window are used for the input of the encryption key. The cloud storage query entry and the storage terminal query entry are used for cloud query and storage terminal query. The query date interface and the query time interface are used for selecting the query date and time. The data deletion and data formatting entry are used for data deletion and storage terminal formatting. The logged-in personnel query page is used for querying the administrator login record; The comparison database can store duplicate data, and the comparison database can perform automated retrieval through images. The comparison database is predefined to include various common item types and parking scenarios; After receiving the transmitted data, the cloud storage will compare it with the comparison database, delete the same data, and transmit the different data to the storage database. When the user needs to consult the data monitored by the radar monitor (9) and the video monitor (8), they log in through the user terminal. After logging in, they can query and retrieve the information stored in the cloud storage and the data stored in the storage terminal. During the query process, important information can be quickly queried through the data stored in the terminal, and detailed data can be queried through the cloud storage data set.
2. The internet remote monitoring device for automobile protection according to claim 1, wherein: The radar monitor (9) uses the Doppler effect and measures the phase difference of the echo after phase modulation to obtain the distance of stationary objects. The video monitor (8) can perform type recognition and replication, and the video monitor (8) can perform tracking monitoring.
Citation Information
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