Method, system, device set and storage medium for vehicle interior safety monitoring
By installing a combination of pressure sensors and cameras under the vehicle seats, the safety problem of drivers forgetting that children are in the car is solved, enabling timely detection of living beings in the vehicle and saving resources.
Patent Information
- Application Number
- CN202211738385.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-31
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2042-12-31
AI Technical Summary
Drivers may forget that children are in the car after parking, leading to safety issues that threaten children's lives in high temperatures.
Pressure sensors are installed under the vehicle seats to detect changes in pressure and determine if there is human activity. If the change exceeds a threshold within a preset time, an alarm notification is sent to a mobile terminal. A camera captures images inside the vehicle for the user to confirm the presence of any living beings. The user can also send a sleep notification to turn off the camera.
It promptly alerts users to the presence of any living beings inside the vehicle, allowing them to take steps to prevent accidents and conserve resources.
Smart Images

Figure CN116001718B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of automobiles, and in particular to a vehicle interior safety monitoring method, system, device group and storage medium. BACKGROUND
[0002] In the field of automobile technology, safety has always been one of the focuses of attention. Generally, after parking, the driver will lock the car.
[0003] However, the driver may take children with him when he goes out. During the journey, the driver may sometimes forget the children in the car. In some high-temperature weather, it may threaten the life of the children and cause serious safety problems. SUMMARY
[0004] The embodiments of the present application provide a vehicle interior safety monitoring method, system, device group and storage medium, which can solve the problems of related technologies. The technical solutions are as follows:
[0005] In a first aspect, a vehicle interior safety monitoring method is provided, which is applied to a vehicle monitoring system of a target vehicle, the vehicle monitoring system comprising a plurality of pressure sensors, a camera, a vehicle terminal and a mobile terminal, the pressure sensors being installed below the seating surface of the seats of the target vehicle, and the method comprising:
[0006] When the target vehicle is in a parked and locked state, and the change value of the detected pressure value of any pressure sensor within a preset time length is greater than a preset threshold value, the vehicle terminal sends an alarm notification to the mobile terminal;
[0007] After receiving the alarm notification, the mobile terminal issues an alarm prompt sound, a vibration prompt signal, and displays an alarm prompt pop-up window;
[0008] The mobile terminal sends an in-vehicle image acquisition notification to the vehicle terminal in response to a confirmation operation on the alarm prompt pop-up window;
[0009] After receiving the in-vehicle image acquisition notification, the vehicle terminal controls the camera to wake up and take an image of the interior of the target vehicle, and sends the image of the interior of the target vehicle taken by the camera to the mobile terminal;
[0010] The mobile terminal displays the image of the interior of the target vehicle, wherein the image is used to confirm whether there is a living object in the interior of the target vehicle;
[0011] The mobile terminal sends a hibernation notification to the vehicle terminal in response to a user's confirmation safety operation;
[0012] The vehicle-mounted terminal controls the camera to stop shooting images and enter hibernation.
[0013] In a possible implementation, the method further includes:
[0014] The mobile terminal sends a notification of closing the pressure sensor to the vehicle-mounted terminal in response to a user's operation of closing the pressure sensor.
[0015] The vehicle-mounted terminal controls the plurality of pressure sensors to be closed.
[0016] In a possible implementation, the interface of the security monitoring application of the mobile terminal is provided with an active image acquisition control.
[0017] The method further includes:
[0018] The mobile terminal sends the in-vehicle image acquisition notification to the vehicle-mounted terminal in response to a triggering operation of the active image acquisition control.
[0019] In a possible implementation, the method further includes:
[0020] When the duration that the target vehicle is in a parked and locked state reaches a preset alarm duration, the vehicle-mounted terminal sends the alarm notification to the mobile terminal.
[0021] In a second aspect, a vehicle monitoring system is provided, including a plurality of pressure sensors, a camera, a vehicle-mounted terminal and a mobile terminal, the pressure sensors being installed below the seating surfaces of the seats of the target vehicle, and wherein:
[0022] The vehicle-mounted terminal is configured to send an alarm notification to the mobile terminal when the target vehicle is in a parked and locked state, and the change value of the detected pressure value of any pressure sensor within a preset duration is greater than a preset threshold value.
[0023] The mobile terminal is configured to, after receiving the alarm notification, issue an alarm prompt sound, a vibration prompt signal, and display an alarm prompt pop-up window; and in response to a confirmation operation on the alarm prompt pop-up window, send an in-vehicle image acquisition notification to the vehicle-mounted terminal.
[0024] The vehicle-mounted terminal is further configured to, after receiving the in-vehicle image acquisition notification, control the camera to wake up and shoot images of the interior of the target vehicle, and send the images of the interior of the target vehicle shot by the camera to the mobile terminal.
[0025] The mobile terminal is further configured to display an image of the inside of the target vehicle, wherein the image is used for the user to confirm whether there is a living object in the inside of the target vehicle; and in response to a confirmation safety operation of the user, send a hibernation notification to the vehicle terminal.
[0026] The vehicle terminal is further configured to control the camera to stop capturing images and enter hibernation.
[0027] In a possible implementation, the mobile terminal is further configured to:
[0028] In response to a user operation of turning off the pressure sensor, send a notification of turning off the pressure sensor to the vehicle terminal.
[0029] The vehicle terminal is further configured to:
[0030] Control the multiple pressure sensors to be turned off.
[0031] In a possible implementation, the interface of the safety monitoring application of the mobile terminal is provided with an active image acquisition control.
[0032] The mobile terminal is further configured to, in response to a triggering operation of the active image acquisition control, send the in-vehicle image acquisition notification to the vehicle terminal.
[0033] In a possible implementation, the vehicle terminal is further configured to:
[0034] When the target vehicle is in a parked and locked state for a duration reaching a preset alarm duration, send the alarm notification to the mobile terminal.
[0035] In a third aspect, a computer device group is provided, including multiple computer devices, each computer device including a memory and a processor, the memory being configured to store computer program instructions, and the processor being configured to execute the computer program instructions stored in the memory, so that the computer device group executes the method of the first aspect and possible implementation manners thereof.
[0036] In a fourth aspect, a computer readable storage medium is provided, which stores computer program instructions, in response to the computer program instructions being executed by a computer device group, the computer device group executes the method of the first aspect and possible implementation manners thereof.
[0037] The technical scheme provided by the embodiments of the present application can include the following beneficial effects:
[0038] When the target vehicle is in a parked and locked state, and the change value of the pressure value detected by any pressure sensor within a preset time length is greater than a preset threshold value, the vehicle terminal sends an alarm notification to the mobile terminal. After receiving the alarm notification, the mobile terminal prompts the user to view the image inside the target vehicle. The user can determine whether there is a living object inside the target vehicle through the image inside the target vehicle. If there is a living object, the user can take immediate measures, and if there is not, the mobile terminal can send a hibernation notification to the vehicle terminal. In this way, the user can view the safety situation inside the target vehicle, and can also turn off the camera after confirming the safety situation, which can save resources. When there is a safety problem with the living object inside the target vehicle, the user can take rescue measures in time to avoid the occurrence of a safety accident. BRIEF DESCRIPTION OF DRAWINGS
[0039] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0040] Figure 1 is a structural schematic diagram of a vehicle monitoring system provided by an embodiment of the present application;
[0041] Figure 2 is a structural schematic diagram of a terminal provided by an embodiment of the present application;
[0042] Figure 3 is a schematic diagram of a total function interface of a safety monitoring application program provided by an embodiment of the present application;
[0043] Figure 4 is a schematic diagram of a pressure sensor alarm function interface of a safety monitoring application program provided by an embodiment of the present application;
[0044] Figure 5 is a schematic diagram of a preset time length alarm function interface of a safety monitoring application program provided by an embodiment of the present application;
[0045] Figure 6 is a schematic diagram of a proactive monitoring function interface of a safety monitoring application program provided by an embodiment of the present application;
[0046] Figure 7 is a schematic diagram of a photosensitive sensor alarm function interface of a safety monitoring application program provided by an embodiment of the present application;
[0047] Figure 8is a flowchart of a method for monitoring safety inside a vehicle provided by an embodiment of the present application;
[0048] Figure 9 is a schematic diagram of an alarm prompt pop-up window of a safety monitoring application provided by an embodiment of the present application;
[0049] Figure 10 is a flowchart of a method for monitoring safety inside a vehicle provided by an embodiment of the present application;
[0050] Figure 11 is a flowchart of a method for monitoring safety inside a vehicle provided by an embodiment of the present application;
[0051] Figure 12 is a flowchart of a method for monitoring safety inside a vehicle provided by an embodiment of the present application;
[0052] Figure 13 is a structural schematic diagram of an electronic device provided by an embodiment of the present application. DETAILED DESCRIPTION
[0053] The present application provides a method for monitoring safety inside a vehicle. The method is applied to a vehicle monitoring system of a target vehicle, and is used to monitor the safety of people and articles inside the vehicle. The structure of the vehicle monitoring system is shown in Figure 1 , and includes a plurality of pressure sensors, a plurality of light-sensitive sensors, a camera, a vehicle terminal, and a mobile terminal. The pressure sensors are connected to the vehicle terminal through data lines, the light-sensitive sensors are connected to the vehicle terminal through data lines, and the camera is connected to the vehicle terminal through data lines. The vehicle terminal and the mobile terminal can be installed with a safety monitoring application, and the account logged in by the vehicle terminal and the mobile terminal is consistent, and information interaction is performed through wireless communication.
[0054] The pressure sensors are installed below the seating surface of the seats of the target vehicle. One pressure sensor can be installed below one seat, one pressure sensor can be installed below a row of seats, or multiple pressure sensors can be installed below one seat, and are mainly used to collect pressure changes on the seats.
[0055] The light-sensitive sensors can be installed on the center console of the target vehicle, or on the doors of the target vehicle, etc.
[0056] The camera can be a camera for monitoring the driver, or another camera can be installed for shooting images inside the target vehicle. The installation position can be above the rearview mirror inside the target vehicle, on the center console of the target vehicle, or on the left or right rear door of the target vehicle, etc.
[0057] From the hardware composition, the structure of the terminal can be as shown in Figure 2As shown, the terminal includes a processor 210, a memory 220, a display component 230, and a communication component 240.
[0058] The processor 210 can be a CPU (central processing unit) or a SoC (system on chip), and the like, and can be used to execute various instructions and the like involved in the method.
[0059] The memory 220 can include various volatile memories or non-volatile memories, such as an SSD (solid state disk), a DRAM (dynamic random access memory) memory, and the like. The memory 220 can be used to store pre-stored data, intermediate data, and result data in the process of acquiring the in-vehicle image, for example, an image of the interior of the target vehicle captured by a camera, and the like.
[0060] The display component 230 can be a separate screen, or a screen integrated with the terminal body, a projector, and the like. The screen can be a touch screen or a non-touch screen, and the display component is used to display an alarm prompt pop-up window.
[0061] The communication component 240 can be a wired network connector, a WiFi (wireless fidelity) module, a Bluetooth module, a cellular communication module, and the like. The communication component can be used for data transmission with other devices, which can be a server or other terminals, and the like.
[0062] In addition to the processor and the memory, the terminal can also include an audio acquisition component, an audio output component, and the like.
[0063] The audio acquisition component can be a microphone, which is used to acquire the user's voice. The audio output component can be a speaker, earphones, and the like, which is used to play audio.
[0064] With the development of society, cars have brought great convenience to people's travel, but at the same time, there are also numerous safety problems. For example, the driver forgets the child in the car after parking and locking the car, resulting in a safety accident.
[0065] The embodiments of the present application provide a variety of safety monitoring functions, including a pressure sensor alarm function, a preset time alarm function, an active monitoring function, and a photosensitive sensor alarm function. The total function interface of the safety monitoring application program can be as shown in Figure 3 The function interface of the pressure sensor alarm function can be as shown in Figure 4 The function interface of the preset time alarm function can be as shown in Figure 5 The function interface of the active monitoring function can be as shown in Figure 6As shown, the function interface of the light-sensitive sensor alarm function can be as Figure 7 shown.
[0066] Embodiments of the present application provide a vehicle interior safety monitoring method for the above-mentioned application scenarios, corresponding to the pressure sensor alarm function. The processing flow of the method can be as Figure 8 shown, including the following processing steps:
[0067] 801. When the target vehicle is in a parked and locked state, and the change value of the detected pressure value of any pressure sensor within a preset time length is greater than a preset threshold value, the vehicle terminal sends an alarm notification to the mobile terminal.
[0068] The preset threshold value is used to indicate that there is a person inside the target vehicle who is active.
[0069] In implementation, when the target vehicle is in a parked and locked state, the vehicle terminal will record the pressure values detected by multiple pressure sensors in real time. If there is a person inside the target vehicle, the person's activity on the seat will cause the pressure value detected by the pressure sensor to change. For any pressure sensor, the vehicle terminal can analyze the pressure values recorded within the preset time length, which can be the difference between the last pressure value and the first pressure value recorded within the preset time length (for example, the preset time length can be 1 second). The vehicle terminal determines whether the change value within the preset time length is greater than the preset threshold value. If yes, it sends an alarm notification to the mobile terminal. If no, it does not send an alarm notification to the mobile terminal.
[0070] 802. After receiving the alarm notification, the mobile terminal issues an alarm prompt sound, a vibration prompt signal, and displays an alarm prompt pop-up window.
[0071] The display content of the alarm prompt pop-up window can include alarm prompt text and alarm prompt pictures. For example, the alarm prompt text can be "There is a safety hazard inside the target vehicle, please check", and the display interface can be as Figure 9 shown.
[0072] 803. The mobile terminal sends an in-vehicle image acquisition notification to the vehicle terminal in response to the confirmation operation on the alarm prompt pop-up window.
[0073] In implementation, the user can click the confirmation control of the alarm prompt pop-up window. After the mobile terminal recognizes the user's operation of clicking the confirmation control, it stops issuing the alarm prompt sound and the vibration prompt signal, closes the display of the alarm prompt pop-up window, displays the monitoring image interface of the safety monitoring application, and sends an in-vehicle image acquisition notification to the vehicle terminal.
[0074] The user can also click the cancel control of the alarm prompt pop-up window. After the mobile terminal recognizes the user's operation of clicking the cancel control, the alarm prompt sound and vibration prompt signal are stopped, and the display of the alarm prompt pop-up window is closed.
[0075] 804, after receiving the in-vehicle image acquisition notification, the vehicle terminal controls the camera to wake up and take an image of the inside of the target vehicle.
[0076] In implementation, the vehicle terminal receives the in-vehicle image acquisition notification, transmits a wake-up signal to the camera, and after the camera receives the wake-up signal, starts taking an image of the inside of the target vehicle.
[0077] 805, the vehicle terminal sends the image of the inside of the target vehicle taken by the camera to the mobile terminal.
[0078] In implementation, the camera transmits the image taken in real time to the vehicle terminal, and the vehicle terminal sends the image to the mobile terminal in real time.
[0079] 806, the mobile terminal displays the image of the inside of the target vehicle.
[0080] The image is used for the user to confirm whether there is a living object in the inside of the target vehicle. The living object can be a child, a pet, etc.
[0081] In implementation, after the mobile terminal receives the image of the inside of the target vehicle sent by the vehicle terminal in real time, the image is displayed on the monitoring image interface.
[0082] 807, the mobile terminal sends a sleep notification to the vehicle terminal in response to the user's confirmation of safety operation.
[0083] In implementation, the user can determine whether there is a living object in the inside of the target vehicle through the image of the inside of the target vehicle displayed on the monitoring image interface of the safety monitoring application. If there is a living object, the user can arrive at the location of the target vehicle in time and take subsequent measures. If there is no living object, the user can click the control to confirm safety, and the mobile terminal recognizes the user's operation of confirming safety and sends a sleep notification to the vehicle terminal.
[0084] 808, the vehicle terminal controls the camera to stop taking images and enter sleep.
[0085] In implementation, after receiving the sleep notification, the vehicle terminal transmits a sleep signal to the camera, and after the camera receives the sleep signal, stops taking images of the inside of the target vehicle.
[0086] In addition, the user can click the control for closing the pressure sensor alarm function on the mobile terminal at any time point. For example, the user can click the control for closing the pressure sensor alarm function on the mobile terminal after confirming that there is no life object in the target vehicle interior through the image inside the target vehicle. After the mobile terminal identifies the operation of the user for closing the pressure sensor alarm function, the mobile terminal sends a notification for closing the pressure sensor to the vehicle terminal. After the vehicle terminal receives the notification for closing the pressure sensor, the vehicle terminal closes the switches of all the pressure sensors. When the target vehicle starts, the vehicle terminal automatically opens the switches of all the pressure sensors.
[0087] The switch of each pressure sensor can be controlled separately. In the function interface of the pressure sensor alarm function, the position and number of each pressure sensor and the corresponding switch control are displayed, and the user can click the corresponding switch control to control the switch of each pressure sensor.
[0088] In this way, in the process of safety monitoring, the normal execution of the safety monitoring function can be ensured, and the pressure sensor and the camera can be closed to save resources after the safety is confirmed.
[0089] The embodiments of the application also provide a vehicle interior safety monitoring method for the above-mentioned application scenario, and the processing flow of the method for corresponding preset time length alarm function can be as shown in Figure 10 The processing flow of the method for corresponding preset time length alarm function can be as shown in
[0090] 1001. When the time length of the target vehicle in the parked and locked state reaches the preset alarm time length, the vehicle terminal sends an alarm notification to the mobile terminal.
[0091] The preset alarm time length can be multiple. For example, the first one can be ten minutes, and the second one can be thirty minutes. The preset alarm time length can be set by the user according to personal needs.
[0092] In implementation, when the user stops the vehicle and locks the vehicle, the vehicle terminal starts timing, and when the timing time length reaches the preset alarm time length, the vehicle terminal sends an alarm notification to the mobile terminal.
[0093] 1002. After receiving the alarm notification, the mobile terminal issues an alarm prompt sound, a vibration prompt signal, and displays an alarm prompt pop-up window.
[0094] The display content of the alarm prompt pop-up window can include alarm prompt text and alarm prompt pictures. For example, the alarm prompt text can be "Please confirm whether there is anyone in the target vehicle interior".
[0095] 1003. The mobile terminal sends an in-vehicle image acquisition notification to the vehicle terminal in response to the confirmation operation on the alarm prompt pop-up window.
[0096] 1004, the vehicle terminal controls the camera to wake up and take an image of the inside of the target vehicle after receiving the inside image acquisition notification.
[0097] 1005, the image of the inside of the target vehicle taken by the camera is sent to the mobile terminal.
[0098] 1006, the mobile terminal displays the image of the inside of the target vehicle.
[0099] 1007, the mobile terminal sends a sleep notification to the vehicle terminal in response to the user's confirmation of the safety operation.
[0100] 1008, the vehicle terminal controls the camera to stop taking images and enter sleep.
[0101] The specific processing of steps 1002-1008 is similar to that of steps 802-808, and the related description of steps 802-808 can be referred to, which will not be repeated here.
[0102] In addition, the user can receive an alarm notification at the first preset alarm duration, and turn off the timing alarm function of the second preset alarm duration after confirming that there is no living object in the inside of the target vehicle through the image of the inside of the target vehicle.
[0103] In the function interface of the preset duration alarm function, for each preset alarm duration timing alarm function, the user can choose to permanently close the timing function, or choose to temporarily close the timing alarm function. If the user chooses to permanently close the timing function, the function will only be activated when the user chooses to turn on the timing function again. If the user chooses to temporarily close the timing alarm function, the timing alarm function will be activated when the target vehicle starts.
[0104] The embodiment of the application also provides a vehicle interior safety monitoring method, which corresponds to the active monitoring function. The user can check the safety situation of the inside of the target vehicle at any time, and the processing flow of the method can be as shown in Figure 11
[0105] 1101, the mobile terminal sends an inside image acquisition notification to the vehicle terminal in response to the triggering operation of the active image acquisition control.
[0106] In implementation, the active image acquisition control is provided in the function interface of the active monitoring function of the safety monitoring application program. When the user needs to confirm the safety situation of the personnel and articles in the inside of the target vehicle, the active image acquisition control can be clicked. When the mobile terminal recognizes the operation of the user, the inside image acquisition notification is sent to the vehicle terminal.
[0107] 1102, after receiving the in-vehicle image acquisition notification, the vehicle terminal controls the camera to wake up and take an image of the inside of the target vehicle.
[0108] 1103, the image of the inside of the target vehicle taken by the camera is sent to the mobile terminal.
[0109] 1104, the mobile terminal displays the image of the inside of the target vehicle.
[0110] 1105, the mobile terminal sends a sleep notification to the vehicle terminal in response to the user's confirmation of the safety operation.
[0111] 1106, the vehicle terminal controls the camera to stop taking images and enter sleep.
[0112] The specific processing of steps 1102-1106 is similar to that of steps 804-808, and the related description of steps 804-808 can be referred to, which will not be repeated here.
[0113] The embodiment of the application also provides a vehicle interior safety monitoring method corresponding to the photosensitive sensor alarm function. The processing flow of the method can be as shown in Figure 12 The processing steps include:
[0114] 1201, when the target vehicle is in a parked and locked state, the vehicle terminal monitors the current value of any photosensitive sensor, and if the current value of the photosensitive sensor is greater than the preset current threshold, the vehicle terminal starts timing. If the current value of the photosensitive sensor is always greater than the preset current threshold within the timing duration, the vehicle terminal sends an alarm notification to the mobile terminal.
[0115] In implementation, if the current value of the photosensitive sensor is greater than the preset current threshold for a long time, it means that the sun has been shining on the target vehicle for a long time, which may cause the temperature inside the target vehicle to be high. If there is a living object inside the target vehicle, the high temperature will easily cause safety problems of the living object.
[0116] 1202, after receiving the alarm notification, the mobile terminal issues an alarm prompt sound, a vibration prompt signal, and displays an alarm prompt pop-up window.
[0117] 1203, the mobile terminal sends an in-vehicle image acquisition notification to the vehicle terminal in response to the confirmation operation on the alarm prompt pop-up window.
[0118] 1204, after receiving the in-vehicle image acquisition notification, the vehicle terminal controls the camera to wake up and take an image of the inside of the target vehicle.
[0119] 1205, the image of the inside of the target vehicle taken by the camera is sent to the mobile terminal.
[0120] 1206, the mobile terminal displays the image of the inside of the target vehicle.
[0121] 1207, the mobile terminal sends a hibernation notification to the vehicle terminal in response to the user's confirmation of the security operation.
[0122] 1208, the vehicle terminal controls the camera to stop taking images and enter hibernation.
[0123] The specific processing of steps 1202-1208 is similar to that of steps 802-808, and reference can be made to the related description of steps 802-808, which will not be described here again.
[0124] In addition, the user can click the control for closing the photosensitive sensor alarm function on the mobile terminal at any time point. For example, the user can click the control for closing the photosensitive sensor alarm function on the mobile terminal after confirming that there is no living object in the target vehicle interior through the image inside the target vehicle. After the mobile terminal recognizes the user's operation of closing the photosensitive sensor alarm function, it sends a notification of closing the photosensitive sensor to the vehicle terminal. After the vehicle terminal receives the notification of closing the photosensitive sensor, it closes the switches of all the photosensitive sensors. When the target vehicle starts, the vehicle terminal will automatically open the switches of all the photosensitive sensors.
[0125] The switch of each photosensitive sensor can be controlled individually. In the function interface of the photosensitive sensor alarm function, the position and number of each photosensitive sensor and the corresponding switch control are displayed, and the user can click the corresponding switch control to control the switch of each photosensitive sensor.
[0126] The above four alarm functions can be used individually or in combination, for example, two can be combined, three can be combined, or all can be used.
[0127] Method one, combination of the pressure sensor alarm function and the preset time alarm function:
[0128] Case one, the alarm notification sent by the vehicle terminal for the first time comes from the pressure sensor alarm function. When the user confirms that there is no living object in the target vehicle interior based on the image sent by the vehicle terminal, the vehicle terminal will automatically close the preset time alarm function after receiving the hibernation notification.
[0129] Case two, the alarm notification sent by the vehicle terminal for the first time comes from the preset time alarm function. When the user confirms that there is no living object in the target vehicle interior based on the image sent by the vehicle terminal, the vehicle terminal will automatically close the pressure sensor alarm function after receiving the hibernation notification.
[0130] Method two, combination of the pressure sensor alarm function and the active monitoring function:
[0131] The vehicle terminal does not send an alarm notification, the user uses the active monitoring function, and confirms that there is no life object inside the target vehicle. After receiving the dormancy notification, the vehicle terminal can automatically turn off the pressure sensor alarm function.
[0132] Method three, the pressure sensor alarm function and the photosensitive sensor alarm function are used in combination:
[0133] Case one, the alarm notification sent by the vehicle terminal for the first time comes from the pressure sensor alarm function. When the user confirms that there is no life object inside the target vehicle based on the images of the inside of the target vehicle sent by the vehicle terminal. After receiving the dormancy notification, the vehicle terminal will automatically turn off the photosensitive sensor alarm function.
[0134] Case two, the alarm notification sent by the vehicle terminal for the first time comes from the photosensitive sensor alarm function. When the user confirms that there is no life object inside the target vehicle based on the images of the inside of the target vehicle sent by the vehicle terminal. After receiving the dormancy notification, the vehicle terminal will automatically turn off the pressure sensor alarm function.
[0135] Case three, when the target vehicle is in a parked and locked state, any pressure sensor meets the triggering condition in step 801 (the change value of the detected pressure value of any pressure sensor within the preset time length is greater than the preset threshold), and any photosensitive sensor meets the triggering condition in step 1201 (the vehicle terminal starts timing when the current value of any photosensitive sensor is greater than the preset current threshold, and if the current value of the photosensitive sensor is always greater than the preset current threshold within the timing time length), the vehicle terminal sends an alarm notification to the mobile terminal.
[0136] Method four, the photosensitive sensor alarm function and the preset time length alarm function are used in combination:
[0137] Case one, the alarm notification sent by the vehicle terminal for the first time comes from the photosensitive sensor alarm function. When the user confirms that there is no life object inside the target vehicle based on the images of the inside of the target vehicle sent by the vehicle terminal. After receiving the dormancy notification, the vehicle terminal will automatically turn off the preset time length alarm function.
[0138] Case two, the alarm notification sent by the vehicle terminal for the first time comes from the preset time length alarm function. When the user confirms that there is no life object inside the target vehicle based on the images of the inside of the target vehicle sent by the vehicle terminal. After receiving the dormancy notification, the vehicle terminal will automatically turn off the photosensitive sensor alarm function.
[0139] Method five, the photosensitive sensor alarm function and the active monitoring function are used in combination:
[0140] The vehicle terminal does not send an alarm notification, the user uses the active monitoring function, and confirms that there is no life object inside the target vehicle. After receiving the hibernation notification, the vehicle terminal can automatically turn off the light-sensitive sensor alarm function.
[0141] Method six, the preset time alarm function and the active monitoring function are used in combination:
[0142] The vehicle terminal does not send an alarm notification, the user uses the active monitoring function, and confirms that there is no life object inside the target vehicle. After receiving the hibernation notification, the vehicle terminal can automatically turn off the light-sensitive sensor alarm function.
[0143] Method seven, the pressure sensor alarm function, the light-sensitive sensor alarm function, and the preset time alarm function are used in combination:
[0144] Case one, the alarm notification sent by the vehicle terminal for the first time comes from the pressure sensor alarm function. When the user confirms that there is no life object inside the target vehicle based on the image of the inside of the target vehicle sent by the vehicle terminal. After receiving the hibernation notification, the vehicle terminal will automatically turn off the light-sensitive sensor alarm function and the preset time alarm function.
[0145] Case two, the alarm notification sent by the vehicle terminal for the first time comes from the light-sensitive sensor alarm function. When the user confirms that there is no life object inside the target vehicle based on the image of the inside of the target vehicle sent by the vehicle terminal. After receiving the hibernation notification, the vehicle terminal will automatically turn off the pressure sensor alarm function and the preset time alarm function.
[0146] Case three, the alarm notification sent by the vehicle terminal for the first time comes from the preset time alarm function. When the user confirms that there is no life object inside the target vehicle based on the image of the inside of the target vehicle sent by the vehicle terminal. After receiving the hibernation notification, the vehicle terminal will automatically turn off the pressure sensor alarm function and the light-sensitive sensor alarm function.
[0147] Method eight, the pressure sensor alarm function, the preset time alarm function, and the active monitoring function are used in combination:
[0148] Case one, the alarm notification sent by the vehicle terminal for the first time comes from the pressure sensor alarm function. When the user confirms that there is no life object inside the target vehicle based on the image of the inside of the target vehicle sent by the vehicle terminal. After receiving the hibernation notification, the vehicle terminal will automatically turn off the preset time alarm function.
[0149] Case two, the alarm notification sent by the vehicle terminal for the first time comes from the preset time alarm function. When the user confirms that there is no life object inside the target vehicle based on the image of the inside of the target vehicle sent by the vehicle terminal. After receiving the hibernation notification, the vehicle terminal will automatically turn off the pressure sensor alarm function.
[0150] Case three, the vehicle terminal does not send alarm notification, the user uses the active monitoring function, and confirms that there is no life object in the target vehicle. After receiving the hibernation notification, the vehicle terminal can automatically close the pressure sensor alarm function and the preset time length sensor alarm function.
[0151] Method nine, the photosensitive sensor alarm function, the preset time length alarm function and the active monitoring function are used in combination:
[0152] Case one, the alarm notification sent by the vehicle terminal for the first time comes from the photosensitive sensor alarm function. When the user confirms that there is no life object in the target vehicle based on the image of the target vehicle interior sent by the vehicle terminal. After receiving the hibernation notification, the vehicle terminal will automatically close the preset time length alarm function.
[0153] Case two, the alarm notification sent by the vehicle terminal for the first time comes from the preset time length alarm function. When the user confirms that there is no life object in the target vehicle based on the image of the target vehicle interior sent by the vehicle terminal. After receiving the hibernation notification, the vehicle terminal will automatically close the photosensitive sensor alarm function.
[0154] Case three, the vehicle terminal does not send alarm notification, the user uses the active monitoring function, and confirms that there is no life object in the target vehicle. After receiving the hibernation notification, the vehicle terminal can automatically close the photosensitive sensor alarm function and the preset time length sensor alarm function.
[0155] Method ten, the pressure sensor alarm function, the photosensitive sensor alarm function and the active monitoring function are used in combination:
[0156] Case one, the alarm notification sent by the vehicle terminal for the first time comes from the pressure sensor alarm function. When the user confirms that there is no life object in the target vehicle based on the image of the target vehicle interior sent by the vehicle terminal. After receiving the hibernation notification, the vehicle terminal will automatically close the photosensitive sensor alarm function.
[0157] Case two, the alarm notification sent by the vehicle terminal for the first time comes from the photosensitive sensor alarm function. When the user confirms that there is no life object in the target vehicle based on the image of the target vehicle interior sent by the vehicle terminal. After receiving the hibernation notification, the vehicle terminal will automatically close the pressure sensor alarm function.
[0158] Case three, the vehicle terminal does not send alarm notification, the user uses the active monitoring function, and confirms that there is no life object in the target vehicle. After receiving the hibernation notification, the vehicle terminal can automatically close the pressure sensor alarm function and the photosensitive sensor alarm function.
[0159] The method provided in the embodiments of the present application can be used to send an alarm notification to the mobile terminal when the change value of the pressure value detected by any pressure sensor within a preset time length is greater than a preset threshold value when the target vehicle is in a parked and locked state. After receiving the alarm notification, the mobile terminal can remind the user to check the image inside the target vehicle. The user can determine whether there is a living object inside the target vehicle through the image inside the target vehicle. If there is a living object, the user can take measures immediately, and if there is not, the mobile terminal can send a hibernation notification to the vehicle terminal. In this way, the user can check the safety situation inside the target vehicle, and can also turn off the camera after confirming the safety situation, which can save resources. When there is a safety problem with the living object inside the target vehicle, the user can take rescue measures in time to avoid the occurrence of a safety accident.
[0160] Based on the same technical concept, the embodiments of the present application also provide a vehicle monitoring system. The vehicle interior safety monitoring system includes a plurality of pressure sensors, a camera, a vehicle terminal and a mobile terminal. The pressure sensors are installed below the seating surface of the seats of the target vehicle, wherein:
[0161] The vehicle terminal is configured to send an alarm notification to the mobile terminal when the change value of the pressure value detected by any pressure sensor within a preset time length is greater than a preset threshold value when the target vehicle is in a parked and locked state.
[0162] The mobile terminal is configured to send an in-vehicle image acquisition notification to the vehicle terminal in response to a confirmation operation on the alarm prompt pop-up window.
[0163] The vehicle terminal is further configured to control the camera to wake up and take an image of the inside of the target vehicle after receiving the in-vehicle image acquisition notification, and send the image of the inside of the target vehicle taken by the camera to the mobile terminal.
[0164] The mobile terminal is further configured to display the image of the inside of the target vehicle, wherein the image is used to confirm whether there is a living object inside the target vehicle, and send a hibernation notification to the vehicle terminal in response to a user's confirmation safety operation.
[0165] The vehicle terminal is further configured to control the camera to stop taking images and enter hibernation.
[0166] In a possible implementation, the mobile terminal is further configured to:
[0167] In response to a user's operation of turning off the pressure sensor, the mobile terminal is configured to send a notification of turning off the pressure sensor to the vehicle terminal.
[0168] The vehicle terminal is further configured to:
[0169] The plurality of pressure sensors are controlled to be turned off.
[0170] In a possible implementation, the interface of the security monitoring application of the mobile terminal is provided with an active image acquisition control;
[0171] The mobile terminal is further configured to send an in-vehicle image acquisition notification to the vehicle-mounted terminal in response to the triggering operation of the active image acquisition control.
[0172] In a possible implementation, the vehicle-mounted terminal is further configured to:
[0173] When the duration of the target vehicle in the parked and locked state reaches the preset alarm duration, the vehicle-mounted terminal sends an alarm notification to the mobile terminal.
[0174] When the target vehicle is in the parked and locked state, and the change value of the detected pressure value of any pressure sensor within the preset duration is greater than the preset threshold value, the vehicle-mounted terminal sends an alarm notification to the mobile terminal. After receiving the alarm notification, the mobile terminal prompts the user to view the image inside the target vehicle. The user can determine whether there is a living object inside the target vehicle through the image inside the target vehicle. If there is a living object, the user can take immediate action, and if there is not, the mobile terminal can send a hibernation notification to the vehicle-mounted terminal. In this way, the user can view the safety situation inside the target vehicle, and can also turn off the camera after confirming the safety situation, which can save resources. When there is a safety problem with the living object inside the target vehicle, the user can take rescue measures in time to avoid the occurrence of a safety accident.
[0175] It should be noted that the vehicle monitoring system provided in the above embodiments is only used as an example to divide the above functions, and in actual applications, the above functions can be completed by different functional modules according to needs, that is, the internal structure of the device is divided into different functional modules to complete all or part of the above described functions. In addition, the vehicle monitoring system and the method for monitoring the safety inside the vehicle provided in the above embodiments belong to the same concept, and the specific implementation process is described in detail in the method embodiments, which will not be repeated here.
[0176] Figure 13A structural block diagram of an electronic device 1300 provided by an embodiment of the present application is shown. The electronic device can be the vehicle terminal and the mobile terminal in the above embodiments. The electronic device 1300 can be a portable mobile terminal, such as a smartphone, a tablet computer, an MP3 player, an MP4 player, a notebook computer, or a desktop computer. The electronic device 1300 can also be referred to as a user equipment, a portable terminal, a laptop terminal, a desktop terminal, or other names.
[0177] Generally, the electronic device 1300 includes a processor 1301 and a memory 1302.
[0178] The processor 1301 can include one or more processing cores, such as a 4-core processor, an 8-core processor, etc. The processor 1301 can be implemented in at least one of a hardware form of a DSP (digital signal processing), an FPGA (field-programmable gate array), a PLA (programmable logic array). The processor 1301 can also include a main processor and a coprocessor. The main processor is a processor for processing data in an awake state, also referred to as a CPU (central processing unit). The coprocessor is a low-power processor for processing data in a standby state. In some embodiments, the processor 1301 can be integrated with a GPU (graphics processing unit) for rendering and drawing content required to be displayed by a display screen. In some embodiments, the processor 1301 can also include an AI (artificial intelligence) processor for processing computing operations related to machine learning.
[0179] The memory 1302 can include one or more computer-readable storage media. The computer-readable storage media can be non-transitory. The memory 1302 can also include high-speed random access memory and can include nonvolatile memory, such as one or more magnetic disk storage devices, optical storage devices, flash memory devices, or other nonvolatile solid-state storage devices. In some embodiments, the non-transitory computer-readable storage medium of the memory 1302 is used to store at least one instruction for execution by the processor 1301 to implement a method provided by embodiments of the present application.
[0180] In some embodiments, the electronic device 1300 can optionally also include a peripheral interface 1303 and at least one peripheral device. The processor 1301, the memory 1302, and the peripheral interface 1303 can be connected by a bus or a signal line. Each peripheral device can be connected to the peripheral interface 1303 by a bus, a signal line, or a circuit board. Specifically, the peripheral devices include at least one of a radio frequency circuit 1304, a display screen 1305, a camera assembly 1306, an audio circuit 1307, a positioning assembly 1308, and a power supply 1309.
[0181] The peripheral interface 1303 can be used to connect at least one peripheral device related to input / output (I / O) to the processor 1301 and the memory 1302. In some embodiments, the processor 1301, the memory 1302, and the peripheral interface 1303 are integrated on the same chip or circuit board; in some other embodiments, any one or two of the processor 1301, the memory 1302, and the peripheral interface 1303 can be implemented on a separate chip or circuit board, and the present embodiment is not limited in this regard.
[0182] The radio frequency circuit 1304 is configured to receive and send RF (radio frequency) signals, also known as electromagnetic signals. The radio frequency circuit 1304 communicates with communication networks and other communication devices through electromagnetic signals. The radio frequency circuit 1304 converts electrical signals to electromagnetic signals for transmission, or vice versa. Optionally, the radio frequency circuit 1304 includes an antenna system, an RF transceiver, one or more amplifiers, a tuner, an oscillator, a digital signal processor, a codec chipset, a subscriber identity module card, and the like. The radio frequency circuit 1304 can communicate with other terminals through at least one wireless communication protocol. The wireless communication protocol includes, but is not limited to, the World Wide Web, a metropolitan area network, an intranet, various generations of mobile communication networks (2G, 3G, 4G, and 5G), a wireless local area network, and / or a WiFi (wireless fidelity) network. In some embodiments, the radio frequency circuit 1304 can also include NFC (near field communication)-related circuitry, which is not limited in the present application.
[0183] The display screen 1305 is configured to display a UI (user interface). The UI can include graphics, text, icons, video, and any combination thereof. When the display screen 1305 is a touch display screen, the display screen 1305 also has the ability to collect touch signals on or above the surface of the display screen 1305. The touch signals can be input as control signals to the processor 1301 for processing. At this time, the display screen 1305 can also be used to provide virtual buttons and / or a virtual keyboard, also known as soft buttons and / or soft keyboards. In some embodiments, the display screen 1305 can be one, arranged on the front panel of the electronic device 1300; in other embodiments, the display screen 1305 can be at least two, arranged on different surfaces of the electronic device 1300 or in a folding design; in other embodiments, the display screen 1305 can be a flexible display screen, arranged on a curved surface or a folding surface of the electronic device 1300. Even, the display screen 1305 can also be arranged in an irregular shape, that is, a special-shaped screen. The display screen 1305 can be made of LCD (liquid crystal display), OLED (organic light-emitting diode), and the like.
[0184] The camera component 1306 is configured to capture images or videos. Optionally, the camera component 1306 includes a front camera and a rear camera. Generally, the front camera is disposed on the front panel of the terminal, and the rear camera is disposed on the back of the terminal. In some embodiments, the rear camera is at least two, which are any one of a main camera, a depth-of-field camera, a wide-angle camera, and a long-focus camera, to realize the background blur function of the main camera and the depth-of-field camera, the panorama shooting and VR (virtual reality) shooting function of the main camera and the wide-angle camera, or other fusion shooting functions. In some embodiments, the camera component 1306 can also include a flash. The flash can be a single-color-temperature flash or a dual-color-temperature flash. The dual-color-temperature flash refers to the combination of a warm light flash and a cold light flash, which can be used for light compensation at different color temperatures.
[0185] The audio circuit 1307 can include a microphone and a speaker. The microphone is configured to capture sound waves of a user and an environment, and convert the sound waves into an electrical signal input to the processor 1301 for processing or to the radio frequency circuit 1304 to realize voice communication. For the purpose of stereo sound collection or noise reduction, the microphone can be multiple, which are respectively disposed at different parts of the electronic device 1300. The microphone can also be an array microphone or an omnidirectional collection microphone. The speaker is configured to convert an electrical signal from the processor 1301 or the radio frequency circuit 1304 into sound waves. The speaker can be a traditional diaphragm speaker or a piezoelectric ceramic speaker. When the speaker is a piezoelectric ceramic speaker, it can not only convert an electrical signal into a sound wave audible to humans, but also convert an electrical signal into an inaudible sound wave to humans for ranging purposes. In some embodiments, the audio circuit 1307 can also include a headphone jack.
[0186] The positioning component 1308 is configured to locate the current geographical position of the electronic device 1300 to realize navigation or LBS (location based service). The positioning component 1308 can be a GPS (global positioning system), Beidou system or Galileo system positioning component.
[0187] The power supply 1309 is configured to supply power to each component in the electronic device 1300. The power supply 1309 can be an alternating current, a direct current, a disposable battery or a rechargeable battery. When the power supply 1309 includes a rechargeable battery, the rechargeable battery can be a wired charging battery or a wireless charging battery. The wired charging battery is a battery charged through a wired line, and the wireless charging battery is a battery charged through a wireless coil. The rechargeable battery can also be used to support fast charging technology.
[0188] In some embodiments, the electronic device 1300 further includes one or more sensors 1310. The one or more sensors 1310 include, but are not limited to, an acceleration sensor 1311, a gyroscope sensor 1312, a pressure sensor 1313, a fingerprint sensor 1314, an optical sensor 1315, and a proximity sensor 1316.
[0189] The acceleration sensor 1311 can detect the acceleration magnitude in three coordinate axes of the coordinate system established by the electronic device 1300. For example, the acceleration sensor 1311 can be used to detect the components of the gravitational acceleration in three coordinate axes. The processor 1301 can control the display screen 1305 to display the user interface in a landscape view or a portrait view according to the gravitational acceleration signals collected by the acceleration sensor 1311. The acceleration sensor 1311 can also be used for game or user motion data collection.
[0190] The gyroscope sensor 1312 can detect the body orientation and rotation angle of the electronic device 1300, and the gyroscope sensor 1312 can collect the 3D motion of the user to the electronic device 1300 in cooperation with the acceleration sensor 1311. The processor 1301 can implement the following functions according to the data collected by the gyroscope sensor 1312: motion sensing (such as changing the UI according to the user's tilt operation), image stabilization when shooting, game control, and inertial navigation.
[0191] The pressure sensor 1313 can be arranged on the side frame of the electronic device 1300 and / or the lower layer of the display screen 1305. When the pressure sensor 1313 is arranged on the side frame of the electronic device 1300, the user's holding signal to the electronic device 1300 can be detected, and the left-hand or right-hand recognition or shortcut operation can be performed by the processor 1301 according to the holding signal collected by the pressure sensor 1313. When the pressure sensor 1313 is arranged on the lower layer of the display screen 1305, the processor 1301 can control the operable control on the UI interface according to the user's pressure operation to the display screen 1305. The operable control includes at least one of a button control, a scroll bar control, an icon control, and a menu control.
[0192] The fingerprint sensor 1314 is used to collect a user's fingerprint. The processor 1301 identifies the user based on the fingerprint collected by the fingerprint sensor 1314, or vice versa. When the user's identity is identified as trusted, the processor 1301 authorizes the user to perform relevant sensitive operations, including unlocking the screen, viewing encrypted information, downloading software, making payments, and changing settings. The fingerprint sensor 1314 can be located on the front, back, or side of the electronic device 1300. When the electronic device 1300 has a physical button or manufacturer logo, the fingerprint sensor 1314 can be integrated with the physical button or manufacturer logo.
[0193] The optical sensor 1315 is used to collect ambient light intensity. In one embodiment, the processor 1301 can control the display brightness of the display screen 1305 based on the ambient light intensity collected by the optical sensor 1315. Specifically, when the ambient light intensity is high, the display brightness of the display screen 1305 is increased; when the ambient light intensity is low, the display brightness of the display screen 1305 is decreased. In another embodiment, the processor 1301 can also dynamically adjust the shooting parameters of the camera assembly 1306 based on the ambient light intensity collected by the optical sensor 1315.
[0194] 1316, also known as a proximity sensor, is typically located on the front panel of electronic device 1300. 1316 is used to detect the distance between the user and the front of electronic device 1300. In one embodiment, when 1316 detects that the distance between the user and the front of electronic device 1300 is gradually decreasing, the processor 1301 controls the display screen 1305 to switch from a screen-on state to a screen-off state; when 1316 detects that the distance between the user and the front of electronic device 1300 is gradually increasing, the processor 1301 controls the display screen 1305 to switch from a screen-off state to a screen-on state.
[0195] Those skilled in the art will understand that Figure 13 The structure shown does not constitute a limitation on the electronic device 1300, and may include more or fewer components than shown, or combine certain components, or use different component arrangements.
[0196] In this application embodiment, a computer-readable storage medium is also provided, such as a memory including instructions that can be executed by a processor in a terminal to complete the method of performing interactive operations in the above embodiments. This computer-readable storage medium can be non-transitory. For example, the computer-readable storage medium can be ROM (read-only memory), RAM (random access memory), CD-ROM, magnetic tape, floppy disk, and optical data storage device, etc.
[0197] It should be noted that the information (including but not limited to user equipment information, user personal information, etc.), data (including but not limited to data for analysis, stored data, displayed data, etc.) and signals (including but not limited to signals transmitted between user terminals and other devices, etc.) involved in the present application are authorized by the user or fully authorized by all parties, and the collection, use and processing of related data need to comply with relevant laws, regulations and standards of the country and region.
[0198] A person of ordinary skill in the art can understand that all or part of the steps of the above-mentioned embodiments can be completed by hardware, or by a program instructing related hardware to complete, and the program can be stored in a computer readable storage medium. The storage medium mentioned above can be a read-only memory, a magnetic disk or an optical disk, etc.
[0199] The above only describes some possible embodiments of the present application and does not limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A method of vehicle interior safety monitoring, characterized in that, The method is applied to a vehicle monitoring system of a target vehicle, and the vehicle monitoring system comprises a plurality of pressure sensors, a camera, a photosensitive sensor, a vehicle terminal and a mobile terminal. The pressure sensors are installed below the seating surface of the seat of the target vehicle. The method comprises the following steps: When the target vehicle is in a parked and locked state, if the change value of the detected pressure value of any pressure sensor within a preset time period is greater than a preset threshold value and the current value of any photosensitive sensor is greater than a preset current threshold value, timing is started. If the current value of the photosensitive sensor is always greater than the preset current threshold value within the timing time period, the vehicle terminal sends an alarm notification to the mobile terminal; After receiving the alarm notification, the mobile terminal sends an alarm prompt sound, a vibration prompt signal and displays an alarm prompt pop-up window; In response to a confirmation operation on the alarm prompt pop-up window, the mobile terminal sends an in-vehicle image acquisition notification to the vehicle terminal; After receiving the in-vehicle image acquisition notification, the vehicle terminal controls the camera to wake up and take an image of the inside of the target vehicle, and sends the image of the inside of the target vehicle taken by the camera to the mobile terminal; The mobile terminal displays the image of the inside of the target vehicle, wherein the image is used for the user to confirm whether there is a living object in the inside of the target vehicle; In response to a user's confirmation safety operation, the mobile terminal sends a hibernation notification to the vehicle terminal; The vehicle terminal controls the camera to stop taking images and enter hibernation; The method further comprises the following steps: In response to a user's operation of turning off the pressure sensor, the mobile terminal sends a notification of turning off the pressure sensor to the vehicle terminal; After receiving the notification of turning off the pressure sensor, the vehicle terminal controls the plurality of pressure sensors to be turned off. When the target vehicle starts, the vehicle terminal automatically turns on the switches of the plurality of pressure sensors.
2. The method of claim 1, wherein, An active image acquisition control is arranged in the interface of the security monitoring application program of the mobile terminal; The method further comprises the following steps: In response to a trigger operation of the active image acquisition control, the mobile terminal sends the in-vehicle image acquisition notification to the vehicle terminal.
3. The method of claim 1, wherein, The method further comprises the following steps: When the time period during which the target vehicle is in a parked and locked state reaches a preset alarm time period, the vehicle terminal sends the alarm notification to the mobile terminal.
4. A vehicle monitoring system characterized by comprising: The vehicle monitoring system comprises a plurality of pressure sensors, a camera, a photosensitive sensor, a vehicle terminal and a mobile terminal. The pressure sensors are installed below the seating surface of the seat of the target vehicle. The vehicle terminal is configured to: When the target vehicle is in a parked and locked state, if the change value of the detected pressure value of any pressure sensor within a preset time period is greater than a preset threshold value and the current value of any photosensitive sensor is greater than a preset current threshold value, timing is started. If the current value of the photosensitive sensor is always greater than the preset current threshold value within the timing time period, the vehicle terminal sends an alarm notification to the mobile terminal; The mobile terminal is configured to, after receiving the alarm notification, send an alarm prompt sound, a vibration prompt signal, and display an alarm prompt pop-up window; in response to a confirmation operation on the alarm prompt pop-up window, send a vehicle interior image acquisition notification to the vehicle-mounted terminal; The vehicle-mounted terminal is further configured to, after receiving the vehicle interior image acquisition notification, control the camera to wake up and capture an image of the interior of the target vehicle, and send the image of the interior of the target vehicle captured by the camera to the mobile terminal; The mobile terminal is further configured to display the image of the interior of the target vehicle, wherein the image is used to confirm whether there is a living object in the interior of the target vehicle; and in response to a user's confirmation of safety operation, send a hibernation notification to the vehicle-mounted terminal; The vehicle-mounted terminal is further configured to control the camera to stop capturing images and enter hibernation; The mobile terminal is further configured to: in response to a user's operation of turning off the pressure sensor, send a notification of turning off the pressure sensor to the vehicle-mounted terminal; The vehicle-mounted terminal is further configured to, after receiving the notification of turning off the pressure sensor, control the plurality of pressure sensors to turn off.
5. The system of claim 4, wherein, An active image acquisition control is arranged in an interface of a security monitoring application program of the mobile terminal; The mobile terminal is further configured to, in response to a trigger operation of the active image acquisition control, send the vehicle interior image acquisition notification to the vehicle-mounted terminal.
6. The system of claim 4, wherein, The vehicle-mounted terminal is further configured to: when a duration of the target vehicle in a parked and locked state reaches a preset alarm duration, send the alarm notification to the mobile terminal.
7. A computer device group, characterized by The computer device group comprises a plurality of computer devices, each computer device comprising a processor and a memory; The processors of the plurality of computer devices are configured to execute instructions stored in the memories of the plurality of computer devices, so that the computer device group executes the method of any one of claims 1-3.
8. A computer-readable storage medium, characterized in that, The computer program instructions, when executed by the computer device group, cause the computer device group to execute the method of any one of claims 1-3.
Citation Information
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