Household equipment control method, device and system based on vehicle monitoring

By acquiring start/stop information of home appliances through parking space monitoring equipment and combining it with vehicle monitoring information, smart home control without GPS signals or additional hardware is achieved. This solves the energy consumption and user experience problems of vehicle-smart home interconnection in existing technologies and provides a more precise and personalized control solution.

CN120802655APending Publication Date: 2025-10-17CHONGQING CHANGAN AUTOMOBILE CO LTD
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Patent Information

Application Number
CN202511052113.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-29
Publication Date
2025-10-17

AI Technical Summary

Technical Problem

Existing technologies, when connecting vehicles and smart home devices, cannot effectively trigger control when the GPS positioning signal is weak. The trajectory judgment technology is complex and costly, and the charging pile communication technology requires specific hardware, resulting in poor user experience and excessive energy consumption.

Method used

By acquiring start/stop information of home appliances through parking space monitoring equipment, determining the monitoring working time, and acquiring vehicle monitoring information within that time, flexible control of smart home devices can be achieved without relying on GPS positioning signals or additional hardware, thus reducing device energy consumption.

Benefits of technology

It achieves more accurate vehicle status recognition, reduces unnecessary energy consumption of parking monitoring equipment and home appliances, and improves user experience and personalized control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a home equipment control method, device and system based on vehicle monitoring, and the method comprises the steps: obtaining the starting and stopping information of at least one home equipment, the starting and stopping information comprises the starting time period and / or stopping time period of the at least one home equipment, and the starting time period is used for indicating the time period when a cloud platform starts and controls the home equipment; the stop time period is used for indicating the time period when the cloud platform stops controlling the home equipment; according to the start-stop information, the monitoring working time of the parking space monitoring equipment is determined; and in the monitoring working time, vehicle monitoring information of the target vehicle is obtained and sent to the cloud platform, the vehicle monitoring information is used for the cloud platform to control the home equipment, and the vehicle monitoring information comprises vehicle monitoring information that the target vehicle is parked in or out of the parking space. According to the method, the actual control requirements of the home equipment are combined, a more intelligent and personalized car-home interconnection control scheme is provided, and the user experience is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of Internet of Vehicles, in particular to a home equipment control method, device and system based on vehicle monitoring. BACKGROUND

[0002] With the rapid development of Internet of Things technology, intelligent vehicles and intelligent home equipment gradually integrate into family life, and gradually realize the interconnection and control between vehicles and homes.

[0003] At present, electronic fence technology, trajectory judgment technology and charging pile communication technology are mainly used to realize the intelligent home equipment linkage of vehicles in the away-from-home and home-coming scenarios. On the one hand, the electronic fence technology relies on global positioning system (GPS) positioning, which cannot effectively trigger control instructions when the signal is weak; the trajectory judgment technology relies on a large amount of sensor data and complex modeling, which is difficult to implement; and the charging pile communication technology needs specific hardware support, which limits its popular application. On the other hand, these technologies focus more on the positioning and state judgment of vehicles, and often ignore the actual control requirements of intelligent home equipment, which will lead to excessive energy consumption of inter-control products and home products, and affect the user experience.

[0004] Therefore, there is an urgent need for a more intelligent and personalized vehicle-home interconnection control scheme to optimize the user experience. SUMMARY

[0005] The present application aims to provide a home equipment control method, device and system based on vehicle monitoring, to at least solve one of the above technical problems.

[0006] In order to achieve the above-mentioned purpose, the technical scheme adopted by the present application is as follows:

[0007] According to the first aspect of the present application, a home equipment control method based on vehicle monitoring is provided, applied to a parking space monitoring device, the method comprising:

[0008] obtaining start-stop information of at least one home equipment, the start-stop information comprising an enabling time period and / or a stopping time period of at least one home equipment, the enabling time period being used to indicate a time period in which a cloud platform enables to control the home equipment, and the stopping time period being used to indicate a time period in which the cloud platform stops to control the home equipment;

[0009] determining a monitoring working time of the parking space monitoring device according to the start-stop information;

[0010] obtaining vehicle monitoring information of a target vehicle in the monitoring working time, and sending the vehicle monitoring information to the cloud platform, the vehicle monitoring information being used for the cloud platform to control the home equipment, and the vehicle monitoring information comprising vehicle monitoring information of the target vehicle parking in or out of a parking space.

[0011] In an embodiment, further comprising:

[0012] determining a travel peak period according to historical travel data of an owner of the target vehicle; wherein the historical travel data is used to indicate scene entry data and scene exit data of the owner about a scene in which the home device is located;

[0013] The determining the monitoring working time of the parking space monitoring device according to the start-stop information comprises:

[0014] determining the monitoring working time of the parking space monitoring device according to the start-stop information and the historical travel data.

[0015] In an embodiment, the determining the monitoring working time of the parking space monitoring device according to the start-stop information and the historical travel data comprises:

[0016] In response to monitoring that the target period is the travel peak period, obtaining door state information of the target vehicle, the door state information comprising opening state and closing state of a driver door;

[0017] determining, as the monitoring working time of the parking space monitoring device, an enabling time period in which the door state information is monitored to change from the opening state to the closing state, or an enabling time period in which the door state information is monitored to change from the closing state to the opening state.

[0018] In an embodiment, the obtaining the start-stop information of at least one home device comprises:

[0019] In response to a setting operation for the smart home application system, obtaining the start-stop information of at least one home device from the smart home application system.

[0020] In an embodiment, the smart home application system comprises a first interface, the first interface being used to display a plurality of home devices for which start-stop information can be set;

[0021] The obtaining the start-stop information of at least one home device from the smart home application system in response to a setting operation for the smart home application system comprises:

[0022] In response to a first triggering operation for at least one home device in the plurality of home devices in the first interface, determining the at least one home device as a start-stop device; wherein the first triggering operation comprises a first control being selected or clicked by a user in the first interface about the at least one home device;

[0023] obtaining, from the smart home application system, an activation time period and / or a deactivation time period of the start-stop device to obtain the start-stop information.

[0024] In an embodiment, the start-stop information further comprises an activation scenario and / or a deactivation scenario of at least one home device, the activation scenario being used to instruct the cloud platform to activate a device control scenario corresponding to the home device associated with the vehicle, and the deactivation scenario being used to instruct the cloud platform to deactivate the device control scenario corresponding to the home device; the smart home application system comprises a second interface configured to display a plurality of device control scenarios of which the start-stop information can be set;

[0025] The obtaining, from the smart home application system, the start-stop information of at least one home device in response to the setting operation on the smart home application system comprises:

[0026] In response to a second triggering operation on at least one device control scenario in the plurality of device control scenarios in the second interface, an activation scenario and / or a deactivation scenario are determined; wherein the second triggering operation comprises a user selecting or clicking a second control in the second interface regarding the at least one device control scenario;

[0027] The obtaining, from the smart home application system, at least one home device regarding the activation scenario to obtain the start-stop information.

[0028] In an embodiment, the device control scenario comprises at least one of the following: a vehicle parking into a parking space scenario, a vehicle parking out of a parking space scenario, and a predefined vehicle driving scenario.

[0029] In an embodiment, the determining the monitoring working time of the parking space monitoring device according to the start-stop information comprises:

[0030] According to a preset time before a start time in the activation time period of the at least one smart home device and a preset time after an end time in the activation time period, the monitoring working time of the parking space monitoring device is determined;

[0031] And / or, according to a preset time after a start time in the deactivation time period of the at least one smart home device and a preset time before an end time in the deactivation time period, the monitoring working time of the parking space monitoring device is determined.

[0032] In an embodiment, the method further comprises:

[0033] In response to monitoring that a target vehicle parks into or parks out of the parking space, identity information of the target vehicle is identified;

[0034] The vehicle monitoring information of the target vehicle is acquired, including:

[0035] The vehicle monitoring information of the target vehicle is acquired when the identity information of the target vehicle is verified.

[0036] In an embodiment, the identity information of the target vehicle is identified, including:

[0037] The license plate number information of the target vehicle is acquired;

[0038] It is determined whether the license plate number information is consistent with the pre-stored license plate number information, and if so, it is determined that the identity information of the target vehicle is verified.

[0039] According to a second aspect of the present application, a vehicle monitoring based home device control method is provided, applied to a cloud platform, including:

[0040] The start-stop information of at least one home device is acquired, including the start time period and / or stop time period of at least one home device, the start time period indicating the time period during which the cloud platform controls the home device, and the stop time period indicating the time period during which the cloud platform stops controlling the home device;

[0041] In response to the vehicle monitoring information sent by the parking space monitoring device, the vehicle monitoring information including the target vehicle parking into or parking out of the parking space, the running state of the home device is controlled according to the vehicle monitoring information and the start-stop information.

[0042] In an embodiment, the start-stop information of at least one home device is acquired, including:

[0043] In response to the setting operation of the smart home application system, the start-stop information of at least one home device is acquired from the smart home application system.

[0044] In an embodiment, further comprising:

[0045] The indoor monitoring information of the home monitoring device is acquired;

[0046] The running state of the home device is controlled according to the vehicle monitoring information and the start-stop information, including:

[0047] According to the indoor monitoring information, the vehicle monitoring information and the start-stop information, the home device is controlled to be turned on or off.

[0048] In an embodiment, the number of home monitoring devices is multiple, and the indoor monitoring information includes the indoor monitoring information in the area corresponding to each home monitoring device.

[0049] The control of the opening or closing of the home equipment according to the indoor monitoring information, the vehicle monitoring information and the start-stop information comprises:

[0050] When the current time period is the start time period, if the vehicle monitoring information is that the target vehicle is detected to be parked out, the smart home equipment in the corresponding area is controlled to be closed according to the area information that no indoor user is detected in the indoor monitoring information.

[0051] According to a third aspect of the present application, a home equipment control method based on vehicle monitoring is provided, which is applied to a smart home application system, and the method comprises:

[0052] In response to a setting operation for the smart home application system, start-stop information of at least one home equipment is determined; the start-stop information comprises a start time period and / or a stop time period of at least one home equipment, the start time period is used to indicate a time period in which the cloud platform starts to control the home equipment, and the stop time period is used to indicate a time period in which the cloud platform stops to control the home equipment;

[0053] The start-stop information of the at least one home equipment is sent to a parking space monitoring device and a cloud platform.

[0054] According to a fourth aspect of the present application, a home equipment control device based on vehicle monitoring is provided, which is applied to a parking space monitoring device, and the device comprises:

[0055] A first acquisition module is configured to acquire start-stop information of at least one home equipment, the start-stop information comprising a start time period and / or a stop time period of at least one home equipment, the start time period being used to indicate a time period in which the cloud platform starts to control the home equipment, and the stop time period being used to indicate a time period in which the cloud platform stops to control the home equipment;

[0056] A first determination module is configured to determine a monitoring working time of the parking space monitoring device according to the start-stop information.

[0057] The first acquisition module is further configured to acquire vehicle monitoring information of a target vehicle in the monitoring working time, the vehicle monitoring information comprising vehicle monitoring information of the target vehicle parked in or parked out of a parking space.

[0058] A first sending module is configured to send the vehicle monitoring information to the cloud platform, the vehicle monitoring information being used for the cloud platform to control the home equipment.

[0059] According to a fifth aspect of the present application, a home equipment control device based on vehicle monitoring is provided, which is applied to a cloud platform, and the device comprises:

[0060] The second acquisition module is configured to acquire start-stop information of at least one home device, wherein the start-stop information comprises an enabling time period and / or a stopping time period of the at least one home device, the enabling time period is used to indicate a time period during which the cloud platform enables control of the home device, and the stopping time period is used to indicate a time period during which the cloud platform stops control of the home device.

[0061] The control module is configured to, in response to vehicle monitoring information sent by the parking space monitoring device, control an operation state of the home device according to the vehicle monitoring information and the start-stop information, wherein the vehicle monitoring information comprises that a target vehicle parks into a parking space or parks out of the parking space.

[0062] According to a sixth aspect of the present application, a home device control device based on vehicle monitoring is provided, which is applied to an intelligent home application system, and the device comprises:

[0063] The second determination module is configured to, in response to a setting operation on the intelligent home application system, determine start-stop information of at least one home device, wherein the start-stop information comprises an enabling time period and / or a stopping time period of the at least one home device, the enabling time period is used to indicate a time period during which the cloud platform enables control of the home device, and the stopping time period is used to indicate a time period during which the cloud platform stops control of the home device.

[0064] The second sending module is configured to send the start-stop information of the at least one home device to the parking space monitoring device and the cloud platform.

[0065] According to a seventh aspect of the present application, a home device control system based on vehicle monitoring is provided, which comprises a parking space monitoring device, a cloud platform and an intelligent home application system, wherein the parking space monitoring device is configured to perform the home device control method based on vehicle monitoring provided in the first aspect, the cloud platform is configured to perform the home device control method based on vehicle monitoring provided in the second aspect, and the intelligent home application system is configured to perform the home device control method based on vehicle monitoring provided in the third aspect.

[0066] The application provides a vehicle monitoring-based home equipment control method, device and system, which replaces other vehicle and home inter-control schemes, acquires a vehicle parking-in or parking state by using a parking space monitoring device, does not need to rely on a GPS positioning signal, can realize more accurate vehicle state identification, does not need to have a home charging pile or configure an additional hardware for a vehicle, has lower cost and wider application range, acquires start-stop information of home equipment on the parking space monitoring device side, determines a monitoring working time of the parking space monitoring device in combination with the start-stop information, acquires vehicle monitoring information in the monitoring working time and communicates with a cloud platform, and then realizes flexible control of smart home equipment, so that the parking space monitoring device works in a necessary time period, effectively reduces unnecessary energy consumption of the parking space monitoring device and the home equipment, the vehicle and home control scheme is more intelligent and personalized, and user experience is greatly improved. BRIEF DESCRIPTION OF DRAWINGS

[0067] Figure 1 A possible scene schematic diagram provided for an embodiment of the application is shown in FIG.

[0068] Figure 2 A possible system architecture diagram provided for an embodiment of the application is shown in FIG.

[0069] Figure 3 A flowchart of a vehicle monitoring-based home equipment control method provided for an embodiment of the application is shown in FIG.

[0070] Figure 4a An interface diagram of a smart home application system provided for an embodiment of the application is shown in FIG.

[0071] Figure 4b An interface diagram of a smart home application system provided for an embodiment of the application is shown in FIG.

[0072] Figure 4c An interface diagram of a smart home application system provided for an embodiment of the application is shown in FIG.

[0073] Figure 4d An interface diagram of a smart home application system provided for an embodiment of the application is shown in FIG.

[0074] Figure 5 A flowchart of a vehicle monitoring-based home equipment control method provided for an embodiment of the application is shown in FIG.

[0075] Figure 6 A structure schematic diagram of a parking space monitoring device provided for an embodiment of the application is shown in FIG.

[0076] Figure 7 A flowchart of a license plate number recognition method provided for an embodiment of the application is shown in FIG.

[0077] Figure 8Another flowchart of a home equipment control method based on vehicle monitoring provided by an embodiment of the present application is shown in FIG. 6.

[0078] Figure 9 A structural diagram of a cloud platform provided by an embodiment of the present application is shown in FIG. 7.

[0079] Figure 10 A flowchart of a home equipment control method based on start-stop information and fusion data provided by an embodiment of the present application is shown in FIG. 8.

[0080] Figure 11 Another flowchart of a home equipment control method based on vehicle monitoring provided by an embodiment of the present application is shown in FIG. 9.

[0081] Figure 12 A signaling interaction diagram of a home equipment control method based on vehicle monitoring provided by an embodiment of the present application is shown in FIG. 10.

[0082] Figure 13 A structural diagram of a home equipment control device based on vehicle monitoring provided by an embodiment of the present application is shown in FIG. 11.

[0083] Figure 14 Another structural diagram of a home equipment control device based on vehicle monitoring provided by an embodiment of the present application is shown in FIG. 12.

[0084] Figure 15 Another structural diagram of a home equipment control device based on vehicle monitoring provided by an embodiment of the present application is shown in FIG. 13.

[0085] Figure 16 A structural diagram of a home equipment control system based on vehicle monitoring provided by an embodiment of the present application is shown in FIG. 14. DETAILED DESCRIPTION

[0086] Other advantages and effects of the present application can be easily understood by those skilled in the art from the above description of the preferred embodiments. The present application can be implemented or applied in other different embodiments, and the details in the description can be modified or changed based on different views and applications without departing from the spirit of the present application. It should be understood that the preferred embodiments are only for illustrating the present application, but not for limiting the protection scope of the present application.

[0087] It should be noted that the diagrams provided in the following embodiments only schematically illustrate the basic concept of the present application, and the diagrams only show the components related to the present application, but not the number, shape and size of the components in actual implementation. The type, number and ratio of the components in actual implementation can be arbitrarily changed, and the layout type of the components can be more complex.

[0088] For the convenience of understanding the embodiments of the present application, the following first explains the embodiments of the present application in combination with detailed technical background and possible application scenarios:

[0089] At present, the commonly used electronic fence technology, trajectory judgment technology and charging pile communication technology are used to realize the intelligent home device linkage of the car in the home and back home scenarios. Among them, the electronic fence technology relies on GPS positioning to judge whether the car is located within the preset electronic fence range; the trajectory judgment technology relies on a large number of sensors of the car to obtain real-time speed, position, attitude and other information of the car, and through modeling into a real-time running trajectory, when the running trajectory is consistent with the preset home or away home trajectory, it is considered that the car is in the home or away home mode, and the corresponding scene control instruction is triggered; the charging pile communication technology relies on the networking of the car and the charging pile to establish a communication connection relationship, and can only judge that the car is located in the parking space by judging the vehicle condition information. The above-mentioned electronic fence technology has relatively low cost and is more commonly used, but in the scenario where the GPS signal is weak, it is difficult to trigger the control instruction to the smart home device, while the trajectory judgment technology and the charging pile communication technology need to rely on the vehicle to configure additional hardware and complex algorithms, and the implementation cost is high, which is difficult to implement in the case of no home charging pile or insufficient hardware configuration of the car, and the universality is low.

[0090] Therefore, the embodiments of the present application provide a home device control scheme based on vehicle monitoring, which obtains the start-stop information of at least one home device on the side of the parking space monitoring device, the start-stop information including the start time period and / or stop time period of at least one home device, the start time period being used to indicate the time period in which the cloud platform starts to control the home device, and the stop time period being used to indicate the time period in which the cloud platform stops to control the home device. The parking space monitoring device determines the monitoring working time of the parking space monitoring device according to the start-stop information, and obtains the vehicle monitoring information of the target vehicle in the monitoring working time, the vehicle monitoring information including the vehicle monitoring information of the target vehicle parking in or out of the parking space, and sends the vehicle monitoring information to the cloud platform, the vehicle monitoring information being used for the cloud platform to control the home device. In this process, instead of other car-home mutual control schemes, the vehicle parking in or out state is obtained by using the parking space monitoring device, without relying on the GPS positioning signal, which can realize more accurate vehicle state recognition, and does not need to have a home charging pile or additional hardware configuration of the vehicle, with lower cost and wider application range; and by obtaining the start-stop information of the home device on the side of the parking space monitoring device, and determining the monitoring working time of the parking space monitoring device in combination with the start-stop information, the vehicle monitoring information is obtained in the monitoring working time and communicated with the cloud platform, thereby realizing flexible control of the smart home device, so that the parking space monitoring device works in the necessary time period, effectively reducing the unnecessary energy consumption of the parking space monitoring device and the home device, and the car-home control scheme is more intelligent and personalized, greatly improving the user experience.

[0091] Figure 1 AndFigure 2 respectively are possible application scenarios and system architecture diagrams provided by embodiments of the present application, combined with Figure 1 and Figure 2 As shown in the figures, the scenario can include a parking space monitoring device 110, a vehicle 120, a cloud platform 130, a home device application system 140, and a smart home device 150 (hereinafter referred to as a home device). Optionally, the parking space monitoring device 110 can be a standalone device installed near a parking space or an embedded device integrated in a vehicle end. The parking space can be a parking space of a user of the vehicle 120, and information of the parking space can be stored in the parking space monitoring device, so that the parking space monitoring device 110 monitors the vehicle 120 parking in or out of a specific parking space, thereby identifying the user's homecoming or leaving home scenario, for example, monitoring the vehicle 120 parking in or out of a specific parking space in a monitoring area (it should be understood that the present embodiment is only described by way of example of the parking space monitoring device 110 being installed near a parking space and monitoring parking in or out of the parking space, and is not limited to the parking space monitoring device only monitoring parking in or out of the parking space. For other scenarios, such as a vehicle driving scenario, the parking space monitoring device can also monitor the driving information of the vehicle to obtain corresponding vehicle monitoring information). The vehicle 120 and the parking space monitoring device 110 or a mobile terminal can establish a connection through a wireless network (Wi-Fi) or Bluetooth, and can view or review the video pictures taken by the parking space monitoring device in a limited time period on a vehicle machine display screen (or a smart home APP of a mobile terminal) of the vehicle 120 in real time. The basic monitoring function of the parking space monitoring device can be the same as that of a general home monitor.

[0092] The cloud platform 130, i.e., an Internet of Things cloud platform, can communicate with the parking space monitoring device 110 and the home device application system 140. The Internet of Things cloud platform can establish a bidirectional communication connection with the parking space monitoring device 110 through a wireless network. The parking space monitoring device 110 can send a control instruction (i.e., vehicle monitoring information, corresponding to a scene control instruction of a home control vehicle) to the Internet of Things cloud platform. Meanwhile, the Internet of Things cloud platform can also send a control instruction, such as a scene control instruction of a home control vehicle, to the parking space monitoring device. The Internet of Things cloud platform controls the smart home device 150 according to the vehicle monitoring information of the parking space monitoring device 110 and the start-stop information of the smart home device of the home device application 140.

[0093] The home device application system 140 can include a mobile terminal 141 installed with a smart home APP, which can include a mobile phone, a tablet computer, a smart wearable device, and the like. The smart home APP can be used in conjunction with a smart home device, and through the smart home APP, a user can manage all smart home devices including the parking space monitoring device, and can personalize a configuration of a scene mode, including a leaving home scene mode (i.e., a vehicle parking into a parking space scene), a coming home scene mode (i.e., a vehicle parking out of a parking space scene), and other scene modes (i.e., a predefined vehicle driving scene) named by the user. The user can combine and match various smart home devices according to own needs to realize the start-stop linkage of the smart home devices in the scene mode. Alternatively, the home device application system can further include a smart home central controller 142, which can serve as a master control gateway of each smart home execution terminal, such as a smart home smart screen. The smart home smart screen can receive a direct control instruction from a user or a control instruction issued from a cloud platform, such as a vehicle control home control instruction. Specifically, on one hand, the user can issue a control instruction to each smart home execution terminal through a voice control or a virtual button control mode, and the smart home smart screen forwards the control instruction to a designated smart home device to execute the control instruction. On the other hand, the smart home central control device receives a control instruction issued from the Internet of Things cloud platform and forwards the control instruction to a smart home device in a corresponding scene for execution. In some embodiments, the smart home device 150 can also be directly controlled by the Internet of Things cloud platform 130, which is not particularly limited in the present application and is only described as an example.

[0094] The smart home device 150 can be a smart device with Internet of Things function that can receive and execute a control instruction, including but not limited to a smart refrigerator, a smart air conditioner, a smart television, a smart sweeping robot, a smart washing machine, a smart curtain, smart lighting, a smart home monitor, a smart water heater, and the like.

[0095] Based on the above application scenarios and system architecture, the present embodiment proposes a home device control method based on vehicle monitoring, which is applied to the parking space monitoring device 110, as shown in the figure, and includes steps S301-S303. Figure 3

[0096] Step S301, acquiring start-stop information of at least one home device, the start-stop information including an enabling time period and / or a stopping time period of the at least one home device. The enabling time period is used to indicate a time period in which the cloud platform enables control of the home device, and the stopping time period is used to indicate a time period in which the cloud platform stops control of the home device.

[0097] ​In this embodiment, the start and stop information of at least one home appliance can be obtained by responding to a setting operation for the smart home application system and obtaining the start and stop information of at least one home appliance from the smart home application system.

[0098] For example, users can set the start and stop information of smart home on the smart home app on the mobile terminal. For example, they can select (or add or delete) which smart home devices are controlled by the cloud platform based on vehicle monitoring information, and set the start and stop information for these smart home devices, or set the activation period or stop period for each smart home device for the default smart home devices (such as all smart home devices). After the user sets the start and stop information on the mobile terminal, the mobile terminal automatically synchronizes this information to the parking space monitoring device and the cloud platform, or after identity verification with the parking space monitoring device and the cloud platform, the start and stop information is synchronized to the parking space monitoring device and the cloud platform.

[0099] It can be understood that in response to the conditions or states on which the executed operations depend, when the dependent conditions or states are met, one or more operations executed can be real-time or have a set delay; unless otherwise specified, there is no restriction on the order of execution of the multiple operations executed.

[0100] In one example of this embodiment, the smart home application system may include a first interface for displaying a plurality of home appliances for which start and stop information can be set. Optionally, the mobile terminal of the smart home application system may include the first interface, which may be an interface of a smart home application APP, such as Figure 4a As shown, when the user triggers the smart home application APP on the mobile terminal, the first interface is displayed, which includes multiple home devices for selection (the multiple home devices can be all the home devices in the user's home, or they can be home devices that can be interconnected with the car and home according to the initial settings. For example, smart devices with higher security, such as smart door locks or security cameras, may not participate in the car-home interconnection due to their higher security).

[0101] In the above steps, in response to the setting operation for the smart home application system, the start and stop information of at least one home appliance is obtained from the smart home application system, which can be done in the following manner: in response to the first trigger operation for at least one home appliance among the multiple home appliances in the first interface, at least one home appliance is determined as a start and stop device; wherein the first trigger operation includes the user selecting or clicking the first control regarding at least one home appliance in the first interface; obtaining the activation time period and / or stop time period of the start and stop device from the smart home application system to obtain the start and stop information.

[0102] like Figure 4aAs shown, the user can click the first control corresponding to the home device that needs to be controlled by the car-home interconnection (in some embodiments, the first interface can also display multiple home devices in the form of a drop-down list, and the user selects the home device that needs to be controlled by the car-home interconnection through drop-down selection), and for the home devices selected by the user in the first interface, such as home device a, home device b, and home device f, the smart home application system synchronizes the trigger operation information to the parking space monitoring device, and the parking space monitoring device determines that these home devices are start-stop devices based on this, that is, these home devices are home devices that can be intelligently controlled according to start-stop information.

[0103] Alternatively, for the start-up period and / or stop period of the start-stop device, the user can set it when using the home device daily (that is, this setting can not be based on car-home interconnection, but on the user's daily use habits and existing time period data). Or, the user can also set it in real time when selecting the start-stop device in the first interface. For example, as shown in the following figure, Figure 4b As shown, the first interface also includes a control for setting different time periods, and the user triggers the control corresponding to the time period to determine the start-up period of the start-stop device (in some embodiments, the stop period can also be set separately, or the start-up period and the stop period can be set at the same time, and this embodiment is only exemplified by the start-up period).

[0104] Through the above scheme, the user can dynamically adjust the start-stop information of the smart device according to different scenes and needs, improving the adaptability and flexibility of car-home interconnection. The user can conveniently select and configure different home devices, time periods, and other information in the first interface, so that the home device is controlled by car-home interconnection in the appropriate time period, thereby providing more efficient device management and energy consumption control.

[0105] In another example of the present embodiment, the start-stop information can also include the start-up scene and / or stop scene of at least one home device, the start-stop scene being used to indicate that the cloud platform controls the device control scene corresponding to the home device associated with the vehicle, and the stop scene being used to indicate that the cloud platform stops controlling the device control scene corresponding to the home device; the smart home application system includes a second interface, and the second interface is used to display multiple device control scenes that can set the start-stop information.

[0106] Optionally, the device control scenario can include at least one of a vehicle parking into a parking space scenario, a vehicle parking out of a parking space scenario, and a predefined vehicle driving scenario. The vehicle parking into a parking space scenario can correspond to a home scenario, the vehicle parking out of a parking space scenario can correspond to an away scenario, and the predefined vehicle driving scenario can be a scenario added by a user according to an actual application, such as a commuting scenario, when the vehicle is in a daily commuting state, for the corresponding unnecessary home device under the commuting scenario, the unnecessary home device can be turned off to save energy; or a long-distance travel scenario, when the vehicle enters a long-distance driving state, the cloud platform can automatically activate the home security system according to the scenario, and can turn off unnecessary home appliance devices to save energy; or a shopping or short stay scenario, when it is monitored that the vehicle stays in a shopping center or other short stay place, some home devices in the home can be kept in a standby state so as to be immediately used when the user returns quickly, and the like.

[0107] Similar to the process in which the user selects the smart home device in the first interface, as shown in FIG. 6, the user can click a second control corresponding to the device control scenario that needs to be controlled by the vehicle-home interconnection (in some embodiments, the second interface can also display multiple device control scenarios in the form of a drop-down list, and the user can select the device control scenario that needs to be controlled by the vehicle-home interconnection by selecting the drop-down list), and the device control scenario selected by the user in the second interface is triggered, such as a home scenario and an away scenario. In some embodiments, the user can also delete or add a corresponding scenario in the second interface. The smart home application system synchronizes the trigger operation information to the parking space monitoring device, and the parking space monitoring device determines that these scenarios are start-stop scenarios based on this, that is, the home scenario and the away scenario are monitored and the corresponding home device is intelligently controlled. Figure 4c In response to a setting operation on the smart home application system, the start-stop information of at least one home device is obtained from the smart home application system, including: in response to a second trigger operation on at least one device control scenario in the second interface, determining an enabled scenario and / or a stopped scenario; wherein the second trigger operation includes the user selecting or clicking a second control corresponding to the at least one device control scenario in the second interface; obtaining at least one home device corresponding to the enabled scenario from the smart home application system to obtain the start-stop information.

[0108] Optionally, the at least one home device of the start-stop scenario can be obtained through the second interface interaction setting, or can be obtained through other ways, for example, different scenarios have their corresponding home devices, that is, the scenario and the home device are stored in a pre-defined or mapping table, and the start-stop scenario can be obtained to obtain the corresponding home device.

[0109]

[0110] ​It should be noted that the first interface and the second interface in the embodiment can be the same interface or different interfaces. Exemplarily, as shown in FIG. 13, the same interface is provided with the start-stop scene and the start-stop device. Figure 4d As shown in FIG. 13, the same interface is provided with the start-stop scene and the start-stop device. Figure 4d Exemplarily, the user can select the start-stop scene and the corresponding home device in the start-stop scene, and click the "smart start-stop" control to realize one-key start-stop of the selected scene and the corresponding home device. Exemplarily, after the user starts or stops the "smart start-stop" button on the smart home APP, the smart home APP can upload the state information of the "smart start-stop" button, the bound user vehicle information, and the registration information of each smart home device to the parking space monitoring device and the cloud platform (such as the smart home cloud server of the cloud platform) for storage. When the parking space monitoring device receives the start-stop information, the corresponding monitoring time period or monitoring scene is determined according to the start-stop information (i.e., monitoring in the start-stop scene, for example, the start-stop scene is the home-coming scene, and only the parking of the vehicle is monitored), and the monitoring information is obtained in the monitoring time period or monitoring scene, thereby saving the energy consumption of the parking space monitoring device. Correspondingly, after the smart home cloud server receives the scene mode trigger instruction sent by the parking space monitoring device or the vehicle itself, the start-stop instruction of each smart home device is intelligently adjusted according to the start-stop state of the "smart start-stop" button, so as to realize flexible control of the smart home device. Through the newly added "smart start-stop" button, the use demand of the vehicle owner and the family members of the vehicle owner for the smart home device is considered, and the comfortable and convenient "vehicle-home interconnection" experience is brought to the vehicle owner and the family members of the vehicle owner.

[0111] In some embodiments, in addition to obtaining the start-stop information of at least one home device from the smart home application system, the start-stop information can also be set by other ways. For example, the user can also set the start-stop information of the home device through the vehicle machine interaction, and obtain the start-stop information set by the user from the vehicle machine; or store the start-stop information of the home device in the parking space monitoring device, and the like.

[0112] In step S302, the monitoring working time of the parking space monitoring device is determined according to the start-stop information. Instead of the vehicle-home interconnection scheme in the related art, the vehicle state is monitored in real time, and the control of the smart home device is realized in combination with the vehicle state, without considering the actual control requirements of the smart home device, and too much unnecessary energy consumption is generated. Therefore, in the present embodiment, the parking space monitoring device acquires the start-stop information, and determines the monitoring working time of the parking space monitoring device in combination with the start-stop information, and performs monitoring within the monitoring working time (or in some embodiments, within the corresponding monitoring scene). The consumption of traffic and power of the parking space monitoring device is saved, so that the cloud platform realizes flexible control of the smart home according to the corresponding vehicle monitoring information. In the present embodiment, the monitoring working time of the parking space monitoring device is determined according to at least one of a preset time before a start time in an enabled time period of at least one smart home device and a preset time after an end time in the enabled time period; and / or a preset time after a start time in a disabled time period of at least one smart home device and a preset time before an end time in the disabled time period.

[0113] It should be noted that the person skilled in the art can adaptively set the time of the start time in advance or the end time in arrears according to actual application or experience value, that is, the preset time, and the present embodiment does not particularly limit the setting of the preset time.

[0114] In some embodiments, the start-stop information can include an enabled scene and / or a disabled scene, and the monitoring working scene of the parking space monitoring device can be determined in combination with the corresponding enabled scene, that is, the parking space monitoring device performs monitoring in the enabled scene, and does not perform monitoring in the disabled scene.

[0115] In the present embodiment, it is further considered that the working time of the monitoring device is usually monitored based on fixed time, especially for the vehicle-home interconnection scene in combination with the vehicle monitoring information, without considering the individual differences of the vehicle owner. It is found through research that the working time of the monitoring device can be further determined in combination with the travel habits of the vehicle owner during the vehicle monitoring process of the monitoring device, the accuracy of the monitoring working time of the monitoring device is further improved by determining the peak travel period of the vehicle owner for the smart home scene, and the energy consumption of the device is reduced. Specifically, the method can further include the following steps:

[0116] The peak travel period is determined according to historical travel data of the vehicle owner of the target vehicle; wherein the historical travel data is used to indicate scene entry data and scene exit data of the vehicle owner for the scene where the smart home is located.

[0117] In this embodiment, the vehicle owner can be the owner of the vehicle. The historical travel data of the vehicle owner can be obtained from a home monitoring device or a smart door lock, for example, the vehicle owner's departure time and arrival time can be obtained from a home monitoring device such as a door camera. By counting the vehicle owner's departure time and arrival time, the historical travel data of the vehicle owner can be obtained.

[0118] In this embodiment, the scene entry data of the smart home scene can be the vehicle owner's arrival time data, and the scene exit data of the smart home scene can be the vehicle owner's departure time data.

[0119] For example, the historical travel data (for example, the smart home cloud server of the cloud platform can store these data, taking the arrival time data as an example) determines that the peak time period of the vehicle owner leaving home is from 7 to 9 in the morning, from 13 to 14 in the afternoon, and the peak time period of the vehicle owner returning home is from 12 to 13 in the afternoon, from 18 to 19 in the evening. Then, the peak travel data and the start-stop information can be combined to further determine the monitoring working time of the parking space monitoring device, and the remaining time period is in the non-monitoring working time.

[0120] The step S302 of determining the monitoring working time of the parking space monitoring device according to the start-stop information can include: determining the monitoring working time of the parking space monitoring device according to the start-stop information and the historical travel data.

[0121] In an example, the start-stop information in the enable time period that meets the time in the historical travel data can be determined as the monitoring working time of the parking space monitoring device.

[0122] In another example, the vehicle door state information of the target vehicle can also be obtained in response to monitoring that the target time period is a peak travel time period. The vehicle door state information includes the opening state and the closing state of the driver's door. The enable time period in which the vehicle door state information is monitored to change from the opening state to the closing state, or the enable time period in which the vehicle door state information is monitored to change from the closing state to the opening state, can be determined as the monitoring working time of the parking space monitoring device.

[0123] In this example, the temporary change of the vehicle owner in the peak time period is further considered, and the vehicle owner can not travel in the peak time period. By combining the vehicle door state to further determine the monitoring working time, the monitoring working time of the monitoring device is more in line with the actual situation of the user, the start-stop accuracy of the parking space monitoring device is improved, and the energy consumption of the device is saved. In the monitoring working time, the vehicle monitoring information of the target vehicle is obtained, and the vehicle monitoring information is sent to the cloud platform. The vehicle monitoring information is used for the cloud platform to control the home device, and the vehicle monitoring information includes the vehicle monitoring information of the target vehicle parking in or out of the parking space.

[0124] In the embodiment, the parking space monitoring device can enter a working state in a monitoring working time and automatically hibernate in a non-monitoring working time. In the monitoring working time, the monitoring information of the target vehicle, such as whether the target vehicle parks into or parks out of the parking space, can be monitored. In some embodiments, other vehicle driving information of the vehicle can also be monitored to send to the cloud platform to control the home devices.

[0125] In an implementation, considering that the parking space monitoring device can monitor an unauthorized vehicle, which can cause the false control of the smart home device. The embodiment identifies and verifies the identity information of the vehicle to realize the authorized vehicle triggering the control of the related home device, and further improves the security and stability of the vehicle-home interconnection. Specifically, the method can further include the following steps: in response to monitoring that the target vehicle parks into or parks out of the parking space, identifying the identity information of the target vehicle. In the above step of obtaining the vehicle monitoring information of the target vehicle, the vehicle monitoring information of the target vehicle is obtained when the identity information of the target vehicle is verified.

[0126] Exemplarily, the parking space monitoring device can store the parking space information, such as the parking space identification information and the parking space position information, and the parking space monitoring device can only monitor the parking space set by the user. When the vehicle parks into or parks out of the parking space, the identity information of the vehicle is identified, and the vehicle monitoring information of the target vehicle is obtained when the identity verification is passed, and is transmitted to the Internet of Things cloud platform for the control of the smart home. When the identity verification is not passed, the information of the vehicle parking into or parking out of the parking space can be deleted, without triggering any scene mode control signal, and the picture of the illegal parking vehicle is recorded to prompt the user that there is the illegal parking of the vehicle.

[0127] Exemplarily, the vehicle recognition can be performed by recognizing the license plate number of the vehicle. Specifically, the above step of identifying the identity information of the target vehicle can be: collecting the license plate number information of the target vehicle; judging whether the license plate number information is consistent with the pre-stored license plate number information, and if consistent, determining that the identity information verification of the target vehicle is passed.

[0128] Optionally, as Figure 5As shown, the control of the smart home by the license plate number recognition mode can include the following processes: step S501, using the parking space monitoring device to identify the parking-in and parking-out state of the vehicle (i.e. the target vehicle, which can be any vehicle whose state can be monitored in this embodiment) in the parking space, and determining the legality of the vehicle by the license plate number; step S502, if the vehicle with the correct license plate number parks in the parking space, the parking space monitoring device can trigger the home-coming scene mode; step S503, if the vehicle with the correct license plate number parks out of the parking space, the parking space monitoring device can trigger the leaving-home scene mode; step S504, the parking space monitoring device reports the vehicle monitoring information and related scene triggering signals to the Internet of Things cloud platform, and the Internet of Things cloud platform issues related scene control instructions to the smart home device. For example, in the home-coming scene, the Internet of Things platform sends an opening instruction to the smart home device according to the vehicle monitoring information and the start-stop information, such as sending an opening instruction to the smart light. Among them, the legal vehicle is defined as the license plate number of the vehicle is consistent with the license plate number recorded in the parking space monitoring device, and the illegal vehicle is defined as the license plate number of the vehicle is inconsistent with the license plate number recorded in the parking space monitoring device. It should be understood that Figure 5 The example focuses on the identification of the license plate number, and omits the related content about the start-stop information.

[0129] Optionally, the parking-in state can be parking the vehicle in the parking frame line by the reversing parking method or the side parking method, and the parking space monitoring device can clearly monitor the state of the vehicle and the license plate number, and the parking-out state can be driving the vehicle out of the parking space, and the parking space monitoring device can monitor the state of the vehicle and the license plate number from the state of being able to monitor to the state of being unable to monitor.

[0130] Optionally, in the home-coming scene mode or the leaving-home scene mode, the smart home devices executing the home-coming\leaving-home scene mode and the actions can be customized by the user. For example, in the home-coming scene mode, the living room light can be defined as an open state, the bedroom air conditioner as an open state, the sweeping robot as a working state, and the home atmosphere lamp as an open state. In the leaving-home scene mode, the living room light can be defined as a closed state, the bedroom air conditioner as a closed state, the sweeping robot as a ready state, and the home atmosphere lamp as a closed state.

[0131] Optionally, before the smart home in the scene mode is realized to execute the remote control instruction, each smart home can be registered and bound on the Internet of Things cloud platform, so that the smart home has the networking function.

[0132] Optionally, as Figure 6As shown, the parking space monitoring device can include a networking module, a storage module, an identification module, a judgment module, and a proxy module. Among them, the networking module can include a 4G / 5G module and a WIFI module, that is, the parking space monitoring device can be built-in 4G / 5G flow card to realize networking function, also can use the WIFI module of self to connect the WIFI network nearby, through the networking module and the car cloud communication protocol, the parking space monitoring device has the ability of communication with the Internet of Things cloud platform. The storage module is used to store the license plate information bound with the parking space, which can be manually input and saved by the user on the smart home APP. The parking space monitoring device can be used as one of the smart home execution terminals for easy customization, and the user can bind multiple smart home devices on the smart home APP and input the relevant user information in advance. The identification module can be composed of a camera hardware and a perception algorithm, which can identify the license plate number captured by the camera and extract the key text information. The judgment module is used to compare the license plate information extracted by the identification module with the user-bound license plate information. If they are consistent, it is determined that the vehicle parked in the parking space is a legal vehicle, and the remote control instruction of the home control car in the home scene can be triggered; otherwise, it is determined that the vehicle is an illegal vehicle, and the remote control instruction of the home control car in the home scene is not triggered, and the picture of the illegal vehicle can be transmitted to the user's mobile terminal smart home APP. The proxy module is used to proxy the vehicle to report the scene mode trigger signal to the Internet of Things cloud platform, and also can be used to proxy the Internet of Things cloud platform to issue the remote control car instruction initiated by the smart home central controller to the vehicle, so that the parking space monitoring device has a "two-way proxy" function.

[0133] Further examples, in combination with Figure 6 The structure of the example, the vehicle identity recognition process of the parking space monitoring device can be as Figure 7 As shown, when the parking space monitoring device monitors that a vehicle has parked in / out of the parking space, the license plate number picture of the vehicle is captured by the camera, the license plate number text information in the license plate number picture is extracted by the internal perception module, and then the extracted license plate number information is compared with the stored license plate number information by the judgment module. If they are consistent, it is determined that the vehicle is a legal vehicle, and the related scene mode control signal (corresponding to the vehicle monitoring information and control instruction in the above) is triggered and reported to the Internet of Things cloud platform. If they are not consistent, it is determined that the vehicle is an illegal vehicle, and no scene mode control signal is triggered, and the picture of the illegal vehicle is captured and synchronized to the smart home APP of the parking space monitoring device, so as to remind the vehicle owner.

[0134] In some embodiments, in addition to identifying the identity information of the target vehicle through the license plate number, the target vehicle can also be verified through other ways, such as wireless signal identification or Radio Frequency Identification (RFID), etc., wherein the wireless signal identification can be identification using the Bluetooth or Wi-Fi signal in the vehicle, specifically, the vehicle can be equipped with a uniquely identified wireless signal, when the vehicle approaches, the parking space monitoring device can detect and identify the signal to verify the identity of the target vehicle. Alternatively, an RFID tag can be installed on the vehicle, and the parking space monitoring device can identify the vehicle identity through a card reader, etc.

[0135] To sum up, the embodiment utilizes the parking space monitoring device to identify the parking-in and parking-out state of the vehicle and judges the legality of the vehicle according to the license plate number, the parking space monitoring device reports the related scene trigger signal to the Internet of Things cloud platform, the Internet of Things cloud platform issues scene control instructions to the smart home device for execution, effectively solves the problem that the current vehicle and home interconnection method depends on the vehicle to configure additional hardware and complex algorithms, and has high implementation cost, optimizes the vehicle and home interconnection system, reduces the use cost of the vehicle and home interconnection system, and improves the user experience of the vehicle and home interconnection system.

[0136] Figure 8 It is a flowchart of a home device control method based on vehicle monitoring provided by an embodiment of the present application, applied to a cloud platform 130 (i.e. an Internet of Things platform), as shown in Figure 8 The method comprises steps S801 and S802.

[0137] Step S801, acquire the start-stop information of at least one home device, the start-stop information comprising the start time period and / or stop time period of at least one home device, the start time period being used to indicate the time period during which the cloud platform starts to control the home device, and the stop time period being used to indicate the time period during which the cloud platform stops to control the home device;

[0138] Step S802, in response to the vehicle monitoring information sent by the parking space monitoring device, the vehicle monitoring information comprising the parking-in or parking-out of the target vehicle into the parking space, according to the vehicle monitoring information and the start-stop information, control the running state of the home device.

[0139] It has been mentioned above that the parking space monitoring device determines the monitoring working time according to the start-stop information, and obtains the vehicle monitoring information of the target vehicle according to the monitoring working time, that is, the vehicle monitoring information can be the data monitored in the monitoring working time corresponding to the start time period and / or the stop time period. Since the monitoring working time can not be identical to the start time period and / or the stop time period, the Internet of Things cloud platform controls the opening or closing of the home device in combination with the time of the vehicle monitoring information and the specific monitoring information content, the start-stop information. Specifically, the vehicle monitoring information can carry a corresponding time stamp to record the specific time of the vehicle state, and the specific content of the vehicle monitoring information can be analyzed, for example, whether the vehicle is parked into or parked out of the parking space. The analysis of the parking of the vehicle into or out of the parking space has been described above, and will not be described again here. In an example, if the vehicle monitoring information occurs in the start time period, and the monitoring information content indicates that the vehicle is parked into the parking space, the cloud platform can decide to turn on the related home device. Or, if the vehicle monitoring information occurs in the stop time period, and the monitoring information content indicates that the vehicle is parked out of the parking space, the cloud platform can decide to turn off the related home device.

[0140] In this way, flexible control of the smart home device can be realized, so that the smart home device is turned on or off according to the actual demand, effectively reducing unnecessary energy consumption of the home device, and improving the user experience.

[0141] In an embodiment, the step of obtaining the start-stop information of the at least one home device can be: obtaining the start-stop information of the at least one home device from the smart home application system in response to a setting operation of the smart home application system.

[0142] It should be noted that the start-stop information obtained by the Internet of Things cloud platform can be consistent with the start-stop information obtained by the parking space monitoring device, and the related description will not be described again here.

[0143] In an embodiment, the data of the home monitoring device can also be integrated to further realize flexible control of the home device. The method can further include the following steps: obtaining indoor monitoring information of the home monitoring device; and the step of controlling the operating state of the home device according to the vehicle monitoring information and the start-stop information can be: controlling the opening or closing of the home device according to the indoor monitoring information, the vehicle monitoring information and the start-stop information.

[0144] In an embodiment, the number of home monitoring devices can be multiple, and the indoor monitoring information includes indoor monitoring information in a region corresponding to each home monitoring device. The control of the home device according to the indoor monitoring information, the vehicle monitoring information and the start-stop information can be that, when the current time period is an enable time period, if the vehicle monitoring information is that the target vehicle is detected to be parked out, the smart home device in the region where the indoor user is not detected according to the indoor monitoring information is controlled to be turned off.

[0145] In the embodiment, by integrating the indoor monitoring information, the vehicle monitoring information and the start-stop information of multiple home monitoring devices, the intelligent control of the home device is realized. Specifically, the cloud platform obtains the monitoring information from multiple home monitoring devices, each device corresponds to a specific home region, and provides the indoor monitoring information of the region. By fusing the parking space monitoring information into the monitoring information of different regions, flexible control of the home monitoring device can be realized, and the energy consumption of the home device can be saved on the basis of not affecting the user experience of the home.

[0146] Exemplarily, the cloud platform, that is, the Internet of Things cloud platform, can be an Internet of Things cloud platform infrastructure cluster, such as Figure 9 As shown, the Internet of Things cloud platform can include a processor and a memory, and the software resources include algorithm codes running on the hardware facilities for realizing vehicle-home interconnection. According to the function domain division, the Internet of Things cloud platform can include a mobile terminal APP cloud server, a vehicle cloud management platform cloud server and a smart home cloud server. The mobile terminal, the vehicle, the parking space monitoring device and the smart home device communicate and interact with different servers in the Internet of Things cloud platform. Specifically, the mobile terminal APP cloud server and the mobile terminal smart home APP interact, and the user can customize the smart home device associated in the away-from-home scene mode / come-home scene mode and set the expected action to be executed. The vehicle cloud management platform cloud server and the vehicle or the parking space monitoring device interact, trigger the scene mode control instruction and remotely issue the home control vehicle instruction. The smart home cloud server and the smart home central controller interact, and the corresponding scene control instruction is issued or the home control vehicle instruction is reported. The servers in the Internet of Things cloud platform can also coordinate actions to realize the forwarding of control instructions and the sharing of information resources, support the operation of the entire vehicle-home interconnection system, and bring a fast and stable "vehicle-home interconnection" experience to the user.

[0147] In combination with the structure of the above Figure 9 The user can set the start-stop information and the like in the smart home APP according to the structure of the above Figure 10As shown, the Internet of Things cloud platform can store the on-off state of the "smart start-stop" button set by the smart home APP. When the Internet of Things cloud platform receives the scene mode trigger instruction sent by the parking space monitoring device, it queries whether the "smart start-stop" button is on. If it is in the off state, it can pull the control instruction set to the default smart home device under the corresponding scene mode without any adjustment, and send it to the smart home central control device.

[0148] Specifically, after querying that the "smart start-stop" button is in the on state, the Internet of Things cloud platform can use data fusion technology to determine the use requirements of each smart home device in the monitoring space in combination with the picture information data monitored by the home monitor (i.e. indoor monitoring information), pull each smart home start-stop information set by the user under the corresponding scene mode, and on this basis, flexibly adjust the control instruction corresponding to the smart home device (such as each smart home device can include a corresponding device number to facilitate custom or control operation). After adjustment, the smart home device control instruction set is generated and sent to the smart home central control device (in some embodiments, it can be directly controlled by the cloud platform). The smart home central control device receives the control instruction set and decomposes it to each smart home device according to the execution device number and execution instruction for execution.

[0149] Exemplarily, in the first scenario, the user customizes that all smart home devices are executed to be turned off in the away-from-home scene mode. When the "smart start-stop" button is in the off state, the parking space monitoring device monitors the vehicle monitoring information in real time. The smart home cloud server of the Internet of Things cloud platform directly controls the default smart home devices, such as all smart home devices, to be turned off in the away-from-home scene according to the vehicle monitoring information, without considering the needs of the user's family members to use the home devices. When the "smart start-stop" button is in the on state, instead of the smart home cloud server controlling all smart home devices to be turned off, the operation state of these home devices (such as controlling them to be turned off) is controlled by combining the start-stop information (for example, the user sets that in the away-from-home scene mode, some home devices, such as all air conditioners, all lights, and all televisions, can be controlled by the Internet of Things cloud platform in the corresponding time period) and the vehicle monitoring information. In some embodiments, the monitoring data of the home monitoring device can also be fused, such as the picture information monitored by the home monitoring device to identify whether there is a dynamic in the home, to make a decision on the execution type and execution action of the smart home device. When the home monitoring device identifies that there is a dynamic in the monitoring space, although the user sets the start-stop information to set that in the away-from-home scene mode, some home devices, such as all air conditioners, all lights, and all televisions, can be turned off by the Internet of Things cloud platform in the corresponding time period, since the home monitoring device monitors that there is someone in the room, the smart home central controller executes to turn off the televisions and turn off the air conditioners and lights in the room where no one is present, to avoid a poor car-home interconnection experience caused by the air conditioners being turned off when the user's family members are using the air conditioners but the user drives away from home.

[0150] Exemplarily, in the second scenario, the user customizes that all smart home devices are turned on in the home-coming scenario mode. When the smart start-stop button is in the off state, the parking space monitoring device monitors the vehicle monitoring information in real time, and the Internet of Things cloud platform directly turns on all smart home devices in the home-coming scenario according to the vehicle monitoring information, without considering the needs of the user's family members to use the home devices. When the smart start-stop button is in the on state, instead of the smart home cloud server controlling all smart home devices to be turned on, the running state (such as turning on) of these home devices is controlled in combination with the start-stop information (for example, the user sets that in the home-coming scenario mode, some home devices such as all air conditioners, all lights, and all televisions can be turned on by the Internet of Things cloud platform in the corresponding time period) and the vehicle monitoring information. In some embodiments, the execution type and execution action of the smart home device can also be determined by fusing the monitoring data of the home monitoring device, such as identifying whether there is a dynamic in the home by combining the picture information detected by the home monitoring data. When the home monitoring device identifies that there is a person in the monitoring space, although the user sets the start-stop information to turn on all lights and all air conditioners in the home-coming scenario mode, and the robot sweeper is in a working state, the smart home central control device will only turn on the lights in the room where no one is present, so as to avoid the user's family members in the bedroom being in a sleep state and suddenly turning on the lights, thereby bringing a poor vehicle-home interconnection experience to the user.

[0151] Exemplarily, in the third scenario, when the smart start-stop button is in the on state, the smart home cloud server can also flexibly control the opening and closing time period of the parking space monitoring device (in some embodiments, the parking space monitoring device can also be controlled autonomously), and flexibly open and close the parking space monitoring device based on the historical time data of the user's home-coming and departure, so as to achieve the purpose of saving traffic and power.

[0152] Figure 11 FIG. 1 is a flowchart of a home device control method based on vehicle monitoring provided by an embodiment of the present application, which is applied to a smart home application system. As shown in FIG. 1, the method can include steps S1101 and S1102. Figure 11

[0153] Step S1101, in response to a setting operation on the smart home application system, determining start-stop information of at least one home device; the start-stop information includes an enabling time period and / or a stopping time period of the at least one home device, the enabling time period being used to indicate a time period in which the cloud platform enables to control the home device, and the stopping time period being used to indicate a time period in which the cloud platform stops to control the home device;

[0154] Step S1102, sending the start-stop information of the at least one home device to the parking space monitoring device and the cloud platform.

[0155] ​It should be noted that the embodiment of the application is the peer method embodiment of the parking space monitoring device side method embodiment and the cloud platform side method embodiment. Related descriptions can be referred to the corresponding content of the peer method embodiment of the parking space monitoring device side method embodiment and the cloud platform side method embodiment. Here, no more redundant descriptions are made.

[0156] Figure 12 is a flowchart of a home equipment control method based on vehicle monitoring provided by the embodiment of the application, as shown in Figure 12 , the method comprises:

[0157] Step S1201, the user performs a setting operation on the smart home application system;

[0158] Step S1202, the smart home application system determines the start-stop information of at least one home equipment in response to the setting operation of the user on the smart home application system, the start-stop information comprising the start time period and / or stop time period of at least one home equipment, the start time period being used to indicate the time period during which the cloud platform controls the home equipment, and the stop time period being used to indicate the time period during which the cloud platform stops controlling the home equipment;

[0159] Step S1203, the smart home application system sends the start-stop information of at least one home equipment to the parking space monitoring device and the cloud platform;

[0160] Step S1204, the parking space monitoring device determines the monitoring working time of the parking space monitoring device according to the start-stop information;

[0161] Step S1205, the parking space monitoring device acquires the vehicle monitoring information of the target vehicle during the monitoring working time;

[0162] Step S1206, the parking space monitoring device sends the vehicle monitoring information to the cloud platform, the vehicle monitoring information being used for the cloud platform to control the home equipment, and the vehicle monitoring information comprising the vehicle monitoring information of the target vehicle parking in or out of the parking space;

[0163] Step S1207, the cloud platform controls the running state of the home equipment according to the vehicle monitoring information and the start-stop information in response to the vehicle monitoring information sent by the parking space monitoring device.

[0164] Figure 13 is a structural diagram of a home equipment control device based on vehicle monitoring provided by the embodiment of the application, and is applied to a parking space monitoring device, as shown in Figure 13 , the device 1300 comprises:

[0165] The first obtaining module 1301 is configured to obtain start-stop information of at least one home device, the start-stop information comprising an enabling time period and / or a stopping time period of the at least one home device, the enabling time period being used to indicate a time period during which the cloud platform enables control of the home device, and the stopping time period being used to indicate a time period during which the cloud platform stops control of the home device.

[0166] The first determining module 1302 is configured to determine a monitoring working time of the parking space monitoring device according to the start-stop information.

[0167] The first obtaining module 1301 is further configured to obtain vehicle monitoring information of a target vehicle in the monitoring working time, the vehicle monitoring information comprising vehicle monitoring information of the target vehicle parking in or parking out of a parking space.

[0168] The first sending module 1303 is configured to send the vehicle monitoring information to the cloud platform, the vehicle monitoring information being used by the cloud platform to control the home device.

[0169] In an implementation manner, the first obtaining module 1301 comprises:

[0170] The first response unit is configured to obtain, from the smart home application system, the start-stop information of the at least one home device in response to a setting operation on the smart home application system.

[0171] In an implementation manner, the smart home application system comprises a first interface, the first interface being used to display a plurality of home devices for which the start-stop information can be set.

[0172] The first response unit is specifically configured to:

[0173] In response to a first triggering operation on at least one home device in the plurality of home devices in the first interface, the at least one home device is determined as a start-stop device; wherein the first triggering operation comprises a first control of the at least one home device being selected or clicked by a user in the first interface.

[0174] The enabling time period and / or the stopping time period of the start-stop device are obtained from the smart home application system to obtain the start-stop information.

[0175] In an implementation manner, the start-stop information further comprises an enabling scene and / or a stopping scene of the at least one home device, the enabling scene being used to indicate a device control scene corresponding to the home device and associated with a vehicle and enabled by the cloud platform, and the stopping scene being used to indicate a device control scene corresponding to the home device and stopped by the cloud platform; and the smart home application system comprises a second interface, the second interface being used to display a plurality of device control scenes for which the start-stop information can be set.

[0176] The first response unit is specifically configured to:

[0177] In response to a second triggering operation for at least one device control scene in the plurality of device control scenes in the second interface, a start scene and / or a stop scene is determined; wherein the second triggering operation comprises a user selecting or clicking a second control related to the at least one device control scene in the second interface;

[0178] At least one home device related to the start scene is acquired from the smart home application system to acquire start-stop information.

[0179] In an embodiment, the device control scene comprises at least one of: a vehicle parking into a parking space scene, a vehicle parking out of a parking space scene, and a predefined vehicle driving scene.

[0180] In an embodiment, the first determining module 1302 is specifically configured to:

[0181] According to a preset time before a start time in an enable time period of the at least one smart home device and a preset time after an end time in the enable time period, a monitoring working time of the parking space monitoring device is determined.

[0182] And / or, according to a preset time after a start time in a stop time period of the at least one smart home device and a preset time before an end time in the stop time period, the monitoring working time of the parking space monitoring device is determined.

[0183] In an embodiment, the apparatus further comprises:

[0184] The identifying module is configured to identify identity information of the target vehicle in response to monitoring that the target vehicle parks into or parks out of the parking space.

[0185] The first acquiring module 1301 is specifically configured to:

[0186] When the identity information of the target vehicle is verified, vehicle monitoring information of the target vehicle is acquired.

[0187] In an embodiment, the identifying module is specifically configured to:

[0188] The license plate number information of the target vehicle is collected.

[0189] It is determined whether the license plate number information is consistent with the pre-stored license plate number information, and if so, it is determined that the identity information of the target vehicle is verified.

[0190] Figure 14 A structural schematic diagram of a home device control apparatus based on vehicle monitoring provided by an embodiment of the present application is applied to a cloud platform, as shown in the figure, the apparatus 1400 comprises: Figure 14

[0191] ​The second acquisition module 1401 is configured to acquire start-stop information of at least one home device, wherein the start-stop information comprises an enabling time period and / or a stopping time period of the at least one home device, the enabling time period is used to indicate a time period during which the cloud platform enables control of the home device, and the stopping time period is used to indicate a time period during which the cloud platform stops control of the home device.

[0192] The control module 1402 is configured to, in response to vehicle monitoring information sent by the parking space monitoring device, control an operation state of the home device according to the vehicle monitoring information and the start-stop information, wherein the vehicle monitoring information comprises that a target vehicle parks into a parking space or parks out of the parking space.

[0193] In an embodiment, the second acquisition module 1401 comprises:

[0194] The second response unit is configured to, in response to a setting operation on the smart home application system, acquire the start-stop information of the at least one home device from the smart home application system.

[0195] In an embodiment, the apparatus further comprises:

[0196] The third acquisition module is configured to acquire indoor monitoring information of the home monitoring device.

[0197] The control module 1402 is specifically configured to control the home device to be turned on or turned off according to the indoor monitoring information, the vehicle monitoring information and the start-stop information.

[0198] Figure 15 FIG. 1 is a structural schematic diagram of a home device control apparatus based on vehicle monitoring provided by an embodiment of the present application, which is applied to a smart home application system. Figure 15 As shown in FIG. 1, the apparatus 1500 comprises:

[0199] The second determination module 1501 is configured to, in response to a setting operation on the smart home application system, determine start-stop information of at least one home device, wherein the start-stop information comprises an enabling time period and / or a stopping time period of the at least one home device, the enabling time period is used to indicate a time period during which the cloud platform enables control of the home device, and the stopping time period is used to indicate a time period during which the cloud platform stops control of the home device.

[0200] The second sending module 1502 is configured to send the start-stop information of the at least one home device to the parking space monitoring device and the cloud platform.

[0201] Figure 16is a structural schematic diagram of a home equipment control system based on vehicle monitoring provided by an embodiment of the present application, comprising a parking space monitoring device 1601, a cloud platform 1602, and a smart home application system 1603; wherein the parking space monitoring device is used to execute a home equipment control method based on vehicle monitoring corresponding to the above-mentioned parking space monitoring device side method embodiment; the cloud platform is used to execute a home equipment control method based on vehicle monitoring corresponding to the above-mentioned cloud platform side method embodiment, and the smart home application system is used to execute a home equipment control method based on vehicle monitoring corresponding to the above-mentioned smart home application system method embodiment.

[0202] It should be noted that the specific structure of the above-mentioned parking space monitoring device 1601 can be seen from Figure 6 The specific structure of the example, the cloud platform 1602 can be seen from the illustration 6 example, and the related description will not be repeated here.

[0203] It should be noted that the above-mentioned multiple different embodiments are based on the same technical concept, and can realize all the method steps realized by the above-mentioned method embodiments, and can achieve the same technical effect, and the same parts and beneficial effects in this embodiment will not be repeated.

[0204] The above embodiments are only preferred embodiments for fully illustrating the present application, and the protection scope of the present application is not limited thereto. The equivalent replacement or transformation made by the person skilled in the art on the basis of the present application is within the protection scope of the present application.

Claims

1. A method for controlling home appliances based on vehicle monitoring, characterized in that: Applied to parking space monitoring equipment, the method includes: Obtaining start and stop information of at least one home appliance, the start and stop information including an activation time period and / or a deactivation time period of at least one home appliance, the activation time period being used to indicate a time period during which the cloud platform activates control of the home appliance, and the deactivation time period being used to indicate a time period during which the cloud platform stops controlling the home appliance; Determining the monitoring working time of the parking space monitoring device according to the start and stop information; During the monitoring working hours, vehicle monitoring information of the target vehicle is obtained and sent to the cloud platform. The vehicle monitoring information is used by the cloud platform to control the home appliance. The vehicle monitoring information includes vehicle monitoring information of the target vehicle parking in or out of a parking space.

2. The method according to claim 1, characterized in that Also includes: Determining a peak travel period based on historical travel data of an owner of the target vehicle, wherein the historical travel data is used to indicate scene entry data and scene exit data of the owner regarding the scene where the home device is located; The step of determining the monitoring working time of the parking space monitoring device according to the start / stop information includes: The monitoring working time of the parking space monitoring device is determined according to the start-stop information and the historical travel data.

3. The method according to claim 2, characterized in that The determining, based on the start / stop information and the historical travel data, of the monitoring working time of the parking space monitoring device includes: In response to detecting that the target time period is the peak travel time period, obtaining door status information of the target vehicle, the door status information including an open state and a closed state of a main driver's door; The enabling time period during which the vehicle door status information is monitored to be converted from an open state to a closed state, or the enabling time period during which the vehicle door status information is monitored to be converted from a closed state to an open state, is determined as the monitoring working time of the parking space monitoring device.

4. The method according to any one of claims 1 to 3, characterized in that The obtaining of start and stop information of at least one household appliance includes: In response to a setting operation for the smart home application system, start and stop information of at least one home appliance is obtained from the smart home application system.

5. The method according to claim 4, characterized in that The smart home application system includes a first interface for displaying a plurality of home appliances for which start and stop information can be set; The step of obtaining start / stop information of at least one home appliance from the smart home application system in response to a setting operation on the smart home application system includes: In response to a first trigger operation on at least one home device among the plurality of home devices in the first interface, determining the at least one home device as a start-stop device; wherein the first trigger operation includes a user selecting or clicking a first control related to the at least one home device in the first interface; The activation time period and / or stop time period of the start-stop device are obtained from the smart home application system to obtain the start-stop information.

6. The method according to claim 4, characterized in that The start-stop information also includes an activation scene and / or a stop scene of at least one home appliance, the start-stop scene is used to instruct the cloud platform to activate and control the device control scene corresponding to the home appliance and associated with the vehicle, and the stop scene is used to instruct the cloud platform to stop controlling the device control scene corresponding to the home appliance; the smart home application system includes a second interface, the second interface is used to display multiple device control scenes for which start-stop information can be set; The step of obtaining start / stop information of at least one home appliance from the smart home application system in response to a setting operation on the smart home application system includes: In response to a second trigger operation for at least one device control scene among the plurality of device control scenes in the second interface, determining to enable a scene and / or to disable a scene; wherein the second trigger operation comprises a user selecting or clicking a second control related to the at least one device control scene in the second interface; Obtain at least one home device related to the enabled scenario from the smart home application system to obtain the start and stop information.

7. The method according to claim 6, characterized in that The device control scenario includes at least one of the following: a vehicle parking into a parking space scenario, a vehicle parking out of a parking space scenario, and a predefined vehicle driving scenario.

8. The method according to any one of claims 1-3, 5 and 6, characterized in that: Determining the monitoring working time of the parking space monitoring device according to the start / stop information includes: Determining a monitoring working time of the parking space monitoring device according to a preset time before a start time in an activation time period of the at least one smart home device and a preset time after an end time in the activation time period; And / or, the monitoring working time of the parking space monitoring device is determined based on a preset time after the start time of the stop time period of the at least one smart home device and a preset time before the end time of the stop time period.

9. The method according to any one of claims 1-3, 5 and 6, characterized in that: Also includes: In response to monitoring a target vehicle parking into or out of the parking space, identifying identity information of the target vehicle; The obtaining of vehicle monitoring information of the target vehicle includes: When the identity information of the target vehicle is verified, the vehicle monitoring information of the target vehicle is obtained.

10. The method according to claim 9, characterized in that The identifying information of the target vehicle includes: Collecting the license plate number information of the target vehicle; Determine whether the license plate number information is consistent with the pre-stored license plate number information. If consistent, determine that the identity information verification of the target vehicle is passed.

11. A method for controlling home appliances based on vehicle monitoring, characterized in that: Applied to a cloud platform, the method includes: Obtaining start and stop information of at least one home appliance, the start and stop information including an activation time period and / or a deactivation time period of at least one home appliance, the activation time period being used to indicate a time period during which the cloud platform activates control of the home appliance, and the deactivation time period being used to indicate a time period during which the cloud platform stops controlling the home appliance; In response to vehicle monitoring information sent by the parking space monitoring device, the vehicle monitoring information includes whether the target vehicle is parked in or out of the parking space, and the operating status of the home appliance is controlled according to the vehicle monitoring information and the start-stop information.

12. The method according to claim 11, characterized in that The obtaining of start and stop information of at least one household appliance includes: In response to a setting operation for the smart home application system, start and stop information of at least one home appliance is obtained from the smart home application system.

13. The method according to claim 11 or 12, characterized in that Also includes: Obtain indoor monitoring information from home monitoring devices; The controlling the operating state of the home appliance according to the vehicle monitoring information and the start / stop information includes: The home appliance is controlled to be turned on or off according to the indoor monitoring information, the vehicle monitoring information and the start-stop information.

14. The method according to claim 13, wherein: There are multiple home monitoring devices, and the indoor monitoring information includes indoor monitoring information within the area corresponding to each home monitoring device; The controlling the turning on or off of the home appliance according to the indoor monitoring information, the vehicle monitoring information and the start / stop information includes: When the current time period is the activation time period, if the vehicle monitoring information indicates that the target vehicle is detected to be parked out, the smart home devices in the corresponding area are controlled to be turned off according to the area information in the indoor monitoring information where no indoor users are detected.

15. A method for controlling home appliances based on vehicle monitoring, characterized in that: Applied to a smart home application system, the method includes: In response to a setting operation for the smart home application system, start and stop information of at least one home appliance is determined; the start and stop information includes an activation time period and / or a deactivation time period of at least one home appliance, the activation time period is used to indicate a time period during which the cloud platform activates control of the home appliance, and the deactivation time period is used to indicate a time period during which the cloud platform stops controlling the home appliance; The start and stop information of the at least one home appliance is sent to the parking space monitoring device and the cloud platform.

16. A home appliance control device based on vehicle monitoring, characterized in that: Applied to parking space monitoring equipment, the device includes: a first acquisition module, configured to acquire start / stop information of at least one household appliance, wherein the start / stop information includes an activation time period and / or a deactivation time period of at least one household appliance, wherein the activation time period indicates a time period during which the cloud platform activates control of the household appliance, and the deactivation time period indicates a time period during which the cloud platform stops controlling the household appliance; A first determining module is used to determine the monitoring working time of the parking space monitoring device according to the start and stop information; The first acquisition module is further configured to acquire vehicle monitoring information of the target vehicle during the monitoring working time, wherein the vehicle monitoring information includes vehicle monitoring information of the target vehicle parking in or out of the parking space; The first sending module is used to send the vehicle monitoring information to the cloud platform, and the vehicle monitoring information is used by the cloud platform to control the home device.

17. A home appliance control device based on vehicle monitoring, characterized in that: Applied to a cloud platform, the device includes: a second acquisition module, configured to acquire start / stop information of at least one household appliance, wherein the start / stop information includes an activation time period and / or a deactivation time period of at least one household appliance, wherein the activation time period indicates a time period during which the cloud platform activates control of the household appliance, and the deactivation time period indicates a time period during which the cloud platform stops controlling the household appliance; A control module is used to respond to vehicle monitoring information sent by a parking space monitoring device, wherein the vehicle monitoring information includes whether a target vehicle is parked in or out of a parking space, and control the operating status of the home appliance according to the vehicle monitoring information and the start-stop information.

18. A home appliance control device based on vehicle monitoring, characterized in that: Applied to smart home application systems, the device includes: a second determining module, configured to determine, in response to a setting operation for the smart home application system, start / stop information of at least one home appliance; the start / stop information including an activation time period and / or a deactivation time period of at least one home appliance, the activation time period being used to indicate a time period during which the cloud platform activates control of the home appliance, and the deactivation time period being used to indicate a time period during which the cloud platform stops controlling the home appliance; The second sending module is used to send the start and stop information of the at least one home appliance to the parking space monitoring device and the cloud platform.

19. A home appliance control system based on vehicle monitoring, comprising a parking space monitoring device, a cloud platform and a smart home application system; wherein, The parking space monitoring device is used to execute the home appliance control method based on vehicle monitoring as described in any one of claims 1-8; the cloud platform is used to execute the home appliance control method based on vehicle monitoring as described in any one of claims 9-11, and the smart home application system is used to execute the home appliance control method based on vehicle monitoring as described in claim 12.

Citation Information

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