Intelligent device control method, apparatus, device, and storage medium

By interacting with the UWB signal of the smart device and the smart wearable system, the distance information between the user and the device is obtained, the target area and scene are determined, and the scene reminder mechanism is triggered. This solves the problem of repeated manual control by the user, realizes seamless operation of the smart device, and improves the user experience.

CN116347343BActive Publication Date: 2026-02-27GOERTEK INC
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Patent Information

Application Number
CN202310326782.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-27
Publication Date
2026-02-27
Estimated Expiration
2043-03-27

AI Technical Summary

Technical Problem

Users may habitually try to manually control their smart devices again without knowing that the devices have been controlled, leading to a poor user experience.

Method used

By using UWB signals between smart devices and smart wearable systems, distance information between the user and the device is obtained, the target area and scene are determined, and a scene reminder mechanism is triggered. Users can control smart devices to perform tasks and obtain the results through the smart wearable system.

Benefits of technology

It improves the convenience and intuitiveness of users controlling smart devices, enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses an intelligent device control method and device, equipment and a storage medium, and belongs to the technical field of device control. The application obtains distance information of a user and an intelligent device based on UWB signals transmitted between the intelligent device and an intelligent wearable system. The application determines a target area where the user is located and a target scene based on the distance information. The application triggers a scene reminding mechanism corresponding to the target scene in the intelligent wearable system based on the target area, so that the user controls the intelligent device to perform a task in the target scene through the intelligent wearable system and obtains an execution result. That is, the user can know the execution result of the intelligent device through the scene reminding mechanism of the intelligent wearable system, the user can conveniently perform a non-conscious operation on the intelligent device through the intelligent wearable system, and the experience of the user is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of device control, and particularly relates to a smart device control method and device, equipment and a storage medium. BACKGROUND

[0002] At present, the application of controlling smart devices through the UWB (Ultra Wide Band) module of a wearable device to realize high-precision positioning is increasingly widespread.

[0003] However, the control of smart devices involves multiple scenarios, and the control operation in some scenarios occurs, but the user cannot perceive it. Therefore, the user may habitually manually control the smart device again without knowing that the smart device has been controlled, so that the purpose of improving the user's convenient use of the smart device cannot be achieved, and the user experience is reduced. SUMMARY

[0004] The main purpose of the present application is to provide a smart device control method, device, equipment and storage medium, aiming to solve the technical problem of low user experience.

[0005] To achieve the above purpose, the present application provides a smart device control method, which comprises the following steps:

[0006] Based on the UWB signals transmitted between the smart device and the smart wearable system, distance information of the user and the smart device is obtained;

[0007] Based on the distance information, a target area where the user is located and a target scenario are determined;

[0008] Based on the target area, a scene reminding mechanism corresponding to the target scenario is triggered in the smart wearable system, so that the user controls the smart device to execute a task in the target scenario through the smart wearable system, and an execution result is obtained.

[0009] In a possible implementation manner of the present application, the distance information comprises a first static distance, and the step of determining the target area where the user is located based on the distance information comprises:

[0010] If the first static distance is less than a preset first distance, it is determined that the target area where the user is currently located is an operation area;

[0011] The step of triggering the scene reminding mechanism corresponding to the target scenario in the smart wearable system based on the target area comprises:

[0012] If the target region is an operation region, a scene reminding mechanism corresponding to the target scene is triggered in the smart wearable system, so that the user decides whether the smart device executes a task in the target scene based on the scene reminding of the smart wearable system.

[0013] In a possible implementation of the present application, if the first static distance is greater than a preset first distance, the target region where the user is currently located is determined as a sensing region. The step of triggering the scene reminding mechanism corresponding to the target scene in the smart wearable system based on the target region comprises:

[0014] If the target region is a sensing region, the smart device is controlled to execute a task in the target scene through the smart wearable system, and an execution result is displayed in the smart wearable system.

[0015] In a possible implementation of the present application, the smart device comprises a vehicle. The step of determining the target region where the user is located and the target scene based on the distance information comprises:

[0016] If the increasing speed of the first static distance is within a preset step speed range, the target scene where the user is currently located is determined as a getting-off scene;

[0017] The step of controlling the smart device to execute a task in the target scene through the smart wearable system if the target region is a sensing region, and displaying an execution result in the smart wearable system comprises:

[0018] After the first static distance increases to the preset first distance, the smart device is controlled to execute a lock vehicle task in the getting-off scene through the smart wearable system.

[0019] In a possible implementation of the present application, after the step of determining the target region where the user is located and the target scene based on the distance information, the method further comprises:

[0020] Obtaining travel schedule information of the user based on a travel schedule reminding in the smart wearable system;

[0021] Based on the change of the first static distance and the travel schedule information, whether an in-vehicle operation needs to be performed in advance is reminded in the smart wearable system, so that the smart device executes an operation task in the in-vehicle operation scene after the user triggers a confirmation instruction.

[0022] In a possible implementation of the present application, before the step of obtaining the distance information of the user and the smart device based on the UWB signal transmitted between the smart device and the smart wearable system, the method further comprises:

[0023] determine a second static distance between the user and the smart device based on a Bluetooth signal transmitted between the smart device and the smart wearable system;

[0024] If the second static distance is less than a preset second distance, respectively control a UWB module of the smart device and a UWB module of the smart wearable system to start working.

[0025] In a possible implementation of the present application, the smart wearable system includes a plurality of wearable devices, and after the step of triggering the scene reminding mechanism corresponding to the target scene in the smart wearable system based on the target area, the method further includes:

[0026] based on the wearing state of the plurality of wearable devices in the smart wearable system and a preset task allocation mechanism, allocate different reminding tasks in the scene reminding mechanism to the plurality of wearable devices respectively for processing corresponding reminding tasks, wherein the preset task allocation mechanism is determined based on the core functions of different wearable devices.

[0027] The present application also provides a smart device control device, which includes:

[0028] a first determination module configured to obtain distance information between a user and a smart device based on a UWB signal transmitted between the smart device and a smart wearable system;

[0029] a second determination module configured to determine a target area and a target scene in which the user is located based on the distance information;

[0030] a reminding module configured to trigger a scene reminding mechanism corresponding to the target scene in the smart wearable system based on the target area, so that the user controls the smart device to execute a task in the target scene through the smart wearable system and obtains an execution result.

[0031] The present application also provides a smart device control device, which includes a memory, a processor, and a smart device control program stored in the memory and executable on the processor, the smart device control program being configured to implement the steps of the smart device control method according to any one of the above.

[0032] The present application also provides a storage medium having a smart device control program stored thereon, the smart device control program being executable by a processor to implement the steps of the smart device control method according to any one of the above.

[0033] The application provides a smart device control method, compared with the prior art, the user may habitually manually control the smart device again without knowing that the smart device has been controlled, so that the purpose of improving the user's convenient use of the smart device cannot be achieved, and the user experience is reduced. Based on the UWB signal transmitted between the smart device and the smart wearable system, the distance information of the user and the smart device is obtained; based on the distance information, the target area and the target scene where the user is located are determined; based on the target area, the scene reminding mechanism corresponding to the target scene is triggered in the smart wearable system, so that the user controls the smart device to execute the task in the target scene through the smart wearable system, and obtains the execution result. That is, the user can understand the execution result of the smart device through the scene reminding mechanism of the smart wearable system, which facilitates the user to perform non-sensing operation on the smart device through the smart wearable system, and improves the user experience. BRIEF DESCRIPTION OF DRAWINGS

[0034] Figure 1 Flowchart of a first embodiment of a smart device control method of the application;

[0035] Figure 2 First scene diagram of the smart device control method of the first embodiment of the application;

[0036] Figure 3 Second scene diagram of the smart device control method of the first embodiment of the application;

[0037] Figure 4 Third scene diagram of the smart device control method of the first embodiment of the application;

[0038] Figure 5 Structure diagram of the smart device control device of the hardware running environment related to the embodiment scheme of the application;

[0039] Figure 6 Smart device control device diagram of the first embodiment of the application.

[0040] The implementation, functional features and advantages of the application will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION

[0041] It should be understood that the specific embodiments described herein are only used to explain the application and should not be used to limit the application. Although the terms first, second, third, etc. may be used herein to describe various information, these information should not be limited to these terms. These terms are only used to distinguish one type of information from another. For example, without departing from the scope of the present document, the first information can also be referred to as the second information, and similarly, the second information can also be referred to as the first information.

[0042] The embodiment of the present application provides a smart device control method, referring to Figure 1 In the embodiment, the smart device control method comprises the following steps:

[0043] Step S10: obtaining distance information of a user and a smart device based on UWB signals transmitted between the smart device and a smart wearable system;

[0044] Step S20: determining a target area and a target scene in which the user is based on the distance information;

[0045] Step S30: triggering a scene reminding mechanism corresponding to the target scene in the smart wearable system based on the target area, so that the user controls the smart device to execute a task in the target scene through the smart wearable system and obtains an execution result.

[0046] As an example, the smart device control method is applied to a smart device control apparatus, the smart device control apparatus belongs to a smart device control system, the smart device control system comprises a smart device and a smart wearable system, and the smart device control apparatus can be arranged in the smart device and / or the smart wearable system.

[0047] As an example, the smart device is a device with an automatic switch, in particular, the smart device can be a vehicle, a smart door or the like, and the specific type is not limited.

[0048] As an example, the smart device is internally provided with a UWB module and a Bluetooth communication module.

[0049] As an example, the smart wearable system is a system composed of at least one wearable device, in particular, the wearable device can be a smart watch, can also be an AR (Augmented Reality) device, can also be a TWS (True Wireless Stereo) or the like, in particular, the AR device can be AR glasses, can also be an AR helmet or the like, and the specific type is not limited.

[0050] As an example, the smart wearable system is composed of a smart watch and AR glasses.

[0051] As an example, as Figure 2As shown, the AR device is composed of a temple and a frame body, and the frame body is internally provided with a main chip / processor, a display module, a power module, an optical machine, a data communication module, a MIC, a SPK (Speaker, microphone), a GPS, a key, a sensor module, etc. The sensor module includes a motion sensor, an ambient light sensor, a proximity sensor, etc. The data communication module can be a Bluetooth communication module, and can also be a WIFI communication module, etc., and the specific implementation is not limited.

[0052] As an example, the UWB module can also be arranged on the AR glasses, and the AR glasses can establish data communication with the smart device through the Bluetooth communication module; the AR glasses are equipped with a display module for displaying the interaction result, and the AR glasses also have a MIC and a speaker for voice interaction.

[0053] As an example, as shown in Figure 3 As shown, the smart watch is composed of a wristband and a body, and the body is internally provided with a main chip / processor, a display module, a power module, a data communication module, a MIC (Microphone, microphone), a GPS, a key, a sensor module, a motor (LAR (Linear Resonance Actuator, linear resonance actuator), ERM (Eccentric Rotating Mass, eccentric rotating mass) and the like), etc. The sensor module includes a motion sensor, an ambient light sensor, a proximity sensor, an optical / optoelectronic sensor (for collecting PPG (photoplethysmographic, photoplethysmographic), blood oxygen or electrocardiogram data) and a UWB module.

[0054] As an example, the smart watch is internally provided with a UWB module and a Bluetooth communication module, and the UWB module is used for positioning the smart device. The smart watch can establish data communication with the AR glasses and the smart device through the Bluetooth communication module; the MIC and the speaker of the smart watch can perform voice interaction, and there is a display module for display or touch operation.

[0055] Specifically, the UWB module can be arranged on one wearable device in the smart wearable system, or on each wearable device in the smart wearable system, but only the UWB module on one of the wearable devices is kept in working state.

[0056] The embodiment aims to: through the scene reminding mechanism, the user controls the smart device to execute the task in the target scene through the smart wearable system, and obtains the execution result, so that the user's control of the smart device is more convenient and intuitive, and the user's use experience is improved.

[0057] The specific steps are as follows:

[0058] Step S10: obtaining distance information between the user and the smart device based on the UWB signal transmitted between the smart device and the smart wearable system;

[0059] As an example, the UWB module provides a record timestamp of the data frame transmission time between the smart device and the smart wearable system, so as to calculate the distance information between the user and the smart device.

[0060] As an example, the distance information includes static distance between the smart device and the smart wearable system at a certain moment, distance change rate per unit time, angle position information, etc., which is not limited.

[0061] Step S20: determining a target area and a target scene where the user is based on the distance information;

[0062] As an example, based on the static distance at the certain moment, the distance change rate per unit time, the angle position information, etc., the target area and the target scene where the user is can be inferred, the target area is the area where the user is, and the division of the area can be pre-set by the user or fixed, which is not limited.

[0063] Specifically, the target area can be a sensing area or an operation area, which is not limited.

[0064] As an example, the target scene can be getting off the car, getting on the car, taking things from the trunk, operating in the car such as ventilation or turning on the air conditioner, closing the door, opening the door, etc., which is not limited.

[0065] As an example, the target scene that can be recognized can be pre-set by the user.

[0066] Step S30: triggering a scene reminding mechanism corresponding to the target scene in the smart wearable system based on the target area, so that the user controls the smart device to execute a task in the target scene through the smart wearable system and obtains an execution result.

[0067] As an example, in the sensing area, the user cannot control the smart device to execute the task in the target scene through the smart wearable system, but the smart wearable system automatically controls the smart device to execute the task in the target scene; in the operation area, the user can selectively control the smart device to execute the task in the target scene through the smart wearable system.

[0068] Therefore, if the user is in the sensing area, the scene reminding mechanism corresponding to the target scene is not triggered, and only after the smart wearable system automatically controls the smart device to execute the task in the target scene, the user is reminded of the execution result; if the user is in the operation area, the scene reminding mechanism corresponding to the target scene is triggered in the smart wearable system to remind the user that the user can selectively control the smart device to execute the task in the target scene through the smart wearable system, and after the smart device is executed, the user is reminded of the execution result.

[0069] As an example, the scene reminding mechanism corresponding to the target scene is triggered in the smart wearable system, that is, the task in the target scene is reminded to the user through the vibration function or the display function of the wearable device.

[0070] In this embodiment, the step of determining the target area where the user is based on the distance information comprises:

[0071] Step A1: If the first static distance is less than a preset first distance, it is determined that the target area where the user is currently located is an operation area.

[0072] In this embodiment, the distance information comprises a first static distance.

[0073] As an example, the preset first distance can be pre-set by the user or fixed, and is not specifically limited.

[0074] As an example, if the first static distance is less than a preset first distance, it is determined that the target area where the user is currently located is an operation area, and if the first static distance is greater than the preset first distance, it is determined that the target area where the user is currently located is a sensing area.

[0075] As an example, the sensing area is a range in which the UWB module of the smart wearable system and the UWB module of the smart device can be inductively coupled, but in this area, the user cannot trigger the operation of unlocking or locking or opening the trunk, such as can be set to 10-20 meters, and the operation area is an area in which the user can control the smart device to perform the corresponding operation, and the operation includes but is not limited to unlocking the car, opening the trunk, locking the car, etc., such as being set to 0-10 meters.

[0076] The step of triggering the scene reminding mechanism corresponding to the target scene in the smart wearable system based on the target area comprises:

[0077] Step A2: If the target area is an operation area, the scene reminding mechanism corresponding to the target scene is triggered in the smart wearable system, so that the user decides whether the smart device executes the task in the target scene based on the scene reminding of the smart wearable system.

[0078] As an example, if the target region is an operation region, the target scene corresponding scene reminding mechanism is triggered in the smart wearable system, and the user can decide whether to execute the task in the target scene or not based on the scene reminding of the smart wearable system.

[0079] For example, if the user is reminded whether to turn on the air conditioner in the car in advance, the user can choose not to perform this task.

[0080] In this embodiment, the step of triggering the target scene corresponding scene reminding mechanism in the smart wearable system based on the target region comprises:

[0081] Step B1: If the target region is a sensing region, the smart wearable system controls the smart device to execute the task in the target scene, and displays the execution result in the smart wearable system.

[0082] In this embodiment, if the first static distance is greater than a preset first distance, it is determined that the target region where the user is currently located is a sensing region.

[0083] As an example, if the target region is a sensing region, the smart wearable system controls the smart device to execute the task in the target scene, and displays the execution result in the smart wearable system.

[0084] For example, if the user is in the sensing region, the smart wearable system controls the vehicle to lock, without reminding the user to confirm whether to lock, but reminding the user that the lock is completed after the lock is completed, so as to avoid the user from not knowing whether the door is locked or not, and manually locking the door to prevent accidents, which greatly improves the user experience.

[0085] As an example, as shown in Figure 4 When it is determined that the user enters the sensing region, the smart wearable system can remind the user of the current distance from the vehicle, and use special symbols and colors to distinguish the sensing region and the operation region.

[0086] As an example, when it is determined that the user enters the sensing region, the smart wearable system can remind the user that the current distance from the vehicle is 4.5m or 5m, and display special symbols (icons) and colors (gray or green, etc.) on the wearable device in the smart wearable system to distinguish the sensing region and the operation region, or simultaneously remind the user through the motor vibration of the wearable device in the smart wearable system, or simultaneously notify the user in the form of sound broadcast through the wearable device in the smart wearable system, etc. Similarly, when it is determined that the user enters the operation region, the smart wearable system can remind the user that the current distance from the vehicle is 1.5m or 1m, and perform the above prompting actions.

[0087] As an example, when it is judged that the user leaves the sensing area or leaves the operation area, the user can be reminded by the smart wearable system that the current distance from the vehicle is 4.5 m or 1.5 m, and a special symbol (icon) and color (gray or green, etc.) are displayed on the wearable device in the smart wearable system to distinguish the sensing area and the operation area, or the user is reminded by the motor vibration of the wearable device in the smart wearable system at the same time, or the user is informed in the form of voice broadcast by the wearable device in the smart wearable system at the same time, etc.

[0088] In this embodiment, the distance information of the user from the smart device is obtained based on the UWB signal transmitted between the smart device and the smart wearable system; the target area and the target scene where the user is located are determined based on the distance information; the scene reminding mechanism corresponding to the target scene is triggered in the smart wearable system based on the target area, so that the user controls the smart device to perform the task in the target scene through the smart wearable system, and obtains the execution result. That is, the user can understand the execution result of the smart device through the scene reminding mechanism of the smart wearable system, which facilitates the user to perform the operation on the smart device through the smart wearable system, and improves the user experience.

[0089] Further, based on the first embodiment in the present application, another embodiment of the present application is provided, in which the step of determining the target area and the target scene where the user is located based on the distance information comprises:

[0090] Step C1: If the increasing speed of the first static distance is within the preset step speed range, it is determined that the target scene where the user is currently located is a get-off scene.

[0091] As an example, the preset step speed range can be set by the user in advance or can be fixed. Specifically, the preset step speed range can be 1-1.5 m / s, etc., and is not limited in particular.

[0092] As an example, if the increasing speed of the first static distance is within the preset step speed range, it is determined that the target scene where the user is currently located is a get-off scene.

[0093] If the target area is a sensing area, the step of controlling the smart device to perform the task in the target scene through the smart wearable system and displaying the execution result in the smart wearable system comprises:

[0094] Step C2: After the first static distance increases to the preset first distance, the smart device is controlled to perform the task of locking the vehicle in the get-off scene through the smart wearable system.

[0095] As an example, after the first static distance increases to the preset first distance, the target area where the user is located is a sensing area, that is, the smart device can be controlled by the smart wearable system to perform the lock car task in the get-off scenario.

[0096] As an example, when the car is automatically locked, the state of the window can be confirmed, and the user is reminded whether to close the window. If the vehicle supports remote opening and closing of the window, the smart wearable system can be used to remotely control the vehicle to close the window.

[0097] As an example, if the reduction speed of the first static distance is within a preset step speed range, it is determined that the target scenario where the user is currently located is a get-on scenario. At this time, the car door can be automatically opened. If it is detected that the user arrives at the position of the trunk first, the user can be determined to want to open the trunk first when it is detected that the user is at a preset third distance (which can be preset by the user, and can be 0.5-1 meters, etc.) from the trunk. If the car supports the function of automatically opening the trunk, the trunk can be automatically opened without opening the car door. If it does not support, the car door is automatically opened first, and then the user is prompted to manually open the trunk.

[0098] In this embodiment, after the step of determining the target area where the user is located and the target scenario based on the distance information, the method further comprises:

[0099] Step S40: Obtain the travel schedule information of the user based on the travel schedule reminder in the smart wearable system.

[0100] As an example, if the car supports remote APP operation, the travel schedule information of the user can be obtained according to the travel schedule reminder of the user in the smart wearable system or the mobile phone application. For example, the user sets a travel schedule reminder of leaving at 6 pm to go to the airport, or leaving at 6 pm to go home, etc., which is not limited in detail.

[0101] As an example, the travel schedule information includes information such as travel time and travel destination.

[0102] Step S50: Remind whether the in-car operation needs to be performed in advance in the smart wearable system based on the change of the first static distance and the travel schedule information, so that the user triggers a confirmation instruction, and the smart device performs the operation task in the in-car operation scenario.

[0103] As an example, based on the change of the first static distance and the travel schedule information, it is determined whether the user is about to travel. If yes, the user is reminded in the smart wearable system whether the in-car operation such as turning on ventilation, turning on air conditioning, or heating the seat needs to be performed in advance. If the user confirms the operation, the corresponding operation is started in the scenario based on the selection of the user.

[0104] As an example, for example, based on the change of the first static distance, it is determined that the user is about to get on the vehicle, and the current time is close to the travel time in the user's travel schedule information, whether the user is about to travel is determined, at this time, the user is reminded whether to perform in-vehicle operation, a comfortable in-vehicle environment is provided for the user, and the user's use experience is improved.

[0105] In this embodiment, the user's needs are predicted for different scenarios, different reminder contents are triggered, the user can conveniently perform non-sensing operation through the intelligent wearable system and the intelligent device, and the user's hands are liberated to the greatest extent.

[0106] Further, based on the first and second embodiments, another embodiment of the present application is provided, in which, before the step of obtaining the distance information of the user and the intelligent device based on the UWB signal transmitted between the intelligent device and the intelligent wearable system, the method further comprises:

[0107] Step S60: determining a second static distance of the user and the intelligent device based on a Bluetooth signal transmitted between the intelligent device and the intelligent wearable system;

[0108] As an example, the second static distance of the user and the intelligent device can be determined based on the Bluetooth signal transmitted between the intelligent device and the intelligent wearable system, at this time, the distance between the intelligent device and the intelligent wearable system is far, in order to save the energy consumption of the intelligent wearable system, at this time, the UWB module has not started working.

[0109] Step S70: if the second static distance is less than a preset second distance, respectively controlling the UWB module of the intelligent device and the UWB module of the intelligent wearable system to start working.

[0110] As an example, if it is detected that the second static distance is less than the preset second distance, the UWB module of the intelligent device and the UWB module of the intelligent wearable system are respectively controlled to start working. The preset second distance can be preset by the user or fixed, specifically, it can be 50 meters or 100 meters, etc.

[0111] In this embodiment, the intelligent wearable system includes a plurality of wearable devices, and after the step of triggering the scene reminding mechanism corresponding to the target scene in the intelligent wearable system based on the target area, the method further comprises:

[0112] Step S80: based on the wearing state of the plurality of wearable devices in the smart wearable system, and a preset task allocation mechanism, different reminding tasks in the scene reminding mechanism are allocated to the plurality of wearable devices respectively, so that the plurality of wearable devices process the corresponding reminding tasks respectively, wherein the preset task allocation mechanism is determined based on the core function of different wearable devices.

[0113] As an example, the core function of the wearable device is that it can be worn on the wrist, and when a vibration reminder is sent on the wrist, it does not affect the user's wearing experience.

[0114] As an example, the core function of the AR device is to clearly display data to the user.

[0115] As an example, the core function of the TWS is to clearly play voice to the user.

[0116] As an example, the wearable devices being worn and working can be determined according to the Bluetooth communication module of the smart wearable system and the wearing detection module of each wearable device, and different reminding tasks are allocated based on the wearing state of the wearable devices in the smart wearable system.

[0117] As an example, the preset task allocation mechanism is a mechanism for determining the allocation of different reminding tasks based on the core function of different wearable devices. For example, if the wearable devices in the wearing state in the smart wearable system include a smart watch and AR glasses, text, icons and voice reminders are preferentially presented on the AR glasses, and vibration reminders are triggered on the smart watch. If the smart wearable system includes a smart watch and TWS, text, icons and vibration reminders are preferentially presented on the smart watch, and voice reminders are triggered on the TWS. If the smart wearable system only includes a smart watch or AR or TWS, all reminders are triggered only on the corresponding device. If there is no display, vibration or voice module, the corresponding module reminder is not triggered.

[0118] As an example, as shown in Figure 4 After the vehicle feedbacks the unlocking or locking result, an icon can be displayed on the wearable device, or the user can be notified by voice broadcast, or the user can be reminded by vibration.

[0119] In this embodiment, different reminding tasks in different scenes are allocated to different wearable devices in the wearing state, so as to give full play to the advantages of different devices and better complete the reminding task, and provide better use experience for the user.

[0120] Referring to Figure 5 , Figure 5 is a device structure diagram of a hardware running environment involved in the embodiment of the present application.

[0121] As Figure 5 shown, the smart device control device can include a processor 1001, a memory 1005, and a communication bus 1002. The communication bus 1002 is used to realize the connection communication between the processor 1001 and the memory 1005.

[0122] Optionally, the smart device control device can further include a user interface, a network interface, a camera, an RF (Radio Frequency) circuit, a sensor, a WiFi module, and the like. The user interface can include a display, an input sub-module such as a keyboard, and the optional user interface can further include a standard wired interface, a wireless interface. The network interface can include a standard wired interface, a wireless interface (such as a WI-FI interface).

[0123] Those skilled in the art can understand that Figure 5 the structure of the smart device control device shown in the above embodiments does not constitute a limitation on the smart device control device, and can include more or fewer components than shown, or combine certain components, or different component arrangements.

[0124] As Figure 5 shown, the memory 1005 as a storage medium can include an operating system, a network communication module, and a smart device control program. The operating system is a program that manages and controls the hardware and software resources of the smart device control device, supports the operation of the smart device control program and other software and / or programs. The network communication module is used to realize the communication between the components in the memory 1005, and the communication with other hardware and software in the smart device control system.

[0125] In Figure 5 the smart device control device shown, the processor 1001 is used to execute the smart device control program stored in the memory 1005, and realize the steps of the smart device control method described in any of the above embodiments.

[0126] The specific implementation of the smart device control device of the present application is basically the same as that of the above-mentioned smart device control method, and will not be repeated here.

[0127] The present application also provides a smart device control apparatus, as Figure 6 shown, the apparatus includes:

[0128] A first determination module 10 is configured to obtain distance information of a user and a smart device based on UWB signals transmitted between the smart device and a smart wearable system;

[0129] A second determination module 20 is configured to determine a target area and a target scene in which the user is located based on the distance information.

[0130] triggering a scene reminding mechanism corresponding to the target scene in the smart wearable system based on the target area, so as to control a smart device to execute a task in the target scene and obtain an execution result.

[0131] Optionally, in a possible implementation of the present application, the distance information includes a first static distance, and the second determining module 20 includes:

[0132] a first determining unit configured to determine that a target area where the user is currently located is an operation area if the first static distance is less than a preset first distance.

[0133] The triggering module 30 includes:

[0134] a triggering unit configured to trigger the scene reminding mechanism corresponding to the target scene in the smart wearable system if the target area is the operation area, so as to determine, based on a scene reminder of the smart wearable system, whether the smart device executes a task in the target scene.

[0135] Optionally, in a possible implementation of the present application, if the first static distance is greater than the preset first distance, the target area where the user is currently located is determined to be a sensing area, and the triggering module 30 further includes:

[0136] a control unit configured to control the smart device to execute a task in the target scene and display an execution result in the smart wearable system if the target area is the sensing area.

[0137] Optionally, in a possible implementation of the present application, the smart device includes a vehicle, and the second determining module 20 further includes:

[0138] a second determining unit configured to determine that a target scene where the user is currently located is a get-off scene if an increasing speed of the first static distance is within a preset step speed range.

[0139] The control unit is configured to control the smart device to execute a lock vehicle task in the get-off scene through the smart wearable system after the first static distance increases to the preset first distance.

[0140] Optionally, in a possible implementation of the present application, after the step of determining the target area and the target scene of the user based on the distance information, the apparatus further includes:

[0141] an obtaining module configured to obtain travel schedule information of the user based on a travel schedule reminder in the smart wearable system.

[0142] The reminding module is configured to remind whether the in-vehicle operation needs to be performed in advance in the smart wearable system based on the change of the first static distance and the travel schedule information, so that the smart device performs an operation task in the in-vehicle operation scenario after the user triggers a confirmation instruction.

[0143] Optionally, before the step of obtaining the distance information between the user and the smart device based on the UWB signal transmitted between the smart device and the smart wearable system, the apparatus further includes:

[0144] The third determining module is configured to determine a second static distance between the user and the smart device based on a Bluetooth signal transmitted between the smart device and the smart wearable system.

[0145] The control module is configured to control the UWB module of the smart device and the UWB module of the smart wearable system to start working if the second static distance is less than a preset second distance.

[0146] Optionally, in a possible implementation of the present application, the smart wearable system includes a plurality of wearable devices, and after the step of triggering the scene reminding mechanism corresponding to the target scene in the smart wearable system based on the target area, the apparatus further includes:

[0147] The distribution module is configured to distribute different reminding tasks in the scene reminding mechanism to the plurality of wearable devices based on the wearing state of the plurality of wearable devices in the smart wearable system and a preset task distribution mechanism, so that the plurality of wearable devices process corresponding reminding tasks respectively, wherein the preset task distribution mechanism is determined based on the core functions of different wearable devices.

[0148] The specific implementation of the smart device control apparatus of the present application is basically the same as that of the above-mentioned embodiments of the smart device control method, and thus will not be described herein again.

[0149] The present application further provides a storage medium having a smart device control program stored thereon, and the smart device control program, when executed by a processor, implements the steps of the smart device control method according to any one of the above-mentioned embodiments.

[0150] The specific implementation of the storage medium of the present application is basically the same as that of the above-mentioned embodiments of the smart device control method, and thus will not be described herein again.

[0151] It should be noted that, in this document, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises a" does not, without more constraints, exclude the presence of additional identical elements in the process, method, article, or apparatus that comprises the element.

[0152] The above-mentioned sequence numbers of the embodiments of the present application are only for description, and do not represent advantages or disadvantages of the embodiments.

[0153] From the above description of the embodiments, those skilled in the art can clearly understand that the above-mentioned embodiment methods can be realized by means of software and a general hardware platform, and of course, can also be realized by hardware, but in many cases, the former is a better embodiment. Based on such understanding, the technical solutions of the present application can be embodied in the form of a software product, which is stored in a storage medium (such as a ROM / RAM, a magnetic disk, or an optical disk) and includes a plurality of instructions for causing a terminal device (which can be a mobile phone, a computer, a server, an air conditioner, or a network device) to execute the methods described in the various embodiments of the present application.

[0154] The above is only a preferred embodiment of the present application, and does not limit the patent scope of the present application, and any equivalent structure or equivalent process transformation using the content of the specification and drawings, or direct or indirect application in other related technical fields, are also included in the patent protection scope of the present application.

Claims

1. A method for controlling an intelligent device, characterized in that, The intelligent device control method includes the following steps: Based on the UWB signals transmitted between the smart device and the smart wearable system, the distance information between the user and the smart device is obtained; Based on the distance information, the target area and target scene where the user is located are determined. The target area includes a sensing area and an operation area. The distance information includes a first static distance. If the first static distance is less than the preset first distance, the target area where the user is currently located is determined to be the operation area; if the first static distance is greater than the preset first distance, the target area where the user is currently located is determined to be the sensing area. If the user is within the sensing area, the smart wearable system controls the smart device to execute tasks in the target scene without triggering the scene reminder mechanism corresponding to the target scene. After the smart wearable system automatically controls the smart device to execute the tasks in the target scene, the execution result is displayed in the smart wearable system to remind the user of the result. Within the sensing area, the user cannot control the smart device to execute tasks in the target scene through the smart wearable system. The sensing area and the operation area are distinguished using special symbols and colors. Alternatively, if the user is within the operating area, the scene reminder mechanism corresponding to the target scene will be triggered in the smart wearable system. Based on the scene reminder mechanism, the user can selectively control the smart device to perform tasks in the target scene through the smart wearable system, and the user will be reminded of the execution result after the smart device has completed the execution.

2. The intelligent device control method as described in claim 1, characterized in that, The smart device includes a vehicle, and the step of determining the user's target area and target scene based on the distance information includes: If the rate of increase of the first static distance is within the preset walking speed range, then the user's current target scenario is determined to be the disembarkation scenario; The step of controlling the smart device to perform a task in the target scene through the smart wearable system and displaying the execution result in the smart wearable system if the target area is a sensing area includes: After the first static distance increases to the preset first distance, the smart wearable system controls the smart device to perform the car locking task in the alighting scenario.

3. The intelligent device control method as described in claim 1, characterized in that, After determining the user's target area and target scene based on the distance information, the method further includes: Based on travel schedule reminders in smart wearable systems, obtain users' travel schedule information; Based on the change in the first static distance and the travel schedule information, the smart wearable system reminds the user whether in-vehicle operations need to be performed in advance. After the user triggers a confirmation command, the smart device executes the operation tasks in the in-vehicle operation scenario.

4. The intelligent device control method as described in claim 1, characterized in that, Before the step of obtaining the distance information between the user and the smart device based on the UWB signal transmitted between the smart device and the smart wearable system, the method further includes: A second static distance between the user and the smart device is determined based on the Bluetooth signal transmitted between the smart device and the smart wearable system. If the second static distance is less than the preset second distance, then the UWB module of the smart device and the UWB module of the smart wearable system are controlled to start working respectively.

5. The intelligent device control method as described in claim 1, characterized in that, The smart wearable system includes various wearable devices. After the step of triggering a scene reminder mechanism corresponding to the target scene in the smart wearable system based on the target area, the method further includes: Based on the wearing status of various wearable devices in the smart wearable system and the preset task allocation mechanism, different reminder tasks in the scene reminder mechanism are assigned to the various wearable devices respectively, so that the various wearable devices can handle the corresponding reminder tasks respectively. The preset task allocation mechanism is determined based on the core functions of different wearable devices.

6. A smart device control device, characterized in that, The device includes: The first determining module is used to obtain distance information between the user and the smart device based on the UWB signal transmitted between the smart device and the smart wearable system. The second determining module is used to determine the target area and target scene where the user is located based on the distance information. The target area includes a sensing area and an operation area. The distance information includes a first static distance. If the first static distance is less than a preset first distance, the target area where the user is currently located is determined to be the operation area. If the first static distance is greater than the preset first distance, the target area where the user is currently located is determined to be the sensing area. The reminder module is also used to, if the user is within the sensing area, control the smart device through the smart wearable system to execute the task in the target scene without triggering the scene reminder mechanism corresponding to the target scene. After the smart wearable system automatically controls the smart device to execute the task in the target scene, the execution result is displayed in the smart wearable system to remind the user of the execution result. Within the sensing area, the user cannot control the smart device through the smart wearable system to execute the task in the target scene. The sensing area and the operation area are distinguished using special symbols and colors. Alternatively, if the user is within the operation area, the scene reminder mechanism corresponding to the target scene is triggered in the smart wearable system, allowing the user to selectively control the smart device through the smart wearable system to execute the task in the target scene based on the scene reminder mechanism, and to remind the user of the execution result after the smart device completes the execution.

7. A smart device control device, characterized in that, The device includes: a memory, a processor, and a smart device control program stored in the memory and executable on the processor, the smart device control program being configured to implement the steps of the smart device control method as described in any one of claims 1 to 5.

8. A storage medium, characterized in that, The storage medium stores a smart device control program, which, when executed by a processor, implements the steps of the smart device control method as described in any one of claims 1 to 5.

Citation Information

Patent Citations

  • Anti-theft control method and device

    CN113085780A

  • Wearable device and data processing method thereof

    CN115665315A