Host equipment control method and device, equipment and medium

Through the wearable device detecting and transmitting user action information to control the host device, the problem of vulnerability to the host device controller and low detection accuracy is solved, and the user experience and control accuracy are improved.

CN120029440APending Publication Date: 2025-05-23BEIJING XIAOMI MOBILE SOFTWARE CO LTD
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Patent Information

Application Number
CN202311566745.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-22
Publication Date
2025-05-23

AI Technical Summary

Technical Problem

The host device controller is easily damaged during user operation, resulting in poor user experience and low detection accuracy, making it easy to touch buttons by mistake.

Method used

User action information is detected through wearable devices and sent to communication devices to control the host device to achieve stable wear and high-precision action information detection, avoid damage and improve control accuracy.

Benefits of technology

Improves user experience and host device control accuracy, reducing the risk of equipment damage and operational errors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a host equipment control method and device, equipment and a medium. The host equipment control method comprises the following steps: detecting action information of a user; the action information is sent to the communication equipment, so that the communication equipment sends the action information to the host equipment, and the action information is used for controlling the host equipment; and the host device displays the picture content associated with the action information on the target screen in response to the action information. Since the wearable device can be stably worn, the wearable device is not easy to fall off to avoid damage in the process of controlling the host device by movement of the user, so that the use experience of the user is improved. Meanwhile, as the wearable equipment is worn on the body of the user, the accuracy of action information detection is high, and the accuracy of host equipment control is improved.
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Description

Technical Field

[0001] The present disclosure relates to the field of control technology, and in particular to a host device control method, device, equipment and medium. Background Art

[0002] Currently, when a user operates a somatosensory application through a host device controller, the host device controller is easily damaged, resulting in a poor user experience. Summary of the invention

[0003] In order to overcome the problems existing in the related art, the present disclosure provides a host device control method, apparatus, device and medium.

[0004] According to a first aspect of an embodiment of the present disclosure, a host device control method is provided, which is applied to a wearable device. The host device control method includes:

[0005] Detect user's action information;

[0006] Sending the action information to a communication device, so that the communication device sends the action information to a host device, wherein the action information is used to control the host device;

[0007] The host device displays the screen content associated with the action information on the target screen in response to the action information.

[0008] In some embodiments of the present disclosure, before detecting the user's motion information, the host device control method further includes:

[0009] In response to the first test information sent by the communication device, sending first response information to the communication device;

[0010] So that the communication device determines a first transmission delay between itself and the wearable device, and establishes a wireless communication connection with the host device when the first transmission delay is less than a first preset delay.

[0011] In some embodiments of the present disclosure, after sending the first response information to the communication device, the host device control method further includes:

[0012] After the communication device establishes a wireless communication connection with the host device, in response to the second test information sent by the communication device, sending second response information to the communication device, so that the communication device sends the second response information to the host device;

[0013] So that the host device determines the second transmission delay between itself and the wearable device, and displays the logo of the wearable device on the target screen when the second transmission delay is less than the second preset delay, and displays a prompt message on the target screen when the second transmission delay is greater than or equal to the second preset delay.

[0014] In some embodiments of the present disclosure, after sending the first response information to the communication device, the host device control method further includes:

[0015] When the communication device and the host device do not establish a wireless communication connection, in response to the first test information re-sent by the communication device, the first response information is re-sent to the communication device;

[0016] After the distance between the wearable device and the communication device changes, the communication device re-determines the first transmission delay between the wearable device and the communication device, and establishes a wireless communication connection with the host device when the first transmission delay is less than the first preset delay.

[0017] In some embodiments of the present disclosure, before detecting the user's motion information, the host device control method further includes:

[0018] In response to the simulation instruction sent by the communication device, turning on a target sensor that detects motion information in the action information;

[0019] so that the host device displays a picture content associated with the motion information on the target screen in response to the motion information, wherein the motion information is used to represent a motion speed and / or a motion direction; and / or,

[0020] In response to the simulation instruction sent by the communication device, mapping the buttons of the host device controller to the screen of the wearable device;

[0021] so that the host device displays screen content associated with the touch operation on the target screen in response to the user's touch operation on the button; and / or,

[0022] In response to the simulation instruction sent by the communication device, displaying a preset interface on the screen of the wearable device;

[0023] The host device responds to the user's gesture operation on the preset interface and displays the screen content associated with the gesture operation on the target screen.

[0024] In some embodiments of the present disclosure, after mapping the buttons of the host device controller to the screen of the wearable device, the host device control method further includes:

[0025] In response to a user's touch operation on the key, sending key information corresponding to the touch operation to the communication device, so that the communication device sends the key information to the host device;

[0026] so that the host device displays the screen content associated with the key information on the target screen in response to the key information; and / or,

[0027] After displaying the preset interface on the screen of the wearable device, the host device control method further includes:

[0028] In response to a user's gesture operation on the preset interface, sending gesture information corresponding to the gesture operation to the communication device, so that the communication device sends the gesture information to the host device;

[0029] The host device displays screen content associated with the gesture information on the target screen in response to the gesture information.

[0030] In some embodiments of the present disclosure, when the picture displayed on the target screen includes a selection interface of a host device controller, sending the action information to the communication device includes:

[0031] sending the action information for selecting a target host device controller to a communication device;

[0032] The host device selects a target host device controller corresponding to the action information on the target screen in response to the action information.

[0033] In some embodiments of the present disclosure, the host device control method further includes:

[0034] In response to the vibration information sent by the communication device, the vibration of the motor in the wearable device is controlled according to the vibration information.

[0035] According to a second aspect of an embodiment of the present disclosure, a host device control method is provided, which is applied to a communication device, and the host device control method includes:

[0036] In response to a first operation by a user, establishing a wireless communication connection with a host device;

[0037] The motion information transmitted by the wearable device is sent to the host device to control the host device.

[0038] In some embodiments of the present disclosure, establishing a wireless communication connection with a host device includes:

[0039] Sending first test information to the wearable device;

[0040] In response to first response information sent by the wearable device, determining a first transmission delay between the wearable device and the wearable device;

[0041] If the first transmission delay is less than a first preset delay, a wireless communication connection is established with the host device.

[0042] In some embodiments of the present disclosure, after establishing a wireless communication connection with the host device, the host device control method further includes:

[0043] Sending the second test information transmitted by the host device to the wearable device;

[0044] sending second response information transmitted by the wearable device to the host device, wherein the second response information is used to determine a second transmission delay between the host device and the wearable device; and / or,

[0045] Sending a simulation instruction to the wearable device.

[0046] In some embodiments of the present disclosure, after establishing a wireless communication connection with the host device, the host device control method further includes:

[0047] sending the motion information transmitted by the wearable device to the host device, and controlling the host device with the motion information; and / or,

[0048] sending the key information transmitted by the wearable device to the host device, and controlling the host device with the key information; and / or,

[0049] sending the gesture information transmitted by the wearable device to the host device, and controlling the host device with the gesture information; and / or,

[0050] The vibration information transmitted by the host device is sent to the wearable device, and the wearable device is controlled by the vibration information.

[0051] According to a third aspect of an embodiment of the present disclosure, a host device control method is provided, which is applied to a host device, and the host device control method includes:

[0052] establishing a wireless communication connection with a communication device;

[0053] In response to the action information sent by the communication device, the screen content associated with the action information is displayed on the target screen.

[0054] According to a fourth aspect of an embodiment of the present disclosure, a host device control apparatus is provided, which is applied to a wearable device, and the host device control apparatus includes:

[0055] A detection module, configured to detect user action information;

[0056] A first sending module is configured to send the action information to a communication device, so that the communication device sends the action information to a host device, and the action information is used to control the host device;

[0057] The host device displays the screen content associated with the action information on the target screen in response to the action information.

[0058] According to a fifth aspect of an embodiment of the present disclosure, a host device control device is provided, which is applied to a communication device, and the host device control device includes:

[0059] A first communication module is configured to establish a wireless communication connection with a host device in response to a first operation of a user;

[0060] The second sending module is configured to send the action information transmitted by the wearable device to the host device to control the host device.

[0061] According to a sixth aspect of an embodiment of the present disclosure, a host device control apparatus is provided, which is applied to a host device, and the host device control apparatus includes:

[0062] A second communication module is configured to establish a wireless communication connection with a communication device;

[0063] The display module is configured to display the screen content associated with the action information on the target screen in response to the action information sent by the communication device.

[0064] According to a seventh aspect of an embodiment of the present disclosure, a wearable device is provided, the wearable device comprising:

[0065] processor;

[0066] a memory for storing instructions executable by the processor;

[0067] Wherein, the processor is configured to execute the host device control method as described above.

[0068] According to an eighth aspect of an embodiment of the present disclosure, a communication device is provided, the communication device comprising:

[0069] processor;

[0070] a memory for storing instructions executable by the processor;

[0071] Wherein, the processor is configured to execute the host device control method as described above.

[0072] According to a ninth aspect of an embodiment of the present disclosure, a host device is provided, the host device comprising:

[0073] processor;

[0074] a memory for storing instructions executable by the processor;

[0075] Wherein, the processor is configured to execute the host device control method as described above.

[0076] According to the tenth aspect of an embodiment of the present disclosure, a non-temporary computer-readable storage medium is provided, and when instructions in the storage medium are executed by a processor of a terminal, the terminal is enabled to execute the host device control method as described above.

[0077] The technical solution provided by the embodiments of the present disclosure may have the following beneficial effects:

[0078] In the process of controlling the host device, the user's motion information is detected to determine the user's intended operation. The motion information is sent to the communication device, so that the communication device sends the motion information to the host device, and the host device is controlled by the motion information. In response to the motion information, the host device displays the screen content associated with the motion information on the target screen to realize the control of the host device by the wearable device. Since the wearable device can be worn stably, it is not easy to fall off during the process of the user's motion control of the host device to avoid damage, thereby improving the user experience. At the same time, since the wearable device is worn on the user's body, the accuracy of motion information detection is high, thereby improving the accuracy of host device control.

[0079] It is to be understood that the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the present disclosure. BRIEF DESCRIPTION OF THE DRAWINGS

[0080] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present disclosure and, together with the description, serve to explain the principles of the present disclosure.

[0081] Figure 1 is a flowchart of a host device control method according to an exemplary embodiment;

[0082] Figure 2-1is a schematic structural diagram of a host device controller according to an exemplary embodiment;

[0083] Figure 2-2 is a schematic structural diagram of a wearable device according to an exemplary embodiment;

[0084] Figure 3 is a flowchart of a host device control method according to another exemplary embodiment;

[0085] Figure 4 is a flowchart of a host device control method according to another exemplary embodiment;

[0086] Figure 5 is a schematic diagram of a scenario in which a wearable device controls a host device according to an exemplary embodiment;

[0087] Figure 6 is a flowchart of a host device control method according to another exemplary embodiment;

[0088] Figure 7 is a flowchart of a host device control method according to another exemplary embodiment;

[0089] Figure 8 is a flowchart of a host device control method according to another exemplary embodiment;

[0090] Fig. 9 is a flowchart of a host device control method according to another exemplary embodiment;

[0091] Fig.10 is a flowchart of a host device control method according to another exemplary embodiment;

[0092] Fig.11 is a flowchart of a host device control method according to another exemplary embodiment;

[0093] Fig.12 is a flowchart of a host device control method according to another exemplary embodiment;

[0094] Fig.13 is a block diagram of a host device control apparatus according to an exemplary embodiment;

[0095] Fig.14 is a block diagram of a host device control apparatus according to another exemplary embodiment;

[0096] Fig.15 is a block diagram of a host device control apparatus according to another exemplary embodiment;

[0097] Fig.16 is a block diagram of an electronic device according to an exemplary embodiment.

[0098] In the figure:

[0099] 10-host device controller; 20-wearable device; 30-communication device; 40-routing device; 50-host device; 100-detection module; 110-first sending module; 200-first communication module; 210-second sending module; 300-second communication module; 310-display module; 400-electronic device; 402-processing component; 404-memory; 406-power component; 408-multimedia component; 410-audio component; 412-input and output interface; 414-sensor component; 416-communication component; 420-processor. DETAILED DESCRIPTION

[0100] Exemplary embodiments will be described in detail herein, examples of which are shown in the accompanying drawings. When the following description refers to the drawings, the same numbers in different drawings represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present disclosure. Instead, they are merely examples of devices and methods consistent with some aspects of the present disclosure as detailed in the appended claims.

[0101] In the related art, with the continuous development of host devices, somatosensory applications can enable users to feel the fun of the application while exercising, and are favored by the majority of users. Users can make corresponding operations through the host device controller according to the screen displayed in the display device connected to the host device to obtain corresponding scores. The scores in the somatosensory application can be used for ranking, collecting corresponding props in the application, etc. Since the host device controller needs to be held in hand for operation, there may be problems of falling off and bumping during the movement, causing damage to the host device controller. In addition, the host device controller does not have a waterproof function. If the user's sweat flows into the host device controller or the host device controller enters water when it falls off, it will cause damage to the host device controller. At the same time, because the user holds the host device controller in hand to operate, the accuracy of the host device controller to capture the user's motion information is low and the buttons may be accidentally touched, resulting in inaccurate application control.

[0102] In order to solve the above technical problems, the present disclosure provides a host device control method, which controls the host device through a wearable device, and the wearable device is not easy to fall off to avoid damage, thereby improving the user experience. Since the wearable device has a waterproof function, the user's sweat will not damage the wearable device, thereby improving the user experience. At the same time, since the wearable device is worn on the user's body without holding it, the action information can be accurately detected and no button is accidentally touched, thereby improving the accuracy of the host device control. In addition, since the wearable device is a communication device commonly used by users, by integrating the application control function, there is no need to purchase it additionally to reduce the user's usage cost.

[0103] The present disclosure provides a host device control method, which is applied to a wearable device, such as Figure 1 As shown, the method includes:

[0104] S200: Detect user's action information.

[0105] S300: Send action information to a communication device, so that the communication device sends the action information to a host device, where the action information is used to control the host device.

[0106] The host device displays the screen content associated with the action information on the target screen in response to the action information.

[0107] In this embodiment, in the process of controlling the host device, the user's motion information is detected to determine the user's intended operation. The motion information is sent to the communication device, so that the communication device sends the motion information to the host device, and the host device is controlled by the motion information. In response to the motion information, the host device displays the screen content associated with the motion information on the target screen to achieve the control of the host device by the wearable device. Since the wearable device can be worn stably, it is not easy to fall off during the process of the user's motion control of the host device to avoid damage, thereby improving the user experience. At the same time, since the wearable device is worn on the user's body, the accuracy of motion information detection is high, thereby improving the accuracy of host device control.

[0108] Exemplarily, the detection of the user's motion information in step S200 can be performed by detecting the user's motion and heart rate through a six-axis sensor, a heart rate sensor, etc. in the wearable device, or by detecting the user's touch operations, gesture operations, etc. performed on the screen of the wearable device.

[0109] Exemplarily, sending the motion information to the communication device in step S300 may be sending the motion information directly to the communication device, or may be sending the motion information to a preset application of the communication device. The preset application may be an application related to sports, an application related to health, etc. The wearable device may be, for example, a bracelet, a watch, etc. The communication device may be, for example, a mobile phone, a laptop, a tablet computer, etc.

[0110] Exemplarily, the target screen may be a screen of a host device, or a screen of a display device connected to the host device.

[0111] In one embodiment, before detecting the user's motion information in step S200, the host device control method further includes:

[0112] In response to the first test information sent by the communication device, first response information is sent to the communication device, so that the communication device determines a first transmission delay between the communication device and the wearable device.

[0113] So that the communication device determines a first transmission delay between the communication device and the wearable device, and establishes a wireless communication connection with the host device when the first transmission delay is less than a first preset delay.

[0114] In this embodiment, when the user needs to control the host device through the wearable device simulating the host device controller, the communication device is operated to start the function of simulating the host device controller. In order to avoid poor user experience due to transmission delay, before simulating the host device controller through the wearable device, the first transmission delay between the communication device and the wearable device is tested. In response to the first test information sent by the communication device, the first response information corresponding to the first test information is sent to the communication device, and the communication device can determine the first transmission delay according to the time of sending the first test information and receiving the first response information. When the first transmission delay is less than the first preset delay, the first transmission delay is low and will not affect the user's experience, and the communication device establishes a wireless communication connection with the host device. By establishing a wireless communication connection between the communication device and the host device after the first transmission delay meets the delay requirement, it is avoided that the user cannot control the host device in the expected manner due to high delay, thereby improving the user's experience and the reliability of the host device control.

[0115] In one embodiment, after sending the first response information to the communication device in the above step, the host device control method further includes:

[0116] After the communication device establishes a wireless communication connection with the host device, in response to the second test information sent by the communication device, the second response information is sent to the communication device, so that the communication device sends the second response information to the host device.

[0117] So that the host device determines the second transmission delay between itself and the wearable device, and displays the wearable device logo on the target screen when the second transmission delay is less than the second preset delay, and displays a prompt message on the target screen when the second transmission delay is greater than or equal to the second preset delay.

[0118] In this embodiment, since there is a certain delay when the communication device and the host device communicate wirelessly, before simulating the host device controller through the wearable device, the host device tests the second transmission delay between the host device and the wearable device. In response to the second test information sent by the communication device, the second response information corresponding to the second test information is sent to the communication device. Since the communication device transmits the second test information and the second response information between the host device and the wearable device, the host device can determine the second transmission delay according to the time of sending the second test information and receiving the second response information, and display the logo of the wearable device or display prompt information when the second transmission delay is different. By receiving the second test information and sending the second response information, the host device determines whether the second transmission delay affects the user experience, thereby improving the reliability of the host device control.

[0119] Exemplarily, the first test information and the second test information may include a data packet for testing delay, and the first response information and the second response information may include a data packet for responding to the test delay. The first test information and the second test information may be the same or different. The first response information and the second response information may be the same or different.

[0120] Exemplarily, the prompt information may be information that prompts the user that the delay between the wearable device and the host device is too high and the experience is poor, or it may be information that prompts the user to change the network connection between the communication device and the host device.

[0121] Exemplarily, before sending the first response information to the communication device in the above step, the host device control method further includes:

[0122] A wireless communication connection is established with a communication device.

[0123] The wireless communication connection may be a Bluetooth communication connection, or a near field communication connection, etc.

[0124] In one embodiment, after sending the first response information to the communication device in the above step, the host device control method further includes:

[0125] When the communication device and the host device do not establish a wireless communication connection, in response to the first test information re-sent by the communication device, the first response information is re-sent to the communication device.

[0126] After the distance between the wearable device and the communication device changes, the communication device re-determines the first transmission delay between the wearable device and the communication device, and establishes a wireless communication connection with the host device when the first transmission delay is less than the first preset delay.

[0127] In this embodiment, since the distance between the wearable device and the communication device may affect the size of the first transmission delay, when the first transmission delay is greater than or equal to the first preset delay, the communication device determines that the delay of controlling the host device with the wearable device is high and does not establish a wireless communication connection with the host device. The user will change the distance between the wearable device and the communication device to improve the first transmission delay, and the wearable device will also receive the first test information sent by the communication device at least once and send the first response information to the communication device. Until the first transmission delay is less than the first preset delay, the communication device will establish a wireless communication connection with the host device so that the wearable device can control the host device. By sending the first response information to the communication device again in response to the user changing the distance between the wearable device and the communication device, the delay between the wearable device and the communication device is reduced, thereby improving the user experience.

[0128] In one embodiment, before detecting the user's motion information in step S200, the host device control method further includes:

[0129] In response to the simulation instruction sent by the communication device, a target sensor for detecting motion information in the motion information is turned on.

[0130] The host device displays the picture content associated with the motion information on the target screen in response to the motion information, and the motion information is used to represent the motion speed and / or motion direction.

[0131] In this embodiment, before the wearable device detects the user's motion information, the communication device sends a simulation instruction to the wearable device, so that the wearable device simulates the host device controller. In response to the simulation instruction sent by the communication device, the target sensor for detecting motion information is turned on to detect the user's motion information to control the host device. By controlling the host device with the motion information detected by the target sensor, the host device can operate the somatosensory application according to the speed and direction of the user's motion, thereby improving the user's experience.

[0132] Exemplarily, the target sensor may be a six-axis sensor, a heart rate sensor, etc. in a wearable device.

[0133] In one embodiment, before detecting the user's motion information in step S200, the host device control method further includes:

[0134] In response to the simulation instruction sent by the communication device, the buttons of the host device controller are mapped to the screen of the wearable device.

[0135] The host device can respond to the user's touch operation on the key and display the screen content associated with the touch operation on the target screen.

[0136] In this embodiment, before the wearable device detects the user's motion information, the communication device sends a simulation instruction to the wearable device, so that the wearable device simulates the host device controller. In response to the simulation instruction sent by the communication device, the buttons of the host device controller are mapped to the screen of the wearable device, and the user can control the host device by touching the buttons. By controlling the host device by touching the buttons, it is avoided that the somatosensory application is misoperated by the speed and direction of the user's movement, thereby improving the user experience.

[0137] For example, Figure 2-1 and Figure 2-2 As shown, in the above step, mapping the buttons of the host device controller to the screen of the wearable device can be mapping all or part of the buttons of the host device controller 10 to the screen of the wearable device 20. When the number of wearable devices 20 is the same as the number of host device controllers 10, the buttons can be mapped in a one-to-one correspondence between the wearable devices 20 and the host device controllers 10. When the number of wearable devices 20 is different from the number of host device controllers 10, the host device controller 10 to which the buttons need to be mapped can be selected, and the buttons of the host device controller 10 can be mapped to the screen of the wearable device 20.

[0138] In one embodiment, before detecting the user's motion information in step S200, the host device control method further includes:

[0139] In response to the simulation instruction sent by the communication device, a preset interface is displayed on the screen of the wearable device.

[0140] The host device responds to the user's gesture operation on the preset interface and displays the screen content associated with the gesture operation on the target screen.

[0141] In this embodiment, before the wearable device detects the user's motion information, the communication device sends a simulation instruction to the wearable device, so that the wearable device simulates the host device controller. In response to the simulation instruction sent by the communication device, a preset interface is displayed on the screen of the wearable device, and the user can control the host device through gesture operations on the preset interface. By controlling the host device through gesture operations on the preset interface, it is avoided that the somatosensory application is misoperated with the speed and direction of the user's movement, thereby improving the user experience.

[0142] In one embodiment, after mapping the buttons of the host device controller to the screen of the wearable device in the above step, the host device control method further includes:

[0143] In response to the user's touch operation on the key, the key information corresponding to the touch operation is sent to the communication device, so that the communication device sends the key information to the host device.

[0144] The host device displays the screen content associated with the key information on the target screen in response to the key information.

[0145] In this embodiment, after the buttons of the host device controller are mapped to the screen of the wearable device, the user can control the host device by touching the buttons on the screen of the wearable device. Since the user controls the host device through the buttons on the screen of the wearable device, it is avoided that it is difficult to control the host device only by relying on motion information, thereby improving the reliability of the host device control. At the same time, since the buttons of the host device controller are mapped to the screen of the wearable device, it is avoided that the physical buttons are damaged due to an increase in the number of operations, thereby reducing the user's usage cost.

[0146] In one embodiment, after displaying the preset interface on the screen of the wearable device in the above step, the host device control method further includes:

[0147] In response to a user's gesture operation on a preset interface, gesture information corresponding to the gesture operation is sent to the communication device, so that the communication device sends the gesture information to the host device.

[0148] The host device displays the screen content associated with the gesture information on the target screen in response to the gesture information.

[0149] In this embodiment, after the preset interface is displayed on the screen of the wearable device, the user can control the host device through gesture operations on the preset interface. Since the user can control the host device through gestures, it is avoided that it is difficult to control the host device only by relying on motion information, thereby improving the reliability of the host device control.

[0150] In one embodiment, when the screen displayed on the target screen includes a selection interface of a host device controller, sending the action information to the communication device in step S300 includes:

[0151] The action information for selecting the target host device controller is sent to the communication device.

[0152] The host device selects a target host device controller corresponding to the action information on the target screen in response to the action information.

[0153] In this embodiment, since the host device can be controlled by multiple host device controllers, when the screen displayed on the target screen includes a host device controller selection interface, it is necessary to select a target host device controller for controlling the host device. The wearable device detects the user's action information and sends the action information for selecting the target host device controller to the communication device to select the target host device controller. By sending the action information to select the host device controller, the wearable device can be used as the host device controller to control the host device, thereby improving the user experience.

[0154] In one embodiment, the host device control method further includes:

[0155] In response to the vibration information sent by the communication device, the motor in the wearable device is controlled to vibrate according to the vibration information.

[0156] In this embodiment, when the application or system interface in the host device needs to feedback prompt information through vibration, the corresponding vibration information will be sent to the communication device. When the wearable device receives the vibration information, it can control the vibration of the motor in the wearable device according to the vibration requirements in the vibration information. By receiving the vibration information sent by the communication device to control the vibration of the motor, feedback is given to the user in the form of vibration, thereby improving the user experience.

[0157] Exemplarily, in the above step, controlling the vibration of a motor in the wearable device according to the vibration information may be controlling the motor to vibrate at different intensities according to different vibration requirements in the vibration information.

[0158] For example, when the heart rate in the exercise information is high, the wearable device can prompt the user, or prompt the user through the communication device to prevent the user's heart rate from being too fast and affecting health.

[0159] The present disclosure provides a host device control method, which is applied to a wearable device, such as Figure 3 As shown, the method includes:

[0160] S400: Establish a Bluetooth communication connection with a communication device.

[0161] S410. In response to first test information sent by the communication device, send first response information to the communication device.

[0162] S420: In response to the simulation instruction sent by the communication device, turn on the target sensor for detecting motion information.

[0163] S430: Map the buttons of the host device controller to the screen of the wearable device.

[0164] S440: Detect the user's movement information.

[0165] S450: Send the motion information to a communication device.

[0166] S460. In response to the second test information sent by the communication device, send second response information to the communication device.

[0167] S470. In response to the user's touch operation on the key, send key information corresponding to the touch operation to the communication device.

[0168] S480. In response to the vibration information sent by the communication device, control the vibration of a motor in the wearable device according to the vibration information.

[0169] In this embodiment, the wearable device establishes a Bluetooth communication connection with the communication device to transmit information. When the wearable device is required to control the host device, the communication device determines the first transmission delay between the wearable device and the wearable device, and sends the first test information to the wearable device. In response to the first test information sent by the communication device, the first response information is sent to the communication device, and the communication device can determine the first transmission delay according to the time of sending the first test information and receiving the first response information. When the first transmission delay is less than the first preset delay, the first transmission delay can meet the delay requirement, and the communication device sends a simulation instruction to the wearable device. In response to the simulation instruction sent by the communication device, the target sensor for detecting motion information is turned on and the buttons of the host device controller are mapped to the screen of the wearable device to detect the user's motion information and touch operation. The host device is operated through the button information corresponding to the user's motion information and touch operation. In the process of controlling the host device, the host device will send vibration information to provide feedback to the user. In response to the vibration information sent by the communication device, the motor in the wearable device is controlled to vibrate so that the user receives feedback from the host device. Since the wearable device can be worn stably, it is not easy to fall off and be damaged during the process of the user's motion control of the host device, thereby improving the user experience. At the same time, since the wearable device is worn on the user's body, the accuracy of motion information detection is high, thereby improving the accuracy of the host device control.

[0170] The present disclosure provides a host device control method, which is applied to a communication device, such as Figure 4 As shown, the method includes:

[0171] S500: In response to a first operation of the user, establish a wireless communication connection with a host device.

[0172] S600: Send the action information transmitted by the wearable device to the host device to control the host device.

[0173] In this embodiment, when the user needs to control the host device through the wearable device, the communication device will be operated for the first time to start the function of simulating the host device controller. In response to the user's first operation, the communication device establishes a wireless communication connection with the host device. During the wireless communication process, the action information transmitted by the wearable device is sent to the host device, and the host device is controlled by the action information. By transmitting the action information sent by the wearable device, the wearable device can be used to control the host device, thereby improving the user experience.

[0174] Exemplarily, the wireless communication connection established with the host device in step S500 may be a wireless fidelity (WiFi) communication connection, a Bluetooth communication connection, a near field communication connection, etc. When the communication device and the host device are connected in wireless fidelity communication, the action information transmitted between the communication device and the host device occupies a small amount of data and does not cause network congestion, and the transmission delay between the communication device and the host device is low.

[0175] For example, Figure 5 As shown, the wearable device 20 establishes a Bluetooth communication connection with the communication device 30 , and the communication device 30 establishes a wireless fidelity communication connection with the host device 50 through the routing device 40 .

[0176] In one embodiment, if Figure 6 As shown, the establishment of a wireless communication connection with the host device in step S500 is determined by:

[0177] S510: Send first test information to the wearable device.

[0178] S520: In response to first response information sent by the wearable device, determine a first transmission delay between the wearable device and the wearable device.

[0179] S530: If the first transmission delay is less than the first preset delay, establish a wireless communication connection with the host device.

[0180] In this embodiment, in order to avoid the high delay between the wearable device and the control of the host device by the wearable device, it is necessary to determine the first transmission delay between the wearable device and the wearable device. Send a first test message to the wearable device, receive a first response message sent by the wearable device, and determine the first transmission delay based on the first test message and the first response message. If the first transmission delay is less than the first preset delay, the delay between the communication device and the wearable device is low, and a wireless communication connection is established with the host device. By determining whether the first transmission delay is less than the first preset delay before establishing a wireless communication connection with the host device, it is avoided that it is difficult to adjust the second transmission delay between the wearable device and the host device, thereby improving the reliability of the control of the host device.

[0181] For example, when the wearable device is connected to the communication device in a Bluetooth communication mode, the value range of the first preset delay may be 30ms to 150ms. The value of the first preset delay may be 50ms, 100ms, 120ms, etc.

[0182] For example, if the first transmission delay is greater than or equal to the first preset delay, the user is prompted that the distance between the wearable device and the communication device is far. The user can change the distance between the communication device and the wearable device to make the first transmission delay less than the first preset delay.

[0183] In one embodiment, after establishing a wireless communication connection with the host device in step S500, the host device control method further includes:

[0184] Send simulation instructions to the wearable device.

[0185] In this embodiment, after establishing a wireless communication connection with the host device, information needs to be transmitted between the wearable device and the host device, and a simulation instruction is sent to the wearable device to start the function of simulating the host device controller. By sending the simulation instruction to the wearable device after establishing a wireless communication connection with the host device, invalid information is prevented from being transmitted between the wearable device and the communication device, thereby improving the reliability of the host device control.

[0186] In one embodiment, if Figure 7 As shown, after establishing a wireless communication connection with the host device in step S500, the host device control method further includes:

[0187] S540: Send the second test information transmitted by the host device to the wearable device.

[0188] S550: Send the second response information transmitted by the wearable device to the host device, where the second response information is used to determine a second transmission delay between the host device and the wearable device.

[0189] In this embodiment, after establishing a wireless communication connection with the host device, in addition to the transmission delay between the wearable device and the communication device, there is also a transmission delay between the communication device and the host device. In order to determine the second transmission delay between the host device and the wearable device, the host device will send a second test message to the communication device, and the communication device will send the second test message to the wearable device. In response to the second test message, the wearable device will send a second response message to the communication device, and the communication device will send the second response message to the host device. By transmitting the second test message and the second response message, the host device can determine whether the second transmission delay between the wearable device and the communication device is less than the second preset delay and affects the user operation, thereby improving the reliability of the host device control.

[0190] In one embodiment, after establishing a wireless communication connection with the host device in step S500, the host device control method further includes:

[0191] The motion information transmitted by the wearable device is sent to the host device, and the host device is controlled by the motion information.

[0192] In this embodiment, when the wearable device controls the host device, the wearable device detects the user's motion information and sends the motion information to the communication device to control the host device. Since the motion information detection is highly accurate, the host device is controlled by the motion information, which improves the accuracy of the host device control.

[0193] In one embodiment, after establishing a wireless communication connection with the host device in step S500, the host device control method further includes:

[0194] The key information transmitted by the wearable device is sent to the host device, and the host device is controlled by the key information.

[0195] In this embodiment, in addition to controlling the host device with motion information, the host device can also be controlled with key information, and the key information transmitted by the wearable device is sent to the host device to control the host device. Since the communication device can transmit the motion information and key information sent by the wearable device, it is avoided that the host device is difficult to control by relying solely on motion information, thereby improving the reliability of the host device control.

[0196] In one embodiment, after establishing a wireless communication connection with the host device in step S500, the host device control method further includes:

[0197] The gesture information transmitted by the wearable device is sent to the host device, and the host device is controlled by the gesture information.

[0198] In this embodiment, in addition to controlling the host device with motion information, the host device can also be controlled with gesture information, and the gesture information transmitted by the wearable device is sent to the host device to control the host device. Since the communication device can transmit the motion information and gesture information sent by the wearable device, it is avoided that the host device is difficult to control by relying solely on motion information, thereby improving the reliability of the host device control.

[0199] In one embodiment, after establishing a wireless communication connection with the host device in step S500, the host device control method further includes:

[0200] The vibration information transmitted by the host device is sent to the wearable device, and the wearable device is controlled by the vibration information.

[0201] In this embodiment, the host device needs to provide feedback to the user through vibration during use, and the vibration information transmitted by the host device is sent to the wearable device to control the wearable device. Since the communication device can transmit the vibration information sent by the host device, the user can determine the information fed back by the host device according to the vibration of the wearable device, thereby improving the user's experience.

[0202] The present disclosure provides a host device control method, which is applied to a communication device, such as Figure 8 As shown, the method includes:

[0203] S700. Establish a Bluetooth communication connection with the wearable device.

[0204] S710: In response to a first operation of the user, send first test information to the wearable device.

[0205] S720: In response to first response information sent by the wearable device, determine a first transmission delay between the wearable device and the wearable device.

[0206] S730: If the first transmission delay is less than the first preset delay, establish a wireless fidelity communication connection with the host device.

[0207] S740: Send the simulation instruction to the wearable device.

[0208] S750: Send the second test information transmitted by the host device to the wearable device.

[0209] S760: Send the second response information transmitted by the wearable device to the host device.

[0210] S770: Send the motion information transmitted by the wearable device to the host device.

[0211] S780: Send the key information transmitted by the wearable device to the host device.

[0212] S790: Send the vibration information transmitted by the host device to the wearable device.

[0213] In this embodiment, the communication device establishes a Bluetooth communication connection with the wearable device to transmit information. In response to the user's first operation, the first test information is sent to the wearable device and the first response information sent by the wearable device is received, and the first transmission delay between the wearable device and the communication device is determined. If the first transmission delay is less than the first preset delay, the delay between the communication device and the wearable device is low, and a wireless fidelity communication connection is established with the host device. A simulation instruction is sent to the wearable device to turn on the target sensor and map the button. Since the host device needs to determine the second transmission delay between the wearable device and the wearable device, the second test information transmitted by the host device is sent to the wearable device, and the second response information transmitted by the wearable device is sent to the host device. In the process of controlling the host device, the motion information and key information transmitted by the wearable device are sent to the host device to control the host device, and the vibration information transmitted by the host device is sent to the wearable device to control the wearable device. By transmitting the motion information and key information sent by the wearable device, the host device can be controlled by the wearable device, thereby improving the user experience.

[0214] The present disclosure provides a host device control method, which is applied to a host device, such as Fig. 9 As shown, the method includes:

[0215] S800: Establish a wireless communication connection with a communication device.

[0216] S900: In response to the action information sent by the communication device, display the screen content associated with the action information on the target screen.

[0217] In this embodiment, in the process of controlling the host device through the wearable device, a wireless communication connection is established with the communication device to transmit information with the wearable device through the communication device. When the wearable device needs to control the host device, it sends action information to the communication device, and in response to the action information sent by the communication device, the screen content associated with the action information is displayed on the target screen. By displaying the screen content associated with the action information on the target screen, the host device can be controlled by the wearable device, thereby improving the user experience.

[0218] Exemplarily, during the execution of step S800, when the user needs to control the host device through the wearable device, a second operation needs to be performed on the host device. In response to the user's second operation, the host device searches for a connectable device. When the wireless communication connection mode is a wireless fidelity communication connection, the host device searches for a connectable device in the local area network, and establishes a wireless fidelity communication connection with the communication device under the user's third operation.

[0219] In one embodiment, if Fig.10As shown, after establishing a wireless communication connection with the communication device in step S800, the host device control method further includes:

[0220] S1010. Send second test information to the communication device.

[0221] S1020. In response to second response information sent by the communication device, determine a second transmission delay between the communication device and the wearable device.

[0222] S1030: If the second transmission delay is less than the second preset delay, displaying the logo of the wearable device on the target screen.

[0223] S1040: If the second transmission delay is greater than or equal to the second preset delay, display a prompt message on the target screen.

[0224] In this embodiment, in order to avoid the second transmission delay between the wearable device and the user's experience being affected by a high delay, a second test message is sent to the communication device, and a second response message sent by the communication device is received. The second transmission delay between the wearable device and the wearable device is determined based on the time of sending the second test message and receiving the second response message. If the second transmission delay is less than the second preset delay, and the delay between the host device and the wearable device is low, the logo of the wearable device is displayed on the target screen to allow the user to make a selection. If the second transmission delay is greater than or equal to the second preset delay, a prompt message is displayed on the target screen to prompt the user that the delay is too high. By determining whether the second transmission delay is less than the second preset delay before receiving the action information, a high delay in the wearable device operating the host device is avoided, thereby improving the user's experience.

[0225] For example, when the wearable device is connected to the communication device via Bluetooth communication and the communication device is connected to the host device via Wi-Fi communication, the second preset delay may be in the range of 150ms to 300ms. The second preset delay may be 180ms, 200ms, 220ms, etc.

[0226] Exemplarily, displaying the screen content associated with the action information on the target screen in step S900 may be displaying an operation corresponding to the action information on the target screen. For example, a character on the target screen moves according to the action information of the user. Alternatively, an operation corresponding to the action information may be performed on the system interface. For example, the system screen moves according to the action information of the user.

[0227] In one embodiment, after establishing a wireless communication connection with the communication device in step S800, the host device control method further includes:

[0228] The motion information sent by the communication device is received to display the picture content associated with the motion information on the target screen.

[0229] In this embodiment, in the process of controlling the host device through the wearable device, the wearable device detects the user's motion information, receives the motion information sent by the communication device to display the screen content associated with the motion information. Due to the high accuracy of motion information detection, the accuracy of host device control is improved by controlling the host device with motion information.

[0230] In one embodiment, after establishing a wireless communication connection with the communication device in step S800, the host device control method further includes:

[0231] The key information sent by the communication device is received to display the screen content associated with the key information on the target screen.

[0232] In this embodiment, when it is difficult to control the host device with motion information, the user controls the host device through the keys mapped on the wearable device screen, receives the key information sent by the communication device, and displays the screen content associated with the key information on the target screen. By performing the operation corresponding to the key information, the user can easily control the host device through the key, thereby improving the user's experience.

[0233] In one embodiment, after establishing a wireless communication connection with the communication device in step S800, the host device control method further includes:

[0234] The gesture information sent by the communication device is received to display the screen content associated with the gesture information on the target screen.

[0235] In this embodiment, when it is difficult to control the host device with motion information, the user controls the host device through gesture information generated by gesture operation on a preset interface on the wearable device screen, receives gesture information sent by the communication device, and displays screen content associated with the gesture information on the target screen. By performing operations corresponding to the key information, the user can easily control the host device through keys, thereby improving the user experience.

[0236] In one embodiment, after establishing a wireless communication connection with the communication device in step S800, the host device control method further includes:

[0237] The vibration information is sent to the communication device so that the communication device sends the vibration information to the wearable device, and the vibration information is used to control the wearable device.

[0238] In this embodiment, when feedback is required to the user in the application or system interface, the vibration information is sent to the communication device, so that the communication device sends the vibration information to the wearable device. By sending the vibration information to the wearable device for vibration, the user can determine the information fed back by the host device, thereby improving the user's experience.

[0239] The present disclosure provides a host device control method, which is applied to a host device, such as Fig.11 As shown, the method includes:

[0240] S1100: Establish a wireless fidelity communication connection with a communication device.

[0241] S1110. Send second test information to the communication device.

[0242] S1120. In response to second response information sent by the communication device, determine a second transmission delay between the communication device and the wearable device.

[0243] S1130: If the second transmission delay is less than the second preset delay, displaying the logo of the wearable device on the target screen.

[0244] S1140. In response to the action information sent by the communication device, display the screen content associated with the action information on the target screen.

[0245] S1150: When the wearable device needs to vibrate, the vibration information is sent to the communication device.

[0246] In this embodiment, in the process of controlling the host device through the wearable device, the host device establishes a wireless fidelity communication connection with the communication device. A second test message is sent to the communication device, and a second response message sent by the communication device is received, and the second transmission delay between the wearable device and the host device is determined according to the time of sending the second test message and receiving the second response message. If the second transmission delay is less than the second preset delay, the delay between the wearable device and the host device is low, and the logo of the wearable device is displayed on the target screen to allow the user to select. In response to the action information sent by the communication device, the screen content associated with the action information is displayed on the target screen. When the wearable device needs to vibrate, the vibration information is sent to the wearable device through the communication device, so that the wearable device vibrates to provide feedback to the user. By displaying the screen content associated with the action information on the target screen, the host device can be controlled by the wearable device, thereby improving the user experience.

[0247] The present disclosure provides a host device control method, such as Fig.12 As shown, the method includes:

[0248] S1200: The communication device establishes a Bluetooth communication connection with the wearable device.

[0249] S1210: In response to a first operation of the user, the communication device establishes a wireless fidelity communication connection with the host device.

[0250] S1220: The communication device sends a simulation instruction to the wearable device.

[0251] S1230: The wearable device turns on a target sensor for detecting motion information.

[0252] S1240: The wearable device maps buttons of the host device controller to the screen.

[0253] S1250: The wearable device detects movement information and key information of the user.

[0254] S1260: The wearable device sends the motion information and the button information to the communication device.

[0255] S1270: The communication device sends the motion information and key information transmitted by the wearable device to the host device.

[0256] S1280: The host device displays screen content associated with the action information on the target screen.

[0257] S1290: When the wearable device needs to vibrate, the host device sends vibration information to the communication device.

[0258] S1300: The communication device sends vibration information to the wearable device.

[0259] S1310: The wearable device controls the motor to vibrate according to the vibration information.

[0260] In this embodiment, in the process of controlling the host device through the wearable device, the communication device establishes a Bluetooth communication connection with the wearable device and a wireless fidelity communication connection with the host device, so that information can be transmitted between the wearable device and the host device. The communication device sends a simulation instruction to the wearable device, so that the wearable device can simulate the host device controller. The wearable device turns on the target sensor for detecting motion information, and maps the buttons of the host device controller to the screen to simulate the host device controller. The wearable device detects the user's motion information and button information, and sends the motion information and button information to the host device through the communication device, and the host device performs corresponding operations according to the motion information and button information. When the wearable device needs to vibrate, the host device sends the vibration information to the wearable device through the communication device, and the wearable device controls the motor vibration according to the vibration information. Since the wearable device can be worn stably, it is not easy to fall off in the process of the user's motion control of the host device to avoid damage, thereby improving the user experience. At the same time, since the wearable device is worn on the user's body, the accuracy of motion information detection is high, thereby improving the accuracy of host device control.

[0261] In an exemplary embodiment, a host device control apparatus is provided, which is applied to a wearable device, and the host device control apparatus is used to implement the above method. Fig.13 As shown, the host device control device may include a detection module 100 and a first sending module 110, wherein, in the process of implementing the above method,

[0262] The detection module 100 is configured to detect the user's action information.

[0263] The first sending module 110 is configured to send action information to the communication device, so that the communication device sends the action information to the host device, and the action information is used to control the host device.

[0264] In an exemplary embodiment, a host device control apparatus is provided, in which a first sending module 110 is configured to:

[0265] In response to the first test information sent by the communication device, first response information is sent to the communication device.

[0266] In an exemplary embodiment, a host device control apparatus is provided, in which a first sending module 110 is configured to:

[0267] After the communication device establishes a wireless communication connection with the host device, second response information is sent to the communication device in response to the second test information sent by the communication device.

[0268] In an exemplary embodiment, a host device control apparatus is provided, in which a first sending module 110 is configured to:

[0269] When the communication device and the host device do not establish a wireless communication connection, in response to the first test information re-sent by the communication device, the first response information is re-sent to the communication device.

[0270] In an exemplary embodiment, a host device control apparatus is provided, the apparatus further comprising:

[0271] The activation module is configured to activate a target sensor for detecting motion information in the action information in response to a simulation instruction sent by the communication device.

[0272] In an exemplary embodiment, a host device control apparatus is provided, the apparatus further comprising:

[0273] The mapping module is configured to map the buttons of the host device controller to the screen of the wearable device in response to the simulation instructions sent by the communication device.

[0274] In an exemplary embodiment, a host device control apparatus is provided, in which a mapping module is configured to:

[0275] In response to the simulation instruction sent by the communication device, a preset interface is displayed on the screen of the wearable device.

[0276] In an exemplary embodiment, a host device control apparatus is provided, in which a first sending module 110 is configured to:

[0277] In response to a user's touch operation on a key, key information corresponding to the touch operation is sent to the communication device.

[0278] In an exemplary embodiment, a host device control apparatus is provided, in which a first sending module 110 is configured to:

[0279] In response to a user's gesture operation on a preset interface, gesture information corresponding to the gesture operation is sent to the communication device, so that the communication device sends the gesture information to the host device.

[0280] In an exemplary embodiment, a host device control apparatus is provided, in which a first sending module 110 is configured to:

[0281] The action information for selecting the target host device controller is sent to the communication device.

[0282] In an exemplary embodiment, a host device control apparatus is provided, the apparatus further comprising:

[0283] The vibration module is configured to respond to the vibration information sent by the communication device and control the vibration of the motor in the wearable device according to the vibration information.

[0284] In an exemplary embodiment, a host device control apparatus is provided, which is applied to a communication device, and the host device control apparatus is used to implement the above method. Fig.14 As shown, the host device control device may include a first communication module 200 and a second sending module 210, wherein, in the process of implementing the above method,

[0285] The first communication module 200 is configured to establish a wireless communication connection with a host device in response to a first operation of a user.

[0286] The second sending module 210 is configured to send the action information transmitted by the wearable device to the host device to control the host device.

[0287] In an exemplary embodiment, a host device control apparatus is provided, in which a first communication module 200 is configured to:

[0288] The first test information is sent to the wearable device.

[0289] In response to first response information sent by the wearable device, a first transmission delay between the wearable device and the wearable device is determined.

[0290] If the first transmission delay is less than the first preset delay, a wireless communication connection is established with the host device.

[0291] In an exemplary embodiment, a host device control apparatus is provided, in which the second sending module 210 is configured to:

[0292] The second test information transmitted by the host device is sent to the wearable device.

[0293] The second response information transmitted by the wearable device is sent to the host device.

[0294] In an exemplary embodiment, a host device control apparatus is provided, in which the second sending module 210 is configured to:

[0295] Send simulation instructions to the wearable device.

[0296] In an exemplary embodiment, a host device control apparatus is provided, in which the second sending module 210 is configured to:

[0297] Send the motion information transmitted by the wearable device to the host device.

[0298] In an exemplary embodiment, a host device control apparatus is provided, in which the second sending module 210 is configured to:

[0299] Send the key information transmitted by the wearable device to the host device.

[0300] In an exemplary embodiment, a host device control apparatus is provided, in which the second sending module 210 is configured to:

[0301] Send the gesture information transmitted by the wearable device to the host device.

[0302] In an exemplary embodiment, a host device control apparatus is provided, in which the second sending module 210 is configured to:

[0303] Send the vibration information transmitted by the host device to the wearable device.

[0304] In an exemplary embodiment, a host device control apparatus is provided, which is applied to a host device, and the host device control apparatus is used to implement the above method. Fig.15 As shown, the host device control device may include a second communication module 300, a display module 310 and an execution module 320, wherein, in the process of implementing the above method,

[0305] The second communication module 300 is configured to establish a wireless communication connection with a communication device.

[0306] The display module 310 is configured to display the screen content associated with the action information on the target screen in response to the action information sent by the communication device.

[0307] In an exemplary embodiment, a host device control apparatus is provided, the apparatus further comprising:

[0308] The determination module is configured to send second test information to the communication device.

[0309] In response to the second response information sent by the communication device, a second transmission delay between the communication device and the wearable device is determined.

[0310] If the second transmission delay is less than the second preset delay, the logo of the wearable device is displayed on the target screen.

[0311] If the second transmission delay is greater than or equal to the second preset delay, a prompt message is displayed on the target screen.

[0312] In an exemplary embodiment, a host device control apparatus is provided, the apparatus further comprising:

[0313] The receiving module is configured to receive the motion information sent by the communication device so as to display the picture content associated with the motion information on the target screen.

[0314] In an exemplary embodiment, a host device control apparatus is provided, in which a receiving module is configured to:

[0315] The key information sent by the communication device is received to display the screen content associated with the key information on the target screen.

[0316] In an exemplary embodiment, a host device control apparatus is provided, in which a receiving module is configured to:

[0317] The gesture information sent by the communication device is received to display the screen content associated with the gesture information on the target screen.

[0318] In an exemplary embodiment, a host device control apparatus is provided, the apparatus further comprising:

[0319] The third sending module is configured to send the vibration information to the communication device, so that the communication device sends the vibration information to the wearable device.

[0320] In an exemplary embodiment, an electronic device 400 is provided, referring to Fig.16 As shown, the wearable device and communication device described above may be an electronic device 400. The electronic device 400 may include one or more of the following components: a processing component 402, a memory 404, a power component 406, a multimedia component 408, an audio component 410, an input / output (I / O) interface 412, a sensor component 414, and a communication component 416.

[0321] The processing component 402 generally controls the overall operation of the electronic device 400, such as operations associated with display, phone calls, data communications, camera operations, and recording operations. The processing component 402 may include one or more processors 420 to execute instructions to complete all or part of the steps of the above-mentioned method. In addition, the processing component 402 may include one or more modules to facilitate the interaction between the processing component 402 and other components. For example, the processing component 402 may include a multimedia module to facilitate the interaction between the multimedia component 408 and the processing component 402.

[0322] The memory 404 is configured to store various types of data to support operations on the electronic device 400. Examples of such data include instructions for any application or method operating on the electronic device 400, contact data, phone book data, messages, pictures, videos, etc. The memory 404 can be implemented by any type of volatile or non-volatile storage terminal or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic memory, flash memory, magnetic disk or optical disk.

[0323] The power supply component 406 provides power to the various components of the electronic device 400. The power supply component 406 may include a power management system, one or more power supplies, and other components associated with generating, managing, and distributing power to the electronic device 400.

[0324] The multimedia component 408 includes a screen that provides an output interface between the electronic device 400 and the user. In some embodiments, the screen may include a liquid crystal display (LCD) and a touch panel (TP). If the screen includes a touch panel, the screen may be implemented as a touch screen to receive input signals from the user. The touch panel includes one or more touch sensors to sense touch, slide, and gestures on the touch panel. The touch sensor may not only sense the boundaries of the touch or slide action, but also detect the duration and pressure associated with the touch or slide operation. In some embodiments, the multimedia component 408 includes a front camera module and / or a rear camera module. When the electronic device 400 is in an operating mode, such as a shooting mode or a video mode, the front camera module and / or the rear camera module may receive external multimedia data. Each front camera module and the rear camera module may be a fixed optical lens system or have a focal length and optical zoom capability.

[0325] The audio component 410 is configured to output and / or input audio signals. For example, the audio component 410 includes a microphone (MIC), and when the electronic device 400 is in an operating mode, such as a call mode, a recording mode, and a voice recognition mode, the microphone is configured to receive an external audio signal. The received audio signal can be further stored in the memory 404 or sent via the communication component 416. In some embodiments, the audio component 410 also includes a speaker for outputting audio signals.

[0326] I / O interface 412 provides an interface between processing component 402 and peripheral interface modules, such as keyboards, click wheels, buttons, etc. These buttons may include but are not limited to: a home button, a volume button, a start button, and a lock button.

[0327] The sensor assembly 414 includes one or more sensors for providing various aspects of status assessment for the electronic device 400. For example, the sensor assembly 414 can detect the open / closed state of the electronic device 400, the relative positioning of components, such as the display and keypad of the electronic device 400, and the sensor assembly 414 can also detect the position change of the electronic device 400 or a component of the electronic device 400, the presence or absence of user contact with the electronic device 400, the orientation or acceleration / deceleration of the electronic device 400, and the temperature change of the electronic device 400. The sensor assembly 414 may include a proximity sensor configured to detect the presence of nearby objects without any physical contact. The sensor assembly 414 may also include an optical sensor, such as a CMOS or CCD image sensor, for use in imaging applications. In some embodiments, the sensor assembly 414 may also include an accelerometer, a gyroscope sensor, a magnetic sensor, a pressure sensor, or a temperature sensor.

[0328] The communication component 416 is configured to facilitate wired or wireless communication between the electronic device 400 and other terminals. The electronic device 400 can access a wireless network based on a communication standard, such as WiFi, 2G, 3G, 4G, 5G, or a combination thereof. In an exemplary embodiment, the communication component 416 receives a broadcast signal or broadcast-related information from an external broadcast management system via a broadcast channel. In an exemplary embodiment, the communication component 416 also includes a near field communication (NFC) module to facilitate short-range communication. For example, the NFC module can be implemented based on radio frequency identification (RFID) technology, infrared data association (IrDA) technology, ultra-wideband (UWB) technology, Bluetooth (BT) technology and other technologies.

[0329] In an exemplary embodiment, the electronic device 400 may be implemented by one or more application-specific integrated circuits (ASICs), digital signal processors (DSPs), digital signal processing terminals (DSPDs), programmable logic devices (PLDs), field programmable gate arrays (FPGAs), controllers, microcontrollers, microprocessors or other electronic components to perform the above-described methods.

[0330] In an exemplary embodiment, a host device is provided, the host device comprising a processor and a memory for storing instructions executable by the processor, wherein the processor of the host device is configured to execute the host device control method as described above.

[0331] In an exemplary embodiment, a non-temporary computer-readable storage medium including instructions is also provided, such as a memory of a wearable device, a memory 404 of an electronic device 400, or a memory of a host device including instructions, and the above instructions can be executed by a processor of the wearable device, a processor 420 of the electronic device 400, or a processor of the host device to complete the above method. For example, the non-temporary computer-readable storage medium can be a ROM, a random access memory (RAM), a CD-ROM, a tape, a floppy disk, and an optical data storage terminal, etc. When the instructions in the storage medium are executed by the processor of the terminal, the terminal is enabled to execute the method shown in the above embodiment.

[0332] Those skilled in the art will readily appreciate other embodiments of the present disclosure after considering the specification and practicing the invention disclosed herein. The present disclosure is intended to cover any variations, uses or adaptations of the present disclosure that follow the general principles of the present disclosure and include common knowledge or customary techniques in the art that are not disclosed in the present disclosure. The description and examples are to be considered exemplary only, and the true scope and spirit of the present disclosure are indicated by the claims.

[0333] Those skilled in the art will readily appreciate other embodiments of the present disclosure after considering the specification and practicing the invention disclosed herein. The present disclosure is intended to cover any variations, uses or adaptations of the present disclosure that follow the general principles of the present disclosure and include common knowledge or customary techniques in the art that are not disclosed in the present disclosure. The description and examples are to be considered exemplary only, and the true scope and spirit of the present disclosure are indicated by the following claims.

[0334] It should be understood that the present disclosure is not limited to the exact structures that have been described above and shown in the drawings, and that various modifications and changes may be made without departing from the scope thereof. The scope of the present disclosure is limited only by the appended claims.

Claims

1. A host device control method, applied to a wearable device, It is characterized in that The host device control method comprises: Detect user's action information; Sending the action information to a communication device, so that the communication device sends the action information to a host device, wherein the action information is used to control the host device; The host device displays the screen content associated with the action information on the target screen in response to the action information.

2. The host device control method according to claim 1, It is characterized in that Before detecting the user's action information, the host device control method further includes: In response to the first test information sent by the communication device, sending first response information to the communication device; So that the communication device determines a first transmission delay between itself and the wearable device, and establishes a wireless communication connection with the host device when the first transmission delay is less than a first preset delay.

3. The host device control method according to claim 2, It is characterized in that After sending the first response information to the communication device, the host device control method further includes: After the communication device establishes a wireless communication connection with the host device, in response to the second test information sent by the communication device, sending second response information to the communication device, so that the communication device sends the second response information to the host device; So that the host device determines the second transmission delay between itself and the wearable device, and displays the logo of the wearable device on the target screen when the second transmission delay is less than the second preset delay, and displays a prompt message on the target screen when the second transmission delay is greater than or equal to the second preset delay.

4. The host device control method according to claim 2, It is characterized in that After sending the first response information to the communication device, the host device control method further includes: When the communication device and the host device do not establish a wireless communication connection, in response to the first test information re-sent by the communication device, the first response information is re-sent to the communication device; After the distance between the wearable device and the communication device changes, the communication device re-determines the first transmission delay between the wearable device and the communication device, and establishes a wireless communication connection with the host device when the first transmission delay is less than the first preset delay.

5. The host device control method according to claim 1, It is characterized in that Before detecting the user's action information, the host device control method further includes: In response to the simulation instruction sent by the communication device, turning on a target sensor that detects motion information in the action information; so that the host device displays a picture content associated with the motion information on the target screen in response to the motion information, wherein the motion information is used to represent a motion speed and / or a motion direction; and / or, In response to the simulation instruction sent by the communication device, mapping the buttons of the host device controller to the screen of the wearable device; so that the host device displays screen content associated with the touch operation on the target screen in response to the user's touch operation on the button; and / or, In response to the simulation instruction sent by the communication device, displaying a preset interface on the screen of the wearable device; The host device responds to the user's gesture operation on the preset interface and displays the screen content associated with the gesture operation on the target screen.

6. The host device control method according to claim 5, It is characterized in that After mapping the buttons of the host device controller to the screen of the wearable device, the host device control method further includes: In response to a user's touch operation on the key, sending key information corresponding to the touch operation to the communication device, so that the communication device sends the key information to the host device; so that the host device displays the screen content associated with the key information on the target screen in response to the key information; and / or, After displaying the preset interface on the screen of the wearable device, the host device control method further includes: In response to a user's gesture operation on the preset interface, sending gesture information corresponding to the gesture operation to the communication device, so that the communication device sends the gesture information to the host device; The host device displays screen content associated with the gesture information on the target screen in response to the gesture information.

7. The host device control method according to any one of claims 1 to 6, It is characterized in that When the picture displayed on the target screen includes a selection interface of a host device controller, sending the action information to the communication device includes: sending the action information for selecting a target host device controller to a communication device; The host device selects a target host device controller corresponding to the action information on the target screen in response to the action information.

8. The host device control method according to any one of claims 1 to 6, It is characterized in that The host device control method further includes: In response to the vibration information sent by the communication device, the vibration of the motor in the wearable device is controlled according to the vibration information.

9. A host device control method, applied to a communication device, It is characterized in that The host device control method comprises: In response to a first operation by a user, establishing a wireless communication connection with a host device; The motion information transmitted by the wearable device is sent to the host device to control the host device.

10. The host device control method according to claim 9, It is characterized in that The establishing of a wireless communication connection with the host device comprises: Sending first test information to the wearable device; In response to first response information sent by the wearable device, determining a first transmission delay between the wearable device and the wearable device; If the first transmission delay is less than a first preset delay, a wireless communication connection is established with the host device.

11. The host device control method according to claim 9, It is characterized in that After establishing a wireless communication connection with the host device, the host device control method further includes: Sending the second test information transmitted by the host device to the wearable device; sending second response information transmitted by the wearable device to the host device, wherein the second response information is used to determine a second transmission delay between the host device and the wearable device; and / or, Sending a simulation instruction to the wearable device.

12. The host device control method according to any one of claims 9 to 11, It is characterized in that After establishing a wireless communication connection with the host device, the host device control method further includes: sending the motion information transmitted by the wearable device to the host device, and controlling the host device with the motion information; and / or, sending the key information transmitted by the wearable device to the host device, and controlling the host device with the key information; and / or, sending the gesture information transmitted by the wearable device to the host device, and controlling the host device with the gesture information; and / or, The vibration information transmitted by the host device is sent to the wearable device, and the wearable device is controlled by the vibration information.

13. A host device control method, applied to a host device, It is characterized in that The host device control method comprises: establishing a wireless communication connection with a communication device; In response to the action information sent by the communication device, the screen content associated with the action information is displayed on the target screen.

14. A host device control device, applied to a wearable device, It is characterized in that The host device control device comprises: A detection module, configured to detect user action information; A first sending module is configured to send the action information to a communication device, so that the communication device sends the action information to a host device, and the action information is used to control the host device; The host device displays the screen content associated with the action information on the target screen in response to the action information.

15. A host device control device, applied to communication equipment, It is characterized in that The host device control device comprises: A first communication module is configured to establish a wireless communication connection with a host device in response to a first operation of a user; The second sending module is configured to send the action information transmitted by the wearable device to the host device to control the host device.

16. A host device control device, applied to a host device, It is characterized in that The host device control device comprises: A second communication module is configured to establish a wireless communication connection with a communication device; The display module is configured to display the screen content associated with the action information on the target screen in response to the action information sent by the communication device.

17. A wearable device, It is characterized in that The wearable device comprises: processor; a memory for storing instructions executable by the processor; The processor is configured to execute the host device control method according to any one of claims 1 to 8.

18. A communication device, It is characterized in that The communication device comprises: processor; a memory for storing instructions executable by the processor; The processor is configured to execute the host device control method according to any one of claims 9 to 12.

19. A host device, It is characterized in that The host device comprises: processor; a memory for storing instructions executable by the processor; The processor is configured to execute the host device control method as claimed in claim 13.

20. A non-transitory computer-readable storage medium, It is characterized in that When the instructions in the storage medium are executed by a processor of a terminal, the terminal is enabled to execute the host device control method according to any one of claims 1 to 13.