Cabin control method and device based on attitude recognition, storage medium and vehicle
A cockpit control and attitude technology, applied in vehicle components, transportation and packaging, user/computer interaction input/output, etc., can solve problems such as poor experience, achieve the effects of reducing production costs, improving user experience, and reducing difficulty
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Embodiment 1
[0048] see figure 1 , which shows the cockpit control method based on gesture recognition in the first embodiment of the present invention, which is applied to a display screen controller, and the method includes steps S10 to S13 .
[0049] Step S10, acquiring infrared light reflection information captured by the infrared light receiver, where the infrared light reflection information is obtained by emitting infrared light emitted by an infrared light emitter arranged on the display screen after passing through the object and completing a specific posture.
[0050]Specifically, the infrared light receiver is used to receive infrared light reflection information. When the infrared light transmitter is working, it will emit infrared light. When the object is in front of the infrared light, the infrared light will be reflected to be received by the infrared receiver. The light receiver performs recognition processing on the received infrared light to identify the posture of the o...
Embodiment 2
[0067] see image 3 , which shows a cockpit control method based on gesture recognition in the second embodiment of the present invention, which is applied to a display screen controller, and the method includes steps S20 to S24.
[0068] Step S20, acquiring infrared light reflection information captured by the infrared light receiver, where the infrared light reflection information is obtained by emitting infrared light emitted by an infrared light emitter arranged on the display screen after the object completes a specific posture.
[0069] Step S21 , analyzing the infrared light reflection information to obtain a corresponding change in the posture of the object, and determining a corresponding control signal according to the change in the posture of the object.
[0070] Step S22, acquiring the moving speed of the object when the attitude is changed, and determining whether the moving speed is within a preset speed range; if so, go to step S23.
[0071] In order to further...
Embodiment 3
[0078] see Figure 4 , which shows the cockpit control device based on gesture recognition proposed in the third embodiment of the present invention, and the device includes:
[0079] The reflection information acquisition module 100 is used to acquire the infrared light reflection information captured by the infrared light receiver, the infrared light reflection information is emitted by the infrared light emitted by the infrared light transmitter arranged on the display screen after the object completes a specific posture get;
[0080] The control signal acquisition module 200 is configured to analyze the infrared light reflection information to obtain the corresponding object posture change, and determine the corresponding control signal according to the object posture change;
[0081] a control information acquisition module 300, configured to send the control signal to the intelligent cockpit controller, and search for control information corresponding to the control sig...
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