Intelligent galloping control method and device and vehicle
A control method and technology of a control device, which are applied to vehicle components, brakes, power management, etc., can solve the problems of difficult operation, incapable of vehicle tire slippage, etc., and achieve the effect of improving personal safety and simple operation.
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Embodiment 1
[0046] refer to figure 1 , showing a flow chart of the steps of a smart flying car control method of the present application, such as figure 1 As shown, the intelligent flying car control method includes:
[0047] Step S101: When the vehicle is stationary, detect whether the vehicle enters the speeding mode.
[0048] In this embodiment, in order to ensure the driving safety of the vehicle, the speeding mode is generally entered when the vehicle is in a stationary state, and the stationary state may refer to a state in which the vehicle is parked. Specifically, the intelligent control mode is used to detect whether the vehicle meets the conditions for entering the speeding mode when the vehicle is in a stationary state, and if the conditions are met, it is determined that the vehicle enters the speeding mode. Wherein, the condition may refer to: monitoring the status of signals such as the seat belt status signal, the vehicle door signal, the EPB status signal, and the gear p...
Embodiment 2
[0085] Based on the same inventive concept, another embodiment of the present application provides a smart flying car control device, which is used to execute the smart flying car control method provided in Embodiment 1 of the present application; refer to Figure 5 , shows a structural block diagram of the driving protection device of the present application, such as Figure 5 Shown include:
[0086] The first detection module 11: used to detect whether the vehicle enters the speeding mode when the vehicle is in a stationary state;
[0087] The first acquisition module 12: used to acquire the accelerator pedal depth value of the vehicle if a speed function activation signal is detected when the vehicle enters the flying mode;
[0088] The first determining module 13: used to determine the driving force of the corresponding driving wheel according to the accelerator pedal depth value;
[0089] The first control module 14: used to increase the braking force of the vehicle unt...
Embodiment 3
[0113] The embodiment of the present application also provides a car, which may include a smart flying car control device as provided in the second embodiment of the present application, and the smart flying car control device is used to execute the smart flying car as provided in the first embodiment of the present application Control Method.
[0114] A car provided by this application adopts an intelligent control mode. When the vehicle is in a static state, it is detected whether the vehicle enters the speeding mode. When the vehicle enters the speeding mode, it detects whether there is a speeding function activation signal. The function activation signal increases the engine speed by increasing the depth of the accelerator pedal, thereby increasing the driving force of the vehicle, increasing the braking force of the vehicle while increasing the driving force, the braking force increases with the increase of the driving force, and keeps the vehicle driving balance between ...
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