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Vehicle control method, device and system

A vehicle control and vehicle technology, applied in the field of automatic control, can solve problems affecting the tracking accuracy and stability of the PID controller, the vehicle cannot obtain the optimal driving strategy, and affect the tracking error of the PID controller, so as to improve the driving experience and improve the driving experience. Dynamic performance and robustness, fast and smooth tuning effects

Active Publication Date: 2019-05-14
NEUSOFT REACH AUTOMOBILE TECH (SHENYANG) CO LTD
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AI Technical Summary

Problems solved by technology

However, due to the complexity of the current traffic environment, there are many interference factors, which will affect the tracking error of the PID controller, and then affect the tracking accuracy and stability of the PID controller, and the control target of the vehicle needs to be changed frequently during driving. The dynamic performance of the controller puts forward higher requirements
However, the traditional algorithm cannot fully meet the control requirements in this application scenario, resulting in the failure of the vehicle to obtain the optimal driving strategy.

Method used

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  • Vehicle control method, device and system
  • Vehicle control method, device and system
  • Vehicle control method, device and system

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Embodiment Construction

[0069] In order to make the above objects, features and advantages of the present application more obvious and understandable, the embodiments of the present application will be further described in detail below in conjunction with the accompanying drawings and specific implementation methods.

[0070] In order to facilitate the understanding of the vehicle control method provided by the embodiment of the present application, the background technology of the present application will be first described below.

[0071] In the research of the traditional vehicle control method, the inventor found that the traditional vehicle control uses a single-stage PID controller to control the speed of the vehicle. Due to the hysteresis of the vehicle speed change, the response time of the PID controller will be longer. Moreover, the output control quantity changes greatly and is sensitive to error disturbances, which cannot meet the requirements for stable vehicle control.

[0072] Based on...

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Abstract

The embodiments of the invention disclose a vehicle control method, device and system. The vehicle control method includes the steps that firstly, a current vehicle speed parameter value and a vehicleacceleration parameter value are obtained, and that is, a vehicle actual speed value and an actual acceleration parameter value; then a target speed parameter value is subtracted from the vehicle speed parameter value, and a difference value is input into a first PID controller to obtain a target acceleration parameter value; and then the target acceleration parameter value is subtracted from thevehicle acceleration parameter value, a difference value is input into a second PID controller to obtain the control quantity of a control vehicle. Thus, according to the embodiments, execution results of the control quantity output by the second PID controller are fed back to the first PID controller and the second PID controller correspondingly, through a double-feedback mode, the PID controllers can find errors between a target value and an actual value in time and reduce tracking errors, thus the tracking accuracy is improved, a matched driving strategy is obtained according to the real-time running state of the vehicle, and the driving experience is improved.

Description

technical field [0001] The present application relates to the technical field of automatic control, in particular to a vehicle control method, device and system. Background technique [0002] With the continuous development of automobile technology, autonomous driving technology has received a lot of attention. Self-driving cars rely on artificial intelligence, visual computing, radar, and positioning systems to allow computers to automatically and safely operate motor vehicles without any active human intervention. [0003] In practical applications, the vehicle obtains a driving strategy that matches the current operating state by collecting information about the surrounding environment and its own operating state, and through a proportional-integral-derivative (Proportion Integration Differentiation, PID) controller. However, due to the complexity of the current traffic environment, there are many interference factors, which will affect the tracking error of the PID cont...

Claims

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Application Information

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IPC IPC(8): B60W40/00B60W40/10B60W40/105
Inventor 张瀚中
Owner NEUSOFT REACH AUTOMOBILE TECH (SHENYANG) CO LTD
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