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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Adaptive Backstepping Sliding-Mode Control of the Electronic Throttle System in Modern Automobiles
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Adaptive Backstepping Sliding-Mode Control of the Electronic Throttle System in Modern Automobiles

机译:现代汽车电子节气门系统的自适应Backstepping滑模控制

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In modern automobiles, electronic throttle is a DC-motor-driven valve that regulates air inflow into the vehicle’s combustion system. The electronic throttle is increasingly being used in order to improve the vehicle drivability, fuel economy, and emissions. Electronic throttle system has the nonlinear dynamical characteristics with the unknown disturbance and parameters. At first, the dynamical nonlinear model of the electronic throttle is built in this paper. Based on the model and using the backstepping design technique, a new adaptive backstepping sliding-mode controller of the electronic throttle is developed. During the backstepping design process, parameter adaptive law is designed to estimate the unknown parameter, and sliding-mode control term is applied to compensate the unknown disturbance. The proposed controller can make the actual angle of the electronic throttle track its set point with the satisfactory performance. Finally, a computer simulation is performed, and simulation results verify that the proposed control method can achieve favorable tracking performance.
机译:在现代汽车中,电子节气门是由直流电动机驱动的阀,用于调节流入车辆燃烧系统的空气。电子节气门正越来越多地用于改善车辆的驾驶性能,燃油经济性和排放。电子节气门系统具有非线性动力学特性,具有未知的扰动和参数。首先,建立了电子节气门的动力学非线性模型。基于该模型并利用反推设计技术,开发了一种新型的电子节气门自适应反推滑模控制器。在后推设计过程中,设计参数自适应律以估计未知参数,并应用滑模控制项来补偿未知干扰。所提出的控制器可以使电子节气门的实际角度以令人满意的性能跟踪其设定值。最后,进行了计算机仿真,仿真结果验证了所提出的控制方法具有良好的跟踪性能。

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