首页> 外文期刊>International Journal of Automotive Technology >MODELING, PARAMETER ESTIMATION AND NONLINEAR CONTROL OF AUTOMOTIVE ELECTRONIC THROTTLE USING A RAPID-CONTROL PROTOTYPING TECHNIQUE
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MODELING, PARAMETER ESTIMATION AND NONLINEAR CONTROL OF AUTOMOTIVE ELECTRONIC THROTTLE USING A RAPID-CONTROL PROTOTYPING TECHNIQUE

机译:快速控制原型技术在汽车电子节气门建模,参数估计和非线性控制中的应用

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摘要

An electronic throttle consists of a DC motor, spur gears, a return spring, a position sensor, power electronics and an electronic control unit. Fast and precise position control of this electromechanical system is relatively difficult due to very high friction and the strong nonlinearity of the spring. Simple application of linear control, such as PID, fails. In this paper, two new controller structures suitable for different reference signal types are described. The key component of the position controller is the friction compensator based on either/both feedforward or feedback principles. The quality of the resulting behavior was measured using several criteria including the measure of control activity around the equilibrium position. The control activity directly influences the vibration, the noise and the wear of the servo system. The proposed controllers demonstrated superior behavior compared with other published structures.
机译:电子节气门由直流电动机,正齿轮,复位弹簧,位置传感器,电力电子设备和电子控制单元组成。由于非常高的摩擦力和弹簧的强非线性,该机电系统的快速,精确的位置控制相对困难。线性控制(例如PID)的简单应用失败。在本文中,描述了两种适用于不同参考信号类型的新型控制器结构。位置控制器的关键组件是基于前馈/反馈原理的摩擦补偿器。使用包括在平衡位置周围的控制活动的度量的几个标准来度量所产生行为的质量。控制活动直接影响伺服系统的振动,噪声和磨损。与其他已发布的结构相比,拟议的控制器表现出卓越的行为。

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