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Robust Passivity-Based Control of a Buck–Boost-Converter/DC-Motor System: An Active Disturbance Rejection Approach

机译:降压-升压转换器/直流电动机系统的基于无源性的鲁棒控制:一种主动干扰消除方法

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摘要

This paper presents an active disturbance rejection (ADR) approach for the control of a buck–boost-converter feeding a dc motor. The presence of arbitrary, time-varying, load torque inputs on the dc motor and the lack of direct measurability of the motor's angular velocity variable prompts a generalized proportional integral (GPI) observer-based ADR controller which is synthesized on the basis of passivity considerations. The GPI observer simultaneously estimates the angular velocity and the exogenous disturbance torque input in an on-line cancellation scheme, known as the ADR control. The proposed control scheme is thus a sensorless one with robustness features added to the traditional energy shaping plus damping injection methodology. The discrete switching control realization of the designed continuous feedback control law is accomplished by means of a traditional PWM-modulation scheme. Additionally, an input to state stability property of the closed-loop system is established. Experimental and simulation results are provided.
机译:本文提出了一种有源干扰抑制(ADR)方法,用于控制为直流电动机供电的降压-升压转换器。直流电动机上存在任意随时间变化的负载转矩输入,并且电动机的角速度变量缺乏直接可测量性,这促使基于广义比例积分(GPI)观测器的ADR控制器得以综合,该控制器是基于无源性考虑而合成的。 GPI观测器以在线抵消方案(称为ADR控制)同时估算角速度和外部干扰转矩输入。因此,所提出的控制方案是一种无传感器的方案,其鲁棒性已添加到传统的能量整形加阻尼注入方法中。设计的连续反馈控制律的离散开关控制实现是通过传统的PWM调制方案实现的。另外,建立了对闭环系统状态稳定性属性的输入。提供了实验和仿真结果。

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