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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Controller Design and Stability Analysis of Output Pressure Regulation in Electrohydrostatic Actuators
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Controller Design and Stability Analysis of Output Pressure Regulation in Electrohydrostatic Actuators

机译:电疏水致动器输出压力调节的控制器设计与稳定性分析

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摘要

In this paper, a robust fixed-gain linear output pressure controller is designed for a double-rod electrohydrostatic actuator using quantitative feedback theory (QFT). First, the family of frequency responses of the system is identified by applying an advanced form of fast Fourier transform on the open-loop input-output experimental data. This approach results in realistic frequency responses of the system, which prevents the generation of unnecessary large QFT templates, and consequently contributes to the design of a low-order QFT controller. The designed controller provides desired transient responses, desired tracking bandwidth, robust stability, and disturbance rejection for the closed-loop system. Experimental results confirm the desired performance met by the QFT controller. Then, the nonlinear stability of the closed-loop system is analyzed considering the friction and leakage, and in the presence of parametric uncertainties. For this analysis, Takagi-Sugeno (T-S) fuzzy modeling and its stability theory are employed. The T-S fuzzy model is derived for the closed-loop system and the stability conditions are presented as linear matrix inequalities (LMIs). LMIs are found feasible and thus the stability of the closed-loop system is proven for a wide range of parametric uncertainties and in the presence of friction and leakages.
机译:本文使用定量反馈理论(QFT)设计了一种坚固的固定增益线性输出压力控制器,用于双杆电疏水致动器。首先,通过在开环输入输出实验数据上应用高级快速傅里叶变换来识别系统的频率响应系列。这种方法导致系统的现实频率响应,这可以防止产生不必要的大QFT模板,因此有助于设计低阶QFT控制器。设计的控制器为闭环系统提供了所需的瞬态响应,期望的跟踪带宽,鲁棒稳定性和干扰抑制。实验结果证实了QFT控制器满足所需的性能。然后,考虑摩擦和泄漏以及参数不确定因素的存在,分析闭环系统的非线性稳定性。对于该分析,采用Takagi-Sugeno(T-S)模糊建模及其稳定性理论。为闭环系统导出T-S模糊模型,并且稳定条件呈现为线性矩阵不等式(LMI)。发现LMI是可行的,因此闭环系统的稳定性被证明是广泛的参数不确定性以及在存在摩擦和泄漏的情况下。

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