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A Control Strategy for Electro-hydrostatic Actuator Considering Static Friction, Resonance, and Oil Leakage

机译:考虑静摩擦,共振和漏油的电动静液压执行机构的控制策略

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Electro-hydrostatic actuators (EHAs) are hydraulic systems that operate without control valves, making them a compact, cheap, and highly energy efficient system. However, resonance, static friction, and oil leakage degrade their control performance. Three controllers are integrated to overcome these issues. First, static friction is suppressed by a feedback modulator (FM). Input torque is quantized to exceed the maximum static friction force, and quantization errors are suppressed by the FM. Second, resonance is canceled out by a self resonance cancellation (SRC) technique. In the SRC, both angle responses of a hydraulic pump and a hydraulic motor are measured, and the rigid body mode is extracted. Then, resonance becomes unobservable, changing the system as a second-order system. Third, modeling errors, including oil leakage, are suppressed by a self resonance cancellation disturbance observer (SRCDOB). As the SRCDOB is implemented in the rigid body mode, the cut-off frequency of the SRCDOB can be greater than that of most common disturbance observers. This combination of controllers drastically improves the control performance, and it enables control system design based on frequency.
机译:电动静液压执行器(EHA)是液压系统,无需控制阀即可运行,从而使其成为紧凑,便宜且高效节能的系统。但是,共振,静摩擦和漏油会降低其控制性能。集成了三个控制器以克服这些问题。首先,通过反馈调制器(FM)抑制静摩擦。输入扭矩被量化为超过最大静摩擦力,并且FM抑制了量化误差。第二,通过自共振消除(SRC)技术消除共振。在SRC中,测量液压泵和液压马达的角度响应,并提取刚体模式。然后,共振变得不可观察,从而将系统更改为二阶系统。第三,通过自共振消除干扰观测器(SRCDOB)可以抑制包括漏油在内的建模误差。由于SRCDOB是在刚体模式下实现的,因此SRCDOB的截止频率可能大于大多数常见干扰观测器的截止频率。控制器的这种组合极大地提高了控制性能,并且使基于频率的控制系统设计成为可能。

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