首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Characterization and Attenuation of Sandwiched Deadband Problem Using Describing Function Analysis and Application to Electrohydraulic Systems Controlled by Closed-Center Valves
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Characterization and Attenuation of Sandwiched Deadband Problem Using Describing Function Analysis and Application to Electrohydraulic Systems Controlled by Closed-Center Valves

机译:用描述函数法对夹层死区问题进行表征和衰减,并将其应用于全闭阀控制的电液系统

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Unlike input deadband, the sandwiched deadband between actuator and plant dynamics is very difficult to be explicitly compensated for due to the proceeding actuator dynamics whose effect may not be negligible. The paper presents a practical way to overcome the design conservativeness of existing methods in dealing with sandwiched deadband. Specifically, a describing function based nonlinear analysis method is proposed to characterize the effect of the sandwiched deadband on the stability and performance of the overall closed-loop system. The analysis results can be used to determine the highest closed-loop bandwidth that can be achieved without inducing residual limit cycles and instability. Optimal controller parameters can then be found to maximize the achievable closed-loop control performance. The technique is applied to an electrohydraulic system controlled by closed-center valves and a nonlinear feedback controller. Simulation results showed severe oscillations as the feedback control gains are increased to the predicted threshold values. Comparative experimental results also showed the effectiveness of the proposed method in reducing the conservativeness of traditional design and the improved closed-loop control performance in implementation.
机译:与输入死区不同,由于进行中的执行器动态效果可能不可忽略,因此很难明确补偿执行器和工厂动态之间的夹层死区。本文提出了一种实用的方法来克服现有方法在处理夹层死区方面的设计保守性。具体而言,提出了一种基于描述函数的非线性分析方法,以表征夹心死区对整个闭环系统的稳定性和性能的影响。分析结果可用于确定在不引起剩余极限周期和不稳定性的情况下可以实现的最高闭环带宽。然后可以找到最佳的控制器参数,以使可实现的闭环控制性能最大化。该技术被应用于由闭心阀和非线性反馈控制器控制的电动液压系统。仿真结果表明,随着反馈控制增益增加到预测阈值,剧烈振荡。对比实验结果还表明,该方法在减少传统设计的保守性和实施中改进的闭环控制性能方面是有效的。

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