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Design of Digital High-Gain PD Control Systems Using Analytical Approach

机译:基于解析法的数字高增益局部放电控制系统设计

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It is known that a continuous stable high-gain PD control system may become unstable when the controller is implemented digitally. Recent works consider this problem and determine the stability regions of such systems. In most cases the stability regions are obtained numerically. This work introduces a new analytical approach for obtaining the stability criteria for digital systems. The approach is based on the critical constraints of simplified version of Jury test and makes use of the capabilities of MATLAB software. The approach is applied to digital PD control systems. Here, the effect of computation time in addition to that of sampling period are considered. The resulting stability criteria are presented in closed forms that are suitable for design purposes and make it possible to map the stability region for various control design parameters. This versatile capability is illustrated via design examples. To the contrary of previous knowledge, the results show that, in certain cases, the stability is obtained through increasing the proportional gain or computation time rather than by decreasing them. A comparison with the literature shows that this approach is straightforward, versatile and even corrects some of the stability regions that have been reported.
机译:众所周知,当控制器以数字方式实现时,连续稳定的高增益PD控制系统可能会变得不稳定。最近的工作考虑了这个问题并确定了这种系统的稳定性区域。在大多数情况下,可以通过数值获得稳定性区域。这项工作引入了一种新的分析方法,以获得数字系统的稳定性标准。该方法基于简化的Jury测试版本的关键约束,并利用了MATLAB软件的功能。该方法适用于数字PD控制系统。这里,除了采样周期的影响外,还考虑了计算时间的影响。所产生的稳定性标准以适合设计目的的封闭形式呈现,并且可以为各种控制设计参数绘制稳定性区域。通过设计示例说明了这种通用功能。与先前的知识相反,结果表明,在某些情况下,通过增加比例增益或计算时间而不是通过减小比例增益或计算时间来获得稳定性。与文献的比较表明,这种方法简单,通用,甚至可以纠正某些已报道的稳定性区域。

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