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Controller Tuning Approach with robustness, stability and dynamic criteria for the original AVR System

机译:控制器调整方法,具有原始AVR系统的鲁棒性,稳定性和动态标准

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The automatic voltage regulator (AVR) system has received much interest in the last decade. Efforts are made to find a parameter set for proportional-integral-derivative based (PID) controllers to obtain a fast onset time with minimal overshoot. To assure system stability and robustness, these characteristics must be considered during the optimization process. Cost functions have been already proposed in the literature. However, either they have a high number of weighting parameters to set to achieve a satisfactory trade-off between dynamic performance, robustness and stability or they consider only robustness and stability. This paper proposes a new optimization framework using a simple performance criterion to achieve rapid time response characteristics as well as to meet robustness and stability requirements. The performance of the approach is confirmed by comparing its results to those obtained with two previously published performance criteria and the results obtained with the systune command in Matlab (R) and the MathWorks (R) PID tuning algorithm. The results obtained with the proposed approach present a better trade-off between dynamic performance, robustness and stability. (C) 2019 InternationalAssociation for Mathematics and Computers in Simulation (IMACS). Published by Elsevier B.V. All rights reserved.
机译:自动电压稳压器(AVR)系统在过去十年中获得了很多兴趣。努力寻找基于比例 - 积分衍生的(PID)控制器的参数设置,以获得最小的过冲的快速发作时间。为了确保系统稳定性和稳健性,在优化过程中必须考虑这些特性。在文献中已经提出了成本职能。然而,它们具有大量的加权参数,以便在动态性能,稳健性和稳定性之间实现令人满意的权衡,或者他们认为稳健性和稳定性。本文提出了一种新的优化框架,使用简单的性能标准来实现快速时间响应特性,并满足鲁棒性和稳定性要求。通过将其结果与用两个先前公布的绩效标准获得的结果进行比较来确认该方法的性能,并通过Matlab(R)和Mathworks(R)PID调谐算法获得的Systune命令获得的结果。通过拟议方法获得的结果在动态性能,鲁棒性和稳定性之间具有更好的权衡。 (c)2019年仿真中数学和计算机的国际访问(IMACS)。由elsevier b.v出版。保留所有权利。

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