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Optimization of PID Controller with First Order Noise Filter

机译:具有一阶噪声滤波器的PID控制器优化

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摘要

Measurement noise is one of the most widely and frequently experienced problems of an industrial working environment. The effects of measurement noise can be reduced by filtering the measurement signal. The aim of the current work is to explore (a) the optimum location of filter in the control loop and (b) the controller tuning in presence of measurement noise. In the present work, two locations are considered for placing the first order noise filter. One, in the feedback path after the sensor and, other cascaded with the derivative term. The controller and filter parameters were tuned using Particle Swarm Optimization (PSO) technique for a combined performance criterion composed of Maximum Overshoot and Integral Absolute Error (IAE). For studying the effectiveness of the proposed scheme, two simulations and a hardware based experiment on a speed control of a DC motor are considered. Based on these investigations, it can be concluded that the filter located in feedback path gives better performance as compared to the filter cascaded with the derivative term in a noisy environment.
机译:测量噪声是工业工作环境中最广泛且经常经历的问题之一。通过过滤测量信号,可以降低测量噪声的影响。目前工作的目的是探索(a)控制回路中的过滤器的最佳位置和(b)控制器在存在测量噪声的情况下调整。在本作工作中,考虑两个位置用于放置第一阶噪声滤波器。一个,在传感器之后的反馈路径中,其他与衍生项级联。使用粒子群优化(PSO)技术进行调整控制器和滤波器参数,用于组成的最大过冲和整体绝对误差(IAE)组成的组合性能标准。为了研究所提出的方案的有效性,考虑了两种模拟和基于硬件基于DC电动机的速度控制的实验。基于这些调查,可以得出结论,位于反馈路径中的滤波器与嘈杂环境中的衍生术语级联的过滤器相比具有更好的性能。

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