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PID Flow-Level Control Tuned by Genetic Algorithm and Harmony Search Algorithm

机译:遗传算法和和谐搜索算法调整的PID流量控制

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PID controller is widely used in industries because of its simplicity and robustness. A Simple approach to improve regulatory control performance is to design an advanced controller based on specific desired criteria. In this paper, a theoretical closed loop model of the Level-flow control trainer is developed using standard TF estimation method. The tuning of Single loop PID controller is done in MATLAB by Genetic Algorithm & Harmony Search Algorithm and the latter one gives the better performance. So, HSA is chosen for the advanced controller tuning. The values obtained from HSA are used for getting the real-time response of the system for cascade control and feed forward control strategy. A faster response in case of feed forward and a better disturbance rejection in case of cascade controller are found. The frequency response (Bode Plot) of single variable process and multivariable process are compared and comment on relative stability has been made based on the Gain margin obtained from the frequency response analysis.
机译:由于其简单性和鲁棒性,PID控制器广泛应用于行业。一种简单的方法来提高监管控制性能是根据具体期望标准设计高级控制器。在本文中,使用标准TF估计方法开发了水平流量控制训练器的理论闭环模型。单循环PID控制器的调整是通过遗传算法和和谐搜索算法在MATLAB中完成的,后者提供了更好的性能。因此,选择HSA用于高级控制器调整。从HSA获得的值用于获得级联控制和馈送前导控制策略的系统的实时响应。找到,在找到级联控制器的情况下为前馈和更好的扰动抑制时,更快的响应。比较单个可变过程和多变量过程的频率响应(BODE图)并基于从频率响应分析获得的增益余量进行了相对稳定性的评论。

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