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首页> 外文期刊>WSEAS Transactions on Systems >PID Control for a Binary Distillation Column Using a Genetic Searching Algorithm
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PID Control for a Binary Distillation Column Using a Genetic Searching Algorithm

机译:基于遗传搜索算法的二元精馏塔PID控制。

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摘要

This paper presents the PI/PID control of a binary distillation column via a genetic searching algorithm (GSA). The time-domain design criterion, expressed as an integral of the squared error, is reformulated in the frequency-domain using the Parseval's relation and Pade approximation. A genetic algorithm is then used to search over the stability region in the controller parameter space for the best settings to minimize the design criterion. Our results indicate that the genetic algorithm can provide better solutions for the PI/PID control schemes as compared to those using the single-loop and multi-loop Ziegler-Nichols tuning methods. We also found that the GSA is easier to use than traditional optimization techniques. In addition, no knowledge of complex mathematics is required to use the GSA effectively.
机译:本文介绍了通过遗传搜索算法(GSA)对二元蒸馏塔进行PI / PID控制。使用Parseval关系和Pade逼近,在时域中重新表述了时域设计标准,以平方误差的整数表示。然后,使用遗传算法在控制器参数空间的稳定区域中搜索最佳设置,以最小化设计标准。我们的结果表明,与使用单回路和多回路Ziegler-Nichols调整方法的算法相比,遗传算法可以为PI / PID控制方案提供更好的解决方案。我们还发现,GSA比传统的优化技术更易于使用。此外,有效使用GSA不需要复杂的数学知识。

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