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Study of PID controller design for systems with Time delay

机译:时滞系统的PID控制器设计研究

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摘要

PID controllers are being widely used in industry due to their well-grounded established theory, simplicity, maintenance requirements, and ease of retuning online. In the past four decades, there are numerous papers dealing with tuning of PID controller. Designing a PID controller to meet gain and phase margin specification is a well-known design technique. If the gain and phase margin are not specified carefully then the design may not be optimum in the sense that could be large phase margin (more robust) that could give better performance. This paper studies the relationship between ISE performance index, gain margin, phase margin and compares two tuning technique, based on these three parameters. These tuning techniques are particularly useful in the context of adaptive control and auto-tuning, where the control parameters have to be calculated on-line. In the first part, basics of various controllers, their working and importance of PID controller in reference to a practical system (thermal control system) is discussed. In the latter part of the work, exhaustive study has been done on two different PID controller tuning techniques. A compromise between robustness and tracking performance of the system in presence of time delay is tried to achieve. Results of simulation, graph, plots, indicate the validity of the study.
机译:PID控制器由于其扎实的既定理论,简单性,维护要求以及易于在线调整的特性而被广泛用于工业中。在过去的四十年中,有许多论文涉及PID控制器的调节。设计PID控制器以满足增益和相位裕度规范是一种众所周知的设计技术。如果未仔细指定增益和相位裕度,则设计可能不是最佳的,因为可能会有较大的相位裕度(更坚固),可以提供更好的性能。本文研究了ISE性能指标,增益裕度,相位裕度之间的关系,并基于这三个参数比较了两种调整技术。这些调整技术在自适应控制和自动调整的情况下特别有用,在这些情况下,必须在线计算控制参数。在第一部分中,讨论了各种控制器的基础知识,它们的工作以及PID控制器相对于实际系统(热控制系统)的重要性。在工作的后半部分,已对两种不同的PID控制器调节技术进行了详尽的研究。试图在存在时间延迟的情况下实现系统的鲁棒性和跟踪性能之间的折衷。模拟,图形,曲线图的结果表明了研究的有效性。

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    Mishra Anurag;

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  • 年度 2011
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