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The systematic design of PID controllers using Nyquist stabiliy

机译:基于Nyquist稳定性的PID控制器的系统设计。

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This paper introduces new and fast ways of systematically calculating the limiting values of the parameters of PID-action controllers for systems that are open-loop stable, or unstable, minimum phase, or non-minimum phase, and can contain explicit time-delay terms. The technique presented, which is based on the axis-crossing form of Nyquist's stability theorem, can be readily used for the design of PID controllers to meet certain closed-loop stability and performance requirements. A summary of the background development is given and it is then shown how, by using a simple feature available in most symbolic algebra environments, a much faster version of the proposed method, which avoids the need to calculate any Nyquist diagrams, can be obtained for systems with no explicit time-delay term. A recent complete analytical solution to the PID compensator that results in a very significant reduction in the computing time, yielding almost real-time results, is also introduced. The methods proposed can be extended to develop robust controllers for systems with uncertainties, and present a visual characterization of all PID controllers meeting the desired performance criteria for such systems. Other time-domain performance requirements such as the Integral of Time and Absolute Error criterion can also be employed to select an optimal operating point from the allowable set of controller parameters. An application of these tools to the fan-speed control of the Pegasus aircraft gas-turbine engine, used in the Harrier jump-jet, will be presented.
机译:本文介绍了新的快速方法,可以系统地计算开环稳定或不稳定,最小相位或非最小相位的系统中PID动作控制器的参数极限值,并且可以包含显式的时延项。所提出的技术基于Nyquist稳定性定理的轴交叉形式,可以很容易地用于PID控制器的设计,以满足某些闭环稳定性和性能要求。给出了背景发展的摘要,然后显示了如何通过使用大多数符号代数环境中可用的简单功能,来获得所建议方法的更快版本,从而避免了需要计算任何奈奎斯特图的情况。没有明确的时间延迟项的系统。还介绍了PID补偿器的最新完整分析解决方案,该解决方案可显着减少计算时间,并产生几乎实时的结果。所提出的方法可以扩展为开发具有不确定性的系统的鲁棒控制器,并提供满足此类系统所需性能标准的所有PID控制器的可视化表征。还可以采用其他时域性能要求,例如时间积分和绝对误差准则,以从控制器参数的允许集合中选择最佳工作点。将介绍这些工具在用于the式跳跃式喷气发动机的Pegasus飞机燃气涡轮发动机的风扇速度控制中的应用。

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