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A unified approach for teaching root locus and bode compensator design

机译:指导根轨迹和波德补偿器设计的统一方法

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In an undergraduate controls course taught with a standard textbook, students often lose sight of the "forest" of control systems design because they struggle to master the numerous control system algorithm "trees" found in this textbook. As an alternative, the authors of this paper propose a design approach that is common for a large variety of compensators using both the more intuitive root locus design and the more practical Bode design methods. This approach is based on a simple procedure for root locus Proportional-Derivative (PD) design. In this paper, the Bode design procedures for three compensators: lead, PI, and Proportional-Integral-Derivative (PID) are developed from this simple PD design. Procedures for rate feedback, lag and PI-lead (practical PID) compensators have also been developed using this approach. The proposed Bode design procedures are very similar to the procedures developed for root locus design published previously. An example of a lead design from an undergraduate control system laboratory demonstrating this approach is presented.
机译:在用一本标准教科书教授的本科控制课程中,学生常常会迷失控制系统设计的“森林”,因为他们难以掌握本教科书中的众多控制系统算法“树”。作为替代方案,本文的作者提出了一种使用更直观的根轨迹设计和更实用的Bode设计方法的多种补偿器通用的设计方法。此方法基于根轨迹比例微分(PD)设计的简单过程。在本文中,通过这种简单的PD设计开发了三种补偿器的Bode设计程序:导程,PI和比例积分微分(PID)。率反馈,滞后和PI超前(实际PID)补偿器的程序也已使用此方法开发。建议的Bode设计程序与先前发布的针对根基因座设计开发的程序非常相似。展示了一个来自大学控制系统实验室的主管设计示例,演示了这种方法。

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