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MULTI-OBJECTIVE OPTIMAL DESIGN OF FOUR-PARAMETER PID CONTROLS

机译:四参数PID控制的多目标优化设计

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This paper presents a multi-objective optimal PID (Proportional-Integral-Derivative) controller with the derivative filter factor as the fourth design parameter. The complete design of the PID controller should involve tuning four parameters instead of three. However, most of the research papers consider only three parameters. The fourth parameter, the filter factor, is assigned to a default value or selected experimentally. In all cases, the choice of this factor filter will alter the closed-loop response's characteristics that were assumed before inserting the filter in the control loop. Therefore in this study, we include the filter factor in the decision variable space from the early stage of the control system design. Also, we formulate the design problem as a multi-objective optimization problem in order to show all the trade-offs among the system speed of response, percentage overshoot, sensitivity to external load disturbances, and sensitivity to noises impacting the measurements as the four parameters of the PID control are tuned. The optimal trade-offs solutions are then introduced to the decision-maker who can choose any one of them.
机译:本文提出了一种以微分滤波因子为第四设计参数的多目标最优PID(比例积分微分)控制器。 PID控制器的完整设计应包括调整四个参数,而不是三个参数。但是,大多数研究论文仅考虑三个参数。第四个参数(滤波系数)被分配给默认值或通过实验选择。在所有情况下,选择该因子滤波器都会改变在将滤波器插入控制环之前假定的闭环响应特性。因此,在本研究中,我们从控制系统设计的早期就将滤波因子包括在决策变量空间中。另外,我们将设计问题公式化为多目标优化问题,以显示系统响应速度,超调百分比,对外部负载干扰的敏感度以及对影响测量的噪声的敏感度之间的所有权衡,这是四个参数PID控制的参数已调整。然后,将最佳的折衷解决方案介绍给决策者,他们可以选择其中的任何一种。

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