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Robust controller design for solar plant using extended Coefficient diagram method (CDM) incorporating PID

机译:结合PID的扩展系数图法(CDM)用于太阳能电站的鲁棒控制器设计

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In this paper, a design of robust controller based on Coefficient diagram method is investigated, to be used to control the outlet temperature of a solar plant based on cylindrical-parabolic collectors. It is noted that although the responses of the control system satisfy both transient and steady state specifications, the transient response generally still has long response time. In order to improve the speed of the system response, a PID controller is added into the controller designed by CDM. The design of both of CDM and PID controllers is done with a linearization of the nonlinear uncertain system described by two Partial differential equations around an operating point of the real system, then the designed controllers will be applied to the nonlinear system. The simulation results show that the performance of the controller based on CDM combined with PID has short response time, with no overshoot and the best perturbation rejection properties.
机译:本文研究了一种基于系数图法的鲁棒控制器设计,用于控制基于圆柱抛物面集热器的太阳能电站的出口温度。注意,尽管控制系统的响应既满足瞬态和稳态指标,但瞬态响应通常仍具有较长的响应时间。为了提高系统响应速度,将PID控制器添加到CDM设计的控制器中。 CDM和PID控制器的设计都是通过非线性不确定系统的线性化完成的,非线性系统由围绕实际系统工作点的两个偏微分方程描述,然后将所设计的控制器应用于非线性系统。仿真结果表明,基于CDM的PID控制器的响应时间短,无超调,扰动抑制性能最佳。

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