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首页> 外文期刊>International journal of systems science >Control of non-minimum phase systems with dead time: a fractional system viewpoint
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Control of non-minimum phase systems with dead time: a fractional system viewpoint

机译:使用死区时间控制非最小相位系统:分数系统的观点

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摘要

In this paper, a unified theory is proposed for the fractional control of the non-minimum phase plus dead time systems via the introduction of the fractional filter-PID control and stability inequality. More precisely, three Theorems from a fractional system-theoretic viewpoint are developed. The first Theorem deals with the controller design through the notion of generalised internal model control. That embeds the fractional filter-PID controller coupled with the unified form of the Smith predictor and the inverse compensator. The second Theorem designs a bound on the fractional filter parameter that leads to a stable feedback system. The third Theorem deals with the stability of a fractional quasi-characteristic polynomial of the commensurate order arising from the control of non-minimum phase systems with dead time. Two illustrative second-order plus dead time non-minimum phase systems are presented to test the efficacy of the resulting fractional filter-PID controller that obeys the stability bound. Controller and sensitivity performance indices for the nominal as well as mismatch cases reveal the effectiveness and robustness of the proposed method for enhanced closed-loop performance. Thus, the generalised inverse compensator, the fractional filter-PID controller and the stability inequality in corroboration with numerical simulations demonstrate the better control of non-minimum phase systems with dead time.
机译:本文通过引入分数滤波器PID控制和稳定性不等式,提出了统一理论,用于非最小相加死时间系统的分数控制。更确切地说,开发了来自分数系统的三个定理。第一个定理通过广义内部模型控制的概念处理控制器设计。将分数滤波器PID控制器嵌入与史密斯预测器的统一形式和逆补偿器耦合。第二定理设计了导致稳定反馈系统的分数滤波器参数上的绑定。第三理定理涉及由死亡时间的非最小相位系统控制产生的相应顺序的分数准特征多项式的稳定性。提出了两个说明性二阶加上死区时间系统,以测试所得的分数滤波器PID控制器的功效,该控制器可以遵守稳定界限。标称和不匹配案例的控制器和灵敏度性能指标揭示了提高闭环性能的提出方法的有效性和稳健性。因此,广义逆补偿器,分数滤波器控制器和粗化中的稳定性不等式与数值模拟,证明了具有死区时间的非最小相位系统的更好控制。

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