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首页> 外文期刊>IEEJ Transactions on Electrical and Electronic Engineering >Dual‐rate control system extension using the null space of a closed‐loop system
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Dual‐rate control system extension using the null space of a closed‐loop system

机译:使用闭环系统的空空间的双率控制系统扩展

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摘要

The present paper discusses a design method for a single‐input single‐output linear time‐invariant dual‐rate sampled‐data control system, where the sampling interval of a plant output is longer than the holding interval of a control input. In such a control system, intersample output oscillation, called ripple, can occur even if the sampled output converges to the reference input. In order to resolve this problem, two design methods have been proposed such that the existing sampled output response is maintained: an open‐loop system design method and a closed‐loop system design method. However, the open‐loop design method cannot be applied to systems for which the gain matrix of the control input is full rank. On the other hand, the closed‐loop design method can be used for such systems, but the sampled output response is maintained only in the steady state. The present study proposes a new closed‐loop design method in which ripples are eliminated and both the transient and steady‐state responses are maintained. The effectiveness of the proposed method is demonstrated through numerical examples. © 2019 Institute of Electrical Engineers of Japan. Published by John Wiley & Sons, Inc.
机译:本文讨论了单输入单输出单输出线性时间 - iNIMININIANT DUAL -RATE SMAPPLED -DATA -DATA控制系统的设计方法,其中采样间隔植物输出的时间长于控制输入的保持间隔。在这样的控制系统中,即使采样输出收敛到参考输入,也可能发生称为Ripple的示例输出振荡。为了解决此问题,已经提出了两种设计方法,以便维持现有的采样输出响应:一种开环系统设计方法和闭环系统设计方法。但是,开环设计方法不能应用于控制输入的增益矩阵的系统。另一方面,可以将闭环设计方法用于此类系统,但是采样的输出响应仅保持在稳态状态。本研究提出了一种新的闭环设计方法,其中消除了波纹,并保持瞬态和稳态响应。通过数值示例证明了所提出方法的有效性。 ©2019日本电气工程师研究所。由John Wiley&amp出版Sons,Inc。

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