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SIGN INVERTING CONTROL AND ITS IMPORTANT PROPERTIES FOR MULTIPLE TIME-DELAYED SYSTEMS

机译:标志反转控制及其多次延迟系统的重要属性

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This paper provides new results for a newly introduced control scheme, Sign Inverting Control (SIC), for linear time-invariant multiple time delay systems (LTI-MTDS). SIC suggests the inversion of the control polarity for delayed systems and it functions with one single requirement that the union of the control schemes provides a larger operating region in the domain of the delays than each of its components does. To meet this need, we propose a new method to characterize the potential stability-switching hypersurfaces for SIC applied systems. The acquisition of these hypersurfaces is a prerequisite for the description of the overall stability map. The new results in this paper reveal the relationship between the hypersurfaces of the SIC applied system and the original nominal system. As a result, the procurement of the hypersurfaces and stability map of the SIC applied system has been facilitated. Several illustrative example case studies are presented.
机译:本文为新引进的控制方案,标志反转控制(SIC)提供了新的结果,用于线性时间不变多时延迟系统(LTI-MTD)。 SIC表明延迟系统的控制极性的反转,并且它具有一个单一要求,即控制方案的结合在延迟域中提供比其每个组件的较大的操作区域。为了满足这种需求,我们提出了一种新的方法来表征SIC应用系统的潜在稳定性切换过度缺陷。采集这些超周围是对整体稳定性地图的描述的先决条件。本文中的新结果揭示了SIC应用系统的超周缺陷与原始名义系统之间的关系。结果,已经促进了SIC应用系统的超周迹和稳定性图的采购。提出了几种说明性案例研究。

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