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Negative imaginary systems theory in the robust control of highly resonant flexible structures

机译:负虚系统理论在高共振柔性结构鲁棒控制中的应用

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This presentation will cover recent developments in the theory of negative imaginary systems and their application to the control of highly resonant flexible structures. The theory of negative imaginary systems arose out of a desire to unify a number of classical methods for the control of lightly damped structures with collocated force actuators and position sensors including positive position feedback and integral force feedback. The key result is a stability result which shows why these methods are guaranteed to yield robust closed loop stability in the face of unmodelled spillover dynamics. Related results to be presented connect the theory of negative imaginary systems to positive real systems theory and a negative imaginary lemma has been established which is analogous to the positive real lemma. The presentation will also discuss recent controller synthesis results based on the theory of negative imaginary systems along with applications in the aerospace area such as the control of large space flexible structures.
机译:本演讲将涵盖负虚构系统理论的最新进展及其在高共振柔性结构控制中的应用。负虚构系统的理论源于对统一多种经典方法的期望,这些经典方法通过并置的力致动器和位置传感器(包括正位置反馈和积分力反馈)来控制轻阻尼结构。关键结果是一个稳定性结果,该结果表明了为什么在面对未建模的溢出动力学时,可以确保这些方法能够产生鲁棒的闭环稳定性。提出的相关结果将负虚系统的理论与正实系统的理论联系起来,并且已经建立了一个负虚引理,该引理类似于正实引理。该演讲还将讨论基于负虚构系统理论的最新控制器综合结果,以及在航空航天领域的应用,例如大空间柔性结构的控制。

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