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POLE PLACEMENT CONTROLLERS FOR LINEAR TIME-DELAY SYSTEMS WITH COMMENSURATE POINT DELAYS

机译:具有适度点延迟的线性时滞系统的极点布置控制器

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This paper investigates the exact and approximate spectrum assignment properties associated with realizable output-feedback pole-placement type controllers for single-input single-output linear time-invariant time-delay systems with commensurate point delays. The controller synthesis problem is discussed through the solvability of a set of coupled diophantine equations of polynomials. An extra complexity is incorporated to the above design to cancel extra unsuitable dynamics being generated when solving the above diophantine equations. Thus, the complete controller tracks any arbitrary prefixed (either finite or delaydependent) closed-loop spectrum. However, if the controller is simplified by deleting the above mentioned extra complexity, then the robust stability and approximated spectrum assignment are still achievable for a certain sufficiently small amount of delayed dynamics. Finally, the approximate spectrum assignment and robust stability problems are revisited under plant disturbances if the nominal controller is maintained. In the current approach, the finite spectrum assignment is only considered as a particular case to the designer's choice of a (delay-dependent) arbitrary spectrum assignment objective.
机译:本文研究了与单点输入单输出线性时不变时滞系统相对应的可实现的输出反馈极点布置型控制器的精确和近似频谱分配特性。控制器综合问题是通过一组多项式耦合双色子方程的可解性来讨论的。在上述设计中并入了额外的复杂度,以消除求解上述双色子方程时产生的额外不合适的动力学。因此,完整的控制器可跟踪任何任意的带前缀(有限或延迟相关)的闭环频谱。但是,如果通过删除上述额外的复杂性来简化控制器,则对于某些足够小的延迟动力学,仍然可以实现鲁棒的稳定性和近似的频谱分配。最后,如果维持标称控制器,则可以在工厂扰动下重新考虑近似频谱分配和鲁棒稳定性问题。在当前方法中,有限频谱分配仅被视为设计者选择(与延迟相关)任意频谱分配目标的一种特殊情况。

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