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Stable LPV realization of parametric transfer functions and its application to gain-scheduling control design

机译:稳定的LPV实现参数传递函数及其在增益调度控制设计中的应用

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The paper deals with the LPV stabilizability problem for linear plants whose parameters vary with time in a compact set. First, necessary and sufficient conditions for the existence of a linear gain-scheduled stabilizing compensator are given. Next, it is shown that, if these conditions are satisfied, any compensator transfer function depending on the plant parameters and internally stabilizing the closed-loop control system when the plant parameters are constant, can be realized in such a way that the closed-loop asymptotic stability is guaranteed under arbitrary parameter variations. To find one such realization, a reasonably simple and general algorithm based on Lyapunov equations and Cholesky factorization is provided. The result can profitably be used to achieve both pointwise optimality (or pole placement) and LPV stability. Some potential applications in adaptive control and online tuning are pointed out.
机译:该论文涉及LPV稳定性问题,用于线性植物,其参数随着紧凑型中的时间而变化。首先,给出了存在线性增益调度稳定补偿器的必要和充分条件。接下来,示出了,如果满足这些条件,则当植物参数恒定时,任何补偿器传递功能,根据工厂参数和内部稳定闭环控制系统,可以以闭环的方式实现在任意参数变化下保证了渐近稳定性。为了找到一个这样的实现,提供了一种基于Lyapunov方程和凿弦分解的合理简单和一般的算法。结果可以盈利地用于达到尖锐的最优性(或极点)和LPV稳定性。指出了适应性控制和在线调谐中的一些潜在应用。

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