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Best achievable tracking performance in sampled-data systems via LTI controllers.\ud

机译:通过LTI控制器在采样数据系统中可获得最佳的跟踪性能。

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摘要

In this paper we study the problem of tracking a\udstep reference signal using sampled-data control systems. We are interested in the tracking performance, defined as the integral square of the tracking error response between the system’s output and the reference input. This performance is deemed the best achievable by a sampled-data controller with a linear time-invariant discrete-time compensator if it is the minimal attainable by all such controllers that stabilize the system. Our primary objective is to investigate the fundamental tracking\udperformance limit in sampled-data systems, and to understand\udwhether and how sampling and hold in a sampled-data system\udmay impose intrinsic barriers to performance. We consider two tracking performance measures, with one defined with respect to the unit step signal, and another with respect to a delayed step signal and averaged over one sampling period. We derive an analytical closed-form expression in each case for the best achievable performance. The results show that a performance loss is generally incurred in a sampled-data system, in comparison to the tracking performance achievable by analog controllers. This\udloss of performance, as so demonstrated by the expressions, is attributed to the non-minimum phase behaviors as well as the intersample effects generated by samplers and hold devices. Thus, sampled-data controllers do result in an additional performance limit, which is seen as a necessary tradeoff for other advantages offered by this class of controllers.
机译:在本文中,我们研究了使用采样数据控制系统跟踪\ udstep参考信号的问题。我们对跟踪性能感兴趣,跟踪性能定义为系统输出和参考输入之间的跟踪误差响应的整数平方。如果具有线性时不变离散时间补偿器的采样数据控制器认为该性能是最佳的,则这是使此类稳定系统的所有控制器都能获得的最小性能。我们的主要目标是调查采样数据系统中的基本跟踪\ ud性能限制,并了解\是否以及如何在采样数据系统中进行采样和保持\ ud可能会对性能造成内在障碍。我们考虑两种跟踪性能度量,一种针对单位阶跃信号定义,另一种针对延迟阶跃信号定义,并在一个采样周期内取平均值。我们在每种情况下都得出了一个解析的闭式表达式,以实现最佳的性能。结果表明,与模拟控制器可获得的跟踪性能相比,采样数据系统通常会造成性能损失。如表达式所示,这种性能下降归因于非最小相位行为以及采样器和保持设备产生的采样间效应。因此,采样数据控制器确实会导致额外的性能限制,这被视为此类控制器提供的其他优势的必要折衷。

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