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Discretisation of continuous-time dynamic multi-input multi-output systems with non-uniform delays

机译:具有非均匀延迟的连续时间动态多输入多输出系统的离散化

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摘要

Input and output time delays in continuous-time (CT) dynamic systems impact such systems differently as their effects are encountered before and after the state dynamics. Given a fixed sampling time, input and output signals in multiple-input multiple-output (MIMO) systems may exhibit any combination of the following four cases: no delays, integer-multiple delays, fractional delays and integer-multiple plus fractional delays. A common pitfall in the digital control of delayed systems literature is to only consider the system timing diagram to derive the discrete-time (DT) equivalent model; hence, effectively 'lump' the delays across the system as one total delay. DT equivalent models for systems with input delays are radically different than those with output delays. Existing discretisation techniques for delayed systems usually consider the delays to be integer-multiples of the sampling time. This study is intended to serve as a reference for systematically deriving DT equivalent models of MIMO systems exhibiting any combination of the four delay cases. This algorithm is applied towards discretising an MIMO heat exchanger process with non-uniform input and output delays. A significant improvement towards the CT response was noted when applying this algorithm as opposed to rounding the delays to the closest integer-multiple of the sampling time.
机译:连续时间(CT)动态系统中的输入和输出时间延迟会对这种系统产生不同的影响,因为在状态动态之前和之后都会遇到它们的影响。在给定固定的采样时间的情况下,多输入多输出(MIMO)系统中的输入和输出信号可能表现出以下四种情况的任意组合:无延迟,整数倍延迟,分数延迟以及整数倍加分数延迟。延迟系统文献中数字控制的一个常见缺陷是仅考虑系统时序图来得出离散时间(DT)等效模型。因此,有效地将系统中的延迟“集中”为一个总延迟。具有输入延迟的系统的DT等效模型与具有输出延迟的系统完全不同。用于延迟系统的现有离散化技术通常将延迟视为采样时间的整数倍。本研究旨在为系统推导展现出四种时延情况的任意组合的MIMO系统的DT等效模型提供参考。该算法适用于离散化具有不均匀输入和输出延迟的MIMO换热器过程。应用此算法时,与将延迟四舍五入到采样时间的最接近整数倍相比,注意到了对CT响应的显着改善。

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  • 来源
    《Control Theory & Applications, IET》 |2011年第14期|p.1637-1647|共11页
  • 作者

    Kassas Z.M.;

  • 作者单位

    Radionavigational Laboratory, Wireless Networking & Communications Group, Department of Electrical and Computer Engineering, The University of Texas at Austin, USA;

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  • 正文语种 eng
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