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A symbolic dynamics approach to performance analysis of quantized feedback systems: the scalar case

机译:量化反馈系统性能分析的符号动力学方法:标量情况

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摘要

When dealing with the control of a large number of interacting systems, the fact that the flow of information has to be limited becomes an essential feature of the control design. The first consequence of the limited information flow constraint is that the signals that the controllers and the systems exchange have to be quantized. Though quantization has already been extensively considered in the control literature, its analysis from the point of view of the information flow demand has been considered only recently.Limiting the information flow between a plant and a controller will necessarily lead to a performance degradation of the feedback loop, and we expect a trade-off between the achievable performance and the amount of information exchange allowed in the loop.Most of the success of modern digital communication theory in the last 50 years is due to the contributions of information theory, which proposed a symbolically based analysis of the communication channel performance. The same goal is much more difficult to reach in digital control theory.This paper proposes an attempt toward this direction. The main contribution of this paper is to provide a complete analysis of the trade-off between performance and information flow in the simple case of the stabilization of a scalar linear system by means of a memoryless quantized feedback map.
机译:当处理大量交互系统的控制时,必须限制信息流这一事实成为控制设计的基本特征。有限的信息流约束的第一个结果是控制器和系统交换的信号必须被量化。尽管控制文献中已经对量化进行了广泛的考虑,但是从信息流需求的角度进行分析只是在最近才进行的。限制工厂与控制器之间的信息流必然会导致反馈的性能下降循环,我们期望在循环中可实现的性能与信息交换量之间进行权衡。近50年来,现代数字通信理论的成功大部分归功于信息理论的贡献,这提出了基于符号的通信通道性能分析。在数字控制理论中,要达到这个目标要困难得多。本文提出了朝这个方向的尝试。本文的主要贡献是通过无记忆量化反馈映射,在标量线性系统稳定的简单情况下,提供性能和信息流之间权衡的完整分析。

著录项

  • 作者

    FAGNANI F; S. ZAMPIERI;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 eng
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