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An Algorithmic Approach for Signal Measurement Using Symbolic Dynamics of Tent Map

机译:一种基于Tent map符号动力学信号测量的算法方法

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摘要

Abstract:udThe symbolic time series generated by a unimodal chaotic map starting from any initial condition creates a binary sequence that contains information about the initial condition. A binary sequence of a given length generated this way has a one-to-one correspondence with a given range of the input signal. This can be used to construct analogue to digital converters (ADC). However, in actual circuit realizations, component imperfections and ambient noise result in deviations in the map function from the ideal, which, in turn, can cause significant error in signal measurement. In this paper, we propose the ways of circumventing these problems through an algorithmic procedure that takes into account the non-idealities. The most common form of non-ideality--reduction in the height of the map function--alters the partitions that correspond to each symbolic sequence. We show that it is possible to define the partitions correctly if the height of the map function is known. We also propose a method to estimate this height from the symbolic sequence obtained. We demonstrate the efficacy of the proposed algorithm with simulation as well as experiment. With this development, practical ADCs utilizing chaotic dynamics may become reality.
机译:摘要: ud从任何初始条件开始的单峰混沌图生成的符号时间序列都会创建一个二进制序列,其中包含有关初始条件的信息。这样生成的给定长度的二进制序列与输入信号的给定范围具有一一对应关系。这可用于构建模数转换器(ADC)。但是,在实际的电路实现中,元件缺陷和环境噪声会导致映射函数偏离理想状态,进而会导致信号测量中的重大误差。在本文中,我们提出了一种通过考虑非理想性的算法程序来规避这些问题的方法。非理想性的最常见形式-降低地图函​​数的高度-更改与每个符号序列相对应的分区。我们表明,如果知道map函数的高度,则可以正确定义分区。我们还提出了一种从获得的符号序列中估计此高度的方法。我们通过仿真和实验证明了该算法的有效性。随着这一发展,利用混沌动力学的实用ADC可能成为现实。

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