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Experimental Evidence of Variable-Order Behavior of Ladders and Nested Ladders

机译:梯子和嵌套梯子的变阶行为的实验证据

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摘要

The experimental study of two kinds of electrical circuits, a domino ladder and a nested ladder, is presented. While the domino ladder is known and already appeared in the theory of fractional-order systems, the nested ladder circuit is presented in this article for the first time. For fitting the measured data, a new approach is suggested, which is based on using the Mittag-Leffler function and which means that the data are fitted by a solution of an initial-value problem for a two-term fractional differential equation. The experiment showed that in the frequency domain the domino ladder behaves as a system of order 0.5 and the nested ladder as a system of order 0.25, which is in perfect agreement with the theory developed for their design. In the time domain, however, the order of the domino ladder is changing from roughly 0.5 to almost 1, and the order of the nested ladder is changing in a similar manner, from roughly 0.25 to almost 1; in both cases, the order 1 is never reached, and both systems remain the systems of non-integer order less than 1. Both studied types of electrical circuits provide the first known examples of circuits, which are made of passive elements only and which exhibit in the time domain the behavior of variable order.
机译:提出了多米诺骨牌阶梯和嵌套阶梯两种电路的实验研究。虽然多米诺梯形图是已知的,并且已经出现在分数阶系统理论中,但本文中首次提出了嵌套梯形图电路。为了拟合测得的数据,提出了一种新的方法,该方法基于使用Mittag-Leffler函数的方法,这意味着通过二阶分数阶微分方程的初值问题的解来拟合数据。实验表明,在频域中,多米诺骨牌阶梯的行为是0.5阶的系统,而嵌套梯形的行为是0.25阶的系统,这与为其设计开发的理论完全吻合。但是,在时域中,多米诺阶梯的顺序从大约0.5变为几乎1,嵌套阶梯的顺序也以类似的方式从大约0.25变为几乎1。在这两种情况下,都永远不会达到1的阶数,并且两个系统都保持非整数阶数小于1的系统。这两种研究的电路类型均提供了第一个已知的电路示例,这些示例仅由无源元件构成并且具有在时域中,行为是可变的。

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