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Effect of Initialization on a Class of Fractional Order Systems: Experimental Verification and Dependence on Nature of Past History and System Parameters

机译:初始化对一类分数阶系统的影响:实验验证以及对过去历史和系统参数的依赖

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The objectives of this work are (ⅰ) to verify experimentally the theoretical claim that neither Riemann-Liouville nor Caputo fractional derivative can be used to predict the time response of fractional order systems without proper correction for the system's past history in terms of an initialization function and (ⅱ) to study quantitatively how the error incurred due to ignoring initialization depends on the nature of the past history and the system parameters. The entire analysis is restricted to a special class of single input single output linear time invariant fractional order system which can be realized by a simple electrical circuit consisting of a resistance and a fractance in series. This work involves two different realizations of fractances or constant phase elements whose characteristic parameters are first determined based on their respective impedance frequency responses and then used to simulate the time responses of the circuit with the input same as the one used for experimentation using a numerical method for two cases: (ⅰ) taking past history into account and (ⅱ) without taking past history into account. Thereafter, an integral square error criterion is presented and variation of the same is studied with respect to system parameters and nature of the history function to have a relative idea of how much partial past history in the absence of a complete one should suffice in practical applications.
机译:这项工作的目的是(ⅰ)通过实验验证理论上的主张,即黎曼-利维尔(Riemann-Liouville)或Caputo分数导数都不能用于预测分数阶系统的时间响应,而无需根据初始化函数对系统的过去历史进行适当校正。 (ⅱ)定量研究由于忽略初始化而导致的错误如何取决于过去历史的性质和系统参数。整个分析仅限于一类特殊的单输入单输出线性时不变分数阶系统,该系统可以通过一个由电阻和分数组成的简单电路来实现。这项工作涉及两种不同的分数或恒定相位元素实现,其特征参数首先根据其各自的阻抗频率响应确定,然后用于模拟电路的时间响应,其输入与使用数值方法进行实验的输入相同对于两种情况:(ⅰ)考虑过去的历史,并且(ⅱ)不考虑过去的历史。此后,提出了一个整数平方误差准则,并针对系统参数和历史函数的性质研究了该准则的变体,从而相对地认为,在没有完整的历史准则的情况下,有多少部分过去的历史在实际应用中就足够了。

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