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Realization of Solid Fractional Order Capacitor Using Common Materials

机译:使用普通材料实现扎实的分数级电容器

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Fractional order element is the most basic components for realization of fractional order systems. A solid fractional order capacitor (FOC) is observed to be capable of replacing bulky ladder RC circuits without altering the system’s behaviour. Instead of an ordinary, conventional and high cost semi-solid FOC, the idea is to design an economically viable solid FOC with low fabrication cost materials like carbon, nail enamel and araldite. This paper describes fabrication of FOC with copper as electrodes and dielectric mix of carbon, nail enamel and araldite, arranged in layers between the two electrodes, with a porous film layer in the middle. The proposed methodology exhibits combination of both resistive and capacitive behaviour, fractionally and for frequencies above 10 kHz, it works as a constant phase element (CPE) with constant phase angle (CPA) of 75o and corresponding $lpha$ value of 0.8333. The fractional behavior of the fabricated FOC is verified through filter realization with the help of already available Thomas Biquad Model over fractional order Chebyshev lowpass filters.
机译:分数阶元素是用于实现分数阶系统的最基本组件。观察到坚固的分数级电容器(FOC)能够更换庞大的梯形RC电路而不改变系统的行为。而不是普通的,常规和高成本的半固体FOC,该想法是设计一种具有低制造成本材料的经济上可行的固体FOC,如碳,钉珐琅和亚尔德。本文描述了FOC与铜作为电极和碳,钉珐琅和亚律混合物的制造,其中在两个电极之间的层中布置在两个电极之间,中间的多孔膜层。所提出的方法表现出电阻和电容性能,分馏和高于10kHz的频率的组合,它用作恒定相角(CPA)的恒相元素(CPA)为75 并相应$ Alpha $ 2.0.8333。通过在已经可用的Thomas Biquad模型通过分数顺序的Chebyshev低通滤波器的帮助,通过过滤器实现来验证制造的Foc的分数行为。

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