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Fractional order two port network oscillator with equal order

机译:分数令两个端口网络振荡器等同顺序

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Most of electric circuits can be viewed as a two port network with two terminals defined as input and output ports. In this paper, two different concepts are combined together which are the two port network concept and the fractional calculus to design a general fractional order two port network with equal order. An oscillator case study with three impedances structure has been presented. The three impedances are two equal order fractional capacitors and a resistor. Two different two port network are studied which are Op-amp based circuit and nonideal gyrator circuit. The general oscillation frequency and condition for each case have been derived and discussed numerically using Matlab. Spice simulations are presented for some cases to validate the proposed idea where the fractional order oscillator has more degrees of freedom than the integer order.
机译:大多数电路可以被视为两个端口网络,其中两个端子被定义为输入和输出端口。 在本文中,两个不同的概念在一起在一起,它们是两个端口网络概念和分数微积分以等同顺序设计一般的分数阶两个端口网络。 已经介绍了具有三个阻抗结构的振荡器案例研究。 三个阻抗是两个相等的分数电容器和电阻器。 研究了两种不同的两个端口网络,其是基于OP-AMP的电路和非膜热器电路。 每种情况的一般振荡频率和条件已经使用MATLAB进行了数值衍生和讨论。 提供了Spice仿真,以便在某些情况下验证拟议的想法,其中分数序列振荡器具有比整数顺序更多的自由度。

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