Modeling super capacitor discharge profile

A. Sengupta, A. Chakraborty, B. Bhattacharyya
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Abstract

Super capacitors is an invention of material science that find its application in electronics. In this paper, a super capacitor is used as a power source for a boost converter to yield a constant output voltage for a current in the range of milliamps. Depending upon the output current draw the super capacitor voltage decays and we will to simulate this decay characteristic using dc-dc converter. In this paper firstly we discuss the methodology for designing PWM based constant output dc-dc boost converter powered by super capacitor i.e. the input voltage is varying and based on it we endeavor create the methodology for a test circuit which when connected to any circuit in place of super capacitor, will yield the almost same effect. In this paper it is also shown that if we know the power consumed by each and every component in a circuit powered by super capacitor along with the output power of that circuit, we can calculate rate at which the super capacitor voltage will decay and the time for which that circuit would operate when its powered by super capacitor, and thus we can find the voltage and current profile of super capacitor discharge characteristic when it is supplying a certain load, and also model it using a dc-dc converter.
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超级电容器放电曲线建模
超级电容器是材料科学的一项发明,在电子学中得到了应用。在本文中,超级电容器被用作升压转换器的电源,以产生恒定的输出电压,电流在毫安范围内。根据输出电流绘制超级电容器电压衰减,我们将使用dc-dc转换器模拟这种衰减特性。在本文中,我们首先讨论了设计基于PWM的恒输出dc-dc升压转换器的方法,该方法由超级电容器供电,即输入电压是变化的,并在此基础上努力创建测试电路的方法,当连接到任何电路代替超级电容器时,将产生几乎相同的效果。本文也表明,如果我们知道的权力被每一个组件在一个电路由超级电容器的输出功率电路,我们可以计算速度超级电容器电压衰减和时间时,电路将操作由超级电容器,因此我们能找到超级电容器放电的电压和电流分布特征提供一定的负载时,也可以用dc-dc转换器来建模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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