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A novel analytical solution for the calculation of temperature in supercapacitors operating at constant power

机译:用于以恒定功率运行的超级电容器的温度计算的新颖分析解决方案

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Temperature evolution in supercapacitors (SCs) when they are charged or discharged at a constant current is a well-known process. However, it does not exist any mathematical equation for the calculation of the instantaneous temperature of the SC when it is charged or discharged at constant power. In this work, a new mathematical formulation is presented, which allows for the analytical calculation of temperature as a function of time (or alternatively, as a function of the current or the internal or the external voltage), considering the electrical and thermal properties provided by the manufacturer of the SC or obtained through laboratory tests. Highly accurate equations for the calculation of instantaneous current, power losses and other significant variables are also obtained. The validity of the proposal is demonstrated by comparing the results obtained with the new method with those yielded from the classical iterative, numerical resolution of the differential equations. The high accuracy of the proposed approach makes it useful to be used in the task of sizing the cooling systems of SC applications. (C) 2019 The Authors. Published by Elsevier Ltd.
机译:超级电容器(SC)在恒定电流下充电或放电时的温度变化是众所周知的过程。但是,对于以恒定功率充电或放电的SC的瞬时温度,它不存在任何数学方程式。在这项工作中,提出了一种新的数学公式,考虑到所提供的电气和热特性,该公式允许根据时间(或者,作为电流,内部或外部电压的函数)对温度进行分析计算。由SC的制造商提供或通过实验室测试获得。还可以获得用于计算瞬时电流,功率损耗和其他重要变量的高精度方程。通过将新方法获得的结果与微分方程的经典迭代,数值分辨率得出的结果进行比较,证明了该建议的有效性。所提出方法的高精度使其在确定SC应用的冷却系统尺寸的任务中很有用。 (C)2019作者。由Elsevier Ltd.发布

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