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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Study of Supercapacitor Aging and Lifetime Estimation According to Voltage, Temperature, and RMS Current
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Study of Supercapacitor Aging and Lifetime Estimation According to Voltage, Temperature, and RMS Current

机译:基于电压,温度和RMS电流的超级电容器老化和寿命估算的研究

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Due to its capacity to store or supply energy with high power, the supercapacitor is becoming an attractive component. Because of the electrostatic nature of energy storage, the endurance of this component toward repetitive charge and discharge cycles is relatively high. The goal of this paper is to demonstrate that cycling has an impact on the degradation of the supercapacitor and, as a result, on its lifetime. Based on accelerated cycling tests, some supercapacitors were studied using a dedicated test bench. Temperature, voltage, and current, which are the parameters that accelerate aging, are monitored. In fact, observations during the cycling tests show an important acceleration in the degradation compared with a similar static test having the same voltage and core temperature but without cycling. This paper proposes a method to quantify the acceleration of aging during a cycling phase.
机译:由于其具有存储或提供高功率能量的能力,因此超级电容器正成为有吸引力的组件。由于能量存储的静电性质,该组件对重复的充电和放电循环的耐受性相对较高。本文的目的是证明循环会影响超级电容器的退化,并因此影响其寿命。基于加速循环测试,使用专用测试台研究了一些超级电容器。监测温度,电压和电流,它们是加速老化的参数。实际上,与具有相同电压和磁芯温度但没有循环的类似静态测试相比,循环测试期间的观察结果表明,降解速度显着加快。本文提出了一种量化循环阶段老化加速的方法。

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