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Design methodology of a balancing network for supercapacitors

机译:超级电容器平衡网络的设计方法

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This paper presents and analyzes a non-dissipative balancing system for supercapacitors. The circuit design is carried out by means of a controlled buck-boost converter in order to have the same voltage in each supercapacitor. The paper presents an energy loss analysis in two cases: a dissipative and a non-dissipative balancing circuit. It also develops a probabilistic analysis in order to estimate the efficiency of the balancing system during a constant current charge for a 10-, 30- and 45-supercapacitor series stack. Finally, simulations and measurements are carried out to verify efficiency in a supercapacitor stack with the buck-boost topology. The prototype on which the balancing analysis is performed consists of 45 3000F supercapacitors, and stacks of up to 60 devices are simulated.
机译:本文介绍并分析了超级电容器的非耗散平衡系统。电路设计通过受控的降压-升压转换器进行,以使每个超级电容器具有相同的电压。本文介绍了两种情况下的能量损耗分析:耗散和非耗散平衡电路。它还开发了一个概率分析,以估算10、30和45超级电容器串联堆在恒流充电期间平衡系统的效率。最后,进行了仿真和测量,以验证具有降压-升压拓扑的超级电容器堆栈的效率。进行平衡分析的原型包含45个3000F超级电容器,并模拟了多达60个设备的堆叠。

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