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Dynamic analysis of charge balancing between supercapacitors

机译:超级电容器之间电荷平衡的动态分析

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The development of decentralized renewable energy sources has many advantages for the electrification of standalone sites. Their intermittency poses a real challenge to ensure optimal management of production and energy consumption flows. The solution is to store the energy to guarantee the satisfaction of the demand at every moment but also to avoid possible overvoltage in case of overproduction. It is still necessary to find a compromise between the conditions of use, performance, storage capacity and return on investment. The ideal solution is to design hybrid systems with high specific energy expressed in Wh/kg, such as lithium-ion batteries, associated with a high power density devices expressed in W/kg, such as supercapacitors (SC). In this paper, we focused the study on charge balancing process between supercapacitors. This is an important issue to help inverters to supply energy from balanced legs. The dynamic behavior of the system also allows us to use it as a load transfer system or as a load balancing system inside the electrical energy storage units. Analytical analysis and some experiments have been led in this study to show the usefulness of similar devices for polymorphic storage units, composed mainly of supercapacitors and controlled switches.
机译:分散式可再生能源的开发对于独立站点的电气化具有许多优势。它们的间断性对确保对生产和能耗流的最佳管理提出了真正的挑战。解决方案是存储能量,以确保随时满足需求,而且还可以避免在生产过剩的情况下产生过电压。仍然有必要在使用条件,性能,存储容量和投资回报之间找到折衷方案。理想的解决方案是设计具有以Wh / kg表示的高比能量的混合系统,例如锂离子电池,以及以W / kg表示的高功率密度设备,例如超级电容器(SC)。在本文中,我们集中研究了超级电容器之间的电荷平衡过程。这是帮助逆变器从平衡支路提供能量的重要问题。该系统的动态行为还使我们能够将其用作电能存储单元内部的负载转移系统或负载平衡系统。这项研究已进行了分析和一些实验,以表明类似设备对多态存储单元的有用性,该单元主要由超级电容器和受控开关组成。

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