UPS超级电容器储能系统能量管理方法

Xuhua Gao, Sibo Wang, Tongzhen Wei
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引用次数: 2

摘要

对于某些类型的电机驱动系统,如变桨距风力发电系统,备用电源需要在短时间内输出非常高的功率,以满足紧急情况。并且对工作温度范围和循环寿命的要求更为严格。超级电容器具有高功率密度、高充电速度和极高循环能力等优点,非常适合作为储能器件。然而,超级电容器的能量密度相对较低,因此基于超级电容器的UPS能量管理方法对于提高能量利用效率非常重要。本文将有限状态机理论应用于基于超级电容器的不间断电源的管理。详细讨论了设计过程。最后给出了仿真和实验结果,验证了设计的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy management method of supercapacitors storage system for UPS applications
For some kinds of motor drive systems, such as the variable-pitch wind power system, the back-up power needs to output very high power in a short time to meet the emergency. And the work temperature range and cycle life is required more strictly. Supercapacitors are very suitable to be the energy storage component due to its advantages of high power density, high charging speed and extremely high cycling capability. However, the energy density of supercapacitor is relatively low, so the energy management method of supercapacitors based UPS is very important to increase the energy usage efficiency. In this paper the finite state machines theory is applied as management method for supercapacitors based uninterruptable power supply (UPS). Design procedure is discussed in detail. Finally, the simulation and experimental results are provided to verify the design.
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