直流微电网系统混合储能鲁棒控制策略研究:*注:Xplore中未捕获字幕,请勿使用

Yinping An, C. Sun, C. Liang, Di Wu
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引用次数: 0

摘要

直流微电网系统在很大程度上依赖于储能系统,储能系统将提供新能源输出功率与负荷之间所需的兼容电力。本文研究了针对直流微电网中电池与超级电容器混合储能系统设计的新型鲁棒控制策略。为了实现这种鲁棒控制策略,采用电池稳定供电,采用超级电容器快速瞬态供电。该方法用于传统低通滤波器滤波后的稳定能量,采用基于模糊规则的控制器对尖角进行进一步的能量滤波。与传统控制策略相比,在提高电池使用寿命的同时,进一步减小了电池的电流压力。此外,它还具有控制简单,计算量少,易于实现的特点。此外,该系统还包含能量控制算法,将电池和超级电容器的充电状态保持在限定范围内,从而防止混合储能系统过充或过放电,从而保证混合储能系统的使用寿命。最后,利用Matlab/Simulink建立的直流微电网系统仿真测试平台,验证所提出控制策略的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Robust Control Strategy for Hybrid Energy Storage of DC Micro-Grid System: *Note: Sub-titles are not captured in Xplore and should not be used
DC Micro-grid system is drastically dependent on energy storage system that will provide compatible power required between power output of new energy and the loads. This article addresses the new type of robust control strategy specifically designed for the hybrid energy storage system of batteries and super capacitor for the DC micro-grid. For the purpose of such robust control strategy, the batteries are used to supply the energy in a stabilized manner while the super capacitor is used to supply the energy with fast transients. This method is used for stabilized energy filtered by conventional low-pass filter using fuzzy rule based controllers are used for further energy filtration at the sharp end. Compared with conventional control strategy, it will further reduce the current stress for battery while improving battery life time. In addition, it is featured with simple control, less computations and easy-to-realize. Furthermore, such system also incorporates energy control algorithm that will retain the state of charge of both batteries and super capacitor within the limit, thereby preventing the hybrid energy storage system from overcharge or over discharge so that the life time of hybrid energy storage system can be guaranteed. In the end, the simulation test platform established in Matlab/Simulink for DC micro-grid system will be used to verify the effectiveness of the control strategy as put forth.
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