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Comprehensive review of control schemes for battery and super-capacitor energy storage system

机译:电池和超级电容储能系统控制方案的综述

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The energy storage unit of More Electric Aircraft (MEA) comprises of the combination of battery and super-capacitor to handle power imbalances. This energy storage unit charges when there is excessive power is available and can be utilized during power deficiency at the node. Generally, the batteries are used to regulate the DC bus voltage. The preferred batteries i.e. lithium-ion, lead acid etc. have low power density and limited no. of charging and discharging cycles. The quick burst of power imposes a stress on the battery and reduces its life. The super capacitor has high energy density and therefore it can rapidly supply the quick bursts of demanded power. The power quality of distribution system with ultra-capacitor is improved even in the presence of quick power bursts. This paper review major control schemes to utilize the combination of the battery and super capacitor (SC). This paper particularly focuses on the control schemes and the corresponding responses. The paper also summarizes the situations and scenarios in which the reviewed control strategies are incorporated. The meaningful simulation results are shown and comparisons are made to verify the effectiveness of reviewed control schemes.
机译:更多电气飞机(MEA)的能量存储单元包括电池和超级电容器的组合来处理功率不平衡。这种储能单元在有电源时充电,可在节点的幂缺陷期间使用。通常,电池用于调节直流母线电压。优选的电池即锂离子,铅酸等具有低功率密度和有限的。充电和放电循环。快速的电力爆发对电池产生压力并降低了其生命。超级电容器具有高能量密度,因此它可以快速提供所需电力的快速突发。即使在存在快速电源爆发,具有超电容器的配电系统的电能质量也得到改善。本文综述了主要控制方案,利用电池和超级电容(SC)的组合。本文特别侧重于控制方案和相应的反应。本文还概述了审查的控制策略的情况和情景。显示了有意义的仿真结果,并进行了比较,以验证审查的控制方案的有效性。

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