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Optimal control strategy for a wind power hybrid energy storage system considering output power amendment

机译:考虑输出电力修正的风电混合能量存储系统的最优控制策略

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摘要

Aiming at meeting the requirement of balancing the fluctuating wind power, this study proposed an optimal control strategy for wind power hybrid energy storage system considering output power amendment. Firstly, fluctuant wind power is decomposed into low-frequency, sub-high frequency and high-frequency components. Low-frequency part is used as the expected value of wind power integration. Sub-high frequency and high-frequency components are used as the target value of output power of storage batteries and ultra-capacitor energy storage system. Secondly, a double power amendment is proposed. In the first-time power amendment, the amendment coefficient is calculated by fuzzy controller whose inputs are the target value of power and state of charge (SOC) of the energy storage system. On the other hand, complement of batteries and super-capacitors are utilised in the second amendment. Through simulation analysis, it can be indicated that the configuration of the hybrid energy storage system and the control system design are feasible. This system can be widely used in wind farm, undertaking the task of balancing the fluctuating wind power.
机译:旨在满足平衡波动风电的要求,本研究提出了考虑输出电力修正的风电混合能量存储系统的最佳控制策略。首先,波动风电被分解成低频,子高频和高频分量。低频部件用作风力电力集成的预期值。子高频和高频分量用作蓄电池输出功率的目标值和超电容器能量存储系统。其次,提出了双重电力修正案。在首次电力修正中,修正系数由模糊控制器计算,其输入是能量存储系统的电力的目标值和电荷状态的目标值。另一方面,在第二修正案中使用电池和超级电容器的补充。通过仿真分析,可以指出混合能量存储系统的配置和控制系统设计是可行的。该系统可广泛用于风电场,承担平衡波动风力的任务。

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