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Study of bi-directional DC-DC converter of micro-grid hybrid energy storage system

机译:微电网混合储能系统双向DC-DC变换器的研究

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Hybrid energy storage can take advantage of super capacitor's high power density and battery's high energy density. At the same time, hybrid energy storage cost less. So it's suitable for micro-grid power balance control. This paper presents a main circuit structure which is Buck/Boost converters connecting super capacitor and battery with PWM (pulse width modulation) inverter to achieve bi-directional power adjustment and improve utilization of super capacitor. DC bus voltage is sensitive to and fluctuates with switching of PWM inverter's working conditions. To solve this problem a combination of voltage-current close loop control and power feed-forward control is adopted in super capacitor control while achieving fast power tracking; peak current control is adopted in battery control, this control strategy has simple control circuit and high reliability. Meanwhile peak current control can limit maximum current of battery, so it can protect battery and prolong battery life. Simulation confirmed the effectiveness of the method with voltage fluctuations within the range of 10%.
机译:混合储能可以利用超级电容器的高功率密度和电池的高能量密度。同时,混合能源存储的成本更低。因此适用于微电网功率平衡控制。本文提出了一种主电路结构,该结构是将超级电容器和电池与PWM(脉宽调制)逆变器相连的Buck / Boost转换器,以实现双向功率调节并提高超级电容器的利用率。直流母线电压对PWM逆变器的工作条件敏感并随其变化而波动。为了解决这个问题,超级电容器控制中采用了电压-电流闭环控制和功率前馈控制相结合,同时实现了快速的功率跟踪。电池控制采用峰值电流控制,该控制策略控制电路简单,可靠性高。同时峰值电流控制可以限制电池的最大电流,从而可以保护电池并延长电池寿命。仿真证实了该方法的有效性,电压波动在10%的范围内。

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