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The Research on Bus Voltage Stabilization Control of Off-Grid Photovoltaic DC Microgrid under Impact Load

机译:冲击载荷下离网光伏直流微电网的总线电压稳定控制研究

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The solar power generation includes certain randomness and volatility, coupled with dynamic load involved in power fluctuations, which renders microgrid having certain unplanned instantaneous power during the process of real-time operation, so as to affect the stability of DC bus voltage. This paper, through constructing a model of off-grid photovoltaic DC microgrid under impact load characteristics, aiming at the fluctuate problems of the DC bus voltage caused by impact load, puts forward a fast response of hybrid energy-storing system composed of supercapacitors and batteries and superiors peak regulation capability to shave the peak and fill the valley of the microgrid. The researches on the strategy of double closed-loop voltage stabilization of blended energy storage system are made and the shortcomings of the double closed-loop voltage control of voltage and electricity are analyzed. And based on this, the tactics of new and double closed-loop voltage control of inner ring of power and the energy outer ring of DC bus capacitance are put forward and examined by simulation and experiment. The experiments prove that this method can more effectively suppress the influence of the fluctuations of impact load power on the DC bus voltage and further improves the system’s stability.
机译:太阳能发电包括某些随机性和波动率,与电力波动中涉及的动态负荷相结合,其在实时操作过程中呈现具有某些未约会的瞬时功率的微电网,从而影响直流母线电压的稳定性。本文通过构建冲击载荷特性下的离网光伏DC微电网模型,旨在瞄准由冲击载荷引起的直流母线电压的波动问题,提出了由超级电容器和电池组成的混合能量存储系统的快速响应和上级峰值调节能力刮起峰值并填充微电网的谷。对混合能量存储系统的双闭环电压稳定策略进行了研究,分析了电压和电力双闭环电压控制的缺点。基于此,通过模拟和实验提出了电力内环的新电源和电能外环的新闭环电压控制的策略。实验证明,该方法可以更有效地抑制冲击载荷功率波动对直流母线电压的影响,进一步提高了系统的稳定性。

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