太阳能和风能直流微电网潮流管理

K. Gowtham, C.V Sivaramadurai, P. Hariprasath, B. Indurani
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引用次数: 7

摘要

如今,市场上的直流负荷迅速扩散,具有可再生能源的直流微电网正在成为满足日益增长的能源需求的可能解决方案。由于太阳能、风能、燃料电池和柴油发电机等不同的能源可以集成到直流电网中,因此对这些能源之间的潮流进行管理是必不可少的。本文提出了一种基于太阳能和风能的直流微电网潮流管理的控制策略。由于电压分布的调节在独立系统中很重要,因此需要使用专用转换器来维持直流链路电压。直流链路电压由电池电路调节,同时从太阳能和风能中提取最大功率,以馈送连接在直流总线上的负载。提出了一种用于直流微电网三源间控制的潮流算法。在MATLAB/SIMULINK环境中对该算法进行了各种负载条件下的测试,并对太阳能和风能的波动进行了测试。
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A Management of power flow for DC Microgrid with Solar and Wind Energy Sources
Today there is a rapid proliferation of DC loads into the market and DC micro grid with renewable energy sources is emerging as a possible solution to meet growing energy demand. As different energy sources like solar, wind, fuel cell, and diesel generators can be integrated into the DC grid, Management of power flow among the sources is essential. In this paper, a control strategy for Management of power flow in DC micro grid with solar and wind energy sources is presented. As the regulation of voltage profile is important in a standalone system, a dedicated converter is to be employed for maintaining the DC link voltage. DC link voltage is regulated by the battery circuit while maximum power is extracted from Solar and Wind to feed the loads connected at the DC bus. A powerflow algorithm is developed to control among three sources in the DC Microgrid. The algorithm is tested for various load conditions and for fluctuations in solar and wind power in MATLAB/SIMULINK environment.
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