首页> 外文会议>2015 IEEE First International Conference on Direct Current Microgrids >Alleviating power quality issues when integrating PV into built areas: Design and control of DC microgrids
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Alleviating power quality issues when integrating PV into built areas: Design and control of DC microgrids

机译:将光伏集成到建筑区域中时缓解电能质量问题:直流微电网的设计和控制

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Increasing penetration of PV sources in LV grids is introducing new challenges to the quality of voltage. Variability of solar radiation can cause power ramps of up to the nominal power of the plant in one second, which directly induces voltage fluctuations on distribution feeders. To mitigate this impact on power quality, we investigate the introduction of dc micro-grids interfaced to the ac grid through four-quadrant inverter. The introduced control strategy is able to manage the entire system without any communication layer and to ensure at the same time: i) ramp-rate control of the power exchanged with the ac grid; ii) voltage stability on both dc and ac grids; iii) maintaining the state of charge of storage devices connected to the dc grid. In the paper the effectiveness of the proposed strategy is shown with numerical simulations considering real profiles of solar irradiation and load power.
机译:光伏电源在低压电网中的渗透越来越大,这对电压质量提出了新的挑战。太阳辐射的可变性会导致在一秒钟内达到工厂标称功率的功率上升,这直接在配电馈线上引起电压波动。为了减轻对电能质量的影响,我们研究了通过四象限逆变器连接到交流电网的直流微电网的介绍。引入的控制策略能够在没有任何通信层的情况下管理整个系统,并同时确保:i)对与交流电网交换的功率进行斜率控制; ii)直流和交流电网的电压稳定性; iii)维持连接到直流电网的存储设备的充电状态。在本文中,考虑到太阳辐射和负载功率的真实轮廓,通过数值模拟显示了所提出策略的有效性。

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