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Droop controlled operation of heat pumps on clustered distribution grids with high PV penetration

机译:PV渗透率高的集散式配电网上的热泵的下垂控制操作

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In this work the impact of a high penetration of air to water heat pumps and PV plants on the distribution grid in residential areas is investigated. Results show that increasing PV penetration increases the hours of critical states in the distribution grid. Air to water heat pumps reduce those effects slightly when they are added to the grid. With an increasing penetration of heat pumps new problems, such as load peaks in the mornings, arise. By integrating voltage dependent droop control into the heat pumps, the negative effects on the distribution grid can be reduced. This reduction comes with a loss of HP efficiency and shows strong seasonal variability. For this study a set of representative grid layouts is used. Electric and thermal load profiles for each house are generated using the synPRO stochastic bottom-up model. The thermal load is covered by variable speed electric heat pumps combined with thermal storage. Resulting electric loads are used as input for a probabilistic load flow model.
机译:在这项工作中,研究了空气对水热泵和光伏电站的高渗透对居民区配电网的影响。结果表明,增加的PV渗透量会增加配电网中临界状态的小时数。当将空气加水热泵添加到电网中时,它们会稍微降低这些影响。随着热泵渗透的增加,出现了新的问题,例如早晨的负荷峰值。通过将依赖于电压的下降控制集成到热泵中,可以减少对配电网的负面影响。减少会导致HP效率下降,并表现出强烈的季节性变化性。对于本研究,使用了一组代表性的网格布局。使用synPRO随机自下而上模型生成每个房屋的电力和热负荷曲线。热负荷由变速电热泵和蓄热装置共同承担。将所得的电负载用作概率潮流模型的输入。

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