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Self-consumption enhancement and peak shaving of residential photovoltaics using storage and curtailment

机译:使用存储和缩减功能来增强住宅光伏的自耗和峰值剃光

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摘要

Increasing the self-consumption of photovoltaic (PV) power is an important aspect to integrate more PV power in the power system. The profit for the PV system owner can increase and the stress on the power grid can be reduced. Previous research in the field has focused on either self-consumption of PV power in individual buildings or PV power curtailment for voltage control. In this paper self-consumption of residential PV power in a community of several single-family houses was investigated using high resolution irradiance and power consumption data. Cases with individual or shared battery energy storages for the houses were examined. PV power curtailment was investigated as a method to reduce feed-in power to the grid, i.e. peak shaving. Results indicated that the self-consumption ratio increased when using shared instead of individual storage. Reducing the feed-in power from the community by almost 50% only led to maximum 7% yearly production losses due to curtailment and storage losses. The economics for shared storage are slightly better than for individual ones. These results suggest that residential PV-battery systems should use (i) shared energy storage options if local regulations allow it and (ii) PV power curtailment if there are incentives to lower the feed-in power. (C) 2016 Elsevier Ltd. All rights reserved.
机译:增加光伏(PV)功率的自耗是在电源系统中集成更多PV功率的重要方面。光伏系统所有者的利润可以增加,并且可以减轻对电网的压力。该领域的先前研究集中在单个建筑物中的PV功率自耗或用于电压控制的PV功率削减。在本文中,使用高分辨率辐照度和功耗数据研究了几个单户住宅社区中住宅光伏电源的自耗。对带有独立或共享电池储能器的房屋进行了检查。减少PV功率是减少电网馈电功率的一种方法,即调峰。结果表明,使用共享存储而不是单个存储时,自耗率增加。由于减少和存储损失,将社区的供电减少近50%只会导致每年最大7%的生产损失。共享存储的经济学要比单个存储的经济学略好。这些结果表明,住宅光伏电池系统应使用(i)当地法规允许的共享储能选项,以及(ii)如果有降低馈入功率的诱因,则应减少PV功率。 (C)2016 Elsevier Ltd.保留所有权利。

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