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首页> 外文期刊>IEEE transactions on industrial informatics >Coordinated Control of Grid-Connected Photovoltaic Reactive Power and Battery Energy Storage Systems to Improve the Voltage Profile of a Residential Distribution Feeder
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Coordinated Control of Grid-Connected Photovoltaic Reactive Power and Battery Energy Storage Systems to Improve the Voltage Profile of a Residential Distribution Feeder

机译:并网光伏无功和电池储能系统的协调控制,以改善居民配电馈线的电压分布

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摘要

Increasing penetration of photovoltaic (PV), as well as increasing peak load demand, has resulted in poor voltage profile for some residential distribution networks. This paper proposes coordinated use of PV and battery energy storage (BES) to address voltage rise and/or dip problems. The reactive capability of PV inverter combined with droop-based BES system is evaluated for rural and urban scenarios (having different ${mbi R/X}$ ratios). Results show that reactive compensation from PV inverters alone is sufficient to maintain acceptable voltage profile in an urban scenario (low-resistance feeder), whereas coordinated PV and BES support is required for the rural scenario (high-resistance feeder). Constant, as well as variable, droop-based BES schemes are analyzed. The required BES sizing and associated cost to maintain the acceptable voltage profile under both schemes are presented. Uncertainties in PV generation and load are considered, with probabilistic estimation of PV generation and randomness in load modeled to characterize the effective utilization of BES. Actual PV generation data and distribution system network data are used to verify the efficacy of the proposed method.
机译:光伏(PV)渗透的增加以及峰值负载需求的增加,导致某些住宅配电网的电压分布不佳。本文提出了光伏和电池能量存储(BES)的协调使用,以解决电压上升和/或下降问题。针对乡村和城市场景(具有不同的$ {mbi R / X} $比率)评估了光伏逆变器与基于下垂的BES系统相结合的无功能力。结果表明,仅光伏逆变器的无功补偿就足以在城市场景(低电阻馈线)中维持可接受的电压曲线,而在农村场景(高电阻馈线)则需要协调的PV和BES支持。分析了基于常数以及基于下垂的BES方案。提出了在两种方案下维持可接受的电压曲线所需的BES尺寸和相关成本。考虑了光伏发电和负荷的不确定性,对光伏发电的概率估计和负荷的随机性进行了建模,以表征BES的有效利用。实际的光伏发电数据和配电系统网络数据用于验证所提出方法的有效性。

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