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Impacts of residential photovoltaic power fluctuation on on-load tap changer operation and a solution using DSTATCOM

机译:住宅光伏发电功率波动对有载分接开关操作的影响以及使用DSTATCOM的解决方案

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摘要

Recently penetration of Photovoltaic (PV) systems in Low Voltage (LV) distribution networks has drastically increased. The stochastic nature of PV output coupled with the characteristic of high R/X ratio of LV distribution network results in a direct correlation between PV power and voltage fluctuations. Currently distribution networks rely heavily on existing On Load Tap Changing (OLTC) transformers to mitigate voltage fluctuations. However, during the regulation process OLTC transformers can experience excessive tap changing with high PV penetration, which in turn results in an increased maintenance requirement and shorter lifetime. Without the knowledge of how an increase in PV penetration impacts the operation of an OLTC, a Distribution Network Operator (DNO) cannot effectively coordinate compensation. This paper examines the effect of PV penetration levels on OLTC transformers and voltage regulation. The investigation of tap changing frequencies and voltage profiles is done through quasi-static time-series simulations using a residential street network and one year real world data obtained from local DNOs and research institutes. Then, a mitigation strategy is developed using a Distribution Static Compensator (DSTATCOM) and interaction between OLTC and DSTATCOM is also analyzed. This will enable DNOs to choose an appropriate size of DSTATCOM based on economic and technical requirements of voltage regulation.
机译:最近,光伏(PV)系统在低压(LV)配电网络中的渗透已大大增加。光伏输出的随机性加上低压配电网的高R / X比特性导致光伏功率与电压波动之间存在直接相关性。当前,配电网络严重依赖现有的有载分接变换(OLTC)变压器来减轻电压波动。但是,在调节过程中,OLTC变压器可能会经历过多的抽头变换,并具有较高的PV穿透力,这反过来又导致维护需求增加和使用寿命缩短。如果不知道PV渗透率的增加如何影响OLTC的运行,配电网络运营商(DNO)无法有效地协调补偿。本文研究了PV渗透水平对OLTC变压器和电压调节的影响。通过使用住宅街道网络的准静态时间序列模拟以及从本地DNO和研究机构获得的一年真实世界数据,对抽头变化频率和电压曲线进行了调查。然后,使用配电静态补偿器(DSTATCOM)开发了缓解策略,并分析了OLTC和DSTATCOM之间的相互作用。这将使DNO根据电压调节的经济和技术要求选择合适的DSTATCOM尺寸。

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