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Impact of the deployment of solar photovoltaic and electrical vehicle on the low voltage unbalanced networks and the role of battery energy storage systems

机译:太阳能光伏电动车辆部署对低压不平衡网络的影响及电池储能系统的作用

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The deployment of low carbon technologies (LCTs) such as solar photovoltaics (PVs) and electric vehicles (EVs) is increasing due to their various benefits. However, their rapid integration in the residential networks imposes critical technical issues to the network operators. In this paper, a sensitivity analysis is conducted to investigate the impact of these technologies on low voltage unbalanced residential networks located in Northern Ireland. Different penetrations are investigated, and the results are assessed using various technical indices. The simulations are performed using actual load measurements in a 10-minute resolution obtained from the network operator of Northern Ireland. The impact of LCTs on the phase imbalance is considered by analyzing the voltage unbalance and neutral losses. The results suggest that monitoring each feeder and phase separately and consider the voltage unbalance in the assessment as it can be violated without a voltage magnitude violation occurring, in addition, the farthest nodes from the transformer bus were found to be very sensitive to violations. The solutionbased community battery energy storage systems (BESS) is investigated by introducing sizing and scheduling algorithms to solve the network issues and enhance the network performance using black-box optimization. The results proved the wide capability of the community BESS in providing the network with different services. The main purpose of this study is to provide a full understanding of the future challenges posed by the deployment of LCTs and the role of BESS in accelerating the transition towards a low carbon future by supporting the network operation.
机译:由于它们的各种益处,诸如太阳能光伏(PVS)等低碳技术(LCT)的部署如太阳能光伏(PVS)和电动车辆(EVS)正在增加。然而,他们在住宅网络中的快速整合对网络运营商对关键技术问题施加了重要的技术问题。在本文中,进行了灵敏度分析,以研究这些技术对位于爱尔兰北部的低压不平衡住宅网络上的影响。研究了不同的渗透,并使用各种技术指标评估结果。使用从北爱尔兰网络运营商获得的10分钟分辨率的实际负载测量进行模拟。通过分析电压不平衡和中性损耗来考虑LCTS对相位不平衡的影响。结果表明,单独监测每个馈线和相位,并考虑评估中的电压不平衡,因为它可以在没有电压幅度违规的情况下侵犯,此外,发现来自变压器总线的最远节点对违规非常敏感。通过引入尺寸和调度算法来研究解决方案的社区电池储能系统(BESS)以解决网络问题并使用黑盒优化提高网络性能。结果证明了社区贝尔斯在提供不同服务的网络方面的广泛能力。本研究的主要目的是提供全面了解通过支持网络操作,对LCT部署和贝尔斯的作用提供了对LCT的作用以及贝尔斯的作用。

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