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Probabilistic ESS sizing and scheduling for improved integration of PHEVs and PV systems in residential distribution systems

机译:概率ESS大小和调度,以改善住宅配电系统中PHEV和PV系统的集成

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摘要

Environmental concerns and oil price volatility have created increased interest in smart grid green energy technologies such as photovoltaic (PV) arrays and plug-in hybrid electric vehicles (PHEVs). However, these technologies have been found to have a significant impact on distribution networks in terms of secondary distribution transformer overloading and increased reverse power flow. Energy storage systems (ESSs) are thought to be an effective tool for mitigating these negative effects. The primary challenge in implementing ESS technology lies in the difficulty of determining the appropriate sizes and operating schedules for these units, given the uncertainties inherent in PV array production and PHEV demand. This paper presents a probabilistic sizing and scheduling methodology for ESSs to facilitate the integration of PHEVs and PV arrays in distribution networks, taking into account different sources of uncertainty present in the system. The technical and economic feasibility of the proposed design methodology has been validated using Monte Carlo (MC) simulations for a variety of scenarios. (C) 2015 Elsevier B.V. All rights reserved.
机译:环境问题和油价波动已引起人们对智能电网绿色能源技术(例如光伏(PV)阵列和插电式混合动力汽车(PHEV))的兴趣增加。但是,已发现这些技术对二次配电变压器过载和增加的反向功率流都对配电网络产生重大影响。储能系统(ESS)被认为是减轻这些负面影响的有效工具。考虑到光伏阵列生产和PHEV需求固有的不确定性,实施ESS技术的主要挑战在于难以确定这些设备的合适尺寸和运行时间表。考虑到系统中存在的各种不确定性来源,本文介绍了ESS的概率大小和调度方法,以促进PHEV和PV阵列在配电网络中的集成。拟议的设计方法的技术和经济可行性已通过蒙特卡洛(MC)仿真针对各种情况进行了验证。 (C)2015 Elsevier B.V.保留所有权利。

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