优化太阳能光伏发电在一个真实的本地配电网

Hamidreza Sadeghian, Mir Hadi Athari, Zhifang Wang
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引用次数: 34

摘要

可再生能源在电网中的显著渗透,尽管它提供了宝贵的机会,如减少电力损失和提高负荷能力,但引起了系统运营商的关注。如此巨大的渗透可能导致违反电网要求,如电压和电流限制和反向潮流。分布式发电系统的优化配置和优化规模是提高电力系统效率的最佳途径之一。本文基于获得的负荷剖面、GIS信息、日照、馈线和电压设置,建立局部配电网仿真模型,定义太阳能PVDG安装优化问题,确定不同渗透水平、不同目标函数下的最优选址和规模。目标函数包括电压分布改善和能量损失最小化,考虑的约束包括物理配电网约束(交流潮流)、光伏容量约束以及电压和反向潮流约束。
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Optimized solar photovoltaic generation in a real local distribution network
Remarkable penetration of renewable energy in electric networks, despite its valuable opportunities, such as power loss reduction and loadability improvements, has raised concerns for system operators. Such huge penetration can lead to a violation of the grid requirements, such as voltage and current limits and reverse power flow. Optimal placement and sizing of Distributed Generation (DG) are one of the best ways to strengthen the efficiency of the power systems. This paper builds a simulation model for the local distribution network based on obtained load profiles, GIS information, solar insolation, feeder and voltage settings, and define the optimization problem of solar PVDG installation to determine the optimal siting and sizing for different penetration levels with different objective functions. The objective functions include voltage profile improvement and energy loss minimization and the considered constraints include the physical distribution network constraints (AC power flow), the PV capacity constraint, and the voltage and reverse power flow constraints.
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