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An Optimal Allocation Method for Multi-Agent Joint Capacity of Microgrid

机译:微电网多Agent联合容量的最优分配方法

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With the rapid development of environmental technologies such as renewable energy, smart grid, and electric power transportation, future power generation and power supply will show new features. The design of energy consumption characteristics of modern power system is more flexible and easy to control, which will also affect the scale of power generation system. This paper presents a combined capacity optimization method for a typical independent microgrid including solar photovoltaic, wind turbines, diesel generators and battery energy storage system. The mathematical models of photovoltaic, wind turbines, diesel generation system, battery energy storage system and electric vehicle charging loads are developed to improve the capacity optimization method. Research objectives include: 1) minimizing costs; 2) reducing greenhouse gas emissions; 3) reducing waste energy. This research can provide strong support for decision-making, analysis and strategy-making of multi-agent joint microgrid capacity.
机译:随着可再生能源,智能电网和电力运输等环境技术的飞速发展,未来的发电和供电将呈现出新的特征。现代电力系统的能耗特性设计更加灵活,易于控制,这也将影响发电系统的规模。本文提出了一种典型的独立微电网的组合容量优化方法,包括太阳能光伏,风力涡轮机,柴油发电机和电池储能系统。建立了光伏,风力发电机,柴油发电系统,电池储能系统和电动汽车充电负荷的数学模型,以改进容量优化方法。研究目标包括:1)最小化成本; 2)减少温室气体排放; 3)减少浪费能源。该研究可为多主体联合微电网能力的决策,分析和策略制定提供有力的支持。

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