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Stochastic planning of a multi-microgrid considering integration of renewable energy resources and real-time electricity market

机译:考虑可再生能源资源整合和实时电力市场的多微型电视机的随机规划

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This paper presents a stochastic planning algorithm to plan an operation of a multi-microgrid (MMG) in an electricity market considering the integration of stochastic renewable energy resources (RERs). The proposed planning algorithm investigates the optimal operation of resources (i.e., wind turbine (WT), fuel cell (FC), Electrolyzer, photovoltaic (PV) panel, and microturbine (MT)) and energy storage (ES). Various uncertainties (e.g., the power production of WT, the power production of PV, the departure time of electric vehicle (EV), the arrival time of EV, and the traveled distance of EV) are initially forecasted according to the observed data. The prediction error is estimated by fitting the forecasted data and observed data using a Copula method. A Cournot equilibrium and game theory (GT) are applied to model the real-time electricity market and its interactions with the MMG. The proposed algorithm is examined in a sample MMG to determine the operation of uncertain resources and ES. The obtained results are compared with a baseline and the other conventional optimization methods to verify the effectiveness of the proposed algorithm. The obtained results authenticate the importance of modeling the interaction between the MMG and electricity market, especially under the high integration of uncertain RERs, resulting in above 8% cost reduction in the MMG.
机译:本文介绍了考虑到随机可再生能源资源(RERS)集成的电力市场中多微电网(MMG)的运行。所提出的规划算法研究了资源的最佳运行(即风力涡轮机(WT),燃料电池(FC),电解槽,光伏(PV)板和微涡轮机(MT))和储能(ES)。最初根据观察到的数据预测最初预测了各种不确定性(例如,WT的电力生产,PV,电动车辆的出发时间,EV的到达时间和EV的行驶距离)。通过使用Copula方法拟合预测数据和观察数据来估计预测误差。 Cournot均衡和博弈论(GT)适用于建模实时电力市场及其与MMG的互动。在样本MMG中检查所提出的算法,以确定不确定的资源和es的操作。将获得的结果与基线和其他常规优化方法进行比较,以验证所提出的算法的有效性。所获得的结果验证了建模MMG和电力市场之间相互作用的重要性,特别是在不确定RERS的高度集成下,导致MMG降低8%的成本降低。

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