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Optimal Dispatch of Vehicle-to-Grid (V2G) Battery Storage Using p-ELECTRE Method and Its Impact on Optimal Scheduling of DGs in Distribution System

机译:使用p-ELECTRE方法的车辆到电网(V2G)电池存储的最佳调度及其对配电系统中DG最佳调度的影响

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摘要

In recent past, the number of electric vehicles (EVs) have increased significantly due to their various advantages to environment. With the proper charging and discharging of EVs with vehicle-to-grid (V2G), electrical system can get controllable storage/generations and at the same time, EV owners can earn profits. This paper presents a novel dispatch strategy to determine, when and at what rate EV battery should charge/discharge in order to maximize profits to EV owners and responding to power system's requirements while considering the effect of renewable DG power availability. This objective depends on many criteria like buying and selling price of energy, battery state of charge (SoC), Renewable DG power availability, and load leveling. To solve these, a new multi-criteria decision analysis method, Probabilistic Elimination and Choice Expressing Reality (p-ELECTRE), is developed. The proposed optimal dispatch strategy is applied to 100 and 200 EV fleets with random travel plan. Further, the effect of these fleets with optimal dispatch strategy is tested on IEEE 33 bus distribution system with added DGs. Furthermore, optimal power dispatch of DGs in EV-rich distribution system is obtained by BAT optimization algorithm (BOA). The simulation results demonstrate the feasibility and benefits of the proposed technique.
机译:近年来,由于电动汽车(EV)对环境的各种优势,其数量已大大增加。通过使用车对网(V2G)对电动汽车进行适当的充电和放电,电气系统可以获得可控的存储/发电量,同时,电动汽车所有者也可以赚取利润。本文提出了一种新颖的调度策略,用于确定电动汽车电池的充电时间和速率,以何种速率充电/放电,以最大程度地提高电动汽车所有者的利润并响应电力系统的需求,同时考虑可再生DG电力可用性的影响。该目标取决于许多标准,例如能源的买卖价格,电池充电状态(SoC),可再生DG电力可用性以及负载均衡。为了解决这些问题,开发了一种新的多准则决策分析方法,即概率消除和表达现实的选择(p-ELECTRE)。拟议的最佳调度策略适用于100和200个具有随机行驶计划的EV车队。此外,这些车队具有最佳调度策略的效果已在带有附加DG的IEEE 33总线分配系统上进行了测试。此外,通过BAT优化算法(BOA)获得了富电动汽车配电系统中DG的最佳功率分配。仿真结果证明了该技术的可行性和优势。

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