车辆到电网(V2G)和电网到车辆(G2V)能源管理系统

Prasad V. Manikanta, A. Lokesh, Kumar D. Dheeraj, V. Das, Rao G. Poornachandra
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引用次数: 0

摘要

电动汽车电池是微电网中潜在的储能设备。它可以帮助管理微电网的能源消耗,在有剩余的时候储存能量(电网到电网,G2V),并在有需求的时候将能量返回到电网(车辆到电网,V2G)。这种方法可以通过开发基础设施和管理系统来实现这一概念。本文提出了一种在微电网中实现V2G-G2V系统的架构,该系统使用电动汽车的第3层快速充电。模拟了一个具有直流快速充电站的微电网测试系统。对V2GG2V功率传输进行了仿真研究。试验结果显示了G2V-V2G运行模式下电动汽车电池对微电网有功功率的调节。充电站的设计保证了供电网电流的谐波畸变最小,控制器在直流母线电压稳定方面提供了良好的动态性能。
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Vehicle to grid (V2G) and grid to vehicle (G2V) energy management system
Electric Vehicle (EV) batteries are potential energy storage devices in microgrids. It can help to manage microgrid energy consumption by storing energy when there is a surplus (Grid-To-Vehicle, G2V) and returning energy to the grid (Vehicle-To-Grid, V2G) when there is a demand. This methodology can be expressed by developing infrastructure and management systems to implement this concept. This paper presents an architecture for implementing a V2G-G2V system in a microgrid using Layer 3 fast charging for electric vehicles. A microgrid test system is simulated that has a Direct Current (DC) fast charging station to interface electric vehicles. Simulation studies are performed to illustrate V2GG2V power transmission. The test results show the regulation of active power in the microgrid by electric vehicle batteries in G2V-V2G operating modes. The design of the charging station ensures minimal harmonic distortion of the current supplied to the network, and the controller provides good dynamic performance in terms of voltage stability on the DC bus.
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