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Smart battery charger for electric mobility in smart grids

机译:用于智能电网中电动移动的智能电池充电器

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摘要

In this paper is presented the development of a smart batteries charger for Electric Vehicles (EVs) and Plug-in Hybrid Electric Vehicles (PHEVs), aiming their integration in Smart Grids. The batteries charging process is controlled by an appropriate control algorithm, aiming to preserve the batteries lifespan. The main features of the equipment are the mitigation of the power quality degradation and the bidirectional operation, as Grid-to-Vehicle (G2V) and as Vehicle-to-Grid (V2G). During the charging process (G2V), the consumed current is sinusoidal and the power factor is unitary. Along the discharging process (V2G), when the equipment allows delivering back to the electrical power grid a small amount of the energy stored in the batteries, the current is also sinusoidal. The V2G mode of operation will be one of the main features of the Smart Grids, both to collaborate with the electrical power grid to increase stability, and to function as a distributed Energy Storage System (ESS). The functioning of the smart batteries charger is shown through simulation and experimental results, both during the charging (G2V) and the discharging (V2G) modes of operation. Also in this paper are shown and briefly described the roles of the key concepts related with the Smart Grids in terms of Systems and Functional Areas, Power Electronics Systems, and Electric Mobility.
机译:本文介绍了针对电动汽车(EV)和插电式混合动力电动汽车(PHEV)的智能电池充电器的开发,旨在将其集成到智能电网中。电池充电过程由适当的控制算法控制,目的是保持电池寿命。设备的主要功能是缓解电能质量下降和双向运行(如并网(G2V)和车对网(V2G))。在充电过程(G2V)中,消耗的电流为正弦波,功率因数为整数。沿放电过程(V2G),当设备允许将存储在电池中的少量能量传递回电网时,电流也是正弦波。 V2G操作模式将成为智能电网的主要功能之一,既可以与电网合作以提高稳定性,又可以充当分布式储能系统(ESS)。在充电(G2V)和放电(V2G)操作模式下,通过仿真和实验结果显示了智能电池充电器的功能。本文还显示并简要描述了与智能电网有关的关键概念在系统和功能区域,电力电子系统和电动交通方面的作用。

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