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Smart Charging: System Design and Implementation for Interaction Between Plug-in Electric Vehicles and the Power Grid

机译:智能充电:插电式电动汽车与电网互动的系统设计与实现

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摘要

Recent years have witnessed steady sales increase of electric and plug-in electric vehicles (PEVs). Stringent government regulations alongside persistent pressure from environmental groups will further increase the demand and sales of such vehicles. This trend might put pressure on the grid and local power distribution circuits and transformers. A sudden increase in power consumption, mainly caused by people charging their vehicles at the same time, and during the already peak load on the utility, may cause problems. These problems are mainly caused by the heavy demand on the local voltage transformers and the power sources. Power generation and distribution utilities may need to incur significant cost increases if this problem is not handled appropriately. In this paper, we present a novel design and implementation logic for a smart grid system that allows for dynamic interaction between electric/PEVs and the power grid. This smart and dynamic interaction will allow for safe and semi-stable load on the grid and thus minimizing the cost and preventing damage caused by the excessive loads. The complete system design is presented in this paper with emphasis on the developed algorithms. It has been implemented and tested on the Chrysler's PEV RAM 1500 U.S. Department of Energy pickup trucks.
机译:近年来,电动和插电式电动汽车(PEV)的销售稳定增长。严格的政府法规以及环保组织的持续压力将进一步增加此类车辆的需求和销量。这种趋势可能会对电网,本地配电电路和变压器造成压力。功耗的突然增加(主要是由于人们同时给车辆充电)以及在公用事业业已达到峰值负荷期间,可能会引起问题。这些问题主要是由对本地变压器和电源的大量需求引起的。如果此问题处理不当,发电和配电公用事业可能需要增加大量成本。在本文中,我们提出了一种用于智能电网系统的新颖设计和实现逻辑,该系统允许电气/ PEV与电网之间进行动态交互。这种智能和动态的交互将允许电网上安全且半稳定的负载,从而将成本降至最低,并防止由于过大的负载而造成的损坏。本文介绍了完整的系统设计,重点是已开发的算法。它已在克莱斯勒的PEV RAM 1500美国能源部皮卡车上实施和测试。

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