基于锂离子超级电容器的电动汽车快速充电站电能质量调节系统

A. Quadrelli, G. Gigliucci, E. Pasca, Stefano Farnesi, Rino Gambuti, F. Flamingo, G. Bosia
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引用次数: 1

摘要

电力调节系统(PCSs),也称为有源滤波器或定制电源,是基于电力电子技术的创新设备,广泛应用于中压(MV)和低压(LV)输电网络,以提高配电质量和补偿局部干扰。一些共同的特点是提高对网络干扰特别敏感的负载的供电质量,如电压凹陷补偿或短时中断、调峰、有源功率因数校正。这种类型的设备,特别是具有调峰主要功能的设备,非常适合与电动汽车快速充电站(EVQCS)结合使用,因为它们从三相网络(在我们的案例中为400 V-50 Hz)吸收了相当大的功率,特别是在充电开始时(几分钟几千瓦)。通过这种方式,电网将摆脱对公用事业和分销商必要投资造成影响的高功率峰值需求。本文介绍了一种基于锂离子超级电容器的新型能量存储电力调节系统,该系统具有比能量高、使用寿命长的特点。该设备的设计和制造是为了支持EVQCS。该原型实际上安装在位于利沃诺的Enel Ingegneria e Ricerca实验区,在那里进行了一系列测试,证明了它的功能和对电网的好处。未来的测试将致力于与锂离子存储系统的相互作用,以改善能源服务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power quality conditioning system based on Lithium-Ion Ultracapacitors for Electric Vehicles Quick Charging Stations
Power Conditioning Systems (PCSs), also known as Active Filters or Custom Power, are innovative devices based on Power Electronics widely used on Medium Voltage (MV) and Low Voltage (LV) power transmission networks to improve the quality of power distribution and compensate local disturbances. Some of common features are improving the quality of the power supply of particularly sensitive loads to network disturbances, such voltage sag compensation or short interruptions, peak shaving, active power factor correction. Such type of devices, especially with the primary function of peak-shaving, are very suitable coupled with Electric Vehicle Quick Charging Stations (EVQCS) due the considerable power absorbed by them from the three-phase network (in our case 400 V-50 Hz) especially at the beginning of the charging (several kW for some minutes). In this way, the network will be relieved of high power peaks need that would cause an impact on utilities and necessary investments by the distributor. This paper describes an innovative power conditioning system with energetic storage based on Lithium-Ion Ultracapacitors which have high performance in terms of specific energy and long service life. The device is designed and built to be a support for an EVQCS. The prototype is actually installed in the experimental area of Enel Ingegneria e Ricerca, located in Livorno, where a series of tests has proven its functionality and benifts for the grid. Future tests will be dedicated on interaction with a Li-ion storage system to improve energy services.
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