用新技术优化车用电网电能系统

A. Amditis, G. Brusaglino, E. Spessa
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引用次数: 8

摘要

通过与电网的智能集成和合理的设计,以使用为导向,电动汽车可以增强其对能源经济的积极贡献。储能系统的设计和集成车辆结构将由预测的使用驱动,考虑到操作任务中的充电电位。在日常任务中机会充电的频率是一个因素,可以在适当的机载储能设计中考虑。充电端口的战略位置、车辆与基础设施的交互通信以及充电过程的容易程度可以作为储能系统适当规模的参考,在能量可用性、重量和其他影响相关能量生命周期图的相关参数方面。磁通应用于谐振电路的非接触式能量传输技术概念的发展带来了新的技术解决方案,可以为电动汽车的各种静态和动态运行模式提供灵活和用户友好的车辆基础设施界面。无线动态能量传输可以提供显著降低车载储能系统要求的手段。可以考虑在车辆和基础设施规模、技术和经济以及电网侧管理等各种因素之间进行权衡。网格与车辆的交互是一个多方面的问题,由欧洲项目如FABRIC和EV-CONNECT解决。
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Optimizing vehicle to grid electric energy system with new technologies
The Electric Vehicles can enhance their positive contribution to the energy economy with a smart integration in the electrical network and an appropriate design, use oriented. The energy storage system design and consequently the integrated vehicle structure is to be driven by the predicted use, with regard to the charging potential over the operational mission. The frequency of the opportunistic charging during the daily mission is a factor, that can be considered in the appropriate sizing of the on-board energy storage design. The strategic location of the charging ports, the interactive vehicle-infrastructure communication and the easiness of charging procedure can be taken as a reference for appropriate sizing of the storage system, in terms of energy availability, weight and the other related parameters impacting the relevant energy life cycle figure. The evolution of the technology concept of magnetic flux application in the contactless energy transfer with the use of resonant circuits has brought to new technical solutions, which can offer a flexible and user friendly vehicle - infrastructure interface for the various modes of operation of the electric vehicles, static and dynamic. The wireless dynamic power transfer can offer the means to reduce significantly the on-board energy storage system requirements. Trade off opportunities can be considered between various elements from vehicle and infrastructure size, technical and economical and for the grid side management as well. Grid to vehicle interaction is a multi-aspect matter addressed by European Projects such as FABRIC and EV-CONNECT.
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