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Single-Phase On-Board Integrated Battery Chargers for EVs Based on Multiphase Machines

机译:基于多相电机的电动汽车单相车载集成式电池充电器

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摘要

The paper considers integration of multiphase (more than three phases) machines and converters into a single-phase charging process of electric vehicles (EVs) and, thus, complements recently introduced fast charging solutions for the studied phase numbers. One entirely novel topology, employing a five-phase machine, is introduced and assessed jointly with three other topologies that use an asymmetrical nine-phase machine, an asymmetrical six-phase machine, and a symmetrical six-phase machine. In all topologies, both charging and vehicle-to-grid (V2G) mode are viable. Moreover, all are capable of unity power factor operation. A torque is not produced in machines during charging/V2G process so that mechanical locking is not required. Hardware reconfiguration between propulsion and charging/V2G mode is either not required or minimized by using a single switch. Theoretical analysis of operating principles is given, and a control scheme, applicable to all topologies and which includes current balancing and interleaving strategy, is developed. Finally, operation of all topologies is compared by means of experiments in both charging and V2G mode, with a discussion of influence of current balancing and interleaving strategy on the overall performance.
机译:本文考虑将多相(三相以上)电机和转换器集成到电动汽车(EV)的单相充电过程中,因此,对最近引入的针对相数的快速充电解决方案进行了补充。介绍了一种采用五相电机的全新拓扑,并与其他三种使用不对称九相电机,不对称六相电机和对称六相电机的拓扑结构一起进行了评估。在所有拓扑中,充电和车辆到电网(V2G)模式都是可行的。而且,它们都能够进行统一的功率因数运算。在充电/ V2G过程中不会在机器中产生扭矩,因此不需要机械锁定。不需要或仅需使用单个开关就可以在推进和充电/ V2G模式之间进行硬件重新配置或将其最小化。给出了工作原理的理论分析,并开发了适用于所有拓扑的控制方案,其中包括电流平衡和交错策略。最后,通过充电和V2G模式下的实验比较了所有拓扑的操作,并讨论了电流平衡和交错策略对整体性能的影响。

著录项

  • 作者

    Subotic, I; Bodo, N; Levi, E;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-31 14:37:01

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