...
首页> 外文期刊>IEEE Transactions on Intelligent Transportation Systems >Hybrid Inductive-Power-Transfer Battery Chargers for Electric Vehicle Onboard Charging With Configurable Charging Profile
【24h】

Hybrid Inductive-Power-Transfer Battery Chargers for Electric Vehicle Onboard Charging With Configurable Charging Profile

机译:用于电动车辆的混合电感 - 动力 - 电动电池充电器与可配置充电型材充电

获取原文
获取原文并翻译 | 示例
           

摘要

Inductive power transfer (IPT) technologies have gained a wide acceptance in onboard battery charging applications due to some significant advantages over traditional plug-in systems. An IPT battery charger is expected to provide a configurable charging profile consisting of an initial constant current (CC) and a subsequent constant voltage (CV) efficiently. With a wide load range during the charging process, two sets of IPT topologies with the inherent load-independent CC and CV at the same zero-phase angle (ZPA) frequency are commonly combined into a hybrid topology to avoid sophisticated control schemes, while maintaining nearly unity power factor and soft switching of power switches simultaneously. However, the load-independent CC and CV are usually constrained by parameters of a loosely coupled transformer (LCT), making the LCT hard to design. To solve it, this paper systematically presents a method to derive such effective hybrid IPT converters, which starts from some existing topologies having the configurable CC or CV output and cascades a general T network for mode transition. Design principles with fewer mode switches and compensation components are proposed and some available hybrid topologies regardless of the constraint of LCT parameters are given in this paper. Control logic and sensitivities of compensation parameters to the input impedance and the load-independent output are also discussed. Finally, a 1 kW hybrid IPT battery charger prototype based on LCC-LCC and LCC-S topologies is built to verify the theoretical analysis.
机译:由于传统插件系统的一些显着优势,电感电力转移(IPT)技术在板载电池充电应用中获得了广泛的接受。预计IPT电池充电器将提供由初始恒流(CC)和随后的恒定电压(CV)组成的可配置充电轮廓。在充电过程中具有宽负载范围,两组具有固有的负载无关的CC和CV的IPT拓扑,与与相同的零相位角(ZPA)频率相同的CC和CV通常组合成混合拓扑以避免复杂的控制方案,同时保持几乎统一功率因数和电源开关的软切换同时。然而,负载无关的CC和CV通常由松散耦合变压器(LCT)的参数约束,使得LCT难以设计。为了解决它,本文系统地呈现了导出这种有效混合IPT转换器的方法,该方法从具有可配置的CC或CV输出的一些现有拓扑开始,并级联用于模式转换的一般T网络。提出了模式开关和补偿组件较少的设计原理,并且在本文中给出了一些可用的混合拓扑,无论是LCT参数的约束如何。还讨论了对输入阻抗的补偿参数的控制逻辑和敏感性和无关的输出。最后,基于LCC-LCC和LCC-S拓扑的1 kW混合IPT电池充电器原型是为了验证理论分析。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号