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Wide-load-range resonant converter supplying the SAE J-1773 electric vehicle inductive charging interface

机译:提供SAE J-1773电动汽车感应充电接口的宽负载范围谐振转换器

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摘要

The recommended practice for electric vehicle battery charging using inductive coupling (SAE J-1773), published in January 1995 by the Society of Automotive Engineers, Inc., outlines values and tolerances for critical vehicle inlet parameters which must be considered when selecting a coupler driving topology. The inductive coupling vehicle inlet contains a significant discrete capacitive component in addition to low magnetizing and high leakage inductances. Driving the vehicle interface with a variable-frequency series-resonant power converter results in a four-element topology with many desirable features: unity transformer turns ratio; buck/boost voltage gain; current-source operation; monotonic power transfer characteristic over a wide load range; throttling capability down to no load; high-frequency operation; narrow modulation frequency range; use of zero-voltage-switched MOSFETs with slow integral diodes; high efficiency; inherent short-circuit protection; soft recovery of output rectifiers; and secondary d/spl nu//dt control and current waveshaping for the cable, coupler and vehicle inlet, resulting in enhanced electromagnetic compatibility. In this paper, characteristics of the topology are derived and analyzed using two methods. Firstly, the fundamental mode AC sine-wave approximation is extended to battery loads and provides a simple, yet insightful, analysis of the topology. A second method of analysis is based on the more accurate, but complex, time-based modal approach. Finally, typical experimental results verify the analysis of the topology presented in the paper.
机译:汽车工程师协会于1995年1月发布的使用感应耦合的电动汽车电池充电的推荐做法(SAE J-1773)概述了选择耦合器驱动时必须考虑的关键车辆入口参数的值和公差。拓扑。电感耦合车辆的进气口除了低磁化和高漏感外,还包含大量分立的电容成分。用变频串联谐振功率转换器驱动车辆接口会产生具有许多理想功能的四元素拓扑:统一变压器匝数比;降压/升压电压增益;电流源操作;宽负载范围内的单调功率传递特性;节流能力低至空载;高频操作;调制频率范围窄;零电压开关MOSFET与慢速集成二极管一起使用;高效率;固有的短路保护;输出整流器的软恢复;次级d / spl nu // dt控制以及电缆,耦合器和车辆入口的电流波动,从而增强了电磁兼容性。本文采用两种方法推导并分析了拓扑特征。首先,基本模式交流正弦波逼近扩展到了电池负载,并提供了一种简单而有见地的拓扑分析。第二种分析方法是基于更准确但复杂的基于时间的模态方法。最后,典型的实验结果验证了本文提出的拓扑分析。

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