首页> 外文会议>Annual IEEE Applied Power Electronics Conference and Exposition >Implementation of 3.3-kW GaN-Based DC-DC Converter for EV On-Board Charger with Series-Resonant Converter that Employs Combination of Variable-Frequency and Delay-Time Control
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Implementation of 3.3-kW GaN-Based DC-DC Converter for EV On-Board Charger with Series-Resonant Converter that Employs Combination of Variable-Frequency and Delay-Time Control

机译:实现3.3千瓦GAN的DC-DC转换器,用于具有串联谐振转换器的EV车载充电器,采用可变频率和延迟时间控制的组合

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An isolated dc-dc series-resonant converter that is controlled by a combination of variable-frequency and secondary-side-switch delay-time control is employed as the output stage of the on-board charger module (OBCM) that operates with a wide battery-voltage range. The delay-time control which is implemented by the modulation of secondary-side switches is used to assist the conventional variable-switching-frequency control of primary switches to reduce the switching-frequency range. By substantially reducing the switching-frequency range and utilizing gallium nitride (GaN) switches, the overall operating frequency is increased to reduce the sizes of the passive components, and hence, increase power density. The performance evaluation of the proposed series-resonant converter with delay-time control was done on a 3.3-kW prototype delivering energy from 400-V bus, which is the output of the PFC front end, to a battery operating with voltage range between 180 V and 430 V. The prototype circuit exhibits the maximum full-load efficiency of 97.3% with a switching frequency variation from 144 kHz to 175 kHz over the entire output-voltage range.
机译:由可变频率和次级侧开关延迟时间控制的组合控制的隔离的DC-DC系列 - 谐振转换器作为车载充电器模块(OBCM)的输出级以宽阔的方式运行电池电压范围。由次级侧开关的调制实现的延迟时间控制用于帮助初级开关的传统变换频率控制以减小开关频率范围。通过基本上减小开关频率范围并利用氮化镓(GaN)开关,增加了整个工作频率以减小被动部件的尺寸,从而提高功率密度。所提出的串联谐振转换器与延迟时间控制的性能评价在来自400-V总线,这是PFC前端的输出的3.3千瓦原型输送能量做的那样,电池的操作与180之间的电压范围V和430 V.原型电路显示出97.3%的最大满负荷效率,在整个输出电压范围内从144kHz到175 kHz的开关频率变化。

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