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Optimized Design of Distributed Power Systems for High Efficiency, High Power Density and Low EMI Noise

机译:高效率,高功率密度和低EMI噪声的分布式电力系统优化设计

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This paper first discussed the EMI issues and solutions for boost PFC converters. The parasitic cancellation technique is then introduced to improve EMI filter's high frequency performance. A two-stage PFC topology is introduced to improve the power density of PFC. LLC topology is recommended for front-end DC/DC converters due to it high efficiency. For onboard DC/DC converters, one-stage approach is first proposed. A self-driven full-bridge resonant circuit and a current tripler are introduced to improve the current density and switching frequencies. The paper also discussed the two-stage approach and intermediate bus architecture.
机译:本文首先讨论了Boost PFC转换器的EMI问题和解决方案。然后引入寄生取消技术以提高EMI滤波器的高频性能。引入了两阶段PFC拓扑以提高PFC的功率密度。由于其高效率,建议为前端DC / DC转换器推荐LLC拓扑。对于车载DC / DC转换器,首先提出单级方法。引入自动的全桥谐振电路和电流三倍以改善电流密度和开关频率。本文还讨论了两阶段方法和中级总线架构。

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