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Optimal design of a 5kW/dm3 / 98.3 efficient TCM resonant transition single-phase PFC rectifier

机译:5kW / dm 3 / 98.3%高效TCM谐振过渡单相PFC整流器的优化设计

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In many applications single-phase PFC rectifiers should meet the demand for a high efficiency and a high power density at the same time. Depending on the weighting of these two design criteria, different topologies could be advantageous. As has been shown, with bridgeless PFC rectifiers an ultra high efficiency of 99.3% or a high power density of 5.6kW/dm3 could be realised. However, due to the hard switching operation it is not possible to achieve an exceptional efficiency and power density at the same time. Furthermore, SiC Schottky diodes are required for highly compact or highly efficient systems. Therefore, a triangular current mode (TCM), resonant-transition single phase PFC rectifier concept is presented in this paper, which overcomes both limitations. Besides a design procedure for optimising the chip area, also a simple and robust control concept, where a novel zero crossing detection concept is included, is explained and a prototype system as well as measurement results are presented for validating the concept and the design procedure.
机译:在许多应用中,单相PFC整流器应同时满足对高效率和高功率密度的需求。取决于这两个设计标准的权重,不同的拓扑可能是有利的。如图所示,使用无桥PFC整流器,可以实现99.3%的超高效率或5.6kW / dm 3 的高功率密度。但是,由于硬开关操作,不可能同时获得出色的效率和功率密度。此外,SiC肖特基二极管对于高度紧凑或高效的系统是必需的。因此,本文提出了一种三角形电流模式(TCM),谐振过渡单相PFC整流器的概念,它克服了这两个限制。除了优化芯片面积的设计程序外,还介绍了一种简单而强大的控制概念,其中包括新颖的过零检测概念,并提供了原型系统以及测量结果,以验证该概念和设计过程。

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