对单细胞多谐振变换器设计规范的贡献

F. Franck, D. Schroder
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引用次数: 6

摘要

状态平面技术用于开发设计规范程序,使设计人员能够直接计算准谐振功率变换器不同拓扑结构上所有元素的应力。如果考虑寄生元件,则得到多谐振拓扑结构。如果准谐振拓扑的计算过程适合这种情况,则可以根据设计规范计算这些拓扑。提出了一种新的理论方法来描述多谐振功率变换器的内部行为以及显示开关条件和最大元件应力点。多谐振开关技术结合了两个优点:晶体管和二极管的无损缓冲仅由三个有功元件实现,并且可以实现可控的空载操作。该分析方法适用于计算输出功率高达几百瓦的DC-DC功率变换器。
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A contribution to the design specification of single-cell multi-resonant converters
The state plane technique is used to develop a design-specification procedure that enables the designer to directly calculate the stresses on all elements of the different topologies for quasi-resonant power converters. If parasitic elements are considered, multiresonant topologies are obtained. These topologies can be calculated for the design specification if the procedure for quasi-resonant topologies is adapted to this situation. A novel theoretical approach for describing the internal behavior of multiresonant power converters and for visualizing the switching conditions and the points of maximum component stresses is proposed. The multiresonant switching technique combines two advantages: the lossless snubbing of both the transistor and the diode is achieved by only three reactive elements, and a controllable no-load operation is possible. This analysis procedure is well suited for calculating DC-DC power converter with an output power up to several hundred watts.<>
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