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Analysis and control of a cellular converter system with stochastic ripple cancellation and minimal magnetics

机译:具有随机纹波消除和最小磁场的蜂窝转换器系统的分析和控制

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摘要

A parallel converter architecture based on the resonant pole inverter (RPI) topology is presented. It is shown that this architecture minimizes the output magnetics required for current sharing. A new current control scheme is introduced which reduces peak currents, losses, and output voltage ripple for many operating conditions. This new control method is applicable to both the single RPI and the parallel architecture. Additionally, the paper analytically quantifies the degree of passive ripple cancellation between cells of a parallel architecture. It is shown that the RMS ripple current of an N cell paralleled converter system is a factor of 1/spl radic/(N) lower than for an equivalent single converter. These results are verified using a piecewise-linear model. We conclude that the parallel architecture overcomes some of the major disadvantages of the conventional RPI.
机译:提出了一种基于谐振极逆变器(RPI)拓扑的并行转换器架构。结果表明,该架构可最大程度地减少电流共享所需的输出磁场。引入了一种新的电流控制方案,该方案可降低许多工作条件下的峰值电流,损耗和输出电压纹波。这种新的控制方法适用于单个RPI和并行体系结构。此外,本文分析性地量化了并行体系结构单元之间的无源纹波消除程度。结果表明,与等效单转换器相比,N单元并联转换器系统的RMS纹波电流低1 / spl radic /(N)倍。使用分段线性模型验证了这些结果。我们得出的结论是,并行体系结构克服了常规RPI的一些主要缺点。

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