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Analysis of voltage output LCC resonant converters, including boost mode operation

机译:分析电压输出LCC谐振转换器,包括升压模式操作

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摘要

A novel methodology for the high-speed analysis of LCC voltage output resonant power converters is presented. Termed rectifier transformed fundamental mode analysis, the procedure employs describing functions for determining equivalent passive circuit models for the combined rectifier, output filter and load circuitry. The resulting passive network is then used to predict voltages and currents throughout the converter. A refinement algorithm is also described that further enhances the accuracy of the analysis. Unlike previously published techniques, the proposed procedure is shown to accurately predict converter operation in the boost mode; a mode that normally requires the incorporation of an additional step-up transformer to realise output voltages that are higher than the input voltage in the converter topology under consideration. The accuracy of the procedure, and the enhancement that results from the refinement process, is demonstrated by comparing predictions of the maximum output voltage of LCC converters as a function of load, and the regulation at a fixed switching frequency as a function of the parallel rectifier capacitance with measurements from prototype converters, including operation in boost mode. The results confirm that the methodology is capable of correctly predicting the steady-state behaviour of voltage output LCC series resonant converters, particularly around the resonant frequency where previously published techniques can exhibit significant error.
机译:提出了一种用于LCC电压输出谐振功率转换器的高速分析的新方法。该过程称为整流器变换的基本模式分析,该过程使用描述功能来确定组合的整流器,输出滤波器和负载电路的等效无源电路模型。然后将所得的无源网络用于预测整个转换器的电压和电流。还描述了一种改进算法,该算法进一步提高了分析的准确性。与先前发布的技术不同,所建议的过程显示为可以准确预测升压模式下的转换器操作。这种模式通常需要并入一个额外的升压变压器,以实现高于所考虑的转换器拓扑中的输入电压的输出电压。通过比较LCC转换器的最大输出电压与负载的关系以及固定开关频率下的调节与并联整流器的关系,可以证明该过程的准确性以及优化过程带来的增强效果。电容来自原型转换器的测量结果,包括升压模式下的操作。结果证实,该方法能够正确预测电压输出LCC串联谐振转换器的稳态行为,特别是在谐振频率附近,在此之前发布的技术可能会表现出明显的误差。

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