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Stability Study and Nonlinear Analysis of DC–DC Power Converters With Constant Power Loads at the Fast Timescale

机译:快速时间尺度具有恒定功率负载的DC-DC电源转换器的稳定性研究与非线性分析

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摘要

Rapidly growing distributed renewable networks make an increasing demand for various types of power converters to feed different loads. Power converters with constant power load (CPL) are one typical configuration that can degrade the stability of the power conversion system due to the negative impedance characteristic. This article presents a nonlinear analysis method using the developed complete-cycle solution matrix method by transforming the original linear time-variant system into a summation of segmented linear time-invariant systems. Thus, the stability of the nonlinear system can be studied using a series of the corresponding state transition matrix and saltation matrix. As this derived matrix contains all the comprehensive information relating to the systems stability, the influence of the CPL to systems fast-timescale stability in both continuous conduction mode and the discontinuous conduction mode can be fully investigated and analyzed. The phenomena of the fast-timescale instability around switching frequency for power converters with a CPL are observed and investigated numerically. Finally, experimental results have proven the analysis and verified the effectiveness of the developed method.
机译:快速增长的分布式可再生网络对各种类型的电力转换器进行了越来越大的需求,以馈送不同的负载。具有恒定功率负载(CPL)的电源转换器是一种典型配置,可以降低由于负阻抗特性导致的电源转换系统的稳定性。本文通过将原始线性时变系统转换为分段线性时间不变系统的求和来介绍使用开发的完整周期解决方案矩阵方法的非线性分析方法。因此,可以使用一系列相应的状态转换矩阵和盐化矩阵来研究非线性系统的稳定性。由于该衍生矩阵包含与系统稳定性有关的所有综合信息,可以充分地研究和分析CPL在连续导通模式和不连续传导模式下的系统快速时间稳定性的影响。观察到具有CPL的功率转换器的开关频率的快速时间尺度不稳定性的现象,并在数值上进行研究。最后,实验结果已经证明了分析并验证了开发方法的有效性。

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