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Multirate Analysis Method for a Power Electronic System by Circuit Partitioning

机译:电力电子系统电路划分的多速率分析方法

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摘要

Various fast and efficient computation techniques for a power converter simulation have been researched. According to the conventional methods, a single step size for a whole circuit is selected for the numerical integration. A real-power electronic system, however, is multirate in that its currents and voltages nonuniformly vary spatially and temporally, and its subcircuits have different transient rates. A simulation that selected an appropriate step size for each subcircuit independently would, therefore, be more efficient. Several multirate analysis techniques have already been proposed; this paper proposes a new method that divides the whole circuit into subcircuits by applying an explicit integration formula to series inductors and/or parallel capacitors, and then integrates subcircuits by applying an implicit formula with independent integration step sizes. As analysis examples, this method is applied to an ac–dc converter, a benchmark test circuit, and a dc-link inverter control system. The proposed method’s effectiveness at reducing computational steps and CPU times is investigated, and its performance and efficiency are validated.
机译:已经研究了用于功率转换器仿真的各种快速有效的计算技术。根据常规方法,为数字积分选择整个电路的单个步长。但是,有功电子系统具有多种速率,因为其电流和电压在空间和时间上均会不均匀地变化,并且其子电路具有不同的瞬态速率。因此,为每个子电路独立选择合适步长的仿真将更加有效。已经提出了几种多速率分析技术。本文提出了一种新方法,该方法通过将显式积分公式应用于串联电感器和/或并联电容器将整个电路分为子电路,然后通过应用具有独立积分步长的隐式公式对子电路进行积分。作为分析示例,此方法应用于交流-直流转换器,基准测试电路和直流链路逆变器控制系统。研究了该方法在减少计算步骤和CPU时间方面的有效性,并验证了其性能和效率。

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