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A general electromagnetic field-circuit coupling method based on time-stepping finite element analysis for performance analysis of pulse-width modulated switching converters considering hysteresis effects

机译:一种基于时间步进有限元分析的通用电磁场 - 电路耦合方法,用于考虑滞后效应的脉冲宽度调制切换转换器的性能分析

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Considering the special characteristics existing in the pulse-width modulated (PWM) switching converter, a general method for the time-stepping finite element analysis based electromagnetic field coupling with its feeding circuit used in the analysis of PWM switching converter considering hysteresis effects is introduced in this paper. Comparing with the electromagnetic field-circuit indirect coupling method (ICM), the proposed method has overcome the drawback that the ICM cannot take the hysteresis effects into account. Compared with the electromagnetic field-circuit direct coupling method (DCM), the proposed method has the similar accuracy but higher efficiency. Furthermore, like the ICM, the proposed method also divides the system with higher state dimensions produced by the DCM into two subsystems with lower state dimensions; this may reduce the algorithm convergence problem which often happens in high dimensional systems.
机译:考虑到脉冲宽度调制(PWM)开关转换器中存在的特殊特性,考虑到滞后效应的PWM开关转换器分析中,基于时间步进有限元分析的电磁场耦合的一般方法这张纸。与电磁场电路间接耦合方法(ICM)进行比较,所提出的方法克服了ICM不能考虑滞后效应的缺点。与电磁场电路直接耦合方法(DCM)相比,所提出的方法具有相似的准确性,但效率更高。此外,与ICM一样,所提出的方法还将具有由DCM产生的较高状态尺寸的系统分成两个具有较低状态尺寸的子系统;这可以减少在高维系统中经常发生的算法融合问题。

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