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Matrix Extraction of Parasitic Parameters and Suppression of Common-Mode Conducted Interference in a PMSG-IDOS Rectifier Module

机译:寄生参数的矩阵提取和抑制PMSG-IDOS整流模块中的共模传导干扰

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摘要

The rectifier module is the key part of a permanent magnet synchronous generator integrated DC output system (PMSG-IDOS) with low-voltage and high-current. The high-speed switching device of the rectifier module is the main source of electromagnetic interference (EMI). In this paper, the matrix extraction method is proposed to establish an accurate conducted interference model, and a 3D crimped SiC MOSFET model is established via Ansoft Q3D simulation software. The matrix of the parasitic parameters between poles of the MOSFET is simulated to extract the accurate parasitic parameters. Furthermore, a high-precision conducted interference simulation model of the pulse width modulation (PWM) rectifier system is established. Then, the space vector pulse width modulation (SVPWM) jump-backward control strategy based on the three-phase four-leg structure is proposed to suppress the common-mode interference, and the comparison with other two methods is carried out based on this model. Finally, the experimental platform of a 5 V/1000 A synchronous generator with rectifier is constructed, and conducted interference is tested in accordance with the simulated results. It demonstrates the accuracy of the model with parasitic parameters based on the matrix extraction method. This paper provides a more simple and effective reference method for the prediction study of conducted interference in power converter systems. After comparing the simulation results with the experimental results, it is proven that the SVPWM jump-backward control strategy based on the three-phase four-leg structure can ensure the output balance of the bridge leg and allow the common-mode (CM) interference to reach the ideal state.
机译:整流器模块是永磁同步发电机集成直流输出系统(PMSG-IDOS)的关键部分,具有低压和高电流。整流器模块的高速开关装置是电磁干扰(EMI)的主要源。本文提出了矩阵提取方法来建立准确的传导干扰模型,通过ANSOFT Q3D仿真软件建立了3D压接SiC MOSFET模型。模拟MOSFET之间的寄生参数的矩阵,以提取准确的寄生参数。此外,建立了脉冲宽度调制(PWM)整流系统的高精度进行了干扰模拟模型。然后,提出了基于三相四腿结构的空间矢量脉冲宽度调制(SVPWM)跳转控制策略以抑制共模干扰,并基于该模型执行与其他两种方法的比较。最后,构造了具有整流器的5V / 1000的实验平台,并且根据模拟结果测试了传导干扰。它展示了基于矩阵提取方法与寄生参数的模型的准确性。本文提供了一种更简单有效的参考方法,用于对电力转换器系统进行对电力干扰的预测研究。在将仿真结果与实验结果进行比较之后,证明基于三相四腿结构的SVPWM跳转控制策略可以保证桥腿的输出平衡并允许共模(CM)干扰达到理想的状态。

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