基于自举约束的三相MOSFET功率逆变器动态控制新方法

Naser Pour Aryan, B. Vogler, Andreas Scheler
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引用次数: 0

摘要

提出了一种预测三相MOSFET功率逆变系统驱动电机动态运行时自举电压的新模型。该模型考虑了自举供电电平、逆变器n沟道mosfet的参数、开关在相应调制指标下的占空比、功率因数(cos(ϕ))、电机转速等细节,以准确预测允许交流频率和调制指标的边界。它是基于数学定理和测试结果。该模型在叉车和其他电动汽车的变频器/电机组合上进行了软件现场运行并成功测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Approach to Dynamic Control of a Three-Phase MOSFET Power Inverter, Based on Bootstrap Constraints
A novel model for predicting the bootstrap voltage in the dynamic operation of a three-phase MOSFET power inverter system driving an electric motor is presented. The model takes into account the bootstrap supply level, the parameters of inverter’s N-channel MOSFETs, the switches’ duty cycle at the corresponding modulation indexes, the power factor (cos(ϕ)), motor’s rpm and other details to accurately predict the boundaries of permissible AC frequencies and modulation indexes. It is based on both mathematical theorems and test results. The model was implemented and successfully tested in software running in the field on inverter/motor combinations on forklift trucks and other electric vehicles.
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