Study of multi-level rectifier in high power system based on a novel virtual flux observer

Hao Li, Guojun Tan, J. Fang, Xuanqin Wu
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引用次数: 2

Abstract

In the control of PWM rectifier, it can restrain harmonic and interference effectively by constructing a virtual line-flux-linkage to serve as the oriented vector. However, there are some problems in the conventional method, such as the error of amplitude, the shift of phase angle and the nondeterminacy of initial oriented angle. In the thesis, two one-stage low-pass filters are adopted instead of the pure integrator in the virtual line-flux-linkage observer, which can steady the phase and amplitude. Furthermore, a novel method of voltage estimate at the three-level rectifier terminals is advanced based on the simplified SVPWM algorithm. The good dynamic and static performance under the proposed control strategy is verified by simulation and experiment.
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基于新型虚拟磁链观测器的大功率系统多电平整流器研究
在PWM整流器的控制中,通过构造虚线磁链作为定向矢量,有效地抑制谐波和干扰。但传统方法存在幅值误差、相位角偏移和初始定向角不确定等问题。本文在虚拟线链观测器中采用两个单级低通滤波器代替纯积分器,实现了相位和幅度的稳定。在此基础上,提出了一种基于简化SVPWM算法的三电平整流端电压估计新方法。仿真和实验验证了该控制策略具有良好的动静态性能。
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Study and implementation of a single-stage three-phase AC-DC converter A resonant gate-drive circuit capable of high-frequency and high-efficiency operation Study of multi-level rectifier in high power system based on a novel virtual flux observer Power control strategy of electronic ballast for Metal Halide Lamps Design of a digital control IC of a current source based on a three-phase controlled rectifier
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