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Proceedings ArticleDOI

A control strategy of single phase voltage source PWM rectifier under rotating coordinate

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TLDR
In this paper, a feed forward decoupling control method without inductance value is adopted to solve the problem that the L value is not accurate, which can suppress the static error of single-phase PWM rectifier's current.
Abstract
Feed forward decoupling control under Rotating coordinate can suppress the static error of single-phase PWM rectifier's current. But due to the variation inductance in the actual situation, the performance of control will be poor. The feedforward decoupling control method without inductance value is adopted in this paper to solve the problem that the inductance value is not accurate. Simulink simulation results show that the control method can be completed when the L value is not accurate.

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Citations
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Proceedings ArticleDOI

Power factor compensation for a single-phase AC-DC Hybrid Micro-Grid

TL;DR: The paper presents the modeling and simulation of the power flow control strategy of a single-phase AC-DC Hybrid Micro-Grid which contains two AC and DC zones delimitated by a bidirectional interlinking converter in a full bridge IGBT structure which is a regular H-Bridge inverter/rectifier.
Book ChapterDOI

Robust Stability of Single Phase PWM Rectifier Based on \({H_\infty }\) Loop Shaping

TL;DR: In this article, the performance and robustness of single phase PWM rectifiers against parametric uncertainties based on the gap metric is investigated. But the performance of the rectifier is not analyzed.
References
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Journal ArticleDOI

Research on voltage and power balance control for cascaded modular solid-state transformer

TL;DR: In this article, a single-phase d-q vector-based common duty-ratio control method for the multilevel rectifier, and a voltage feedforward and feedback based controller for the modular DAB converter are presented.
Proceedings ArticleDOI

Control strategies for voltage control of a boost type PWM converter

TL;DR: In this paper, the nonlinear problem of regulating the DC link voltage in a vector controlled three-phase boost type PWM converter with particular emphasis on applications in wind energy systems is addressed.
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