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Design of modified reference phase modulation based boost chopper fed fifteen level stepped DC link hybrid converter. [PDF]

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Uthirasamy R   +8 more
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Ultra Compact Three-phase PWM Rectifier

APEC 07 - Twenty-Second Annual IEEE Applied Power Electronics Conference and Exposition, 2007
An increasing number of telecom, data server and aircraft power supply applications require high power, highly efficient, compact, sinusoidal input current rectifiers. The design and experimental performance of an 8.5 kW/liter (139 W/in3), 3-phase PWM rectifier with a power output of 10 kW is presented.
P. Karutz   +3 more
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Repetitive controlled three-phase reversible PWM rectifier

Proceedings of the 2000 American Control Conference. ACC (IEEE Cat. No.00CH36334), 2000
In this paper, a repetitive current control scheme for three-phase reversible PWM rectifier is proposed. The proposed control scheme is of typical dual-loop structure: inner AC current loop with plug-in repetitive plus feedback deadbeat controller, and outer DC voltage loop with PI controller.
null Keliang Zhou   +2 more
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Digital repetitive controlled three-phase PWM rectifier

IEEE Transactions on Power Electronics, 2003
In this paper, a digital repetitive control (RC) strategy is proposed to achieve zero tracking error for constant-voltage constant-frequency (CVCF) pulse width modulation (PWM) converters. The proposed control scheme is of "plug-in" structure: a plug-in digital repetitive controller plus a conventional controller (e.g., PD controller).
null Keliang Zhou, D. Wang
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Charge control of three-phase buck PWM rectifiers

APEC 2000. Fifteenth Annual IEEE Applied Power Electronics Conference and Exposition (Cat. No.00CH37058), 2002
Charge control of three-phase buck PWM rectifiers is proposed in this paper. It controls precisely the average input phase currents to track the input phase voltages by sensing and integrating only the DC rail current, realizes six-step PWM, and features simple implementation, fast dynamic response, excellent noise immunity, and is easy to realize with
K. Wang, D. Boroyevich, F.C. Lee
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Simplified control of a three-phase PWM rectifier

2011 International Conference on Power Engineering, Energy and Electrical Drives, 2011
A simple algorithm to control the PWM rectifier has been presented. Harmonics and unbalance in the AC-side line currents are compensated and the DC-bus voltage is regulated. The power factor of the compensated line currents is high. The algorithm may be used unmodified to control an active power filter.
S. R. Naidu   +2 more
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Simplified control circuit of three phase PWM rectifier

APEC '99. Fourteenth Annual Applied Power Electronics Conference and Exposition. 1999 Conference Proceedings (Cat. No.99CH36285), 1999
A new simplified control circuit for high performance three phase boost type PWM rectifier is presented. Based on the conception of vector control the AC vector processor (AD2S100) which serves for the AC motor vector control, is applied to high frequency rectification. Consequently, the control circuits are very much simplified.
null Xiong Jian   +4 more
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Three phase current-fed Z-source PWM rectifier

2009 IEEE Energy Conversion Congress and Exposition, 2009
Traditional voltage-source PWM rectifier (VSR) is a boost converter and traditional current-source PWM rectifier (CSR) is a buck converter. A dc-dc converter is requested to use with them to implement buck-boost capability. Also CSR can only provide unidirectional power flow. To overcome these limitations, voltage-fed Z-source PWM rectifier and current-
null Qin Lei   +3 more
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Current predictive control of three-phase PWM rectifier

2017 IEEE 2nd Information Technology, Networking, Electronic and Automation Control Conference (ITNEC), 2017
A predictive current control strategy is proposed to solve the problems of slow dynamic response and DC voltage fluctuation for traditional current inner loop controller based on dq transformation applications in three-phase PWM voltage source rectifier (VSR). Firstly, the discrete mathematical model of VSR is established.
Kun-qi Li, Bin Zhang, Wei-qi Xu
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