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Dive into the research topics where Luo Quanming is active.

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Featured researches published by Luo Quanming.


Chinese Physics Letters | 2007

Dynamic Feedback Controlling Chaos in Current-Mode Boost Converter

Lu Wei-Guo; Zhou Luowei; Luo Quanming

A method for the control of chaos in the current-mode boost converter is presented by using the first-order dynamic feedback control. The feedback part consists of a resistance and a capacitance in series. The system to be controlled is treated as a third-order model, and then the discrete mapping model is obtained by using the data-sampling method. By analysing the position of the maximum norm eigenvalue, the stable range of feedback gain is ascertained out and its optimization is also carried out. Finally, the results of simulation and experiment confirm the correctness of the theoretical analysis and the validity of the proposed means.


Chinese Physics | 2007

Notch filter feedback controlled chaos in buck converter

Lu Wei-Guo; Zhou Luowei; Luo Quanming

A method of controlling chaos in the voltage-mode buck converter is presented by using an improved notch filter feedback control in this paper. The proposed control part comprises a notch filter and a low-pass filter. The discrepancy between the outputs of the two filters is introduced into the control prototype of the power converter. In this way, the system period-1 solution is kept unchanged. The harmonic balance method is applied to analysing the variation law of the system bifurcation point, and then the stable range of the feedback gain is ascertained. The results of simulation and experiment are also given finally.


Chinese Physics Letters | 2010

Bifurcation Control of Current-Mode Buck Converter via TDFC

Lu Wei-Guo; Xu Ping-Ye; Zhou Luowei; Luo Quanming

Considering the TDFC controlled current-mode Buck converter featuring periodicity we propose a Fourier-decomposition based method for the bifurcation analysis of this system, hence the theoretical range of control gain of TDFC is determined. In addition, the power-stage experiment circuit is built and the control part is realized in a digital controller. The experimental results show that either bifurcation or chaos in the current-mode Buck converter can be controlled into the expectant period-1 orbit rapidly.


International Journal of Circuit Theory and Applications | 2011

Non-invasive chaos control of DC–DC converter and its optimization

Lu Wei-Guo; Zhou Luowei; Luo Quanming; Wu Jun-Ke


Archive | 2007

Time-delayed feedback control of chaos in BOOST converter and its optimization

Lu Wei-Guo; Zhou Luowei; Luo Quanming; Du Xiong


Archive | 2013

High-gain boosting type direct-current converter

Luo Quanming; Zhu Fenxin; Zhou Luowei; Lu Wei-Guo


Archive | 2013

High-gain interleaving boost converter

Luo Quanming; Zhu Fenxin; Zhou Luowei; Sun Pengju


Archive | 2013

Multi-path constant-current high-power LED (Light-Emitting Diode) driving power supply

Luo Quanming; Zhou Luowei; Lu Wei-Guo; Zhu Binxin; Wang Yang


Archive | 2013

Single-stage high frequency alternating current/alternating current (AC/AC) converter

Luo Quanming; Zou Can; Zhi Shubo; Zhou Luowei


Archive | 2013

Staggered parallel high-gain boost type direct current (DC) converter

Zhou Luowei; Zhu Fenxin; Luo Quanming; Lu Wei-Guo

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