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Dive into the research topics where Ronghui Zhou is active.

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Featured researches published by Ronghui Zhou.


ieee transportation electrification conference and expo asia pacific | 2014

Virtual sensing solutions for electric drive trains

Ronghui Zhou; Hongwu She; Zhuohui Tan; Xiangming Shen; Tong Zhao

The paper investigates the possible practical virtual sensing solutions for electric drive trains. Two types of solutions: virtual sensors for machine sensorless control and physical sensor on-board diagnostics are particularly addressed, which provide the advantages of system cost reduction and reliability enhancement. Various virtual sensor configurations with advanced control and signal processing techniques are studied and their performance are compared based on the state of the art survey and preliminary simulation. The opportunities and challenges for the application of these virtual sensor configurations in electrified transportation system are also discussed.


ieee transportation electrification conference and expo asia pacific | 2014

Interior permanent magnet motor torque extension control

Xiangming Shen; Ronghui Zhou; Yong Li; Tong Zhao

In this paper, a novel six-step strategy for IPM machines operating in high speed region was proposed and validated via simulations. The advantage of this strategy is that the torque capability of the IPM machine in high speed region can be enhanced by 30% compared with the traditional field weakening technique. The technique has been validated using software-in-the-loop simulations.


ieee transportation electrification conference and expo asia pacific | 2014

An online efficiency optimization control method for permanent magnet synchronous motor

Tong Zhao; Xiangming Shen; Ronghui Zhou

In this article, we propose a new online efficiency optimization method for interior permanent magnet (IPM) synchronous machine drive. In this new method, we apply a non-model-based optimization method - extremum seeking control method - to determine the optimal values of control variables such that system efficiency is optimized. Our method minimizes the power loss of both IPM motor and inverter. This method has outstanding advantages that it has very fast convergence rate and it is not sensitive to motor and inverter model parameters. These instructions give you basic guidelines for preparing camera-ready papers for conference proceedings.


Archive | 2014

ELECTRIC VEHICLE WITH IMPROVED ELECTRIC DRIVE SYSTEM

Fei Li; Xi Lu; Jian Zhou; Pengju Kang; Ronghui Zhou; Xiangming Shen; Fengcheng Sun; Hai Qiu


Archive | 2012

METHOD AND SYSTEM FOR CONTROLLING MOTOR

Yong Li; Pengju Kang; Ronghui Zhou; Xiangming Shen; Xiao Chen; Zili Cai; Tong Zhao


Archive | 2013

SWITCHING COMPONENT AND SWITCH SYSTEM COMPRISING THE SAME

Ronghui Zhou; Fei Xu; Pengju Kang; Tong Zhao; Fei Li; Yong Li; Xiangming Shen


Archive | 2014

PROPULSION SYSTEM AND METHOD FOR DRIVING A VEHICLE

Tong Zhao; Xi Lu; Ronghui Zhou; Fei Li


Archive | 2014

APPARATUS AND METHOD FOR ELECTRIC BRAKING

Xi Lu; Fei Li; Jian Zhou; Hai Qiu; Ronghui Zhou; Xiangming Shen; Fengcheng Sun


Archive | 2013

POWER SUPPLY MANAGEMENT APPARATUS AND METHOD THEREOF

Fei Li; Xi Lu; Jian Zhou; Pengju Kang; Ronghui Zhou; Xiangming Shen; Fengcheng Sun; Hai Qiu


Archive | 2014

DRIVE SYSTEM AND METHOD FOR DRIVING A VEHICLE

Ronghui Zhou; Pengju Kang; Xiangming Shen; Xi Lu; Fei Li; Jian Zhou; Hai Qiu; Fengcheng Sun

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