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Xiaozhe Chen

Researcher at Northeastern University (China)

Publications -  16
Citations -  190

Xiaozhe Chen is an academic researcher from Northeastern University (China). The author has contributed to research in topics: Vibration & Synchronization (alternating current). The author has an hindex of 6, co-authored 12 publications receiving 125 citations. Previous affiliations of Xiaozhe Chen include Northeastern University.

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Synchronization analysis and control of three eccentric rotors in a vibrating system using adaptive sliding mode control algorithm

TL;DR: In this paper, the self-synchronization motion of three eccentric rotors in line driven by induction motors rotating in the same direction in a vibrating system is investigated, and an adaptive sliding mode control (ASMC) algorithm based on a modified master-slave control strategy is employed to design the controllers.
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Phase and speed synchronization control of four eccentric rotors driven by induction motors in a linear vibratory feeder with unknown time-varying load torques using adaptive sliding mode control algorithm

TL;DR: In this paper, phase and speed synchronization control of four eccentric rotors (ERs) driven by induction motors in a linear vibratory feeder with unknown time-varying load torques is studied.
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On the Synchronization of Two Eccentric Rotors with Common Rotational Axis: Theory and Experiment

TL;DR: In this paper, the synchronization of two eccentric rotors (ERs) with common rotational axis in the vibration system of the far-resonant spatial motion was studied.
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Controlled synchronization of two nonidentical homodromy coupling exciters driven by inductor motors in a vibratory system

TL;DR: In this article, the authors investigated the controlled synchronization of two nonidentical homodromy coupling exciters driven by inductor motors in a vibratory system and proposed a controlled synchronization method by employing sliding mode control and proportional-integral method on two induction motors based on the master-slave control strategy.
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Times-frequency synchronization of two exciters with the opposite rotating directions in a vibration system

TL;DR: In this paper, the Lagrange equations of the vibration system were obtained using Lagrange Equation (LE) and the average method of modified small parameters was introduced to derive the frequency capture condition of the system in the case of times-frequency synchronization.