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Jinjun Shan

Jinjun Shan

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
36
Citations
3863
World Ranking
2586
National Ranking
112

Overview

Jinjun Shan is affiliated with York University in Canada, with a research focus spanning Engineering and Computer Science. Their work predominantly covers subfields such as Control and Systems Engineering, Computer Vision and Pattern Recognition, Aerospace Engineering, Computer Networks and Communications, and Artificial Intelligence.

The main topics of Jinjun Shan's research include:

  • Adaptive Control of Nonlinear Systems
  • Distributed Control Multi-Agent Systems
  • Robotic Path Planning Algorithms
  • Control and Dynamics of Mobile Robots
  • Robotics and Sensor-Based Localization
  • Advanced Optical Sensing Technologies
  • Neural Networks Stability and Synchronization

Among their recent publications are:

  • Deep Reinforcement Learning Based Game-Theoretic Decision-Making for Autonomous Vehicles (2021), IEEE Robotics and Automation Letters
  • A novel cable-suspended quadrotor transportation system: From theory to experiment (2020), Aerospace Science and Technology
  • Continuous integral sliding mode control for space manipulator with actuator uncertainties (2020), Aerospace Science and Technology
  • A Direct Inverse Model for Hysteresis Compensation (2020), IEEE Transactions on Industrial Electronics
  • Distributed Event-Triggered Bipartite Consensus for Multiagent Systems Against Injection Attacks (2022), IEEE Transactions on Industrial Informatics

Jinjun Shan frequently publishes in prominent venues such as:

  • arXiv (Cornell University)
  • IEEE Transactions on Industrial Electronics
  • IEEE/ASME Transactions on Mechatronics
  • Journal of Guidance Control and Dynamics
  • IEEE Robotics and Automation Letters

They have collaborated extensively with coauthors including Yibo Liu, Ti Chen, Hassan Alkomy, Hunter Schofield, and Huarong Zhao, reflecting a collaborative approach to research in their fields of study.

Best Publications

  • Slewing and vibration control of a single-link flexible manipulator by positive position feedback (PPF)

    Jinjun Shan;Hong-Tao Liu;Dong Sun

  • A PZT actuator control of a single-link flexible manipulator based on linear velocity feedback and actuator placement

    Dong Sun;James K. Mills;Jinjun Shan;S.K. Tso

  • Finite-Time Trajectory Tracking Control of Space Manipulator Under Actuator Saturation

    Shiyuan Jia;Jinjun Shan

  • Inverse Compensation of Hysteresis Using Krasnoselskii-Pokrovskii Model

    Zhi Li;Jinjun Shan;Ulrich Gabbert

  • Modified input shaping for a rotating single-link flexible manipulator

    Jinjun Shan;Hong-Tao Liu;Dong Sun

  • Hysteresis and creep modeling and compensation for a piezoelectric actuator using a fractional-order Maxwell resistive capacitor approach

    Yanfang Liu;Yanfang Liu;Jinjun Shan;Ulrich Gabbert;Naiming Qi

  • Synchronised trajectory-tracking control of multiple 3-DOF experimental helicopters

    J. Shan;H.-T. Liu;S. Nowotny

  • Rotation-Matrix-Based Attitude Tracking for Multiple Flexible Spacecraft with Actuator Faults

    Ti Chen;Jinjun Shan

  • Distributed Adaptive Attitude Control for Networked Underactuated Flexible Spacecraft

    Ti Chen;Jinjun Shan;Hao Wen

  • Vibration Control Using Input Shaping and Adaptive Positive Position Feedback

    Ryan R. Orszulik;Jinjun Shan

  • Adaptive Synchronization Control of Multiple Spacecraft Formation Flying

    Hong-Tao Liu;Jinjun Shan;Dong Sun

  • Six-degree-of-freedom synchronised adaptive learning control for spacecraft formation flying

    J. Shan

  • Distributed adaptive fault-tolerant attitude tracking of multiple flexible spacecraft on $$ extit{SO}(3)$$SO(3)

    Ti Chen;Jinjun Shan

  • Design for robust component synthesis vibration suppression of flexible structures with on-off actuators

    Jinjun Shan;Dong Sun;Dun Liu

  • Continuous integral sliding mode control for space manipulator with actuator uncertainties

    Shiyuan Jia;Jinjun Shan

  • Distributed Control of Multiple Flexible Manipulators With Unknown Disturbances and Dead-Zone Input

    Ti Chen;Jinjun Shan

  • A novel cable-suspended quadrotor transportation system: From theory to experiment

    Ti Chen;Jinjun Shan

  • Distributed Tracking of a Class of Underactuated Lagrangian Systems With Uncertain Parameters and Actuator Faults

    Ti Chen;Jinjun Shan

  • Modeling and Inverse Compensation for Coupled Hysteresis in Piezo-Actuated Fabry–Perot Spectrometer

    Zhi Li;Jinjun Shan

  • Creep modeling and identification for piezoelectric actuators based on fractional-order system

    Yanfang Liu;Yanfang Liu;Jinjun Shan;Naiming Qi

  • Feedback/feedforward control of hysteresis-compensated piezoelectric actuators for high-speed scanning applications

    Yanfang Liu;Jinjun Shan;Jinjun Shan;Ulrich Gabbert

  • Close-Formation Flight Control with Motion Synchronization

    Jinjun Shan;Hong-Tao Liu

Frequent Co-Authors

Ulrich Gabbert
Ulrich Gabbert Otto-von-Guericke University Magdeburg
Ralf Koppmann
Ralf Koppmann University of Wuppertal
Gordon G. Shepherd
Gordon G. Shepherd York University
Ming Xu
Ming Xu University of Michigan–Ann Arbor
James K. Mills
James K. Mills University of Toronto
Youshen Xia
Youshen Xia Fuzhou University

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