World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
84
Citations
29092
World Ranking
405
National Ranking
63

Research.com Recognitions

  • 2013 - IEEE Fellow For contributions to complex networks and nonlinear circuits and systems

Overview

Jinhu Lu is affiliated with Beihang University in China and has a significant body of work focused on areas within computer science and engineering. Their research contributions cover a wide range of topics including distributed control of multi-agent systems, neural networks stability and synchronization, adaptive control of nonlinear systems, nonlinear dynamics and pattern formation, mathematical and theoretical epidemiology and ecology models, adaptive dynamic programming control, and complex network analysis techniques.

Frequent co-authors collaborating with Jinhu Lu include Kexin Liu, Xiwang Dong, Xiaoqun Wu, Qing Gao, and Haibo Gu. These collaborations reflect a continuing engagement with peers across numerous related research areas.

Jinhu Lu has published extensively in several key venues, with multiple articles appearing in:

  • IEEE Transactions on Circuits and Systems I Regular Papers
  • IEEE Transactions on Systems Man and Cybernetics Systems
  • IEEE Transactions on Cybernetics
  • arXiv (Cornell University)
  • IEEE Transactions on Neural Networks and Learning Systems

Among their recent papers are:

  • Adaptive Practical Optimal Time-Varying Formation Tracking Control for Disturbed High-Order Multi-Agent Systems, 2022, IEEE Transactions on Circuits and Systems I Regular Papers
  • Coordination and Control of Complex Network Systems With Switching Topologies: A Survey, 2020, IEEE Transactions on Systems Man and Cybernetics Systems
  • Cloud-Edge-Based Lightweight Temporal Convolutional Networks for Remaining Useful Life Prediction in IIoT, 2020, IEEE Internet of Things Journal
  • Fixed-Time Synchronization of Coupled Neural Networks With Discontinuous Activation and Mismatched Parameters, 2020, IEEE Transactions on Neural Networks and Learning Systems
  • Fixed-Time Synchronization of Complex Dynamical Networks: A Novel and Economical Mechanism, 2020, IEEE Transactions on Cybernetics

Their primary research fields are computer science and engineering, with subfields including computer networks and communications, control and systems engineering, artificial intelligence, statistical and nonlinear physics, and computer vision and pattern recognition.

Jinhu Lu was named IEEE Fellow in 2013 for contributions to complex networks and nonlinear circuits and systems.

Best Publications

  • Brief paper: On pinning synchronization of complex dynamical networks

    Wenwu Yu;Guanrong Chen;Jinhu Lü

  • Bridge the gap between the Lorenz system and the Chen system

    Jinhu Lü;Guanrong Chen;Daizhan Cheng;Sergej Celikovsky

  • A time-varying complex dynamical network model and its controlled synchronization criteria

    Jinhu Lu;Guanrong Chen

  • Stability analysis of linear fractional differential system with multiple time delays

    Weihua Deng;Weihua Deng;Changpin Li;Jinhu Lü

  • Adaptive synchronization of an uncertain complex dynamical network

    Jin Zhou;Jun-an Lu;Jinhu Lu

  • Pinning adaptive synchronization of a general complex dynamical network

    Jin Zhou;Jun-an Lu;Jinhu Lü

  • Generating hyperchaotic Lü attractor via state feedback control

    Aimin Chen;Junan Lu;Jinhu Lü;Simin Yu

  • Synchronization of an uncertain unified chaotic system via adaptive control

    Shihua Chen;Jinhu Lü

  • An Overall Distribution Particle Swarm Optimization MPPT Algorithm for Photovoltaic System Under Partial Shading

    Hong Li;Duo Yang;Wenzhe Su;Jinhu Lu

  • Characterizing the synchronizability of small-world dynamical networks

    Jinhu Lu;Xinghuo Yu;Guanrong Chen;Daizhan Cheng

  • Chaos synchronization of general complex dynamical networks

    Jinhu Lü;Xinghuo Yu;Guanrong Chen

  • Generating Multiscroll Chaotic Attractors: Theories, Methods and Applications

    Jinhu Lü;Guanrong Chen

  • Distributed control gains design for consensus in multi-agent systems with second-order nonlinear dynamics

    Wenwu Yu;Wenwu Yu;Wei Ren;Wei Xing Zheng;Guanrong Chen

  • A NEW CHAOTIC SYSTEM AND BEYOND: THE GENERALIZED LORENZ-LIKE SYSTEM

    Jinhu Lü;Guanrong Chen;Daizhan Cheng

  • Design and analysis of multiscroll chaotic attractors from saturated function series

    Jinhu Lu;Guanrong Chen;Xinghuo Yu;H. Leung

  • Synchronization via pinning control on general complex networks

    Wenwu Yu;Guanrong Chen;Jinhu Lu;Juergen Kurths;Juergen Kurths

  • Chaos synchronization between linearly coupled chaotic systems

    Jinhu Lü;Tianshou Zhou;Suochun Zhang

  • Global synchronization of linearly hybrid coupled networks with time-varying delay

    Wenwu Yu;Jinde Cao;Jinhu Lü

  • Synchronization of a unified chaotic system and the application in secure communication

    Junan Lu;Xiaoqun Wu;Jinhu Lü

  • Distributed fixed-time consensus for nonlinear heterogeneous multi-agent systems

    Haibo Du;Guanghui Wen;Di Wu;Yingying Cheng

  • Dynamical analysis of a new chaotic attractor

    Jinhu Lü;Guanrong Chen;Suochun Zhang

Frequent Co-Authors

Guanrong Chen
Guanrong Chen City University of Hong Kong
Xinghuo Yu
Xinghuo Yu RMIT University
Jun-an Lu
Jun-an Lu Wuhan University
Wenwu Yu
Wenwu Yu Southeast University
Zongli Lin
Zongli Lin University of Virginia
Haibo Du
Haibo Du Hefei University of Technology
Daniel W. C. Ho
Daniel W. C. Ho City University of Hong Kong
Ming Cao
Ming Cao University of Groningen
Daizhan Cheng
Daizhan Cheng Chinese Academy of Sciences
Jinde Cao
Jinde Cao Southeast University

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

For those pursuing a career in electronics and electrical engineering, complementary skills can enhance job prospects and versatility. Earning a project management bachelor degree is a valuable option. It equips students with leadership and organizational skills that are essential for overseeing engineering projects from conception to completion.

Many working professionals seek flexible options, and bachelor degree programs for working adults are tailored to fit busy schedules. These programs allow students to balance work, life, and study, making advanced education more accessible.

For engineers interested in education or training roles, pursuing an online masters in instructional design can broaden career pathways. This degree prepares graduates to develop effective learning materials and training programs in technical fields.

Additionally, competency based universities offer a unique learning model focused on mastering skills at one’s own pace. This approach is particularly effective for self-motivated learners who want to quickly demonstrate their expertise and advance in technical careers.

Best Scientists Citing Jinhu Lu

Trending Scientists

Recently Published Articles