World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
33
Citations
3960
World Ranking
6140
National Ranking
881

Overview

Qunbi Zhuge is affiliated with Shanghai Jiao Tong University in China and specializes in Engineering, with a major focus on Electrical and Electronic Engineering. Their body of work encompasses a range of topics mainly related to optical communication and photonics.

The scientist's research interests cover:

  • Optical Network Technologies
  • Advanced Photonic Communication Systems
  • Photonic and Optical Devices
  • Advanced Optical Network Technologies
  • Advanced Fiber Laser Technologies
  • Semiconductor Lasers and Optical Devices
  • Neural Networks and Reservoir Computing

Zhuge's frequent co-authors include Weisheng Hu, Lilin Yi, Mengfan Fu, Yixiao Zhu, and Xiaomin Liu, indicating collaborative work within these research areas.

They have published extensively in several venues, with notable publication counts in the following journals:

  • Journal of Lightwave Technology (31 publications)
  • arXiv (Cornell University) (14 publications)
  • Optics Express (11 publications)
  • Optics Letters (8 publications)
  • Journal of Optical Communications and Networking (7 publications)

Some of the recent publications authored or co-authored by Zhuge include:

  • Building a digital twin for intelligent optical networks [Invited Tutorial], 2023, Journal of Optical Communications and Networking
  • Chaotic Optical Communication Over 1000 km Transmission by Coherent Detection, 2020, Journal of Lightwave Technology
  • AI-Based Modeling and Monitoring Techniques for Future Intelligent Elastic Optical Networks, 2020, Applied Sciences
  • Coherent chaotic optical communication of 30 Gb/s over 340-km fiber transmission via deep learning, 2022, Optics Letters
  • Soft Failure Identification for Long-haul Optical Communication Systems Based on One-dimensional Convolutional Neural Network, 2020, Journal of Lightwave Technology

Their work spans advanced topics in photonic and optical device technologies alongside computational methods such as neural networks applied to optical communication systems.

Best Publications

  • Digital subcarrier multiplexing for fiber nonlinearity mitigation in coherent optical communication systems.

    Meng Qiu;Qunbi Zhuge;Mathieu Chagnon;Yuliang Gao

  • Beyond 100 Gb/s: capacity, flexibility, and network optimization [Invited]

    Kim Roberts;Qunbi Zhuge;Inder Monga;Sebastien Gareau

  • Spectral Efficiency-Adaptive Optical Transmission Using Time Domain Hybrid QAM for Agile Optical Networks

    Qunbi Zhuge;Mohamed Morsy-Osman;Xian Xu;Mathieu Chagnon

  • 32 Gb/s chaotic optical communications by deep-learning-based chaos synchronization.

    Junxiang Ke;Lilin Yi;Zhao Yang;Yunpeng Yang

  • Performance comparison of DML, EML and MZM in dispersion-unmanaged short reach transmissions with digital signal processing.

    Kuo Zhang;Qunbi Zhuge;Haiyun Xin;Weisheng Hu

  • Reservoir computing system with double optoelectronic feedback loops.

    Yaping Chen;Lilin Yi;Junxiang Ke;Zhao Yang

  • Chaotic Optical Communication Over 1000 km Transmission by Coherent Detection

    Zhao Yang;Lilin Yi;Junxiang Ke;Qunbi Zhuge

  • Application of Machine Learning in Fiber Nonlinearity Modeling and Monitoring for Elastic Optical Networks

    Qunbi Zhuge;Xiaobo Zeng;Huazhi Lun;Meng Cai

  • Advanced DSP Techniques Enabling High Spectral Efficiency and Flexible Transmissions: Toward elastic optical networks

    Alan Pak Tao Lau;Yuliang Gao;Qi Sui;Dawei Wang

  • Machine learning based linear and nonlinear noise estimation

    F. J. Vaquero Caballero;D. J. Ives;C. Laperle;D. Charlton

  • Coherent chaotic optical communication of 30 Gb/s over 340-km fiber transmission via deep learning.

    Unknown

  • Building a digital twin for intelligent optical networks

    Unknown

  • Theoretical and experimental investigation of direct detection optical OFDM transmission using beat interference cancellation receiver.

    S. Alireza Nezamalhosseini;Lawrence R. Chen;Qunbi Zhuge;Mahdi Malekiha

  • Feedforward carrier recovery via pilot-aided transmission for single-carrier systems with arbitrary M-QAM constellations.

    Mohamed Morsy-Osman;Qunbi Zhuge;Lawrence R. Chen;David V. Plant

  • Nonlinear Signal-to-Noise Ratio Estimation in Coherent Optical Fiber Transmission Systems Using Artificial Neural Networks

    Aazar Saadaat Kashi;Qunbi Zhuge;John C. Cartledge;S. Ali Etemad

  • AI-Based Modeling and Monitoring Techniques for Future Intelligent Elastic Optical Networks

    Xiaomin Liu;Huazhi Lun;Mengfan Fu;Yunyun Fan

  • Coherent digital-analog radio-over-fiber (DA-RoF) system with a CPRI-equivalent data rate beyond 1 Tb/s for fronthaul.

    Unknown

  • Self-homodyne system for next generation intra-datacenter optical interconnects.

    Mohammed Y S Sowailem;Eslam El-Fiky;Mohamed Morsy-Osman;Qunbi Zhuge

  • Soft Failure Identification for Long-haul Optical Communication Systems Based on One-dimensional Convolutional Neural Network

    Huazhi Lun;Mengfan Fu;Xiaomin Liu;Yiwen Wu

  • Single-Lane 145 Gbit/s IM/DD Transmission With Faster-Than-Nyquist PAM4 Signaling

    Meng Xiang;Zhenping Xing;Eslam El-Fiky;Mohamed Morsy-Osman

  • RF-pilot aided modulation format identification for hitless coherent transceiver.

    Meng Xiang;Qunbi Zhuge;Meng Qiu;Xinyu Zhou

  • Pilot-aided carrier phase recovery for M-QAM using superscalar parallelization based PLL.

    Qunbi Zhuge;Mohamed Morsy-Osman;Xian Xu;Mohammad E. Mousa-Pasandi

  • Intensity directed equalizer for the mitigation of DML chirp induced distortion in dispersion-unmanaged C-band PAM transmission

    Kuo Zhang;Qunbi Zhuge;Haiyun Xin;Mohamed Morsy-Osman

  • Zero-guard-interval coherent optical OFDM with overlapped frequency-domain CD and PMD equalization.

    Chen Chen;Qunbi Zhuge;David V. Plant

  • Nonlinear Tomlinson-Harashima precoding for direct-detected double sideband PAM-4 transmission without dispersion compensation

    Haiyun Xin;Kuo Zhang;Deming Kong;Qunbi Zhuge

  • Time domain hybrid QAM based rate-adaptive optical transmissions using high speed DACs

    Qunbi Zhuge;Xian Xu;Mohamed Morsy-Osman;M. Chagnon

Frequent Co-Authors

David V. Plant
David V. Plant McGill University
Weisheng Hu
Weisheng Hu Shanghai Jiao Tong University
Mathieu Chagnon
Mathieu Chagnon McGill University
Lilin Yi
Lilin Yi Shanghai Jiao Tong University
Songnian Fu
Songnian Fu Huazhong University of Science and Technology
Lawrence R. Chen
Lawrence R. Chen McGill University
Alan Pak Tao Lau
Alan Pak Tao Lau Hong Kong Polytechnic University
Chao Lu
Chao Lu Hong Kong Polytechnic University
Kim B. Roberts
Kim B. Roberts Ciena (United States)
Seb J. Savory
Seb J. Savory University of Cambridge

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