World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
32
Citations
3391
World Ranking
6424
National Ranking
928

Overview

Ze Dong is affiliated with Huaqiao University in China, focusing research primarily within the field of engineering, with an emphasis on electrical and electronic engineering. Their work spans multiple subfields, including atomic and molecular physics and optics, biomedical engineering, computer networks and communications, and aerospace engineering.

Their research explores various specialized topics, notably:

  • Optical Network Technologies
  • Advanced Photonic Communication Systems
  • Photonic and Optical Devices
  • Semiconductor Lasers and Optical Devices
  • Orbital Angular Momentum in Optics
  • Advanced Optical Network Technologies
  • Advanced Fiber Laser Technologies

Ze Dong has authored numerous papers published in several academic venues. Frequent publication outlets include:

  • Optics Express
  • Optics Letters
  • Journal of Lightwave Technology
  • SSRN Electronic Journal
  • IEEE Photonics Technology Letters

Recent papers demonstrate a focus on high-speed optical communication and advanced signal processing methods. Notable papers include:

  • "OAM mode-division multiplexing IM/DD transmission at 4.32 Tbit/s with a low-complexity adaptive-network-based fuzzy inference system nonlinear equalizer," 2023, Optics Letters
  • "DMT Transmission in Short-Reach Optical Interconnection Employing a Novel Bit-Class Probabilistic Shaping Scheme," 2020, Journal of Lightwave Technology
  • "Photonics-assisted joint high-speed communication and high-resolution radar detection system," 2021, Optics Letters
  • "Photonic-aided W-band dual-vector RF signal generation and detection enabled by bandpass delta-sigma modulation and heterodyne detection," 2023, Optics Letters
  • "Probabilistic neural network equalizer for nonlinear mitigation in OAM mode division multiplexed optical fiber communication," 2022, Optics Express

Collaboration is a significant aspect of Ze Dong's research activities. Frequent coauthors include:

  • Xiangjun Xin
  • Zhipei Li
  • Junyuan Song
  • Dong Guo
  • Ran Gao

Best Publications

  • A 400G optical wireless integration delivery system

    Xinying Li;Jianjun Yu;Junwen Zhang;Ze Dong

  • Cost-Effective Optical Millimeter Technologies and Field Demonstrations for Very High Throughput Wireless-Over-Fiber Access Systems

    Jianjun Yu;Gee-Kung Chang;Zhensheng Jia;A Chowdhury

  • Fiber-wireless transmission system of 108 Gb/sdata over 80 km fiber and 2×2multiple-input multiple-output wireless links at 100 GHz W-band frequency.

    Xinying Li;Ze Dong;Jianjun Yu;Nan Chi

  • Multichannel 120-Gb/s Data Transmission Over 2 $\, imes\,$ 2 MIMO Fiber-Wireless Link at W-Band

    Junwen Zhang;Jianjun Yu;Nan Chi;Ze Dong

  • 11 × 5 × 9.3Gb/s WDM-CAP-PON based on optical single-side band multi-level multi-band carrier-less amplitude and phase modulation with direct detection.

    Junwen Zhang;Jianjun Yu;Fan Li;Nan Chi

  • Investigation of interference in multiple-input multiple-output wireless transmission at W band for an optical wireless integration system

    Xinying Li;Jianjun Yu;Ze Dong;Junwen Zhang

  • Direct-Detection Optical OFDM Transmission System Without Frequency Guard Band

    Zizheng Cao;Jianjun Yu;Wenpei Wang;Lin Chen

  • Generation of Coherent and Frequency-Locked Multi-Carriers Using Cascaded Phase Modulators for 10 Tb/s Optical Transmission System

    Jianjun Yu;Ze Dong;Junwen Zhang;Xin Xiao

  • Generation, transmission and coherent detection of 11.2 Tb/s (112×100Gb/s) single source optical OFDM superchannel

    Jianjun Yu;Ze Dong;Xin Xiao;Yan Xia

  • Fiber-Wireless Transmission System of PDM-MIMO-OFDM at 100 GHz Frequency

    Fan Li;Zizheng Cao;Xinying Li;Ze Dong

  • Multi-Modulus Blind Equalizations for Coherent Quadrature Duobinary Spectrum Shaped PM-QPSK Digital Signal Processing

    Junwen Zhang;Jianjun Yu;Nan Chi;Ze Dong

  • Dual-Wavelength Single-Longitudinal-Mode Tm-Doped Fiber Laser Using PM-CMFBG

    Fengping Yan;Wanjing Peng;Shuo Liu;Ting Feng

  • Simplified coherent receiver with heterodyne detection of eight-channel 50 Gb/s PDM-QPSK WDM signal after 1040 km SMF-28 transmission

    Junwen Zhang;Ze Dong;Jianjun Yu;Nan Chi

  • Transmission of 200 G PDM-CSRZ-QPSK and PDM-16 QAM With a SE of 4 b/s/Hz

    Jianjun Yu;Ze Dong;Hung-Chang Chien;Zhensheng Jia

  • Field Transmission of 100 G and Beyond: Multiple Baud Rates and Mixed Line Rates Using Nyquist-WDM Technology

    Zhensheng Jia;Jianjun Yu;Hung-Chang Chien;Ze Dong

  • Transmission of 8 × 480-Gb/s super-Nyquist-filtering 9-QAM-like signal at 100 GHz-grid over 5000-km SMF-28 and twenty-five 100 GHz-grid ROADMs

    Jianjun Yu;Junwen Zhang;Ze Dong;Zhensheng Jia

  • 1.96 Tb/s (21 $\, imes\,$ 100 Gb/s) OFDM Optical Signal Generation and Transmission Over 3200-km Fiber

    Jianjun Yu;Ze Dong;Nan Chi

  • A Novel Scheme for Seamless Integration of ROF With Centralized Lightwave OFDM-WDM-PON System

    Lin Chen;J.G. Yu;Shuangchun Wen;J. Lu

  • 6 $\, imes\,$ 144-Gb/s Nyquist-WDM PDM-64QAM Generation and Transmission on a 12-GHz WDM Grid Equipped With Nyquist-Band Pre-Equalization

    Ze Dong;Xinying Li;Jianjun Yu;Nan Chi

  • Performance Assessment of Noise-Suppressed Nyquist-WDM for Terabit Superchannel Transmission

    Hung-Chang Chien;Jianjun Yu;Zhensheng Jia;Ze Dong

Frequent Co-Authors

Jianjun Yu
Jianjun Yu Fudan University
Nan Chi
Nan Chi Fudan University
Xinying Li
Xinying Li Beijing Institute of Technology
Junwen Zhang
Junwen Zhang Fudan University
Gee-Kung Chang
Gee-Kung Chang Georgia Institute of Technology
Zhensheng Jia
Zhensheng Jia CableLabs
Ting Wang
Ting Wang Washington University in St. Louis
Chongxiu Yu
Chongxiu Yu Beijing University of Posts and Telecommunications
Sophie LaRochelle
Sophie LaRochelle Université Laval

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