Area of research
Electrical and Electronic Engineering
Research interest
Research interests include Photonics, Electronic engineering, Terahertz radiation, Wireless, Transmission (telecommunications), and Quadrature amplitude modulation.
Net 562.5-Gbps/$\lambda$ 2 × 2 MIMO Optical Wireless Transmission System at 322 GHz With Sampling Frequency Offset Compensation
Equivalent Sampling Frequency Offset in Transceivers: Minimization and Compensation for Broadband Photonics-Aided THz Wireless Transmission Systems
Photonics-aided exceeding 200-Gb/s wireless data transmission over outdoor long-range 2 × 2 MIMO THz links at 300 GHz
200-m Photonics-Aided Terahertz Wireless Transmission of 253-Gbit/s DP-OFDM Signals Utilizing Multidimensional Nonlinear Equalization
Large-Capacity Photonics-Assisted Millimeter-Wave Wireless Communication Enabled by Dual-Polarized SISO Link and Advanced MIMO Equalizer
510-Gbps 322-GHz Photonics-Aided Terahertz Wireless Transmission System With MIMO Embedded Adaptive Phase Recovery Equalizer
Broadband Photon-Assisted Terahertz Communication and Sensing
Photonic Terahertz Wireless Communication: Towards the Goal of High-Speed Kilometer-Level Transmission
High-Speed and Long-Distance Photonics-Aided Terahertz Wireless Communication
8192QAM Signal Transmission by an IM/DD System at W-Band Using Delta-Sigma Modulation
Integrated High-Resolution Radar and Long-Distance Communication Based-on Photonic in Terahertz Band
800-Gb/s/carrier WDM Coherent Transmission Over 2000 km Based on Truncated PS-64QAM Utilizing MIMO Volterra Equalizer
Real-Time Demonstration of 100 GbE THz-Wireless and Fiber Seamless Integration Networks
Complex-Valued 2D-CNN Equalization for OFDM Signals in a Photonics-Aided MMW Communication System at the D-Band
Delivery of Polarization-Division-Multiplexing Wireless Millimeter-Wave Signal over 4.6-km at W-Band
THz-over-fiber transmission with a net rate of 5.12 Tbps in an 80 channel WDM system
Photonics-assisted joint high-speed communication and high-resolution radar detection system