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Khan Zeb

Researcher at National Research Council

Publications -  21
Citations -  136

Khan Zeb is an academic researcher from National Research Council. The author has contributed to research in topics: Distributed feedback laser & Relative intensity noise. The author has an hindex of 3, co-authored 15 publications receiving 49 citations. Previous affiliations of Khan Zeb include Concordia University.

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Detection and Prediction of Diabetes Using Data Mining: A Comprehensive Review

TL;DR: A comprehensive review of the state-of-the-art in the area of diabetes diagnosis and prediction using data mining is presented in this article, where a comprehensive classification and comparison of the techniques that have been frequently used to diagnose and prediction of diabetes based on important key metrics is provided.
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High Capacity Mode Division Multiplexing Based MIMO Enabled All-Optical Analog Millimeter-Wave Over Fiber Fronthaul Architecture for 5G and Beyond

TL;DR: A high capacity multiple-input-multiple-output (MIMO) enabled all-optical analog-millimeter-wave-over fiber (A-MMWoF) fronthaul architecture is proposed for 5G and beyond of wireless networks and a comprehensive state-of-the-art literature review on the recent research works in high capacity A-RoF fr onthaul systems and related transport technologies is presented.
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Monolithic InAs/InP quantum dash dual-wavelength DFB laser with ultra-low noise common cavity modes for millimeter-wave applications.

TL;DR: A novel monolithic InAs/InP quantum-dash dual-wavelength distributed feedback C-band laser as a compact optical beat source to generate millimeter-wave (MMW) signals is developed and experimentally demonstrated.
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InAs/InP quantum dash buried heterostructure mode-locked laser for high capacity fiber-wireless integrated 5G new radio fronthaul systems.

TL;DR: The intrinsic characteristics of the device in conjunction with its system transmission performance indicate that QDash BH MLLs can be readily used in fiber-wireless integrated systems of 5G and beyond wireless communication networks.
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Broadband Optical Heterodyne Millimeter-Wave-over-Fiber Wireless Links Based on a Quantum Dash Dual-Wavelength DFB Laser

TL;DR: In this paper , the authors demonstrate real-time broadband multi-Gb/s electrical RF synthesizer-free millimeter-wave (MMW) signals generation and wireless transmission at the 5G new radio (NR) frequency band of 47 GHz based on analog radio-over-fiber (A-RoF) fronthaul.