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Abdul Basit
Researcher at University of Electronic Science and Technology of China
Publications - 64
Citations - 919
Abdul Basit is an academic researcher from University of Electronic Science and Technology of China. The author has contributed to research in topics: Radar & Beamforming. The author has an hindex of 13, co-authored 64 publications receiving 603 citations. Previous affiliations of Abdul Basit include International Islamic University, Islamabad.
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Effects of MHD and slip on heat transfer boundary layer flow over a moving plate based on specific entropy generation
TL;DR: In this article, combined effects of magnetohydrodynamics (MHD) heat transfer flow under the influence of slip over a moving flat plate are investigated, and effects of entropy generation are also exam...
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Beam Pattern Synthesis for an FDA Radar with Hamming Window-Based Nonuniform Frequency Offset
TL;DR: In this article, a uniformly spaced symmetric FDA with Hamming window-based tapering interelement frequency offsets has been proposed, which produces a single maximum beam pattern toward the desired range and angle values.
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Development of frequency diverse array radar technology: a review
TL;DR: This study presents a review on the development of FDA technology in radar and navigation applications and focuses the research on getting range-angle uncoupled beam patterns along with diverse hybrid cognitive FDA design, available in the literature, for improved radar performance.
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Range-Bins-Based MIMO Frequency Diverse Array Radar With Logarithmic Frequency Offset
TL;DR: This letter has proposed multiple-input-multiple-output frequency diverse array radar with logarithmic offset (MIMO-log-FDA), which can be used to produce single maxima for multiple targets present in different range bins, which has achieved singlemaxima for a target in the desired range dimension.
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Time-Modulated FD-MIMO Array for Integrated Radar and Communication Systems
TL;DR: Time-modulated frequency diverse multiple-input–multiple-output (TMFD-MIMO) array for integrated radar and communications, where the communication information bits are embedded via spread sequence technique during each radar pulse, achieves satisfactory probability of target resolution and signal-to-interference-plus-noise ratio.