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Kyungjung Kim

Researcher at Syracuse University

Publications -  14
Citations -  1477

Kyungjung Kim is an academic researcher from Syracuse University. The author has contributed to research in topics: Direction of arrival & Filter (signal processing). The author has an hindex of 10, co-authored 14 publications receiving 1367 citations.

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A survey of various propagation models for mobile communication

TL;DR: An impulse-response characterization for the propagation path is presented, including models for small-scale fading, and it is shown that when two-way communication ports can be defined for a mobile system, it is possible to use reciprocity to focus the energy along the direction of an intended user without any explicit knowledge of the electromagnetic environment in which the system is operating.
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A deterministic least-squares approach to space-time adaptive processing (STAP)

TL;DR: A direct data domain (D/sup 3/) least-squares space-time adaptive processing (STAP) approach is presented for adaptively enhancing signals in a nonhomogeneous environment to detect a Sabreliner in the presence of urban, land, and sea clutter.
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Solution of time domain electric field Integral equation using the Laguerre polynomials

TL;DR: In this article, the authors proposed a numerical method to obtain a solution for the time domain electric field integral equation (TD-EFIE) for arbitrary shaped conducting structures, which does not utilize the customary marching-on-in-time (MOT) solution method often used to solve a hyperbolic partial differential equation.
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Adaptive processing using a single snapshot for a nonuniformly spaced array in the presence of mutual coupling and near-field scatterers

TL;DR: In this paper, an adaptive technique to extract the signal of interest (SOI) arriving from a known direction in the presence of strong interferers using a single snapshot of data is presented.
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Transient electromagnetic scattering from dielectric objects using the electric field Integral equation with Laguerre polynomials as temporal basis functions

TL;DR: In this paper, a time-domain electric field integral equation (TD-EFIE) formulation for analyzing the transient electromagnetic response from 3-dimensional (3-D) dielectric bodies was proposed.