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Choong Seon Hong

Researcher at Kyung Hee University

Publications -  1088
Citations -  18047

Choong Seon Hong is an academic researcher from Kyung Hee University. The author has contributed to research in topics: Wireless sensor network & Wireless network. The author has an hindex of 47, co-authored 1015 publications receiving 12065 citations. Previous affiliations of Choong Seon Hong include University of Maryland University College & National Computerization Agency.

Papers
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Book ChapterDOI

An efficient ID-Based bilinear key predistribution scheme for distributed sensor networks

TL;DR: In this paper, a key predistribution scheme relying on sensor nodes' unique identifiers is proposed, which exhibits several noteworthy properties: direct pairwise key establishment permission with explicit key authentication, high resiliency against information-theoretic security attack (node capture attack), and detailed security and performance analysis of the scheme in terms of node capture attack, memory usage, communication overhead, and computational overhead.

Cluster Based Object Detection in Wireless Sensor Network

TL;DR: This paper has proposed a clustering algorithm for the deployment of sensors and thus calculated the object detection probability and can easily identify the present network coverage status and accordingly can take action for its improvement.
Proceedings ArticleDOI

Sharing Incentive Mechanism, Task Assignment and Resource Allocation for Task Offloading in Vehicular Mobile Edge Computing

TL;DR: A two-stage incentive mechanism and task assignment and resource allocation scheme is developed by combining auction game, matching theory, and convex optimization method for solving the network delay minimization problem.

Music Mood Classification using Reduced Audio Features

TL;DR: Diverse audio features to precisely characterize the music content are proposed and Support Vector Machine (SVM) is used as a classifier to classify the music mood.
Journal ArticleDOI

A comparison of interval division methods in adaptive IEEE 802.11p–based multi-channel medium access control protocols for vehicular ad hoc networks:

TL;DR: From the simulation results, it is evident that the design of a new multi-channel medium access control protocol based on IEEE 802.11p needs to balance the trade-off between transmission delay and packet delivery ratio to be efficient, reliable and adaptive.