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http://dx.doi.org/10.7840/kics.2015.40.11.2196

Efficient Computing Method for Location-Based Density of Mobile Node  

Kim, In-bum (Kimpo University School of Smart Information Technology)
Seo, Choon-weon (Kimpo University Department of Computer Networks)
Abstract
Location-based density information of mobile node could be used well in various, new and expanding areas such as location-based services, internet of things, smart grid technologies, and intelligent building. In general, receiving mobile nodes of a wireless mobile node depend on the maximum communication range of transmitting mobile node. In this paper, efficient computing method for mobile node using Delaunay triangulation is proposed, which is irrespective of mobile node's maximum communication range and reflect relative location in a given situation. Proposed method may be good used to find out the density of network constructed by various max communication range devices as Internet of Things. This method suggested in this paper could work well for location-based services, internet of things, smart grid technologies, and intelligent building.
Keywords
Location-Based Density; Mobile Node; Max Communication Range; Delaunay Triangulation;
Citations & Related Records
Times Cited By KSCI : 7  (Citation Analysis)
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1 Internet of Things, Retrieved Sept. 20, 2015, from https://en.wikipedia.org/wiki/Internet_of_Things
2 K. H. Park, N. J. Choi, W. S. Yang, H. Y. Lee, S. K. Lee, C. A. Choi, and J. D. Kim, "Present state and prospect of sensor technologies for smart building," ETRI, Electron. Telecommun. Trends (in Korean), vol. 24, no. 6, pp. 1-10, Dec. 2009.
3 D. H. Kim and H. K. Bahn, "Adaptive location detection scheme for energyefficiency of smartphones," J. IIBC, vol. 15, no. 3, pp. 119-124, Jun. 2015.
4 H. C. Cho, S. D Kim, C. Y. Kim, S. H. Kim, and C. J. Hwang, "Energy-efficient face routing protocol considering radio range in wireless sensor networks," J. KICS, vol. 40, no. 06, pp. 1058-1069, Jun. 2015.   DOI
5 S. J. Lee and Y. H. Yoo, "Probabilistic method to enhance ZigBee throughput in Wi-Fi interference environment," J. KICS, vol. 39B, no. 09, pp. 606-613, Sept. 2014.   DOI
6 J. Y. Park, S. M. Shin, and N, H. Kang, "Mutual authentication and key agreement scheme between lightweight devices in Internet of Thing," J. KICS, vol. 38B, no. 09, pp. 707-714, Sept. 2009.
7 J. H. Jang, D. B. Kim, B. J. Shin, and S. C. Yoon, "Development of the integrated fire suppression system in intelligent buildings," J. Korean Soc. Hazard Mitigation, vol. 15, no. 3, pp. 169-175, Jun. 2015.   DOI
8 K. H. Lee and H. W. Park, "Implementation of N-screen based solar power monitoring system," J. The Korea Soc. Computer and Inf., vol. 19, no. 10, pp. 151-158, Oct. 2014.   DOI
9 K. S. Park and Y. H. Lee, "Implement of watt-hour meter monitoring system by internet map based GUI using power line communication," The J. Korea Inst. Electron. Commun. Sci., vol. 8, no. 10, pp. 1435-1441, 2013.   DOI
10 J. H. Kim, Y, J. Lee, and H. W. Kim, "Development of the power consumption simulator and classification of the types of household by using data mining over smart grid," The J. Korea Inst. Electron. Commun. Sci., vol. 39C, no. 1, pp. 72-81, 2014.
11 Delaunay triangulation, Retrieved Sept. 20, 2015, from http://en.wikipedia.org/wiki/ Delaunay_triangulation, Sept. 20, 2015.