アドホック・セルラ方式における端末の地域的に偏った移動と分布を考慮した通信トラヒック特性の解析

  An ad-hoc cellular system, which is a combination of a cellular system and direct communication, has been proposed to utilize limited frequency resources. In this system, a mobile terminal is directly connected to another terminal if these terminals are close to each other. Otherwise, the terminal...

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Published inTransaction of the Japan Society for Simulation Technology Vol. 8; no. 3; pp. 109 - 118
Main Authors 樺澤, 辰也, 中野, 敬介
Format Journal Article
LanguageEnglish
Published 日本シミュレーション学会 2016
Japan Society for Simulation Technology
Subjects
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ISSN1883-5031
1883-5058
DOI10.11308/tjsst.8.109

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Abstract   An ad-hoc cellular system, which is a combination of a cellular system and direct communication, has been proposed to utilize limited frequency resources. In this system, a mobile terminal is directly connected to another terminal if these terminals are close to each other. Otherwise, the terminals communicate with each other via a base station of the cellular system. Performance analysis of the ad-hoc cellular system has been done in various situations. In this paper, we consider a mobility model where terminals go back and forth between a central point and their home points in the cell. This model assumes mobility of people between a shelter and their homes in a disaster situation. In this paper, we analyze teletraffic characteristics of an ad-hoc cellular system considering this mobility model. We analyze teletraffic characteristics of this system consisting of one cell assuming that terminals tend to gather a certain point with high probability by theoretical methods and computer simulation. Throughout analysis, we showed that direct communication works efficiently in this model, where terminals tend to gather a certain point. Furthermore, we showed how teletraffic characteristics are affected by the positon of the certain point and distribution of terminals.
AbstractList   An ad-hoc cellular system, which is a combination of a cellular system and direct communication, has been proposed to utilize limited frequency resources. In this system, a mobile terminal is directly connected to another terminal if these terminals are close to each other. Otherwise, the terminals communicate with each other via a base station of the cellular system. Performance analysis of the ad-hoc cellular system has been done in various situations. In this paper, we consider a mobility model where terminals go back and forth between a central point and their home points in the cell. This model assumes mobility of people between a shelter and their homes in a disaster situation. In this paper, we analyze teletraffic characteristics of an ad-hoc cellular system considering this mobility model. We analyze teletraffic characteristics of this system consisting of one cell assuming that terminals tend to gather a certain point with high probability by theoretical methods and computer simulation. Throughout analysis, we showed that direct communication works efficiently in this model, where terminals tend to gather a certain point. Furthermore, we showed how teletraffic characteristics are affected by the positon of the certain point and distribution of terminals.
Author 樺澤, 辰也
中野, 敬介
Author_FL Kabasawa Tatsuya
Nakano Keisuke
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  organization: 新潟大学大学院自然科学研究科
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References [5] J. Lehtomaki, I. Suliman, K. Umebayashi, and Y. Suzuki: Teletraffic Analysis of Direct Communication with Clustering, IEICE Trans. Fundamentals, VOL. E92-A, NO. 5, pp 1356-1362, MAY 2009.
[8] T. Kabasawa, K. Nakano: Teletraffic Analysis of Cellular Systems with Direct Communication Considering Mobility and Localized Distribution of Terminals in a Local Area, JSST2013, pp. 46-47, September 2013.
[2] T. Adachi and M. Nakagawa: A Handoff Examination of a Hybrid System Using Cellular and Ad-Hoc Modes, IEICE Trans. On Commun. vol. E83-B, no.11, pp. 2494-2500, Nov. 2000.
[6] T. Kabasawa, K. Nakano, M. Sengoku, and S. Shinoda: Teletraffic Analysis of Direct Communication Considering Effect of Mobility in a Two Dimensional Cell, JSST 2011, pp. 9-13, October 2011.
[11] H. Takagi: Elementary Models of Geometrical Probability, Lecture Notes at University of Tsukuba, 2000.
[7] T. Kabasawa, K. Nakano: Analysis of Direct Communication Considering Mobility and Localized Distribution of Terminals, JSST 2012, pp. 154-157, September 2012.
[1] T. Adachi and M. Nakagawa: A Study on Channel Using in a Channel Usage in a Cellular Ad-Hoc United Communication System for Operational Robots, IEICE Trans. On Commun., vol. E81-B, no.7, pp. 1500-1507, July 1998.
[12] H. Akimaru and K. Kawashima: Information and Communication Traffic, Ohmsha, 1990.
[10] T. Kabasawa, K. Nakano: Application of Cellular System with Direct Communication to a Disaster Situation, JSST2015, pp. 88-91, October 2015.
[9] T. Kabasawa, K. Nakano: Analysis of Communication Traffic in Cellular System with Ad-hoc Communication, JSST2014, pp. 46-47, October 2014.
[3] A. Tanaka, K. Nakano, M. Sengoku and S. Shinoda: Analysis of Communication Traffic Characteristic of a Two-hop Wireless Network, IEICE Trans. on Fundamentals, vol. E85-A, no.7, pp.1436-1444, July 2002.
[4] T. Kabasawa, K. Nakano, Y. Tanaka, I. Sato, M. Sengoku and S. Shinoda: Effects of localized distribution of terminals and mobility on performance improvement by direct communication, IEICE Trans. on Fundamentals, VOL. E89-A NO.7 pp. 1940-1949, July 2006.
References_xml – reference: [5] J. Lehtomaki, I. Suliman, K. Umebayashi, and Y. Suzuki: Teletraffic Analysis of Direct Communication with Clustering, IEICE Trans. Fundamentals, VOL. E92-A, NO. 5, pp 1356-1362, MAY 2009.
– reference: [4] T. Kabasawa, K. Nakano, Y. Tanaka, I. Sato, M. Sengoku and S. Shinoda: Effects of localized distribution of terminals and mobility on performance improvement by direct communication, IEICE Trans. on Fundamentals, VOL. E89-A NO.7 pp. 1940-1949, July 2006.
– reference: [6] T. Kabasawa, K. Nakano, M. Sengoku, and S. Shinoda: Teletraffic Analysis of Direct Communication Considering Effect of Mobility in a Two Dimensional Cell, JSST 2011, pp. 9-13, October 2011.
– reference: [7] T. Kabasawa, K. Nakano: Analysis of Direct Communication Considering Mobility and Localized Distribution of Terminals, JSST 2012, pp. 154-157, September 2012.
– reference: [3] A. Tanaka, K. Nakano, M. Sengoku and S. Shinoda: Analysis of Communication Traffic Characteristic of a Two-hop Wireless Network, IEICE Trans. on Fundamentals, vol. E85-A, no.7, pp.1436-1444, July 2002.
– reference: [2] T. Adachi and M. Nakagawa: A Handoff Examination of a Hybrid System Using Cellular and Ad-Hoc Modes, IEICE Trans. On Commun. vol. E83-B, no.11, pp. 2494-2500, Nov. 2000.
– reference: [10] T. Kabasawa, K. Nakano: Application of Cellular System with Direct Communication to a Disaster Situation, JSST2015, pp. 88-91, October 2015.
– reference: [11] H. Takagi: Elementary Models of Geometrical Probability, Lecture Notes at University of Tsukuba, 2000.
– reference: [8] T. Kabasawa, K. Nakano: Teletraffic Analysis of Cellular Systems with Direct Communication Considering Mobility and Localized Distribution of Terminals in a Local Area, JSST2013, pp. 46-47, September 2013.
– reference: [12] H. Akimaru and K. Kawashima: Information and Communication Traffic, Ohmsha, 1990.
– reference: [1] T. Adachi and M. Nakagawa: A Study on Channel Using in a Channel Usage in a Cellular Ad-Hoc United Communication System for Operational Robots, IEICE Trans. On Commun., vol. E81-B, no.7, pp. 1500-1507, July 1998.
– reference: [9] T. Kabasawa, K. Nakano: Analysis of Communication Traffic in Cellular System with Ad-hoc Communication, JSST2014, pp. 46-47, October 2014.
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Snippet   An ad-hoc cellular system, which is a combination of a cellular system and direct communication, has been proposed to utilize limited frequency resources. In...
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SubjectTerms Ad-Hoc Cellular System
Direct Communication
Distribution of Terminals
Mobility
Title アドホック・セルラ方式における端末の地域的に偏った移動と分布を考慮した通信トラヒック特性の解析
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