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    政大機構典藏 > 資訊學院 > 資訊科學系 > 學位論文 >  Item 140.119/57972
    Please use this identifier to cite or link to this item: https://nccur.lib.nccu.edu.tw/handle/140.119/57972


    Title: 應急蜂巢式行動通訊網路之群組通訊設計
    Agency Communication Design for Contingency Cellular Network
    Authors: 張惠晴
    Chang, Hui Ching
    Contributors: 連耀南
    Lien, Yao Nan
    張惠晴
    Chang, Hui Ching
    Keywords: 應急通訊
    應急蜂巢式行動通訊網路
    群組通訊
    Emergency Communication
    Contingency Cellular Network
    CCN
    Agency Communication
    Date: 2012
    Issue Date: 2013-05-01 11:51:35 (UTC+8)
    Abstract: 在大型天然災害發生之後的黃金救援時期,災民存活率和救災效益之提昇極度仰賴於一個順暢的通訊系統。由歷年來大型災變的經驗中我們可知,行動通訊系統其實是不可靠且極為脆弱的,基地台之電力供應中斷或連接後端固定網路線路(Backhaul)之損毀都將使得通訊系統癱瘓而影響救災工作效率。

    本研究提出一種新的應急通訊系統,利用原有行動通訊系統中未損毀但失去連網能力的基地台,藉由臨時供應的電力恢復其運轉,並以無線通訊設備與鄰近基地台互連建構一個臨時應急性的網路,稱為應急蜂巢式行動通訊網路(Contingency Cellular Network,CCN),供災區內手機用戶進行通訊。由於災區內部通訊的對象通常是一個特定的群組角色,而非一個特定人員,而災民與救災人員也不知彼此所在位置及聯絡的方式,因此無法以平常的撥號方式發起呼叫。本研究以CCN網路架構為基礎,設計並實作群組通訊模式,讓災區內人員以簡碼方式向任一群組發起呼叫並建立通話。

    為驗證CCN群組通訊設計之可行性及效能,我們以IEEE802.11 Wi-Fi無線網路環境建置模擬系統,並以Android平台手機搭配VoIP軟體模擬手機與系統連線以進行通話。最後設計了一連串的實驗評估本模擬系統之效能。從實驗結果可知,本系統可於短時間內即時回應使用者註冊需求及完成通話連線處理;當通話數在30通以下時,Mouth-to-Ear Delay (MED) 值可維持在400ms以下,語音品質控制在一般VoIP使用者可容許的範圍之內。本實驗可作為未來改進系統功能和建置架構之參考依據。
    When stricken by a catastrophic natural disaster, the efficiency of disaster response operation is very critical to life saving. The efficiency of disaster response operation is greatly depending on communication systems. However, they were usually not dependable, including cellular networks, and often crashed due to power outage and backhaul link breakage. The failure of communication systems caused a big coordination problem to many disaster response operations.

    This thesis proposes a Contingency Cellular Network (CCN) by connecting isolated base stations to survival base stations using long-range wireless links to restore part of cellular network functionality. People can use their own cell phones for emergency communication in the disaster areas. CCN will be able to support many disaster response workers in the early hours of catastrophic natural disasters, thus to save many lives.

    Since the receiver of a phone call in a disaster area is usually a resource (agent), not a particular person, we designed a special Agency communication mode for CCN allowing CCN users to initiate a phone call to a nearby resource by dialing a designated agency number, instead of a real phone number. To verify our design, we implemented an emulated CCN system using an IEEE 802.11 Wireless LAN to mimic the CCN network and Android small phones with VoIP software to mimic user terminals.

    Finally, we conducted a series of experiments to evaluate the performance of the emulated system. The experimental results show that the emulated system can respond promptly to the user registration and call set-up requests. Mouth-to-Ear Delay (MED) can be effectively controlled below 400 ms when there is no more than 30 calls originated. This system may be used as reference for the future development of contingency communication networks.
    Reference: [1] Alfayez Adel, Assiri Majid, Clerk Rutvij, and Alsaadan Usamah, "Evaluating the Viability of TETRA for US Public Safety Communication," University of Colorado at Boulder Interdisciplinary Telecommunications Program Capstone Project, Boulder, USA, Nov. 2009.
    [2] Association of Public-Safety Communications Officials International, Project 25, http://www.apcointl.org/frequency/project25.php, retrieved May. 2010.
    [3] Yong Bai, Wencai Du, Zhengxin Ma, Chong Shen, Youling Zhou and Baodan Chen, "Emergency communication system by heterogeneous wireless networking," 2011 International Conference on Wireless Communications, Networking and Mobile Computing (WiCOM) , June. 2010.
    [4] Melanie Basich, "Wireless When You Need It," http://www.policemag.com/ Channel/Technology/Articles/Print/Story/2009/01/Wireless-When-You-Need-It.aspx, retrieved Jan. 2009.
    [5] Carlo Bertolli, Daniele Tarchi, Romano Fantacci, Marco Vanneschi, and Andrea Tassi, "An Integrated Communication-Computing Solution in Emergency Management," ACM International Wireless Communications and Mobile Computing Conference 6th, Caen, France, June. 2010.
    [6] Raheleh Dilmaghani, and Ramesh Rao, "A Systematic Approach to Improve Communication for Emergency Response," Proc. of 42nd Hawaii Int`l Conference on System Sciences, Waikoloa, Big Island, Hawaii, Jan. 2009.
    [7] Weimin Dong, et al., Chi-Chi, "Taiwan Earthquake Event Report, Risk Management Solutions," Inc., https://www.rms.com/Publications/Taiwan_Event.pdf, retrieved Mar. 2010.
    [8] Arjan Durresi, Mimoza Durresi, Vamsi Paruchuri, and Leonard Barolli, "Ad Hoc Communications for Emergency Conditions," IEEE International Conference on Advanced Information Networking and Applications, Biopolis, Singapore, Mar. 2011.
    [9] Harri Holma and Antti Toskala, WCDMA for UMTS : radio access for third generation mobile communications, Third Edition. Chichester, England: Wiley, 2004.
    [10] Hong Kong Amateur Radio Transmitting Society, Proposal on Amateur Radio Emergency Service in Hong Kong-Mobilezing Radio Amateur’s community Resources for Disaster and Emergency Communications, Document No. 06/XIII/018, Aug. 2005.
    [11] Chih-Lin Hu, Chien-An Cho, Chang-Jung Lin, Chen-Wei Fan, “Design of Mobile Group Communication System in Ubiquitous Communication Network”, IEEE Transactions on Consumer Electronics, Vol. 56, No. 1, FEBRUARY 2010
    [12] Jyh-Shyan Huang, Yao-Nan Lien and Yu-Chieh Huang, "Network Topology Planning for Contingency Cellular Network," Proceedings of 17th Mobile Computong Workshop, Aug. 2012, Taoyuan, Taiwan, NSC 100-2221-E-008.
    [13] ITR-RESCUE, Robust Networking and Information Collection Project, http://www.itr-rescue.org/research/networking.php, retrieved Feb. 2010.
    [14] Hung-Chin Jang, Yao-Nan Lien and Tzu-Chieh Tsai, "Rescue Information System for Earthquake Disasters Based on MANET Emergency Communication Platform," Proc. of the ACM International Workshop on Advanced Topics in Mobile Computing for Emergency Management: Communication and Computing Platforms (MCEM 2009), June, 2009, Leipzig, Germany, pp. 623-627.
    [15] Richard E. Krock, "Lack of Emergency Recovery Palnning Is a Disaster Waiting to Happen," IEEE Communications Magazine, Jan. 2011.
    [16] Bih-Hwang Lee, Su-Shun Huang, Hsin-Pei Chen, Tai-Ghun Wu, Department of Electrical Engineering National Taiwan University of Science and Technology, "Study on Survivable Location Management Scheme in Wireless ATM Networks", Journal of Technology, Vol. 20, No. 2, pp. 133-142(2005)
    [17] Tae-Ho Lee and Taesang Choi, "Self powered wireless communication platform for disaster relief," 2011 Asia-Pacific Network Operations and Management Symposium (APNOMS), Sep. 2011.
    [18] Yao-Nan Lien, Li-Cheng Chi and Yuh-Sheng Shaw, "A Walkie-Talkie-Like Emergency Communication System for Catastrophic Natural Disasters," Proc. of ISPAN09, Kaohsiung, Taiwan, Dec. 2009.
    [19] Yao-Nan Lien, Hung-Chin Jang, and Tzu-Chieh Tsai, "A MANET Based Emergency Communication and Information System for Catastrophic Natural Disasters," IEEE Workshop on Specialized Ad Hoc Networks and Systems, Montreal, Canada, June. 2009.
    [20] Yao-Nan Lien, Li-Cheng Chi and Chih-Chieh Huang, "A Multi-hop Walkie-Talkie-Like Emergency Communication System for Catastrophic Natural Disasters," Proceedings of International Conference on Parallel Processing Workshop (on Applications of Wireless Ad Hoc and Sensor Networks), San Diego, CA.
    [21] Yao-Nan Lien, Hung-Chin Jang and Tzu-Chieh Tsai, "Design of P2Pnet: An Autonomous P2P Ad-Hoc Group Communication System," Proceedings of The First International Workshop on Mobile Peer-to-Peer Information Services (MP2PIS), May 18-21, 2009, Taipei, Taiwan,
    [22] Jaeaoo Lim, Rchard Klein, and Jason Thatcher, "Good Technology, Bad Management: A Case Study of the Satellite Phone Industry," Journal of Information Technology Management, vol. XVI, no.2, 2005, pp. 48-55.
    [23] Kelly T. Morrison, AT&T, "Rapidly Recovering from the Catastrophic Loss of a Major Telecommunications Office," IEEE Communications Magazine, vol.19, no.1, Jan. 2011. pp. 28-35.
    [24] E. Natalizio, "The practical experience of implementing a GSM BTS through open software hardware," 2010 International Symposium on Applied Sciences in Biomedical and Communication Technologies (ISABEL), Nov. 2010.
    [25] J. Chris Oberg, Andrew G. Whitt, Robert M. Mills, "Disasters Will Happen - Are You Ready?," IEEE Communications Magazine, vol.49, no.1, Jan. 2011. pp. 36-45.
    [26] Yang Ran, "Considerations and Suggestions on Improvement of Communication Network Disaster Countermeasures after the Wenchuan Earthquake," IEEE Communications Magazine, vol.49, no.1, Jan. 2011. pp. 44-47.
    [27] Cristina Ribeiro, and Alexander Ferworn, "Computational Public Safety in Emergency Management Communications," ACM International Wireless Communications and Mobile Computing Conference 6th, New York, USA, Oct. 2010.
    [28] Zhenhong Shao, Yongxiang Liu, Yi Wu and Lianfeng Shen, "A Rapid and Reliable Disaster Emergency Mobile Communication System via Aerial Ad Hoc BS networks," 2011 International Conference on Wireless Communications, Networking and Mobile Computing (WiCOM) , Sep. 2011 .
    [29] Yoshitaka Shibata, Yosuke Sato, Naoki Ogasawara, Go Chiba, "A Disaster Information System by Ballooned Wireless Adhoc Network," IEEE International Conference on Complex, Intelligent and Software Intensive Systems, Fukuoka, Japan Mar. 2009.
    [30] The Weather Channel, "Earthquake Deaths to Reach 3.5 Million by 2100," http://www.weather.com/news/science/earthquake-deaths-dramatic-rise-20130221, retrieved Feb. 2013.
    [31] Stelios Timotheou and Georgios Loukas, "Autonomous Networked Robots for the Establishment of Wireless Communication in Uncertain Emergency Response Scenarios," ACM symposium on Applied Computing, New York, USA, Mar. 2009.
    [32] Sarah Underwood, "Improving Disaster Management," Comm. of ACM, vol. 53, no. 2, Feb. 2010, pp. 18-20.
    [33] Misako Urakami, Yuya Okada, Yasuyuki Niwa, Hisaya Motogi, Hiroshi Matsuno, "Construction of Wireless Network for Information Communication for a Disaster-affected Island," IEEE International Conference on Advanced Information Networking and Applications Workshops, Perth, Australia Apr. 2010
    [34] Fan Wei, Md.Emadadul Haque, Yukihiro Fukunaga, Takehiro Gouda, Xiaodong Lu and Kinji Mori "Autonomous Community Construction Technology for Timely Transmitting Emergency Information," IEEE Symposia and Workshops on Ubiquitous, Autonomic and Trusted Computing, Shaanxi, China, Oct. 2010.
    [35] 3GPP, Specifications, http://www.3gpp.org/Specifications, retrieved Nov. 2011.
    [36] 3GPP, TS 23.401, “General Packet Radio Service (GPRS) enhancements for Evolved Universal Terrestrial Radio Access Network (E-UTRAN) access” version 11.0.0
    [37] 林進豐, 行動衛星通訊, 五南出版社, ISBN:9789571150062, Dec. 2007
    [38] 林志豪,災難最前線:緊急醫療系統的運作,貓頭鷹出版社:家庭傳媒城邦分公司發行,ISBN:978-986-262-037-3,2010.05
    [39] 施邦築,柯孝勳,許秋玲,莊明仁,張歆儀,八八水災災後防救災體系之省思,土木水利第三十七卷第一期救災篇,Vol. 37, No. 1 February 2010
    [40] 唐雲明,各國災害緊急通訊機制之探討,中華民國危機管理學刊,3,2010,vol.7,No.1
    [41] 孫玉, 應急通信技術總體框架討論, 人民郵電出版社, ISBN:7115208328, 2009
    [42] 連耀南, 黃智賢, 大型自然災害下大規模救災緊急通訊系統方案, Proc. of 2010 National Symposium On Telecommunications, TaoYuan, Taiwan, Dec.2010.
    [43] 張雪麗等, 應急通信新技術與系統應用, 機械工業出版社, ISBN:9787111292982, Jan. 2010
    [44] 楊永年 國立政治大學公共行政學系,八八水災救災體系之研究,公共行政學報第三十二期〈議題評論〉頁143-169,民98年9月
    [45] 熊光華,顏振嘉,國際搜救團隊救災機制之調查研究,內政部消防署,計劃編號:E9103-016
    [46] 中央災害應變中心作業要點,95年12月25日行政院院臺內字第0950053810號函核定
    [47] 國家通訊傳播委員會, 高雄縣莫拉克颱風災後通訊傳播設施改善實施計畫, Jun. 2010
    [48] 交通部電信總局, 九二一震災災後重建電信問答手冊, http://kbteq.ascc.net/archive/dgt/dgt01.html, retrieved Dec. 2011.
    [49] 高抗災通信平臺, http://88flood.www.gov.tw/committee_news_detail.php?cn_id=506, retrieved Dec. 2011.
    [50] 维基百科,921大地震、2011年日本東北地方太平洋近海地震、八八水災,http://zh.wikipedia.org/
    [51] [Android筆記]以UDP Socket來完成P2P資料傳遞範例(聲音通話) http://iainstnote.blogspot.tw/2012/08/androidudp-socketp2p.html#!/2012/08/androidudp-socketp2p_18.html
    Description: 碩士
    國立政治大學
    資訊科學學系
    99971009
    101
    Source URI: http://thesis.lib.nccu.edu.tw/record/#G0099971009
    Data Type: thesis
    Appears in Collections:[資訊科學系] 學位論文

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