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完整後設資料紀錄
DC 欄位 | 值 | 語言 |
---|---|---|
dc.contributor.advisor | 張時中(Shi-Chung Chang) | |
dc.contributor.author | Wun-Yan Lyu | en |
dc.contributor.author | 呂文彥 | zh_TW |
dc.date.accessioned | 2021-06-14T16:41:48Z | - |
dc.date.available | 2008-08-04 | |
dc.date.copyright | 2008-08-04 | |
dc.date.issued | 2008 | |
dc.date.submitted | 2008-07-31 | |
dc.identifier.citation | [APP07] http://app.digitimes.com.tw/ShowNews.aspx?zCatId=134&zNotesDocId=0000082281_B9R1YX35Y97KMMC2FZT0S
[CCL03] I. Chlamtac, M. Conti and Jennifer J.-N. Liu, “Mobile Ad Hoc Networking: Imperatives and Challenges,” Ad Hoc Networks, Vol. 1, No. 1, pp. 13-64, July 2003. [Cha07] Chia-Wei Chang, “Design and Implementation of Neighbor Information-based Mobile Video Surveillance Routing over Ad Hoc Networks”, Master Thesis, NTU EE, July 2007. [IEE99] IEEE Std. 802.11-1999, Parr 11: Wire/-s U N Medium Access Control (MAC) and Physical Layer (PHY) specifications, Reference number ISO/IEC 8802-11:1999(E), IEEE Std 802.11, 1999. [JoM96] D.B. Johnson and D.A. Maltz, “Dynamic Source Routing in Ad Hoc Wireless Networks,” Mobile Computing, Vol. 353, pp. 153-181, 1996. [Lia06] Yu-Kai Liao, “Architecture Design of a Peer-to-Peer Mobile Video Surveillance Service on Wireless Network,” Master thesis, NTU EE, July 2006. [Lin08] Jer-Wei Lin, “Design and Implementation of Energy Balance Routing for Mobile Video Surveillance over Ad Hoc Networks,” Master thesis, NTU EE, July 2008. [PEO00] 人民網, “美國M1系列主戰坦克簡介,” 網址: (http://www.people.com.cn/BIG5/junshi/192/3500/20001228/364640.htmlhttp://past_journal.mnd.gov.tw/) [RFC1189] U. Warrier and L. Besaw, “RTP: A Transport Protocol for Real-Time Applications,” IETF RFC 1889, October 1990. [RFC1190] CIP Working Group, “RTP Profile for Audio and Video Conferences with Minimal Control,” IETF RFC 1890, October 1990. [RFC2501] S. Corson and J. Macker, “Mobile Ad Hoc Networking (MANET): Routing Protocol Performance Issues and Evaluation Considerations,” IETF RFC 2501, January 1999. [RFC3561] C. Perkins and E. Belding-Royer, “Ad hoc On-Demand Distance Vector (AODV) Routing,” IETF RFC 3561, July 2003. [WAF06] Weitzenfeld, Alfredo Martinez-Gomez, Luis Francois, Juan Pablo Levin-Pick, Alejandro Obraczka, Katia Boice, Jay, ” Multi-Robot Systems: Extending RoboCup Small-Size Architecture with Local Vision and Ad-Hoc Networking,” Robotics Symposium, 2006. LARS '06. IEEE 3rd Latin American, 2006. [WCP04] Guiling Wang, Guohong Cao, Tom La Porta, and Wensheng Zhang, “Sensor Relocation in Mobile Sensor Networks”, 2004 [YaS03] H Yang, B Sikda, “A Protocol for Tracking Mobile Targets using Sensor Networks,” Sensor Network Protocols and Applications, 2003. Proceedings of the First IEEE. 2003 IEEE International Workshop on, 2003. [ZhC04] Wensheng Zhang, Student Member, IEEE and Guohong Cao, Associate Member, IEEE, “DCTC:Dynamic Convoy Tree-Based Collaboration for Target Tracking in Sensor Networks”, IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, VOL. 3, NO. 5, SEPTEMBER 2004 | |
dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/40147 | - |
dc.description.abstract | 自從美國紐約911事件後,個人與公眾安全的重要性備受矚目,視訊偵搜系統已廣泛使用於保護人身與公共安全的應用上。隨著以IP為基礎的偵搜網路興起,視訊影像資料可以透過無線網路傳輸,因此激發了更多新型態的行動式視訊偵搜服務。例如將數位相機裝置在行動設備上(例如筆記型電腦,PDA,3G行動電話等)所構成的監視系統,這使得偵搜服務有更大的機動性。
本論文的主要研究目的是當偵搜取像目標不在網路涵蓋範圍內時,指揮移動節點,以花費最少的移動能量來建立視訊連結涵蓋偵搜取像目標,提供目標視訊給取像需求端,並在當偵搜取像目標移動造成原來視訊連結中斷時,保持偵搜取像與取像需求端之間的視訊連結。 為了能夠指揮移動節點與感測目標移動,本論文參考廖佑楷與張家瑋等的網路功能堆疊(function stack)架構,在應用層新增兩個指令功能方塊設計:指揮命令功能方塊、感測移動功能方塊,來規畫移動路徑以涵蓋偵搜取像目標,並依據目標移動資訊下達任務指令,以指揮各節點移動或進行任務換手來保持視訊連結的完整。 對規畫移動路徑以建立涵蓋偵搜取像目標的視訊連結問題,本論文首先建立初始涵蓋視訊連結問題(Initial Coverage and Connection Problem, ICCP)數學模型以減少移動能量消耗為目的,考量通訊範圍與移動路徑的限制(避開障礙物),來決定配置節點的個數、位置與配對關係變數。我們設計了列舉配置節點法與配對演算法的二階段求解演算法(Two-Stage Solution Algorithm, TSSA),來規畫移動路徑以建立涵蓋偵搜取像與取像需求端之間的視訊連結。 針對當目標移動時保持視訊連結不中斷的問題,考慮前瞻一段時間T並預測T時間後目標的位置,規畫節點如何從現有位置移動來對T時間後的目標保持涵蓋並連結,可將此問題視為ICCP問題的延伸。並提出動態調整節點位置的機制,其中包括預測目標移動位置、更新鄰居資訊以進行任務換手、與結合TSSA求解ICCP問題的動態調整節點位置演算法(Dynamic Adjustment Peers Location Algorithm, DAPLA),以減少移動能量消耗並動態調整節點位置或交接任務來保持視訊連結。 在實作方面,本論文在應用層利用了VB.NET 2003TM和SQL 2000TM簡易的實做移動規畫與指揮機制,其運作流程如下 :(1)設計自身廣播(Broadcast)程式以建立整個網路節點的資訊列表(PIL),(2)透過LINGO 9.0規畫節點移動位置,並設計指揮命令功能方塊,將位置資訊以單點傳送(unit-cast)的方式傳送給指定的節點,(3)節點收到該封包後,會依照封包內的資訊移動到指定的位置,以協助涵蓋並建立偵搜取像目標與與取像需求端之間的視訊連結。 | zh_TW |
dc.description.abstract | Since the event of 911 in New York, the importance of individual and public safety has been raised. Video surveillance system has been broadly used in the applications of human and public protection. By the development of IP-based video surveillance network, the transmission of video streaming can be though wireless network, and solicits more new types of mobile video surveillance services. For example, the monitoring system which consists of digital cameras setting on mobile equipments like laptop, PDA, 3G and cellular phone, etc, provides much more mobility of video surveillance service.
The goal of this thesis aims at designing the methodology and associated system to command the peers of a mobile video surveillance network to establish a connection covering the target, static or moving, with minimum moving energy consumption and to provide and maintain target’s streaming video to requesting peer. To command peers moving and sense the target moving, we exploit the mobile video surveillance architecture proposed by Liao, 2006, and Chang, 2007, and add two new function blocks to the application layer: command block and surveillance block, We use these two blocks to plan a path to cover the target and to assign the coverage and relay mission to proper peers by moving or handoff based on the movement information of target. To model the problem of path planning for establishing video surveillance coverage and connection, we first formulate a mathematical model of Initial Coverage and Connection Problem (ICCP). The model takes communication coverage and the constraints of moving path into consideration to minimize moving energy consumption. There are three decision variables: (1) numbers of active peers, (2) desired locations of peers and (3) pair variables. We propose a two-stage solution algorithm (TSSA) to solve ICCP. Stage 1 decides numbers of active peers and stage 2 determines the desired locations of the active peers and peer-location assignment. To address the problem about how to maintain a video connection as the target moves, we look ahead T time units and predict target’s next location after T. Then we plan how the peers move to maintain video surveillance coverage and connection when the target is at the predicted location. This problem can be viewed as an extension of ICCP. We propose a mechanism which includes information exchange, mission handoff and Dynamic Adjustment Peers Location Algorithm (DAPLA). The main concepts of the algorithm are repetitively predicting target’s next location, refreshing neighborhood information to do the mission handoff and solving ICCP by TSSA. We implement the mechanism for moving planning and command by VB.NET 2003TM and SQL 2000TM in the application layer in three parts: I. a self-broadcast program to construct the Peers Information list (PIL), II. the TSSA in Lingo 9.0 to solve ICCP for a path plan of peer movements, and III. a surveillance block to sense and predict target location and a command function block to transmit location information to active peers with unit-cast. | en |
dc.description.provenance | Made available in DSpace on 2021-06-14T16:41:48Z (GMT). No. of bitstreams: 1 ntu-97-R95921062-1.pdf: 2130961 bytes, checksum: 7a51dcfa45472808f24c31eb3cbb2757 (MD5) Previous issue date: 2008 | en |
dc.description.tableofcontents | 口試委員會審定書
誌謝 中文摘要..................................................i 英文摘要................................................iii 第一章 行動視訊偵搜隨意網路的簡介.........................1 1.1 行動視訊偵搜隨意網路中視訊連結建立與保持的研究動機...1 1.2 文獻摘要.............................................2 1.3 研究範疇.............................................4 1.4 論文組織架構.........................................7 第二章 行動視訊偵搜隨意網路中視訊連結的問題與技術.........8 2.1 行動視訊偵搜服務....................................10 2.1.1 行動視訊偵搜服務案例.............................10 2.1.2 災難的緊急救援...................................12 2.2 使用無線隨意網路實現行動視訊偵搜服務系統............14 2.2.1 IEEE 802.11b/g WLAN協定..........................14 2.2.2 行動無線隨意網路簡介.............................17 2.3 行動視訊偵搜的服務需求..............................20 2.3.1 定位與鄰居資訊...................................21 2.3.2 任務的協調規畫...................................22 - 分派任務與建立視訊連結 2.3.3 動態狀況的因應...................................23 - 追蹤移動目標與保持視訊連結 2.4 視訊偵搜涵蓋建立與連結保持的問題與挑戰..............25 2.4.1 過去建立網路通訊連結的研究.......................25 2.4.2 設計視訊偵搜涵蓋建立與連結保持之問題.............26 - 如何指揮節點移動以涵蓋並建立偵搜取像目標與取像需求 端之間的視訊連結 - 如何因應移動目標協調網路節點移動位置或交接任務來保 持視訊連結的完整 2.4.3 設計視訊偵搜涵蓋建立與連結保持之挑戰.............27 - 建構減少移動能量花費以涵蓋並建立偵搜取像目標與取像 需求端之間視訊連結的問題模型並提出有效的解法 - 提出動態調整節點位置的機制以因應移動目標來保持視訊 連結的完整 第三章 涵蓋並建立視訊連結的問題建模與求解................29 3.1 行動視訊偵搜網路整體架構............................30 3.2 指揮命令與感測移動功能方塊之設計....................32 3.3 指揮移動以涵蓋並建立視訊連結的問題模型..............35 3.4 ICCP問題的簡化......................................42 3.5 二階段求解演算法之設計..............................44 3.6 ICCP的例子測試......................................46 第四章 涵蓋並建立行動視訊連結的簡易系統實做..............53 4.1 行動視訊偵搜系統之實作架設..........................54 4.2 移動規畫與指揮機制的實做展示........................56 第五章 動態調整節點位置以保持視訊連結的機制設計..........61 5.1 動態調整節點位置以保持視訊連結的問題描述............62 5.2 動態調整節點位置機制之設計..........................64 5.2.1 預測偵搜目標的移動位置...........................64 5.2.2 NIL與任務換手....................................65 5.2.3動態調整節點位置演算法之設計......................67 第六章 結論與未來研究方向................................70 6.1 結論................................................70 6.2 未來研究方向........................................73 參考文獻.................................................75 | |
dc.language.iso | zh-TW | |
dc.title | 行動視訊偵搜隨意網路中涵蓋視訊連結建立與保持之研究 | zh_TW |
dc.title | Research on Coverage Connection Establishment and Maintenance for Mobile Video Surveillance over Ad Hoc Networks | en |
dc.type | Thesis | |
dc.date.schoolyear | 96-2 | |
dc.description.degree | 碩士 | |
dc.contributor.oralexamcommittee | 蔡志宏(Zse-hong Tsai),林宗男(Tsun-gnan Lin),葉丙成(Ping-Cheng Yeh),魏宏宇(Hung-Yu Wei) | |
dc.subject.keyword | 行動視訊偵搜,涵蓋範圍,指揮移動,視訊連結,建立,保持, | zh_TW |
dc.subject.keyword | mobile video surveillance,coverage,command to move,connection,establishment,maintenance, | en |
dc.relation.page | 76 | |
dc.rights.note | 有償授權 | |
dc.date.accepted | 2008-08-01 | |
dc.contributor.author-college | 電機資訊學院 | zh_TW |
dc.contributor.author-dept | 電機工程學研究所 | zh_TW |
顯示於系所單位: | 電機工程學系 |
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