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  1. NTU Theses and Dissertations Repository
  2. 電機資訊學院
  3. 電信工程學研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/46632
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dc.contributor.advisor張進福
dc.contributor.authorChun-Chia Huangen
dc.contributor.author黃俊嘉zh_TW
dc.date.accessioned2021-06-15T05:19:55Z-
dc.date.available2015-07-23
dc.date.copyright2010-07-23
dc.date.issued2010
dc.date.submitted2010-07-20
dc.identifier.citation[1] IEEE Std. 802.11, Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications, 1999.
[2] J. Mo, H.W. So, and J. Walrand, “Comparison of Multichannel MAC Protocols,” Proc. Eighth ACM/IEEE Int’l Symp. Modeling,Analysis and Simulation of Wireless and Mobile Systems (MSWiM),2005.
[3] S.-L. Wu, Y. Lin, Y.-C. Tseng, and J.-P. Sheu, “A New Multi-Channel MAC Protocol with On-Demand Channel Assignment for Mobile Ad Hoc Networks,” Proc. Int’l Symp. Parallel Architectures, Algorithms and Networks (ISPAN ’00), p. 232, Dec. 2000.
[4] J. So and N. Vaidya, “Multi-Channel MAC for Ad Hoc Networks: Handling Multi-Channel Hidden Terminals Using a Single Transceiver,” Proc. ACM MobiHoc, May 2004
[5] A. Tzamaloukas and J.J. Garcia-Luna-Aceves, “Channel-Hopping Multiple Access,” Proc. IEEE Int’l Conf. Comm. (ICC ’00), June 2000.
[6] P. Bahl, R. Chandra, and J. Dunagan, SSCH: Slotted Seeded Channel Hopping for Capacity Improvement in IEEE 802.11 Ad Hoc Wireless Networks,” Proc. ACM MobiCom, Sept. 2004.
[7] L. Zheng and D. N. C. Tse, “Diversity and multiplexing: A fundamental tradeoff in multiple-antenna channels,” IEEE Trans. Inform. Theory, vol. 49, pp. 1073-1096, May 2003.
[8] H.W. So, J. Walrand, and J. Mo, “McMAC: A Multi-Channel MAC Proposal
for Ad Hoc Wireless Networks,” Proc. IEEE Wireless Comm. and Networking Conf. (WCNC ’07), Mar. 2007.
[9] Y. S. Han, J. Deng, and Z. J. Haas, “Analyzing multi-channel mediumaccess control schemes with ALOHA reservation,” IEEE Transaction on Wireless Communications, vol. 5, no. 8, pp. 2143–2152, August 2006
[10] Lo, SC, “Design of multichannel MAC protocols for wireless ad hoc networks” INTERNATIONAL JOURNAL OF NETWORK MANAGEMENT,vol 19 Issue: 5 pp. 399-413, 2009
[11] W.-C. Hung, K.L.E. Law, and A. Leon-Garcia, “A Dynamic Multi-Channel MAC for Ad Hoc LAN,” Proc. 21st Biennial Symp. Comm., pp. 31-35, June 2002
[12] Ravi Mahadevappa, “Receiver Sensitivity Table for MIMO-OFDM 802.11a”
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/46632-
dc.description.abstract許多文獻指出多頻道系統較單頻道系統能提昇系統整體吞吐量,並且考慮無線隨意網路不須基本建設等優點下提出一個結合多通道無線隨意網路之媒體存取協定。本研究主要討論在多頻道無線隨意網路的環境下使用一個控制頻道,數個資料頻道下,在每個節點都配有兩個動態介面下,動態的配置每個節點應該使用的頻道,在相同的傳輸功率下,因為此存取協定允許節點間交換在控制通道上所收到的訊息,使得某些時間內控制通道上的訊息由傳輸對中某一節點收取,再交換給另一節點,讓傳輸對可以在資料頻道上使用空間分集,對抗通道衰減所造成的訊號雜訊比下降,進而使用較好的調變技術增加整體的吞吐量,並且同時設法解決在配有兩個動態介面下多頻道多跳環境下存在的多頻道隱藏節點問題,多頻道聾節點問題與多發送節點競爭單一節點問題。zh_TW
dc.description.abstractThe previous researches indicated, in the ad hoc network, the capacity and throughput of multiple-channel are better than single channel. Several media access protocols were also proposed to improve the performance. In this study, under the multiple channel ad hoc network, the MIMO technology is deployed to dynamically switch among those channels, common signaling channel and data channels. Once when perform the simultaneously transmitting and receiving together with the capability of access any two channels, either the space diversity or multiple link can be adopted. The space diversity can increase the SNR so as to either decrease BER or increase the transmission speed by switching to high level modulation. In this thesis, the feasibility of combination of MIMO and piggy back scheme is studied to realize the better communication quality(low BER or high throughput). The media access protocol is proposed to avoid the phenomena of expose terminal and hidden terminal. The performance evaluation is also conducted in this study.en
dc.description.provenanceMade available in DSpace on 2021-06-15T05:19:55Z (GMT). No. of bitstreams: 1
ntu-99-R97942116-1.pdf: 1559922 bytes, checksum: 4920cf96fdc45854f2762766a791a34c (MD5)
Previous issue date: 2010
en
dc.description.tableofcontents誌謝 I
摘要 II
ABSTRACT III
第一章 1
緒論 1
1.1 前言 1
1.2無線隨意網路 2
1.3 IEEE 802.11媒體存取控制協定中DCF之運作模式 3
1.4 研究動機與目的 8
1.5 論文架構 10
第二章 11
在無線隨意式網路之多頻道存取控制協定下使用多重輸入與多重輸出技術之可行性 11
2.1 無線隨意式網路之多頻道存取控制協定相關研究 11
2.1.1 介面配置方法分類 11
2.1.2 靜態配置(Static Assignment) 12
2.1.3動態配置(Dynamic Assignment) 12
2.2 多輸入/多輸出天線系統 15
2.3 多頻道下需考慮的議題 21
2.3.1多頻道隱藏節點問題 21
2.3.2多頻道聾節點問題(Deafness problem) 23
2.4 提出之多頻道存取控制協定 23
2.4.1 單跳懷環境下協定介紹 23
2.4.2 控制通道擁塞議題 28
2.5 結果討論 32
第三章 37
在多跳環境下提出之多頻道存取控制協定 37
3.1多跳環境下多頻道存取控制協定介紹 37
3.2多頻道存取控制協定 38
3.2.1協定運作方式 38
3.2.2解決多頻道隱藏節點方法 46
3.3 結果討論 52
第四章 58
發送節點競爭同一節點問題 58
4.1 傳送端競爭問題 58
4.2 結果討論 66
第五章 67
結論 67
5.1 研究貢獻 67
5.2 未來研究方向 68
REFERENCE 69
dc.language.isozh-TW
dc.subject多頻道zh_TW
dc.subject無線隨意網路zh_TW
dc.subject多媒體存取協定zh_TW
dc.subjectMACen
dc.subjectmultichannelen
dc.subjectad hoc networksen
dc.title使用空間分集技術之無線隨意網路多頻道存取協定之研究zh_TW
dc.titleThe Study of Multi-channel Media Access Protocol Using MIMO Technology in Ad hoc Networken
dc.typeThesis
dc.date.schoolyear98-2
dc.description.degree碩士
dc.contributor.oralexamcommittee金力鵬,黃政吉,魏學文
dc.subject.keyword多頻道,無線隨意網路,多媒體存取協定,zh_TW
dc.subject.keywordmultichannel,ad hoc networks,MAC,en
dc.relation.page70
dc.rights.note有償授權
dc.date.accepted2010-07-20
dc.contributor.author-college電機資訊學院zh_TW
dc.contributor.author-dept電信工程學研究所zh_TW
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