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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/123456789/61892
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dc.contributor.advisor李學智
dc.contributor.authorTai-Yu Liuen
dc.contributor.author劉泰佑zh_TW
dc.date.accessioned2021-06-16T13:17:31Z-
dc.date.available2015-08-14
dc.date.copyright2013-08-14
dc.date.issued2013
dc.date.submitted2013-07-28
dc.identifier.citation[1] Ravanshid, A.; Lampe, L.; Huber, J., 'Signal combining for relay transmission with rateless codes,' Information Theory, 2009. ISIT 2009. IEEE International Symposium on , pp.508,512, June 28 2009-July 3 2009
[2] Mohajer, S.; Diggavi, S.N.; Fragouli, C.; Tse, D., 'Transmission techniques for relay-interference networks,' Communication, Control, and Computing, 2008 46th Annual Allerton Conference on , pp.467,474, 23-26 Sept. 2008
[3] Al-Shatri, H.; Ganesan, R.S.; Klein, A.; Weber, T., 'Interference alignment using a MIMO relay and partially-adapted transmit/receive filters,' Wireless Communications and Networking Conference (WCNC), 2012 IEEE , pp.459,464, 1-4 April 2012
[4] V. Cadambe and S. Jafar, “Interference alignment and degrees of freedom of the K-user interference channel,” in IEEE Transactions on Information Theory, vol. 54, no. 8, August 2008, pp. 3425–3441.
[5] Zhang, Z.; Lok, T.M., 'Performance Analysis of Multiple-Relay Decode-and-Forward Cooperation System,' TENCON 2005 2005 IEEE Region 10 , pp.1,6, 21-24 Nov. 2005
[6] Zhengfeng Xu; Pingyi Fan; Hong-Chuan Yang; Ke Xiong; Ming Lei; Su Yi, 'Optimal beamforming for MIMO decode-and-forward relay channels,' Global Communications Conference (GLOBECOM), 2012 IEEE , pp.4548,4553, 3-7 Dec. 2012
[7] Rodriguez, L.J.; Tran, N.H.; Tho Le-Ngoc, 'Capacity limit of static single-relay amplify-and-forward channels,' Communications (ICC), 2012 IEEE International Conference on , pp.2187,2191, 10-15 June 2012
[8] Firag, A.; Smith, P.J., 'Capacity analysis for MIMO two-hop two-relay amplify-and-forward relaying systems,' Information Theory and Its Applications, 2008. ISITA 2008. International Symposium on , pp.1,6, 7-10 Dec. 2008
[9] Jun Zhang; Letaief, K.B., 'Interference Management with Relay Cooperation in Two-Hop Interference Channels,' Wireless Communications Letters, IEEE , vol.1, no.3, pp.165,168, June 2012
[10] J. G. Proakis, Digital Communications. Boston: McGraw Hill, 2001.
[11] T. S. Rappaport, Wireless Communications-Principles and Practice, 2nd. Prentice Hall PTR, 2002.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/61892-
dc.description.abstract無線通訊已成為現今社會通信的潮流,在下行通訊時,基地台會傳送不同的信號給不同的用戶,同樣地,在上行通訊時,各個用戶會傳送不同的信號給基地台。故不同用戶間,信號彼此會互相干擾,而為了克服干擾問題,分時、分頻的方式雖然是個辦法;然而當用戶愈來愈多時,這些資源將不夠使用,有鑑於此,利用中繼站(relay)來幫忙傳輸是較新型的辦法,它可以提供空間作為資源。
中繼站的功能主要有兩種,第一,它提供了新的路徑,使目的端(destination)能多接收到此新路徑的信號,以做信號整合(signal combining),第二,我們可以藉由設計中繼站,來幫助目的端做干擾管理(interference management)。
在本篇論文裡,我們會同時設計中繼站和目的端,做信號整合和干擾管理,並以較為完整且實際的假設做為考量,我們也會使用蒙地卡羅法模擬出傳輸效能,以利不同方法的比較。
zh_TW
dc.description.abstractWireless communication has become the trend of modern communications. In the downlink, the base station sends different signals to different users, and in the uplink, each user sends different signals to the base station. So the signals will interfere with each other. In order to solve the interference problem, one can use time-division multiplexing or frequency-division multiplexing. However, when the number of users become larger and larger, these resources may not be enough to allocate for all users. Therefore, spatial resource is considered here and relaying can provide this kind of resource.
There are two advantages for relay transmissions. First, relay provides a new path, so destination can receive repeated signal to do signal combining. Second, relay can help destination to do interference management.
In this thesis, we jointly design relay and destination to do signal combining and interference management. Our goals and considerations are mainly focused on more realistic scenarios and more efficient utilization of spectrum. In order to compare with other methods, we demonstrate the transmission performance by Monte Carlo simulations.
en
dc.description.provenanceMade available in DSpace on 2021-06-16T13:17:31Z (GMT). No. of bitstreams: 1
ntu-102-R00942016-1.pdf: 1113002 bytes, checksum: 0a3f3a19f2c234434a2cd8831ec73739 (MD5)
Previous issue date: 2013
en
dc.description.tableofcontents口試委員會審定書 #
誌謝 i
中文摘要 ii
ABSTRACT iii
CONTENTS iv
LIST OF FIGURES vii
LIST OF TABLES ix
Chapter 1 緒論 1
1.1 研究動機 1
1.2 通信系統環境介紹 3
1.2.1 資料傳輸機制 3
1.2.2 調變 3
1.2.3 通道 4
1.2.4 雜訊 5
1.2.5 編碼與解碼 5
1.2.6 Relay系統傳輸模式 5
1.3 文獻探討 6
1.4 論文架構 6
Chapter 2 採用decode and forward的設計方式 8
2.1 系統模型 8
2.2 Decode and forward之數學模型 12
2.3 干擾為零代入法 13
2.4 干擾為零代入法模擬結果 15
2.5 最大化SINR搜尋法 17
2.5.1 疊代法 18
2.5.2 二元搜尋法 19
2.5.3 模擬結果 22
Chapter 3 採用amplify and forward的設計方式 25
3.1 Amplify and forward之數學模型 25
3.2 干擾為零代入法 26
3.3 干擾為零代入法模擬結果與比較 28
3.4 最大化SINR搜尋法 31
3.5 最大化SINR搜尋法模擬結果 36
Chapter 4 考慮多個relay系統的設計 39
4.1 系統模型 39
4.2 二個relay的設計 41
4.2.1 採用decode and forward 41
4.2.2 採用amplify and forward 43
4.3 三個relay的設計 45
4.3.1 採用decode and forward 45
4.3.2 採用amplify and forward 47
4.4 模擬結果 50
Chapter 5 結論與展望 52
REFERENCES 53
dc.language.isozh-TW
dc.subject中繼站zh_TW
dc.subject干擾管理zh_TW
dc.subject信號整合zh_TW
dc.subject目的端zh_TW
dc.subjectrelayen
dc.subjectdestinationen
dc.subjectsignal combiningen
dc.subjectinterference managementen
dc.title中繼傳輸系統的信號整合與干擾管理機制zh_TW
dc.titleSignal Combining with Interference Management for Relay Transmissionsen
dc.typeThesis
dc.date.schoolyear101-2
dc.description.degree碩士
dc.contributor.coadvisor張進福
dc.contributor.oralexamcommittee魏學文,梁耀仁
dc.subject.keyword中繼站,目的端,信號整合,干擾管理,zh_TW
dc.subject.keywordrelay,destination,signal combining,interference management,en
dc.relation.page54
dc.rights.note有償授權
dc.date.accepted2013-07-29
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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