Interference Cancellation and Link Quality Enhancement Design for Multiuser MIMO Systems with Full Duplex Relay
碩士 === 元智大學 === 通訊工程學系 === 104 === The thesis is dedicated to design the transceiver of multiuser MIMO communication systems with full duplex relay station. In multiuser MIMO with full duplex relay station system, it involves many interferences, e.q., multiuser, parallel streams, and relay’s self-i...
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ndltd-TW-104YZU056500382017-08-12T04:35:30Z http://ndltd.ncl.edu.tw/handle/81487531161999168415 Interference Cancellation and Link Quality Enhancement Design for Multiuser MIMO Systems with Full Duplex Relay 多用戶MIMO系統結合全雙工中繼站干擾消除與提升鏈結品質之設計 Cheng-Yi Chang 張成億 碩士 元智大學 通訊工程學系 104 The thesis is dedicated to design the transceiver of multiuser MIMO communication systems with full duplex relay station. In multiuser MIMO with full duplex relay station system, it involves many interferences, e.q., multiuser, parallel streams, and relay’s self-interferences. In order to cancel the several interferences and achieve the reliable multiuser communication, this thesis designs an equivalent full duplex relay station model, which the block diagonalization scheme can be used to derive the three precoders and post-processor filters, i.e., source, relay, destination filters, and to cancel all interferences. Besides, this thesis studies the link quality enhancement for full link system. The full link system includes the multiuser direct link and the relay link communications. The more interferences will exist in the full link system. In this study, we propose a novel separable precoder and post-processor algorithms to cancel all interferences. It can provide the full system with the reliable communication and acquirie the diversity gain to improve the full system link quality. Juinn-Horng Deng 鄧俊宏 2016 學位論文 ; thesis 42 zh-TW |
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碩士 === 元智大學 === 通訊工程學系 === 104 === The thesis is dedicated to design the transceiver of multiuser MIMO communication systems with full duplex relay station. In multiuser MIMO with full duplex relay station system, it involves many interferences, e.q., multiuser, parallel streams, and relay’s self-interferences. In order to cancel the several interferences and achieve the reliable multiuser communication, this thesis designs an equivalent full duplex relay station model, which the block diagonalization scheme can be used to derive the three precoders and post-processor filters, i.e., source, relay, destination filters, and to cancel all interferences.
Besides, this thesis studies the link quality enhancement for full link system. The full link system includes the multiuser direct link and the relay link communications. The more interferences will exist in the full link system. In this study, we propose a novel separable precoder and post-processor algorithms to cancel all interferences. It can provide the full system with the reliable communication and acquirie the diversity gain to improve the full system link quality.
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Juinn-Horng Deng |
author_facet |
Juinn-Horng Deng Cheng-Yi Chang 張成億 |
author |
Cheng-Yi Chang 張成億 |
spellingShingle |
Cheng-Yi Chang 張成億 Interference Cancellation and Link Quality Enhancement Design for Multiuser MIMO Systems with Full Duplex Relay |
author_sort |
Cheng-Yi Chang |
title |
Interference Cancellation and Link Quality Enhancement Design for Multiuser MIMO Systems with Full Duplex Relay |
title_short |
Interference Cancellation and Link Quality Enhancement Design for Multiuser MIMO Systems with Full Duplex Relay |
title_full |
Interference Cancellation and Link Quality Enhancement Design for Multiuser MIMO Systems with Full Duplex Relay |
title_fullStr |
Interference Cancellation and Link Quality Enhancement Design for Multiuser MIMO Systems with Full Duplex Relay |
title_full_unstemmed |
Interference Cancellation and Link Quality Enhancement Design for Multiuser MIMO Systems with Full Duplex Relay |
title_sort |
interference cancellation and link quality enhancement design for multiuser mimo systems with full duplex relay |
publishDate |
2016 |
url |
http://ndltd.ncl.edu.tw/handle/81487531161999168415 |
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