Quasi-orthogonal space-time block code /:
"Quasi-Orthogonal Space-Time Block Code" presents an up-to-date, comprehensive and in-depth discussion of an important emerging class of space-time codes, called the Quasi-Orthogonal STBC (QO-STBC). Used in Multiple-Input Multiple-Output (MIMO) communication systems, they provide transmit...
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
London ; Imperial College Press ; Hackensack, NJ :
Distributed by World Scientific,
©2007.
|
Schriftenreihe: | Communications and signal processing (London, England) ;
v. 2. |
Schlagworte: | |
Online-Zugang: | Volltext |
Zusammenfassung: | "Quasi-Orthogonal Space-Time Block Code" presents an up-to-date, comprehensive and in-depth discussion of an important emerging class of space-time codes, called the Quasi-Orthogonal STBC (QO-STBC). Used in Multiple-Input Multiple-Output (MIMO) communication systems, they provide transmit diversity with higher code rates than the well-known orthogonal STBC (O-STBC), yet at lower decoding complexity than non-orthogonal STBC. This book will help readers gain a broad understanding of the fundamental principles as well as the state-of-the-art work in QO-STBC, thus enabling them to appreciate the roles of QO-STBC in future broadband wireless systems and to inspire further research. |
Beschreibung: | 1 online resource (xi, 194 pages) : illustrations (some color) |
Bibliographie: | Includes bibliographical references (pages 184-190) and index. |
ISBN: | 9781860948695 1860948693 1281867640 9781281867643 |
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100 | 1 | |a Yuen, Chau. | |
245 | 1 | 0 | |a Quasi-orthogonal space-time block code / |c Chau Yuen, Yong Liang Guan, Tjeng Thiang Tjhung. |
260 | |a London ; |a Imperial College Press ; |a Hackensack, NJ : |b Distributed by World Scientific, |c ©2007. | ||
300 | |a 1 online resource (xi, 194 pages) : |b illustrations (some color) | ||
336 | |a text |b txt |2 rdacontent | ||
337 | |a computer |b c |2 rdamedia | ||
338 | |a online resource |b cr |2 rdacarrier | ||
490 | 1 | |a Communications and signal processing ; |v v. 2 | |
504 | |a Includes bibliographical references (pages 184-190) and index. | ||
505 | 0 | |a Cover -- Contents -- Foreword -- 1 . Introduction of MIMO Channel and Space-Time Block Code -- 1.1 MIMO Channel for Wireless Communications -- 1.2 Transmit Diversity with Space-Time Block Code -- 1.3 Notations and Abbreviations -- 1.4 Signal Model of MIMO Channel and STBC -- 1.4.1 Signal model of MIMO channel -- 1.4.2 Signal model of STBC -- 1.5 Design Criteria and Performance Measure of STBC -- 2 . Orthogonal and Quasi-Orthogonal Space-Time Block Code -- 2.1 Orthogonal Space-Time Block Code -- 2.1.1 Benefits of 0-STBC -- 2.1.2 Background of amicable orthogonal design -- 2.1.3 Construction of 0-STBC and its rate limitation -- 2.2 Quasi-Orthogonal Space-Time Block Code -- 2.2.1 Approaching capacity with low decoding complexity -- 2.2.2 Performance optimization of QO-STBC -- 2.2.3 Remark -- 3 . Insights of QO-STBC -- 3.1 Algebraic Structure of QO-STBC -- 3.1.1 Decoding complexity of a QO-STBC -- 3.1.2 Maximal symbol-wise diversity of a QO-STBC -- 3.2 Generalized Decoding Framework of QO-STBC -- 3.3 Impact of Constellation Rotation on the Decoding Complexity of QO-STBC -- 3.3.1 Simplified QO-STBC model with real symbols only -- 3.3.2 Decoding complexity of QO-STBC with CR -- 3.4 Group-Constrained Linear Transformation -- 3.4.1 Definition of GCLT -- 3.4.2 Optimization of GCLT parameters -- 3.4.3 Performance comparison -- 3.5 Chapter Summary -- 4 . Quasi-Orthogonal Space-Time Block Code with Minimum Decoding Complexity -- 4.1 Algebraic Structure of MDC-QOSTBC -- 4.2 Square MDC-QOSTBC Design -- 4.2.1 Definition of preferred AOD pair -- 4.2.2 Relationship between MDC-QOSTBC and AOD through preferred AOD pair -- 4.2.3 Lower bound on the code rate for square design -- 4.2.4 Construction of preferred AOD pair -- 4.3 Construction of MDC-QOSTBC from 0-STBC -- 4.3.1 Construction method -- 4.3.2 Performance optimization -- 4.3.3 Non-square MDC-QOSTBC design -- 4.4 Performance Results -- 4.5 Chapter Summary -- 5 . Differential QO-STBC -- 5.1 DSTM Codeword Model and Design Criteria -- 5.2 Unitary DSTM Based on QO-STBC -- 5.2.1 Literature review -- 5.2.2 Signal model of unitary DSTM scheme -- 5.2.3 Double-symbol-decodable unitary DSTM -- 5.2.4 Performance comparison -- 5.2.5 Section summary -- 5.3 Quasi-Unitary DSTM Based on MDC-QOSTBC -- 5.3.1 Literature review -- 5.3.2 Signal model of quasi-unitary DSTM scheme -- 5.3.3 Single-symbol-decodable quasi-unitary DSTM -- 5.4 Chapter Summary -- 6 . Rate. Complexity and Diversity Trade-off in QO-STBC -- 6.1 QO-STBC with Rate 5 1 -- 6.1.1 Introduction -- 6.1.2 Full-rate 4Gp-QOSTBC -- 6.1.3 Rate-complexity-diversity tradeoff -- 6.1.4 Section summary -- 6.2 QO-STBC with Rate> 1 -- 6.2.1 Introduction -- 6.2.2 Code search methodology -- 6.2.3 Graph modelling and modified depth first search for implementing step (b) -- 6.2.4 Code search results -- 6.2.5 Section summary -- 6.3 Chapter Summary -- 7 . Other Developments and Applications of QO-STBC -- 7.1 Other Developments of QO-STBC -- 7.1.1 Closed-loop QO-STBC -- 7.1.2 Concatenation of QO-STBC with error correction code -- 7.1.3 Super space-time trellis code based on QO-STBC -- 7.1.4 QO-STBC in frequency selective fading channel -- 7.2 QO-STBC in Communication Standards -- 8 . Conclusions -- APPENDIX A -- APPENDIX B -- BIBLIOGRAPHY -- INDEX. | |
520 | |a "Quasi-Orthogonal Space-Time Block Code" presents an up-to-date, comprehensive and in-depth discussion of an important emerging class of space-time codes, called the Quasi-Orthogonal STBC (QO-STBC). Used in Multiple-Input Multiple-Output (MIMO) communication systems, they provide transmit diversity with higher code rates than the well-known orthogonal STBC (O-STBC), yet at lower decoding complexity than non-orthogonal STBC. This book will help readers gain a broad understanding of the fundamental principles as well as the state-of-the-art work in QO-STBC, thus enabling them to appreciate the roles of QO-STBC in future broadband wireless systems and to inspire further research. | ||
588 | 0 | |a Print version record. | |
650 | 0 | |a Space time codes. |0 http://id.loc.gov/authorities/subjects/sh2004000490 | |
650 | 0 | |a MIMO systems. |0 http://id.loc.gov/authorities/subjects/sh2004000485 | |
650 | 6 | |a Codage spatio-temporel. | |
650 | 6 | |a Systèmes à entrées multiples et à sorties multiples. | |
650 | 7 | |a TECHNOLOGY & ENGINEERING |x Radio. |2 bisacsh | |
650 | 7 | |a TECHNOLOGY & ENGINEERING |x Mobile & Wireless Communications. |2 bisacsh | |
650 | 7 | |a MIMO systems |2 fast | |
650 | 7 | |a Space time codes |2 fast | |
700 | 1 | |a Guan, Yong Liang. | |
700 | 1 | |a Tjhung, Tjeng Thiang. | |
758 | |i has work: |a Quasi-orthogonal space-time block code (Text) |1 https://id.oclc.org/worldcat/entity/E39PCFXFJvRfYRkhYF9cHrKwyb |4 https://id.oclc.org/worldcat/ontology/hasWork | ||
776 | 0 | 8 | |i Print version: |a Yuen, Chau. |t Quasi-orthogonal space-time block code. |d London ; Imperial College Press ; Hackensack, NJ : Distributed by World Scientific, ©2007 |w (DLC) 2008371730 |
830 | 0 | |a Communications and signal processing (London, England) ; |v v. 2. |0 http://id.loc.gov/authorities/names/no2008020988 | |
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author | Yuen, Chau |
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contents | Cover -- Contents -- Foreword -- 1 . Introduction of MIMO Channel and Space-Time Block Code -- 1.1 MIMO Channel for Wireless Communications -- 1.2 Transmit Diversity with Space-Time Block Code -- 1.3 Notations and Abbreviations -- 1.4 Signal Model of MIMO Channel and STBC -- 1.4.1 Signal model of MIMO channel -- 1.4.2 Signal model of STBC -- 1.5 Design Criteria and Performance Measure of STBC -- 2 . Orthogonal and Quasi-Orthogonal Space-Time Block Code -- 2.1 Orthogonal Space-Time Block Code -- 2.1.1 Benefits of 0-STBC -- 2.1.2 Background of amicable orthogonal design -- 2.1.3 Construction of 0-STBC and its rate limitation -- 2.2 Quasi-Orthogonal Space-Time Block Code -- 2.2.1 Approaching capacity with low decoding complexity -- 2.2.2 Performance optimization of QO-STBC -- 2.2.3 Remark -- 3 . Insights of QO-STBC -- 3.1 Algebraic Structure of QO-STBC -- 3.1.1 Decoding complexity of a QO-STBC -- 3.1.2 Maximal symbol-wise diversity of a QO-STBC -- 3.2 Generalized Decoding Framework of QO-STBC -- 3.3 Impact of Constellation Rotation on the Decoding Complexity of QO-STBC -- 3.3.1 Simplified QO-STBC model with real symbols only -- 3.3.2 Decoding complexity of QO-STBC with CR -- 3.4 Group-Constrained Linear Transformation -- 3.4.1 Definition of GCLT -- 3.4.2 Optimization of GCLT parameters -- 3.4.3 Performance comparison -- 3.5 Chapter Summary -- 4 . Quasi-Orthogonal Space-Time Block Code with Minimum Decoding Complexity -- 4.1 Algebraic Structure of MDC-QOSTBC -- 4.2 Square MDC-QOSTBC Design -- 4.2.1 Definition of preferred AOD pair -- 4.2.2 Relationship between MDC-QOSTBC and AOD through preferred AOD pair -- 4.2.3 Lower bound on the code rate for square design -- 4.2.4 Construction of preferred AOD pair -- 4.3 Construction of MDC-QOSTBC from 0-STBC -- 4.3.1 Construction method -- 4.3.2 Performance optimization -- 4.3.3 Non-square MDC-QOSTBC design -- 4.4 Performance Results -- 4.5 Chapter Summary -- 5 . Differential QO-STBC -- 5.1 DSTM Codeword Model and Design Criteria -- 5.2 Unitary DSTM Based on QO-STBC -- 5.2.1 Literature review -- 5.2.2 Signal model of unitary DSTM scheme -- 5.2.3 Double-symbol-decodable unitary DSTM -- 5.2.4 Performance comparison -- 5.2.5 Section summary -- 5.3 Quasi-Unitary DSTM Based on MDC-QOSTBC -- 5.3.1 Literature review -- 5.3.2 Signal model of quasi-unitary DSTM scheme -- 5.3.3 Single-symbol-decodable quasi-unitary DSTM -- 5.4 Chapter Summary -- 6 . Rate. Complexity and Diversity Trade-off in QO-STBC -- 6.1 QO-STBC with Rate 5 1 -- 6.1.1 Introduction -- 6.1.2 Full-rate 4Gp-QOSTBC -- 6.1.3 Rate-complexity-diversity tradeoff -- 6.1.4 Section summary -- 6.2 QO-STBC with Rate> 1 -- 6.2.1 Introduction -- 6.2.2 Code search methodology -- 6.2.3 Graph modelling and modified depth first search for implementing step (b) -- 6.2.4 Code search results -- 6.2.5 Section summary -- 6.3 Chapter Summary -- 7 . Other Developments and Applications of QO-STBC -- 7.1 Other Developments of QO-STBC -- 7.1.1 Closed-loop QO-STBC -- 7.1.2 Concatenation of QO-STBC with error correction code -- 7.1.3 Super space-time trellis code based on QO-STBC -- 7.1.4 QO-STBC in frequency selective fading channel -- 7.2 QO-STBC in Communication Standards -- 8 . Conclusions -- APPENDIX A -- APPENDIX B -- BIBLIOGRAPHY -- INDEX. |
ctrlnum | (OCoLC)646768707 |
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dewey-hundreds | 600 - Technology (Applied sciences) |
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dewey-search | 621.3840285572 |
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discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Electronic eBook |
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code="a">Cover -- Contents -- Foreword -- 1 . Introduction of MIMO Channel and Space-Time Block Code -- 1.1 MIMO Channel for Wireless Communications -- 1.2 Transmit Diversity with Space-Time Block Code -- 1.3 Notations and Abbreviations -- 1.4 Signal Model of MIMO Channel and STBC -- 1.4.1 Signal model of MIMO channel -- 1.4.2 Signal model of STBC -- 1.5 Design Criteria and Performance Measure of STBC -- 2 . Orthogonal and Quasi-Orthogonal Space-Time Block Code -- 2.1 Orthogonal Space-Time Block Code -- 2.1.1 Benefits of 0-STBC -- 2.1.2 Background of amicable orthogonal design -- 2.1.3 Construction of 0-STBC and its rate limitation -- 2.2 Quasi-Orthogonal Space-Time Block Code -- 2.2.1 Approaching capacity with low decoding complexity -- 2.2.2 Performance optimization of QO-STBC -- 2.2.3 Remark -- 3 . Insights of QO-STBC -- 3.1 Algebraic Structure of QO-STBC -- 3.1.1 Decoding complexity of a QO-STBC -- 3.1.2 Maximal symbol-wise diversity of a QO-STBC -- 3.2 Generalized Decoding Framework of QO-STBC -- 3.3 Impact of Constellation Rotation on the Decoding Complexity of QO-STBC -- 3.3.1 Simplified QO-STBC model with real symbols only -- 3.3.2 Decoding complexity of QO-STBC with CR -- 3.4 Group-Constrained Linear Transformation -- 3.4.1 Definition of GCLT -- 3.4.2 Optimization of GCLT parameters -- 3.4.3 Performance comparison -- 3.5 Chapter Summary -- 4 . Quasi-Orthogonal Space-Time Block Code with Minimum Decoding Complexity -- 4.1 Algebraic Structure of MDC-QOSTBC -- 4.2 Square MDC-QOSTBC Design -- 4.2.1 Definition of preferred AOD pair -- 4.2.2 Relationship between MDC-QOSTBC and AOD through preferred AOD pair -- 4.2.3 Lower bound on the code rate for square design -- 4.2.4 Construction of preferred AOD pair -- 4.3 Construction of MDC-QOSTBC from 0-STBC -- 4.3.1 Construction method -- 4.3.2 Performance optimization -- 4.3.3 Non-square MDC-QOSTBC design -- 4.4 Performance Results -- 4.5 Chapter Summary -- 5 . Differential QO-STBC -- 5.1 DSTM Codeword Model and Design Criteria -- 5.2 Unitary DSTM Based on QO-STBC -- 5.2.1 Literature review -- 5.2.2 Signal model of unitary DSTM scheme -- 5.2.3 Double-symbol-decodable unitary DSTM -- 5.2.4 Performance comparison -- 5.2.5 Section summary -- 5.3 Quasi-Unitary DSTM Based on MDC-QOSTBC -- 5.3.1 Literature review -- 5.3.2 Signal model of quasi-unitary DSTM scheme -- 5.3.3 Single-symbol-decodable quasi-unitary DSTM -- 5.4 Chapter Summary -- 6 . Rate. Complexity and Diversity Trade-off in QO-STBC -- 6.1 QO-STBC with Rate 5 1 -- 6.1.1 Introduction -- 6.1.2 Full-rate 4Gp-QOSTBC -- 6.1.3 Rate-complexity-diversity tradeoff -- 6.1.4 Section summary -- 6.2 QO-STBC with Rate> 1 -- 6.2.1 Introduction -- 6.2.2 Code search methodology -- 6.2.3 Graph modelling and modified depth first search for implementing step (b) -- 6.2.4 Code search results -- 6.2.5 Section summary -- 6.3 Chapter Summary -- 7 . Other Developments and Applications of QO-STBC -- 7.1 Other Developments of QO-STBC -- 7.1.1 Closed-loop QO-STBC -- 7.1.2 Concatenation of QO-STBC with error correction code -- 7.1.3 Super space-time trellis code based on QO-STBC -- 7.1.4 QO-STBC in frequency selective fading channel -- 7.2 QO-STBC in Communication Standards -- 8 . Conclusions -- APPENDIX A -- APPENDIX B -- BIBLIOGRAPHY -- INDEX.</subfield></datafield><datafield tag="520" ind1=" " ind2=" "><subfield code="a">"Quasi-Orthogonal Space-Time Block Code" presents an up-to-date, comprehensive and in-depth discussion of an important emerging class of space-time codes, called the Quasi-Orthogonal STBC (QO-STBC). Used in Multiple-Input Multiple-Output (MIMO) communication systems, they provide transmit diversity with higher code rates than the well-known orthogonal STBC (O-STBC), yet at lower decoding complexity than non-orthogonal STBC. 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id | ZDB-4-EBA-ocn646768707 |
illustrated | Illustrated |
indexdate | 2024-11-27T13:17:17Z |
institution | BVB |
isbn | 9781860948695 1860948693 1281867640 9781281867643 |
language | English |
oclc_num | 646768707 |
open_access_boolean | |
owner | MAIN DE-863 DE-BY-FWS |
owner_facet | MAIN DE-863 DE-BY-FWS |
physical | 1 online resource (xi, 194 pages) : illustrations (some color) |
psigel | ZDB-4-EBA |
publishDate | 2007 |
publishDateSearch | 2007 |
publishDateSort | 2007 |
publisher | Distributed by World Scientific, |
record_format | marc |
series | Communications and signal processing (London, England) ; |
series2 | Communications and signal processing ; |
spelling | Yuen, Chau. Quasi-orthogonal space-time block code / Chau Yuen, Yong Liang Guan, Tjeng Thiang Tjhung. London ; Imperial College Press ; Hackensack, NJ : Distributed by World Scientific, ©2007. 1 online resource (xi, 194 pages) : illustrations (some color) text txt rdacontent computer c rdamedia online resource cr rdacarrier Communications and signal processing ; v. 2 Includes bibliographical references (pages 184-190) and index. Cover -- Contents -- Foreword -- 1 . Introduction of MIMO Channel and Space-Time Block Code -- 1.1 MIMO Channel for Wireless Communications -- 1.2 Transmit Diversity with Space-Time Block Code -- 1.3 Notations and Abbreviations -- 1.4 Signal Model of MIMO Channel and STBC -- 1.4.1 Signal model of MIMO channel -- 1.4.2 Signal model of STBC -- 1.5 Design Criteria and Performance Measure of STBC -- 2 . Orthogonal and Quasi-Orthogonal Space-Time Block Code -- 2.1 Orthogonal Space-Time Block Code -- 2.1.1 Benefits of 0-STBC -- 2.1.2 Background of amicable orthogonal design -- 2.1.3 Construction of 0-STBC and its rate limitation -- 2.2 Quasi-Orthogonal Space-Time Block Code -- 2.2.1 Approaching capacity with low decoding complexity -- 2.2.2 Performance optimization of QO-STBC -- 2.2.3 Remark -- 3 . Insights of QO-STBC -- 3.1 Algebraic Structure of QO-STBC -- 3.1.1 Decoding complexity of a QO-STBC -- 3.1.2 Maximal symbol-wise diversity of a QO-STBC -- 3.2 Generalized Decoding Framework of QO-STBC -- 3.3 Impact of Constellation Rotation on the Decoding Complexity of QO-STBC -- 3.3.1 Simplified QO-STBC model with real symbols only -- 3.3.2 Decoding complexity of QO-STBC with CR -- 3.4 Group-Constrained Linear Transformation -- 3.4.1 Definition of GCLT -- 3.4.2 Optimization of GCLT parameters -- 3.4.3 Performance comparison -- 3.5 Chapter Summary -- 4 . Quasi-Orthogonal Space-Time Block Code with Minimum Decoding Complexity -- 4.1 Algebraic Structure of MDC-QOSTBC -- 4.2 Square MDC-QOSTBC Design -- 4.2.1 Definition of preferred AOD pair -- 4.2.2 Relationship between MDC-QOSTBC and AOD through preferred AOD pair -- 4.2.3 Lower bound on the code rate for square design -- 4.2.4 Construction of preferred AOD pair -- 4.3 Construction of MDC-QOSTBC from 0-STBC -- 4.3.1 Construction method -- 4.3.2 Performance optimization -- 4.3.3 Non-square MDC-QOSTBC design -- 4.4 Performance Results -- 4.5 Chapter Summary -- 5 . Differential QO-STBC -- 5.1 DSTM Codeword Model and Design Criteria -- 5.2 Unitary DSTM Based on QO-STBC -- 5.2.1 Literature review -- 5.2.2 Signal model of unitary DSTM scheme -- 5.2.3 Double-symbol-decodable unitary DSTM -- 5.2.4 Performance comparison -- 5.2.5 Section summary -- 5.3 Quasi-Unitary DSTM Based on MDC-QOSTBC -- 5.3.1 Literature review -- 5.3.2 Signal model of quasi-unitary DSTM scheme -- 5.3.3 Single-symbol-decodable quasi-unitary DSTM -- 5.4 Chapter Summary -- 6 . Rate. Complexity and Diversity Trade-off in QO-STBC -- 6.1 QO-STBC with Rate 5 1 -- 6.1.1 Introduction -- 6.1.2 Full-rate 4Gp-QOSTBC -- 6.1.3 Rate-complexity-diversity tradeoff -- 6.1.4 Section summary -- 6.2 QO-STBC with Rate> 1 -- 6.2.1 Introduction -- 6.2.2 Code search methodology -- 6.2.3 Graph modelling and modified depth first search for implementing step (b) -- 6.2.4 Code search results -- 6.2.5 Section summary -- 6.3 Chapter Summary -- 7 . Other Developments and Applications of QO-STBC -- 7.1 Other Developments of QO-STBC -- 7.1.1 Closed-loop QO-STBC -- 7.1.2 Concatenation of QO-STBC with error correction code -- 7.1.3 Super space-time trellis code based on QO-STBC -- 7.1.4 QO-STBC in frequency selective fading channel -- 7.2 QO-STBC in Communication Standards -- 8 . Conclusions -- APPENDIX A -- APPENDIX B -- BIBLIOGRAPHY -- INDEX. "Quasi-Orthogonal Space-Time Block Code" presents an up-to-date, comprehensive and in-depth discussion of an important emerging class of space-time codes, called the Quasi-Orthogonal STBC (QO-STBC). Used in Multiple-Input Multiple-Output (MIMO) communication systems, they provide transmit diversity with higher code rates than the well-known orthogonal STBC (O-STBC), yet at lower decoding complexity than non-orthogonal STBC. This book will help readers gain a broad understanding of the fundamental principles as well as the state-of-the-art work in QO-STBC, thus enabling them to appreciate the roles of QO-STBC in future broadband wireless systems and to inspire further research. Print version record. Space time codes. http://id.loc.gov/authorities/subjects/sh2004000490 MIMO systems. http://id.loc.gov/authorities/subjects/sh2004000485 Codage spatio-temporel. Systèmes à entrées multiples et à sorties multiples. TECHNOLOGY & ENGINEERING Radio. bisacsh TECHNOLOGY & ENGINEERING Mobile & Wireless Communications. bisacsh MIMO systems fast Space time codes fast Guan, Yong Liang. Tjhung, Tjeng Thiang. has work: Quasi-orthogonal space-time block code (Text) https://id.oclc.org/worldcat/entity/E39PCFXFJvRfYRkhYF9cHrKwyb https://id.oclc.org/worldcat/ontology/hasWork Print version: Yuen, Chau. Quasi-orthogonal space-time block code. London ; Imperial College Press ; Hackensack, NJ : Distributed by World Scientific, ©2007 (DLC) 2008371730 Communications and signal processing (London, England) ; v. 2. http://id.loc.gov/authorities/names/no2008020988 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=236018 Volltext |
spellingShingle | Yuen, Chau Quasi-orthogonal space-time block code / Communications and signal processing (London, England) ; Cover -- Contents -- Foreword -- 1 . Introduction of MIMO Channel and Space-Time Block Code -- 1.1 MIMO Channel for Wireless Communications -- 1.2 Transmit Diversity with Space-Time Block Code -- 1.3 Notations and Abbreviations -- 1.4 Signal Model of MIMO Channel and STBC -- 1.4.1 Signal model of MIMO channel -- 1.4.2 Signal model of STBC -- 1.5 Design Criteria and Performance Measure of STBC -- 2 . Orthogonal and Quasi-Orthogonal Space-Time Block Code -- 2.1 Orthogonal Space-Time Block Code -- 2.1.1 Benefits of 0-STBC -- 2.1.2 Background of amicable orthogonal design -- 2.1.3 Construction of 0-STBC and its rate limitation -- 2.2 Quasi-Orthogonal Space-Time Block Code -- 2.2.1 Approaching capacity with low decoding complexity -- 2.2.2 Performance optimization of QO-STBC -- 2.2.3 Remark -- 3 . Insights of QO-STBC -- 3.1 Algebraic Structure of QO-STBC -- 3.1.1 Decoding complexity of a QO-STBC -- 3.1.2 Maximal symbol-wise diversity of a QO-STBC -- 3.2 Generalized Decoding Framework of QO-STBC -- 3.3 Impact of Constellation Rotation on the Decoding Complexity of QO-STBC -- 3.3.1 Simplified QO-STBC model with real symbols only -- 3.3.2 Decoding complexity of QO-STBC with CR -- 3.4 Group-Constrained Linear Transformation -- 3.4.1 Definition of GCLT -- 3.4.2 Optimization of GCLT parameters -- 3.4.3 Performance comparison -- 3.5 Chapter Summary -- 4 . Quasi-Orthogonal Space-Time Block Code with Minimum Decoding Complexity -- 4.1 Algebraic Structure of MDC-QOSTBC -- 4.2 Square MDC-QOSTBC Design -- 4.2.1 Definition of preferred AOD pair -- 4.2.2 Relationship between MDC-QOSTBC and AOD through preferred AOD pair -- 4.2.3 Lower bound on the code rate for square design -- 4.2.4 Construction of preferred AOD pair -- 4.3 Construction of MDC-QOSTBC from 0-STBC -- 4.3.1 Construction method -- 4.3.2 Performance optimization -- 4.3.3 Non-square MDC-QOSTBC design -- 4.4 Performance Results -- 4.5 Chapter Summary -- 5 . Differential QO-STBC -- 5.1 DSTM Codeword Model and Design Criteria -- 5.2 Unitary DSTM Based on QO-STBC -- 5.2.1 Literature review -- 5.2.2 Signal model of unitary DSTM scheme -- 5.2.3 Double-symbol-decodable unitary DSTM -- 5.2.4 Performance comparison -- 5.2.5 Section summary -- 5.3 Quasi-Unitary DSTM Based on MDC-QOSTBC -- 5.3.1 Literature review -- 5.3.2 Signal model of quasi-unitary DSTM scheme -- 5.3.3 Single-symbol-decodable quasi-unitary DSTM -- 5.4 Chapter Summary -- 6 . Rate. Complexity and Diversity Trade-off in QO-STBC -- 6.1 QO-STBC with Rate 5 1 -- 6.1.1 Introduction -- 6.1.2 Full-rate 4Gp-QOSTBC -- 6.1.3 Rate-complexity-diversity tradeoff -- 6.1.4 Section summary -- 6.2 QO-STBC with Rate> 1 -- 6.2.1 Introduction -- 6.2.2 Code search methodology -- 6.2.3 Graph modelling and modified depth first search for implementing step (b) -- 6.2.4 Code search results -- 6.2.5 Section summary -- 6.3 Chapter Summary -- 7 . Other Developments and Applications of QO-STBC -- 7.1 Other Developments of QO-STBC -- 7.1.1 Closed-loop QO-STBC -- 7.1.2 Concatenation of QO-STBC with error correction code -- 7.1.3 Super space-time trellis code based on QO-STBC -- 7.1.4 QO-STBC in frequency selective fading channel -- 7.2 QO-STBC in Communication Standards -- 8 . Conclusions -- APPENDIX A -- APPENDIX B -- BIBLIOGRAPHY -- INDEX. Space time codes. http://id.loc.gov/authorities/subjects/sh2004000490 MIMO systems. http://id.loc.gov/authorities/subjects/sh2004000485 Codage spatio-temporel. Systèmes à entrées multiples et à sorties multiples. TECHNOLOGY & ENGINEERING Radio. bisacsh TECHNOLOGY & ENGINEERING Mobile & Wireless Communications. bisacsh MIMO systems fast Space time codes fast |
subject_GND | http://id.loc.gov/authorities/subjects/sh2004000490 http://id.loc.gov/authorities/subjects/sh2004000485 |
title | Quasi-orthogonal space-time block code / |
title_auth | Quasi-orthogonal space-time block code / |
title_exact_search | Quasi-orthogonal space-time block code / |
title_full | Quasi-orthogonal space-time block code / Chau Yuen, Yong Liang Guan, Tjeng Thiang Tjhung. |
title_fullStr | Quasi-orthogonal space-time block code / Chau Yuen, Yong Liang Guan, Tjeng Thiang Tjhung. |
title_full_unstemmed | Quasi-orthogonal space-time block code / Chau Yuen, Yong Liang Guan, Tjeng Thiang Tjhung. |
title_short | Quasi-orthogonal space-time block code / |
title_sort | quasi orthogonal space time block code |
topic | Space time codes. http://id.loc.gov/authorities/subjects/sh2004000490 MIMO systems. http://id.loc.gov/authorities/subjects/sh2004000485 Codage spatio-temporel. Systèmes à entrées multiples et à sorties multiples. TECHNOLOGY & ENGINEERING Radio. bisacsh TECHNOLOGY & ENGINEERING Mobile & Wireless Communications. bisacsh MIMO systems fast Space time codes fast |
topic_facet | Space time codes. MIMO systems. Codage spatio-temporel. Systèmes à entrées multiples et à sorties multiples. TECHNOLOGY & ENGINEERING Radio. TECHNOLOGY & ENGINEERING Mobile & Wireless Communications. MIMO systems Space time codes |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=236018 |
work_keys_str_mv | AT yuenchau quasiorthogonalspacetimeblockcode AT guanyongliang quasiorthogonalspacetimeblockcode AT tjhungtjengthiang quasiorthogonalspacetimeblockcode |