Novel analytical results on performance of bit-interleaved and chip-interleaved DS-CDMA with convolutional coding
We present a unified performance analysis for the conventional bit-interleaved direct-sequence (DS) code-division multiple access (BIDS-CDMA) and the more recently proposed chip-interleaved DS-CDMA (CIDS-CDMA), both with channel coding. Simple CIDS-CDMA treats a set of bits at a time and interleaves...
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| Published in | IEEE transactions on vehicular technology Vol. 54; no. 3; pp. 996 - 1012 |
|---|---|
| Main Authors | , |
| Format | Journal Article |
| Language | English |
| Published |
New York, NY
IEEE
01.05.2005
Institute of Electrical and Electronics Engineers The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
| Subjects | |
| Online Access | Get full text |
| ISSN | 0018-9545 1939-9359 |
| DOI | 10.1109/TVT.2005.844654 |
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| Abstract | We present a unified performance analysis for the conventional bit-interleaved direct-sequence (DS) code-division multiple access (BIDS-CDMA) and the more recently proposed chip-interleaved DS-CDMA (CIDS-CDMA), both with channel coding. Simple CIDS-CDMA treats a set of bits at a time and interleaves their chips together for transmission. But bit interleaving may also be used on top of chip interleaving (thus abbreviated BCIDS-CDMA) to enhance performance. For simplicity, we first tackle flat-faded synchronous transmission, in which we treat both the condition with perfect power control and that where the received signal is subject to Rayleigh fading. We then extend the analysis to asynchronous and multipath channels, with the latter treated only briefly. By approximating the correlation among the spreading codes (rather than the ensuing interference) as Gaussian, we obtain novel and relatively simple results for the various conditions above. In general, BCIDS-CDMA performs best, followed by simple CIDS-CDMA and then by BIDS-CDMA. Within simple CIDS-CDMA and BIDS-CDMA, long-code spreading performs better than short-code spreading. For BCIDS-CDMA with perfect interleaving that fully randomizes the fading coefficients, the performance is not affected by the spreading code period. The above ordering of performance follows the amount of diversity each scheme exploits, where the diversity may come from spectrum spreading, channel coding, and independence in fading of different paths. Simulation results agree well with the theoretical analysis. |
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| AbstractList | We present a unified performance analysis for the conventional bit-interleaved direct-sequence (DS) code-division multiple access (BIDS-CDMA) and the more recently proposed chip-interleaved DS-CDMA (CIDS-CDMA), both with channel coding. Simple CIDS-CDMA treats a set of bits at a time and interleaves their chips together for transmission. But bit interleaving may also be used on top of chip interleaving (thus abbreviated BCIDS-CDMA) to enhance performance. For simplicity, we first tackle flat-faded synchronous transmission, in which we treat both the condition with perfect power control and that where the received signal is subject to Rayleigh fading. We then extend the analysis to asynchronous and multipath channels, with the latter treated only briefly. By approximating the correlation among the spreading codes (rather than the ensuing interference) as Gaussian, we obtain novel and relatively simple results for the various conditions above. In general, BCIDS-CDMA performs best, followed by simple CIDS-CDMA and then by BIDS-CDMA. Within simple CIDS-CDMA and BIDS-CDMA, long-code spreading performs better than short-code spreading. For BCIDS-CDMA with perfect interleaving that fully randomizes the fading coefficients, the performance is not affected by the spreading code period. The above ordering of performance follows the amount of diversity each scheme exploits, where the diversity may come from spectrum spreading, channel coding, and independence in fading of different paths. Simulation results agree well with the theoretical analysis. For simplicity, we first tackle flat-faded synchronous transmission, in which we treat both the condition with perfect power control and that where the received signal is subject to Rayleigh fading. |
| Author | Yu-Nan Lin Lin, D.W. |
| Author_xml | – sequence: 1 surname: Yu-Nan Lin fullname: Yu-Nan Lin organization: Dept. of Electron. Eng., Nat. Chiao Tung Univ., Hsinchu, Taiwan – sequence: 2 givenname: D.W. surname: Lin fullname: Lin, D.W. organization: Dept. of Electron. Eng., Nat. Chiao Tung Univ., Hsinchu, Taiwan |
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| Keywords | direct-sequence code-division multiple access (DS-CDMA) Convolutional code Wireless telecommunication Rayleigh channels Multipath channels performance Code division multiple access Analytical method Bit interleaving Performance analysis convolutional codes Direct sequence chip interleaving |
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| References | ref13 ref12 rappaport (ref26) 1996 ref11 ref10 technical specification group radio access network 3gpp (ref1) 2001 ref2 ref17 ref16 ref18 Ünal (ref8) 1996 proakis (ref22) 1995 abramowitz (ref19) 1964 ref24 ref25 ref20 ref21 lin (ref14) 2003; e86 b akaiwa (ref23) 1997 ref7 ref9 ref4 ref3 ref6 lin (ref15) 2003 ref5 |
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| Snippet | We present a unified performance analysis for the conventional bit-interleaved direct-sequence (DS) code-division multiple access (BIDS-CDMA) and the more... For simplicity, we first tackle flat-faded synchronous transmission, in which we treat both the condition with perfect power control and that where the... |
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| SubjectTerms | Applied sciences Approximation Bit interleaving Channel coding Channels chip interleaving Chips Coding Convolution Convolutional codes direct-sequence code-division multiple access (DS-CDMA) Exact sciences and technology Fading Gaussian Information, signal and communications theory Interleaved codes Multiaccess communication Multipath channels Multiplexing Performance analysis Power control Rayleigh channels Signal and communications theory Spreading Studies Systems, networks and services of telecommunications Telecommunications Telecommunications and information theory Transmission and modulation (techniques and equipments) |
| Title | Novel analytical results on performance of bit-interleaved and chip-interleaved DS-CDMA with convolutional coding |
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