A unified analysis of hybrid ARQ protocol in frequency-hop spread-spectrum systems subject to frequency-selective fading and interference

This paper presents an exact analysis of the type-I hybrid automatic repeat request (ARQ) protocol for a frequency-hop (FH) communication system that uses symbol interleaving, multiple codewords per packet, and multiple symbols per dwell interval. The analysis relies on exact formulas for the probab...

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Published inIEEE transactions on vehicular technology Vol. 48; no. 2; pp. 627 - 637
Main Authors Daraiseh, A.-G.A., Baum, C.W.
Format Journal Article
LanguageEnglish
Published New York, NY IEEE 01.03.1999
Institute of Electrical and Electronics Engineers
Subjects
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ISSN0018-9545
DOI10.1109/25.752588

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Abstract This paper presents an exact analysis of the type-I hybrid automatic repeat request (ARQ) protocol for a frequency-hop (FH) communication system that uses symbol interleaving, multiple codewords per packet, and multiple symbols per dwell interval. The analysis relies on exact formulas for the probabilities of decoder error and failure with an arbitrary number of different conditional symbol error and erasure probabilities. We specialize our analysis to two channel models. The first channel exhibits frequency-selective fading, and the second exhibits frequency-selective interference. The results show that the interrelationships between system and channel parameters are complex and not always intuitive. Numerical results show that: (1) depending on the channel parameters, frequency-selective channel phenomena can result in either an improvement or degradation in system performance compared with an equivalent nonselective channel and (2) in a fading channel, increasing the number of symbols per dwell interval can result in a significant improvement in reliability at only a modest reduction in throughput.
AbstractList This paper presents an exact analysis of the type-I hybrid automatic repeat request (ARQ) protocol for a frequency-hop (FH) communication system that uses symbol interleaving, multiple codewords per packet, and multiple symbols per dwell interval. The analysis relies on exact formulas for the probabilities of decoder error and failure with an arbitrary number of different conditional symbol error and erasure probabilities. We specialize our analysis to two channel models. The first channel exhibits frequency-selective fading, and the second exhibits frequency-selective interference. The results show that the interrelationships between system and channel parameters are complex and not always intuitive. Numerical results show that: (1) depending on the channel parameters, frequency-selective channel phenomena can result in either an improvement or degradation in system performance compared with an equivalent nonselective channel and (2) in a fading channel, increasing the number of symbols per dwell interval can result in a significant improvement in reliability at only a modest reduction in throughput
This paper presents an exact analysis of the type-I hybrid automatic repeat request (ARQ) protocol for a frequency-hop (FH) communication system that uses symbol interleaving, multiple codewords per packet, and multiple symbols per dwell interval. The analysis relies on exact formulas for the probabilities of decoder error and failure with an arbitrary number of different conditional symbol error and erasure probabilities. We specialize our analysis to two channel models. The first channel exhibits frequency-selective fading, and the second exhibits frequency-selective interference. The results show that the interrelationships between system and channel parameters are complex and not always intuitive. Numerical results show that: (1) depending on the channel parameters, frequency-selective channel phenomena can result in either an improvement or degradation in system performance compared with an equivalent nonselective channel and (2) in a fading channel, increasing the number of symbols per dwell interval can result in a significant improvement in reliability at only a modest reduction in throughput.
Author Baum, C.W.
Daraiseh, A.-G.A.
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Cites_doi 10.1007/978-1-4899-2174-1
10.1109/MILCOM.1982.4805943
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10.1109/JSAC.1987.1146539
10.1109/26.545902
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10.1109/26.153368
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Keywords Reed Solomon code
Transmission protocol
Telecommunication network
Transmission channel
Spread spectrum
Packet transmission
Performance analysis
Rayleigh fading
Modeling
Signal to noise ratio
Exact solution
Automatic repeat request protocol
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References ref13
ref14
daraiseh (ref2) 1995
wicker (ref11) 1995
blahut (ref4) 1983
ref1
ref8
ref7
ref9
berlekamp (ref10) 1984
wicker (ref3) 1994
ref6
ref5
lin (ref12) 1983
baum (ref15) 1992
References_xml – year: 1984
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  publication-title: Algebraic Coding Theory
– year: 1995
  ident: ref11
  publication-title: Error Control Systems for Digital Communication and Storage
– ident: ref1
  doi: 10.1007/978-1-4899-2174-1
– ident: ref5
  doi: 10.1109/MILCOM.1982.4805943
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  doi: 10.1109/MILCOM.1984.4794860
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  doi: 10.1109/JSAC.1987.1146539
– ident: ref8
  doi: 10.1109/26.545902
– year: 1983
  ident: ref4
  publication-title: Theory and Practice of Error Control Codes
– year: 1995
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  publication-title: Packet combining and adaptive erasure processing for wireless spread-spectrum packet data networks
– ident: ref9
  doi: 10.1109/MILCOM.1995.483379
– ident: ref6
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– ident: ref13
  doi: 10.1109/26.153368
– year: 1994
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  publication-title: Reed&#x2013 Solomon Codes and Their Applications
– year: 1992
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  publication-title: Decision-theoretic techniques for the development and use of side information in frequency-hop radio receivers
– year: 1983
  ident: ref12
  publication-title: Error Control Coding Fundamentals and Applications
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SubjectTerms Applied sciences
Automatic repeat request
Channels
Decoding
Degradation
Dwell
Equipments and installations
Error analysis
Exact sciences and technology
Fading
Failure analysis
Frequency
Interference
Interleaved codes
Intervals
Mathematical models
Mobile radiocommunication systems
Protocols
Radiocommunications
Symbols
System performance
Telecommunications
Telecommunications and information theory
Title A unified analysis of hybrid ARQ protocol in frequency-hop spread-spectrum systems subject to frequency-selective fading and interference
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