Fade resistant transmission over time-varying wireless channels using parallel sequences

The capacity of a wireless system is subject to bandwidth constraints, fading, as well as temporal and spatial variations in data traffic. To adapt to this adverse radio environment efficiently, we propose a fade resistant transmission system using parallel sequences. Our analysis shows that instant...

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Published in2004 IEEE Itnernational Conference on Communications Vol. 1; pp. 385 - 389
Main Authors Saquib, M., Das, S., Mandyam, G., Win, M.Z.
Format Conference Proceeding
LanguageEnglish
Published Piscataway, New Jersey IEEE 2004
Subjects
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ISBN0780385330
9780780385337
DOI10.1109/ICC.2004.1312516

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Abstract The capacity of a wireless system is subject to bandwidth constraints, fading, as well as temporal and spatial variations in data traffic. To adapt to this adverse radio environment efficiently, we propose a fade resistant transmission system using parallel sequences. Our analysis shows that instantaneous signal-to-interference-plus-noise ratio at the matched filter output of the proposed system is statistically higher than that of the conventional system. Numerical results demonstrate that the proposed parallel sequence transmission scheme can provide capacity improvement over the conventional system depending on variations in the channel.
AbstractList The capacity of a wireless system is subject to bandwidth constraints, fading, as well as temporal and spatial variations in data traffic. To adapt to this adverse radio environment efficiently, we propose a fade resistant transmission system using parallel sequences. Our analysis shows that instantaneous signal-to-interference-plus-noise ratio at the matched filter output of the proposed system is statistically higher than that of the conventional system. Numerical results demonstrate that the proposed parallel sequence transmission scheme can provide capacity improvement over the conventional system depending on variations in the channel.
Author Saquib, M.
Mandyam, G.
Das, S.
Win, M.Z.
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Keywords Fading
Statistical method
Time variable channel
Matched filter
Parallel system
Wireless telecommunication
Hostile environment
Teletraffic
Numerical simulation
Signal to interference plus noise ratio
Spatial variation
Transmission time
Language English
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PublicationTitle 2004 IEEE Itnernational Conference on Communications
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Snippet The capacity of a wireless system is subject to bandwidth constraints, fading, as well as temporal and spatial variations in data traffic. To adapt to this...
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StartPage 385
SubjectTerms Additive white noise
Applied sciences
Bandwidth
Binary phase shift keying
Conferences
Detection, estimation, filtering, equalization, prediction
Exact sciences and technology
Fading
Information, signal and communications theory
Interference
Laboratories
Matched filters
Multiaccess communication
Radio link
Signal analysis
Signal and communications theory
Signal, noise
Systems, networks and services of telecommunications
Telecommunications
Telecommunications and information theory
Teletraffic
Title Fade resistant transmission over time-varying wireless channels using parallel sequences
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