Multirate Layered Space-Time Coding and Successive Interference Cancellation Receivers in Quasi-Static Fading Channels

We investigate the performance of multirate layered space-time coded MIMO systems with successive decoding and interference cancellation (SDIC) receivers in quasi-static Rayleigh fading channels. The proposed framework can be viewed as a class of diagonal layered space-time coded system with each of...

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Veröffentlicht in:IEEE transactions on wireless communications Jg. 6; H. 12; S. 4524 - 4533
Hauptverfasser: Sellathurai, M., Ratnarajah, T., Guinand, P.
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Piscataway, NJ IEEE 01.12.2007
Institute of Electrical and Electronics Engineers
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN:1536-1276, 1558-2248
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Abstract We investigate the performance of multirate layered space-time coded MIMO systems with successive decoding and interference cancellation (SDIC) receivers in quasi-static Rayleigh fading channels. The proposed framework can be viewed as a class of diagonal layered space-time coded system with each of the layers is encoded independently with different rates subject to equal per-layer outage probabilities. We derive the probability density functions of the per-layer mutual informations, which can be used to estimate the per-layer rates. Using these densities we show that the proposed transceiver increases the outage capacity. We also present simulation results illustrating the outage capacity performance for a variety of transmit and receive antenna combinations and the associated near optimal per-layer rates of input signals. In particular we show that for sufficiently large numbers of transmit and receive antennas, the system can achieve near capacity in quasi-static fading environments. Based on these results, multirate codes are designed using punctured turbo codes and simulation results show significant gains in packet error-rate (PER) performances compared to that of V-BLAST architectures with lower receiver complexities.
AbstractList In particular we show that for sufficiently large numbers of transmit and receive antennas, the system can achieve near capacity in quasi-static fading environments.
We investigate the performance of multirate layered space-time coded MIMO systems with successive decoding and interference cancellation (SDIC) receivers in quasi-static Rayleigh fading channels. The proposed framework can be viewed as a class of diagonal layered space-time coded system with each of the layers is encoded independently with different rates subject to equal per-layer outage probabilities. We derive the probability density functions of the per-layer mutual informations, which can be used to estimate the per-layer rates. Using these densities we show that the proposed transceiver increases the outage capacity. We also present simulation results illustrating the outage capacity performance for a variety of transmit and receive antenna combinations and the associated near optimal per-layer rates of input signals. In particular we show that for sufficiently large numbers of transmit and receive antennas, the system can achieve near capacity in quasi-static fading environments. Based on these results, multirate codes are designed using punctured turbo codes and simulation results show significant gains in packet error-rate (PER) performances compared to that of V-BLAST architectures with lower receiver complexities.
Author Guinand, P.
Ratnarajah, T.
Sellathurai, M.
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crossref_primary_10_1109_JPROC_2011_2148150
crossref_primary_10_1109_TVT_2010_2047739
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10.1109/18.720551
10.1109/26.864172
10.1109/TIT.2005.851778
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10.1109/ICC.2003.1204423
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Issue 12
Keywords Performance evaluation
Space-time codes
Input signal
Noise reduction
multiple-input multiple-output (MIMO) system
Packet error rate
minimum mean-square error (MMSE)
Transceiver
multirate layered space-time coding
outage probability
Probability density function
Receiving antenna
Fading channels
Fading
MIMO system
Outage
outage capacity
Rayleigh channels
Quasi static theory
Multirate system
Turbo code
Decoding
Statistical method
Interference suppression
Bell-Labs layered space-time (BLAST) architecture
Simulation
Transmitting antenna
zero-forcing (ZF)
Signal processing
Mutual information
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PublicationTitle IEEE transactions on wireless communications
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Snippet We investigate the performance of multirate layered space-time coded MIMO systems with successive decoding and interference cancellation (SDIC) receivers in...
In particular we show that for sufficiently large numbers of transmit and receive antennas, the system can achieve near capacity in quasi-static fading...
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SubjectTerms Antennas
Applied sciences
Cancellation
Channels
Codes
Communication channels
Decoding
Exact sciences and technology
Fading
Interference
Interference cancellation
MIMO
Mutual information
Outages
Performance gain
Probability density function
Radiocommunications
Receivers
Receiving antennas
Simulation
Systems, networks and services of telecommunications
Telecommunications
Telecommunications and information theory
Transceivers
Transmission and modulation (techniques and equipments)
Transmitters. Receivers
Turbo codes
Title Multirate Layered Space-Time Coding and Successive Interference Cancellation Receivers in Quasi-Static Fading Channels
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