Presentation 2003/5/16
Optimum Soft-In-Soft-Out Receiver Structure over a Carrier-Phase Mismatch
Tadashi MINOWA,
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Abstract(in English) This paper considers a wireless coherent system that enables high-speed-data transmission in the presence of carrier phase error over an additive white Gaussian noise (AWGN) channel. Carrier phase noise is caused by imperfect carrier tracking of the coherent demodulation. The channel characteristics of the system were modeled using phase noise whose stochastic process followed the Tikhonov distribution. For this model, we first propose an optimum detector that produces the most suitable decoding metric for a soft-input/soft-output (SISO) decoder,and then develop some simpler forms of the optimum detector to obtain efficient implementation at close to optimal performance. Those simple detectors that have a wide range of performance/complexity tradeoffs are promising in various applications. To evaluate the effectiveness of the proposed detectors, we have applied them to a bandwidth-efficient turbo-coded modulation scheme in which a component decoder based on SISO principles necessitates more exact channel measurement than is possible with a conventional decoder based on Viterbi decoding. Simulation results have demonstrated that the optimum detector enables excellent bit error rate (BER) performance that exceeds that with a normal detector designed for AWGN channels by more than 1 dB at a BER of 10^<-6> under a severe phase noise environment.
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Keyword(in English) carrier synchronization / phase noise / SISO decoder / turbo-coded modulation / satellite communication
Paper # RCS2003-31
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Committee RCS
Conference Date 2003/5/16(1days)
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Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Optimum Soft-In-Soft-Out Receiver Structure over a Carrier-Phase Mismatch
Sub Title (in English)
Keyword(1) carrier synchronization
Keyword(2) phase noise
Keyword(3) SISO decoder
Keyword(4) turbo-coded modulation
Keyword(5) satellite communication
1st Author's Name Tadashi MINOWA
1st Author's Affiliation Kashima Space Research Center, Communications Research Laboratory()
Date 2003/5/16
Paper # RCS2003-31
Volume (vol) vol.103
Number (no) 66
Page pp.pp.-
#Pages 8
Date of Issue