Title :
Distance spectra and performance bounds of space-time trellis codes over quasistatic fading channels
Author :
Bouzekri, Hicham ; Miller, Scott L.
Author_Institution :
CMG Rabat Design Center, STMicroelectron., Rabat, Morocco
Abstract :
This correspondence presents a general approach to upper bounding coded system performance over quasistatic fading channels (QSFC). This approach has the advantage of yielding a closed-form upper bound that converge for all signal-to-noise ratios (SNRs). The proposed approach is used to upper-bound the performance of space-time trellis codes (STTC) over QSFCs. The resulting upper bounds for STTCs are better adapted to the QSFC and present an improvement over worst case pairwise error probability (PEP) analysis used so far. In its second part, this correspondence investigates several ways to reduce the complexity of computing the distance spectrum of STTCs. The combined result obtained from using the new upper bounds and the computed distance spectra are shown to be close to simulated performance for all SNRs.
Keywords :
channel coding; error statistics; fading channels; space-time codes; trellis codes; PEP analysis; QSFC; STTC; distance spectra; pairwise error probability; quasistatic fading channels; space-time trellis codes; upper bounding coded system; Binary codes; Convolutional codes; Decoding; Fading; Fault detection; Fault tolerance; Power supplies; Robustness; Temperature; Upper bound; QSFCs; Quasi-static fading channels; STTCs; space–time trellis codes;
Journal_Title :
Information Theory, IEEE Transactions on
DOI :
10.1109/TIT.2004.831747