Title :
Delay-tolerant distributed linear convolutional space-time code with minimum memory length under frequency-selective channels
Author :
Zhong, Zhimeng ; Zhu, Shihua ; Nallanathan, Arumugam
Author_Institution :
Dept. of Inf. & Commun. Eng., Xi´´an Jiaotong Univ., Xi´´an, China
fDate :
8/1/2009 12:00:00 AM
Abstract :
In cooperative communication networks, the performance of distributed space-time code will be severely degraded if the timing synchronization among relay nodes is not perfect. In this letter, we propose a systematic construction of the so called distributed linear convolutional space-time code (DLCSTC) for multipath fading channels that does not require the synchronization assumption. We derive sufficient conditions on the code design such that the full cooperative and multipath diversities can be achieved under the minimum memory length constraint. Then we design DLCSTCs that both have the traceorthonormality property and achieve the full diversity. We show that the proposed codes can also achieve the full diversity for asynchronous cooperative communications with ZF, MMSE and MMSE-DFE receivers under frequency-selective channels. Finally, various numerical examples are provided to corroborate the analytical studies.
Keywords :
convolutional codes; decision feedback equalisers; fading channels; least mean squares methods; linear codes; radio receivers; space-time codes; synchronisation; MMSE receivers; MMSE-DFE receivers; asynchronous communications; code design; convolutional space-time code; cooperative communication networks; cooperative diversities; delay-tolerant space-time code; distributed space-time code; frequency-selective channels; linear space-time code; memory length constraint; multipath diversities; multipath fading channels; relay nodes; synchronization; timing synchronization; trace-orthonormality property; zero-forcing receivers; Communication networks; Convolutional codes; Degradation; Delay lines; Fading; Frequency synchronization; Relays; Space time codes; Sufficient conditions; Timing; Asynchronous cooperative communications, linear dispersion space-time codes, distributed linear convolutional space-time code;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2009.081181