Title :
Space-Frequency Transmission Achieving Full Diversity for Frequency Asynchronous Cooperative Relay Networks with Linear Receivers
Author :
Wang, Huiming ; Yin, Qinye
Author_Institution :
Minist. of Educ. Key Lab. for Intell. Networks & Network Security, Xi´´an Jiaotong Univ., Xi´´an, China
Abstract :
In cooperative communication systems, due to their distributed nature, multiple carrier frequency offsets (CFOs) may occur and make the channel time-varying, thus most existing space-time codes (STC) to collect diversity gain for the co-located multi-input multi-output (MIMO) systems may not be applied directly. In this paper, we propose a family of distributed space-frequency codes (SFCs) for cooperative transmissions with multiple CFOs and flat fading channels. These codes can achieve full cooperative (spatial) diversity with only linear receivers, such as zero-forcing (ZF) and minimum mean square error (MMSE) receivers, instead of the computationally exhausted maximum likelihood (ML) detector. The codes in this family have different symbol rates, orthogonality and performances for different number of relay nodes, which can be adjusted by choosing different design parameters. Actually, frequency-reversal SFC (FR-SFC), and frequency-shift SFC (FS-SFC) proposed in our previous paper are special cases of the new codes. Furthermore, new SFCs outperform both FD-SFC and FS-SFC can be obtained, from the systematic design.
Keywords :
MIMO communication; diversity reception; fading channels; least mean squares methods; maximum likelihood estimation; radio receivers; space-time codes; time-varying channels; MIMO systems; MMSE; cooperative communication systems; distributed space-frequency codes; flat fading channels; frequency asynchronous cooperative relay networks; frequency-reversal space-time codes; frequency-shift space-frequency codes; full cooperative diversity; linear receivers; maximum likelihood detector; minimum mean square error; multi-input multi-output systems; multiple carrier frequency offsets; space-frequency transmission; time-varying channel; zero-forcing; Detectors; Diversity methods; Fading; Frequency diversity; MIMO; Maximum likelihood detection; Mean square error methods; Relays; Space time codes; Time varying systems;
Conference_Titel :
Communications (ICC), 2010 IEEE International Conference on
Conference_Location :
Cape Town
Print_ISBN :
978-1-4244-6402-9
DOI :
10.1109/ICC.2010.5501923