Title :
Experimental Verification of PER Performance of STBC-Based Multi-Hop Cooperative Relaying
Author :
Miyagoshi, Makoto ; Murata, Hidekazu ; Yoshida, Susumu ; Yamamoto, Koji ; Umehara, Daisuke ; Denno, Satoshi ; Morikura, Masahiro
Author_Institution :
Grad. Sch. of Inf., Kyoto Univ. Yoshida-honmachi, Kyoto, Japan
Abstract :
In this paper, the end-to-end packet error rate (PER) performance of a space-time block code (STBC) based multi-hop cooperative relaying system is discussed. This system consists of a source, a destination, and two STBC based cooperative relays in each hop. These relays decode their received packets and forward the packets only when no error is found. In this system, there are conditions where the end-to-end PER performance improves with the number of hops. The theoretical end-to-end PER performance of this system have been derived analytically. However, in real-world wireless systems, various practical issues, e.g., timing synchronization and imperfect channel estimation, have a large impact on the performance. To confirm the end-to-end PER performance of this system in actual setup, an in-lab experiment using a fading emulator and four transceivers is performed under Rayleigh fading environment. The experimental results clarify the PER performance of the STBC based multi-hop cooperative relaying system. In addition, the theoretical PER performance is also verified from the experimental results.
Keywords :
Rayleigh channels; channel estimation; cooperative communication; decoding; error statistics; radio transceivers; relay networks (telecommunication); space-time block codes; synchronisation; Rayleigh fading environment; STBC-based multihop cooperative relaying system; destination relay; end-to-end PER performance; end-to-end packet error rate; fading emulator; imperfect channel estimation; packet decoding; packet forwarding; real-world wireless system; source relay; space-time block code; timing synchronization; transceiver; Error analysis; Global Positioning System; Phase shift keying; Rayleigh channels; Relays; Timing;
Conference_Titel :
Vehicular Technology Conference (VTC Fall), 2012 IEEE
Conference_Location :
Quebec City, QC
Print_ISBN :
978-1-4673-1880-8
Electronic_ISBN :
1090-3038
DOI :
10.1109/VTCFall.2012.6399343