TY - JOUR
T1 - Distributed on-off power control for amplify-and-forward relays with orthogonal space-time block code
AU - Dai, Mingjun
AU - Sung, Chi Wan
AU - Wang, Yan
PY - 2011/6
Y1 - 2011/6
N2 - A single source-destination pair communicating via a layer of parallel relay nodes under quasi-static slow fading environment is investigated. One existing transmission protocol is considered, namely, the combination of the distributed version of the half symbol-rate complex constellation orthogonal space-time block codes (OSTBC) with adaptive amplify-and-forward (AAF) relaying strategy. We call this transmission protocol as distributed orthogonal space-time block coded adaptive amplify-and-forward (DOSTBC-AAF). To improve the performance of DOSTBC-AAF, a distributed on-off power control (OOPC) rule applied to the relays is analytically derived and is proved to achieve full diversity order. The outage performance of DOSTBC-AAF with and without power control is evaluated. Our simulation results show that DOSTBC-AAF with all relays transmitting at full power (FP) achieves no diversity gain, whereas DOSTBC-AAF with OOPC achieves full diversity order. Correspondingly, at high signal-to-noise ratio (SNR), the diversity-multiplexing tradeoff (DMT) achieved by DOSTBC-AAF (OOPC) is analytically derived and is numerically shown to outperform DOSTBC-AAF (FP) significantly. © 2011 IEEE.
AB - A single source-destination pair communicating via a layer of parallel relay nodes under quasi-static slow fading environment is investigated. One existing transmission protocol is considered, namely, the combination of the distributed version of the half symbol-rate complex constellation orthogonal space-time block codes (OSTBC) with adaptive amplify-and-forward (AAF) relaying strategy. We call this transmission protocol as distributed orthogonal space-time block coded adaptive amplify-and-forward (DOSTBC-AAF). To improve the performance of DOSTBC-AAF, a distributed on-off power control (OOPC) rule applied to the relays is analytically derived and is proved to achieve full diversity order. The outage performance of DOSTBC-AAF with and without power control is evaluated. Our simulation results show that DOSTBC-AAF with all relays transmitting at full power (FP) achieves no diversity gain, whereas DOSTBC-AAF with OOPC achieves full diversity order. Correspondingly, at high signal-to-noise ratio (SNR), the diversity-multiplexing tradeoff (DMT) achieved by DOSTBC-AAF (OOPC) is analytically derived and is numerically shown to outperform DOSTBC-AAF (FP) significantly. © 2011 IEEE.
KW - amplify-and-forward (AF)
KW - Orthogonal space-time block codes (OSTBC)
KW - parallel relay network
KW - power control
UR - http://www.scopus.com/inward/record.url?scp=79959547063&partnerID=8YFLogxK
UR - https://www.scopus.com/record/pubmetrics.uri?eid=2-s2.0-79959547063&origin=recordpage
U2 - 10.1109/TWC.2011.040511.101285
DO - 10.1109/TWC.2011.040511.101285
M3 - RGC 21 - Publication in refereed journal
SN - 1536-1276
VL - 10
SP - 1895
EP - 1903
JO - IEEE Transactions on Wireless Communications
JF - IEEE Transactions on Wireless Communications
IS - 6
M1 - 5751587
ER -