TY - GEN
T1 - Transmission capacity of wireless ad hoc network with non-parametric linear MMSE receiver
AU - Lee, Byungju
AU - Park, Sunho
AU - Shim, Byonghyo
PY - 2012
Y1 - 2012
N2 - Recent works on ad hoc network study have shown that achievable throughput can be made to scale linearly with the number of receive antennas even if the transmitter has only a single antenna. In this paper, we put forth an approach achieving linear scaling of the transmission capacity in the practical ad hoc network without loss of transmission efficiency. The key feature to make our approach effective is to exploit the autocorrelation of the received signal for the MMSE receiver. From the transmission capacity analysis as well as numerical simulations, we show that the proposed non-parametric linear MMSE receiver brings substantial performance gain over existing multiple receive antenna algorithms.
AB - Recent works on ad hoc network study have shown that achievable throughput can be made to scale linearly with the number of receive antennas even if the transmitter has only a single antenna. In this paper, we put forth an approach achieving linear scaling of the transmission capacity in the practical ad hoc network without loss of transmission efficiency. The key feature to make our approach effective is to exploit the autocorrelation of the received signal for the MMSE receiver. From the transmission capacity analysis as well as numerical simulations, we show that the proposed non-parametric linear MMSE receiver brings substantial performance gain over existing multiple receive antenna algorithms.
UR - http://www.scopus.com/inward/record.url?scp=84860427746&partnerID=8YFLogxK
U2 - 10.1109/ITA.2012.6181806
DO - 10.1109/ITA.2012.6181806
M3 - Conference contribution
AN - SCOPUS:84860427746
SN - 9781467314725
T3 - 2012 Information Theory and Applications Workshop, ITA 2012 - Conference Proceedings
SP - 168
EP - 171
BT - 2012 Information Theory and Applications Workshop, ITA 2012 - Conference Proceedings
T2 - 2012 Information Theory and Applications Workshop, ITA 2012
Y2 - 5 February 2012 through 10 February 2012
ER -