TY - JOUR
T1 - MIMO multichannel beamforming
T2 - SER and outage using new eigenvalue distributions of complex noncentral Wishart matrices
AU - Jin, Shi
AU - Mckay, Matthew R.
AU - Gao, Xiqi
AU - Collings, Iain B.
PY - 2008/3
Y1 - 2008/3
N2 - This paper analyzes MIMO systems with multichannel beamforming in Ricean fading. Our results apply to a wide class of multichannel systems which transmit on the eigenmodes of the MIMO channel. We first present new closedform expressions for the marginal ordered eigenvalue distributions of complex noncentral Wishart matrices. These are used to characterize the statistics of the signal to noise ratio (SNR) on each eigenmode. Based on this, we present exact symbol error rate (SER) expressions. We also derive closed-form expressions for the diversity order, array gain, and outage probability. We show that the global SER performance is dominated by the subchannel corresponding to the minimum channel singular value. We also show that, at low outage levels, the outage probability varies inversely with the Ricean K-factor for cases where transmission is only on the most dominant subchannel (i.e. a singlechannel beamforming system). Numerical results are presented to validate the theoretical analysis.
AB - This paper analyzes MIMO systems with multichannel beamforming in Ricean fading. Our results apply to a wide class of multichannel systems which transmit on the eigenmodes of the MIMO channel. We first present new closedform expressions for the marginal ordered eigenvalue distributions of complex noncentral Wishart matrices. These are used to characterize the statistics of the signal to noise ratio (SNR) on each eigenmode. Based on this, we present exact symbol error rate (SER) expressions. We also derive closed-form expressions for the diversity order, array gain, and outage probability. We show that the global SER performance is dominated by the subchannel corresponding to the minimum channel singular value. We also show that, at low outage levels, the outage probability varies inversely with the Ricean K-factor for cases where transmission is only on the most dominant subchannel (i.e. a singlechannel beamforming system). Numerical results are presented to validate the theoretical analysis.
KW - Multichannel beamforming
KW - Multiple-input multiple-output systems
KW - Ricean fading
KW - Wishart matrices
UR - http://www.scopus.com/inward/record.url?scp=41849083097&partnerID=8YFLogxK
U2 - 10.1109/TCOMM.2008.060115
DO - 10.1109/TCOMM.2008.060115
M3 - Article
AN - SCOPUS:41849083097
SN - 0090-6778
VL - 56
SP - 424
EP - 434
JO - IEEE Transactions on Communications
JF - IEEE Transactions on Communications
IS - 3
ER -