This paper considers the analysis of optimum combining systems in the presence of both co-channel interference and thermal noise. We address the cases where either the desired-user or the interferers undergo Rician fading. Exact expressions are derived for the moment generating function of the SINR which apply for arbitrary numbers of antennas and interferers. Based on these, we obtain expressions for the symbol error probability with M-PSK. For the case where the desired-user undergoes Rician fading, we also derive exact closed-form expressions for the moments of the SINR. We show that these moments are directly related to the corresponding moments of a Rayleigh system via a simple scaling parameter, which is investigated in detail. Numeri...
This paper derives the asymptotic SER and outage probability of MIMO optimum combining (OC) systems ...
Abstract—Optimum combining for space diversity reception is studied in digital cellular mobile radio...
The performance of the maximum ratio combining method for the combining of antenna-diversity signals...
This paper considers the analysis of optimum combining systems in the presence of both co-channel in...
This paper considers the analysis of optimum combining systems in the presence of both co-channel in...
This paper analyzes the performance of optimum combining systems in the presence of both co-channel ...
This paper analyzes the performance of optimum combining systems in the presence of both co-channel...
This paper analyzes the performance of optimum combining systems in the presence of both co-channel...
This paper analyzes the performance of optimum combining systems in the presence of both co-channel ...
This paper analyzes the performance of adaptive antenna arrays employing linear combining techniques...
This paper analyzes the performance of multiuser optimum combining systems. We consider the practica...
This paper analyzes the performance of multiuser optimum combining (OC) systems where the desired us...
none4noneM. R. McKay; A. Zanella; I. B. Collings; M. ChianiM. R. McKay; A. Zanella; I. B. Collings; ...
We analyze the problem of optimum combining with a single spatially correlated interferer in white G...
We analyze the performance of optimum combining in a general cochannel interference environment with...
This paper derives the asymptotic SER and outage probability of MIMO optimum combining (OC) systems ...
Abstract—Optimum combining for space diversity reception is studied in digital cellular mobile radio...
The performance of the maximum ratio combining method for the combining of antenna-diversity signals...
This paper considers the analysis of optimum combining systems in the presence of both co-channel in...
This paper considers the analysis of optimum combining systems in the presence of both co-channel in...
This paper analyzes the performance of optimum combining systems in the presence of both co-channel ...
This paper analyzes the performance of optimum combining systems in the presence of both co-channel...
This paper analyzes the performance of optimum combining systems in the presence of both co-channel...
This paper analyzes the performance of optimum combining systems in the presence of both co-channel ...
This paper analyzes the performance of adaptive antenna arrays employing linear combining techniques...
This paper analyzes the performance of multiuser optimum combining systems. We consider the practica...
This paper analyzes the performance of multiuser optimum combining (OC) systems where the desired us...
none4noneM. R. McKay; A. Zanella; I. B. Collings; M. ChianiM. R. McKay; A. Zanella; I. B. Collings; ...
We analyze the problem of optimum combining with a single spatially correlated interferer in white G...
We analyze the performance of optimum combining in a general cochannel interference environment with...
This paper derives the asymptotic SER and outage probability of MIMO optimum combining (OC) systems ...
Abstract—Optimum combining for space diversity reception is studied in digital cellular mobile radio...
The performance of the maximum ratio combining method for the combining of antenna-diversity signals...