Previous work on maximum ratio combining (MRC) diversity has derived a closed-form cumulative distribution function (CDF), referred to as Lee's formula, for spatially correlated Rayleigh fading channels. It is usually believed that (due to its singularity) Lee's formula will result in large numerical error when two eigenvalues of a diversity antenna's covariance matrix are close to each other. This letter shows that the limit of Lee's formula converges to the true CDF as eigenvalues converge to each other, which implies that Lee's formula is robust in determining diversity gains of arbitrary antennas based on stochastic measurements
Abstract—This letter derives the asymptotic symbol error rate (SER) and outage probability of multip...
This letter derives the asymptotic symbol error rate (SER) and outage probability of multiple-input ...
New Results for the performance analysis of maximal ratio combining (MRC) using BPSK modulation in s...
Previous work on maximum ratio combining (MRC) diversity has derived a closed-form cumulative distri...
The performance of the maximum ratio combining method for the combining of antenna-diversity signals...
An analytical expression of the cumulative distribution function (cdf) of the normalized signal-to-n...
An analytical expression of the cumulative distribution function (cdf) of the normalized signal-to-n...
In this contribution, we investigate the impact of channel correlation on the ergodic capacity, capa...
Antenna diversity reception is one of the most powerful techniques to combat multipath fading in wir...
Conventionally, antenna arrays apply maximal-ratio combin-ing (MRC) directly to received signals. Ho...
In this paper, we show that the covariance-eigenvalue approach converges much faster than using cumu...
[[abstract]]For maximal ratio combining (MRC) diversity over correlated fading channels with Gaussia...
In this paper, we show that the covariance-eigenvalue approach converges much faster than using cumu...
The authors present a novel theoretical method to analyse the maximal ratio combining (MRC) receiver...
New Results for the performance analysis of maximal ratio combining (MRC) using BPSK and M-PSK modul...
Abstract—This letter derives the asymptotic symbol error rate (SER) and outage probability of multip...
This letter derives the asymptotic symbol error rate (SER) and outage probability of multiple-input ...
New Results for the performance analysis of maximal ratio combining (MRC) using BPSK modulation in s...
Previous work on maximum ratio combining (MRC) diversity has derived a closed-form cumulative distri...
The performance of the maximum ratio combining method for the combining of antenna-diversity signals...
An analytical expression of the cumulative distribution function (cdf) of the normalized signal-to-n...
An analytical expression of the cumulative distribution function (cdf) of the normalized signal-to-n...
In this contribution, we investigate the impact of channel correlation on the ergodic capacity, capa...
Antenna diversity reception is one of the most powerful techniques to combat multipath fading in wir...
Conventionally, antenna arrays apply maximal-ratio combin-ing (MRC) directly to received signals. Ho...
In this paper, we show that the covariance-eigenvalue approach converges much faster than using cumu...
[[abstract]]For maximal ratio combining (MRC) diversity over correlated fading channels with Gaussia...
In this paper, we show that the covariance-eigenvalue approach converges much faster than using cumu...
The authors present a novel theoretical method to analyse the maximal ratio combining (MRC) receiver...
New Results for the performance analysis of maximal ratio combining (MRC) using BPSK and M-PSK modul...
Abstract—This letter derives the asymptotic symbol error rate (SER) and outage probability of multip...
This letter derives the asymptotic symbol error rate (SER) and outage probability of multiple-input ...
New Results for the performance analysis of maximal ratio combining (MRC) using BPSK modulation in s...