SER analysis of scheduled TAS with MRC in the presence of non-identical channel estimation errors
D Lee, Y Noh - IEEE Communications Letters, 2015 - ieeexplore.ieee.org
D Lee, Y Noh
IEEE Communications Letters, 2015•ieeexplore.ieee.orgIn this letter, we present a performance analysis of scheduled transmit antenna selection
with maximal ratio combining (TAS-MRC) in the presence of non-identical channel
estimation errors. This letter derives the probability density function (PDF) of the
instantaneous effective signal-to-noise ratio for the scheduled TAS-MRC over Rayleigh
fading channels with non-identical channel estimation errors. Using this PDF, we derive
exact closed-form expressions for the scheduled TAS-MRC symbol error rate in the …
with maximal ratio combining (TAS-MRC) in the presence of non-identical channel
estimation errors. This letter derives the probability density function (PDF) of the
instantaneous effective signal-to-noise ratio for the scheduled TAS-MRC over Rayleigh
fading channels with non-identical channel estimation errors. Using this PDF, we derive
exact closed-form expressions for the scheduled TAS-MRC symbol error rate in the …
In this letter, we present a performance analysis of scheduled transmit antenna selection with maximal ratio combining (TAS-MRC) in the presence of non-identical channel estimation errors. This letter derives the probability density function (PDF) of the instantaneous effective signal-to-noise ratio for the scheduled TAS-MRC over Rayleigh fading channels with non-identical channel estimation errors. Using this PDF, we derive exact closed-form expressions for the scheduled TAS-MRC symbol error rate in the presence of non-identical channel estimation errors. The analysis results show that the order of diversity of scheduled TAS-MRC is improved in terms of transmit spatial diversity and multiuser diversity, whereas the received diversity is diminished by non-identical channel estimation errors, regardless of the modulation type.
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