Abstract

In this paper, the performance of single-input-multiple-output (SIMO) networks which represented an uplink communication with additive generalized Gaussian noise (AWGGN) over non-homogeneous fading conditions such as η–μ, λ–μ, and κ–μ are analyzed. First, approximate error probability (Pe) expressions are presented for SIMO operating in η–μ, λ–μ, and κ–μ fading channels by using the probability density functions (PDF) of the instantaneous signal-to-noise ratio at the receiver side. Then, the asymptotic Pe expressions based on these PDF expressions are also derived. To these end, we show the Pe performances for different configurations of fading parameters, the number of receiver antennas, modulation schemes, and noise types. Finally, the exact simulations are provided to evaluate the accuracy of the proposed analytical frameworks for the considered system models.

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