This paper presents a performance analysis of dynamic channel allocation (DCA) based on the greedy approach (GA) for orthogonal frequency-division multiple access downlink systems over Rayleigh fading channels. The GA-based DCA achieves its performance improvement using multiuser diversity. We analyze the statistics of the number of allocable users that represents the multiuser diversity order at each allocation process. The derived statistics are then used to analyze the performance of GA-based DCA. The analysis results show that the number of subcarriers allocated to each user must be equal to achieve the maximum system performance based on outage probability and data throughput. cellular systems, the average channel gain of each user has a different value depended on the large-scale fading such as path loss. However, the effect of large-scale fading is reflected in the bandwidth assignment of each user, s m . So, this assumption is feasible for the channel allocation process.
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