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Effect of fading on maximum sum rate of Aloha

机译:衰落对Aloha最大和速率的影响

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摘要

In the literature, the network throughput of slotted Aloha with the capture model over fading channels has been found to be higher than e???1, the maximum network throughput of slotted Aloha with the collision model over ideal channel conditions. Such an improvement is often misinterpreted as the result of channel fading, which as we will demonstrate in this paper, indeed comes from the receiver. Specifically, based on the analytical framework proposed in our recent work [15], the optimal network throughput and sum rate performance of slotted Aloha with the capture model over Additive-White-Gaussian-Noise (AWGN) channels is characterized. Explicit expressions of the maximum network throughput and the maximum sum rate are obtained, and the comparison to Rayleigh fading channels shows that substantial gains in both the maximum network throughput and the maximum sum rate are observed in the AWGN case.
机译:在文献中,发现在衰落信道上具有捕获模型的带时隙Aloha的网络吞吐量高于e?1,即在理想信道条件下具有冲突模型的时隙Aloha的最大网络吞吐量。这种改进常常被误认为是信道衰落的结果,正如我们将在本文中演示的那样,信道衰落的确确实来自接收机。具体来说,基于我们最近的工作[15]中提出的分析框架,对具有加性-白-高斯噪声(AWGN)信道上的捕获模型的时隙Aloha的最佳网络吞吐量和总速率性能进行了表征。获得了最大网络吞吐量和最大和速率的明确表达式,并且与瑞利衰落信道的比较表明,在AWGN情况下,可以观察到最大网络吞吐量和最大和速率的显着提高。

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