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A Fuzzy Dropper for Proportional Loss Rate Differentiation under Wireless Network with a Multi-State Channel

机译:具有多状态信道的无线网络下比例损失率微分的模糊滴管

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The proportional loss rate differentiation (PLD) model was proposed to provide controllable and predictable loss rate for different classes of wired network connections. However, these algorithms cannot be directly applied to wireless networks, because of the location-dependent and time-varying wireless channel capacity. This paper proposes a novel packet dropper for fuzzy controlling of the proportional loss rate differentiation in a wireless network with multistate channel. The proposed dropper, fuzzy proportional loss rate dropper (FPLR), prefers to drop the small packets destined to a poor condition channel to improve the network performance. The loss rate debts of the poor channel will be compensated later to keep PLD. From simulation results, FPLR does achieve accurate loss rate proportion, lower queuing delay and loss rate, and higher throughput, compared with other methods in the wireless environment.
机译:提出了比例丢失率微分(PLD)模型,以为不同类别的有线网络连接提供可控制和可预测的丢失率。但是,由于与位置有关且随时间变化的无线信道容量,这些算法无法直接应用于无线网络。本文提出了一种新型的丢包丢弃器,用于对具有多状态信道的无线网络中的比例丢失率差异进行模糊控制。提出的丢弃器,模糊比例丢失率丢弃器(FPLR)倾向于丢弃发往不良信道的小数据包,以提高网络性能。较差渠道的损失率债务将在以后进行补偿,以保持PLD。从仿真结果来看,与无线环境中的其他方法相比,FPLR确实实现了准确的丢失率比例,更低的排队延迟和丢失率以及更高的吞吐量。

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