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An adaptive rate-based congestion control with weighted fairness for large round trip time wireless access networks

机译:基于自适应速率的拥塞控制,具有大型往返时间无线接入网络的加权公平性

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In contrast with wired networks the time varying capacity in a wireless network makes the queue management more complicated than that in the wired ones. Moreover, any bit error in the acknowledgement packet sounds as the packet loss which may be misinterpreted as the congestion occurrence. Therefore, the window size will be reduced seriously which results in the resource wasting. In addition, large delay which is an ordinary aspect in a wireless network causes instability. On the other hand in a TCP connection the sources with small RTT value allocate the bottleneck link unfairly. The main contribution of our study is to design an adaptive robust rate-based queue management (ARRQM) based on the gradient projection internal model control for a large-delay wireless network to avoid the congestion contemporary with weighted fairness, maximum utilization and robustness against packet error rate and fading phenomena. To the authors' knowledge this is the first time that a queue management is designed for a wireless network with the mentioned advantages, simultaneously. The simulation results obtained via NS2 and Simulink confirm the analytical consequences.
机译:与有线网络相比,无线网络中的时间变化容量使得队列管理更复杂于有线中。此外,确认分组中的任何误码都是作为数据包丢失的声音,这可能被误解为拥塞事件。因此,将严重降低窗口大小,从而导致资源浪费。另外,在无线网络中是普通方面的大延迟导致不稳定。另一方面,在TCP连接中,带有Small RTT值的来源将不公平地分配瓶颈链路。我们的研究的主要贡献是基于大延迟无线网络的梯度投影内模控制来设计自适应稳健的速率 - 基于梯度的队列管理(ARRQM),以避免对加权公平性,最大利用率和对数据包的鲁棒性的拥塞时的拥塞错误率和衰落现象。对于作者的知识,这是第一次使用提到的优势设计队列管理,同时为无线网络设计。通过NS2获得的模拟结果和Simulink获得了分析后果。

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