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Impact of device unavailability on the reliability of multicast transport in IEEE 802.11 networks

机译:设备不可用对IEEE 802.11网络中多播传输可靠性的影响

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Multicast transport is an efficient solution to deliver the same content simultaneously to many receivers. This transport mode is mainly used these days to deliver real-time video streams. However, multicast transmissions support over IEEE 802.11 networks does not provide any feedback policies, which implies a definite loss of missing packets. This impacts the reliability of the multicast transport and the application employing it. An alternative to improve the reliability of multicast streaming over 802.11 networks is to prevent packet losses. In this perspective, it is necessary to identify the loss causes and to perform the required prevention actions. It is well known that collisions and path loss are two fundamental sources of transmission failures. Their impact can be eliminated by means of collision prevention and data rate adaptation. However, several works show that the loss rate of multicast packets may be considerable even in collisions-free environments and using an appropriate transmission rate. Particularly they show that losses may have a bursty nature which does not correspond to the bit error rate model of the PHY layer as defined by the chipset manufacturers. Therefore, in this paper, we carry out a thorough investigation of the loss causes in wireless networks. We show that device unavailability may be the principal cause of the significant packet losses that occur and their bursty nature. Particularly, our results show that the CPU overload may incur a loss rate of 100%, and that the delivery ratio may be limited to 35% when the device is in the power save mode. (C) 2015 Elsevier B.V. All rights reserved.
机译:组播传输是一种有效的解决方案,可以将相同的内容同时交付给许多接收者。如今,这种传输模式主要用于传送实时视频流。但是,IEEE 802.11网络上的多播传输支持不提供任何反馈策略,这意味着一定会丢失数据包。这会影响多播传输的可靠性以及采用该方法的应用程序。提高802.11网络上多播流的可靠性的另一种方法是防止数据包丢失。从这个角度出发,有必要找出损失原因并采取必要的预防措施。众所周知,冲突和路径损耗是传输失败的两个基本原因。可以通过防冲突和数据速率适配来消除它们的影响。但是,一些工作表明,即使在无冲突的环境中并使用适当的传输速率,多播数据包的丢失率也可能相当可观。特别是,它们显示出损耗可能具有突发性,该突发性与芯片组制造商定义的PHY层的误码率模型不对应。因此,在本文中,我们对无线网络中的丢失原因进行了深入研究。我们表明,设备不可用可能是造成大量数据包丢失及其突发性质的主要原因。特别是,我们的结果表明,CPU过载可能会导致100%的丢失率,并且当设备处于节能模式时,交付率可能会限制为35%。 (C)2015 Elsevier B.V.保留所有权利。

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