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Robust wireless video multicast using distributed antennas-based IEEE 802.11n infrastructure

机译:使用基于分布式天线的IEEE 802.11n基础架构进行强大的无线视频多播

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摘要

Wireless Video Multicast is prone to suffer from frequent packet losses, resulting from the fact that the IEEE 802.11 standard does not use any mechanisms such as Acknowledgements and retransmissions, to combat the errors that are common in the dynamic wireless medium. However this paper shows that the infrastructure can be adapted to reduce the wireless errors, by using spatial diversity and spatial expansion to combat the wireless medium's random nature. This is obtained by adding a number of antennas placed equidistantly at the edge of the coverage area, using the same total transmit power that would be used with one transmit antenna. Moreover, this paper shows that since the IEEE 802.11n, the standard which facilitates the use of multiple antennas, states that the maximum number of antennas at any transceiver is four, two Access Points can be used to transmit the same data packet in orthogonal time slots to transmit good quality H.264 video resulting in all nodes experiencing an average Peak Signal to Noise Ratio greater than 36dB for MCS-5 and MCS-6 for a coverage area having radius of 60m. Since only two time slots are used, these results are obtained with a ½ code rate which is an improvement to the code rate used in current cooperative schemes.
机译:由于IEEE 802.11标准不使用诸如确认和重传之类的任何机制来应对动态无线介质中常见的错误,因此无线视频组播容易遭受频繁的分组丢失。但是,本文表明,可以通过使用空间分集和空间扩展来对抗无线介质的随机性,从而使基础结构适合减少无线错误。这是通过使用与一个发射天线相同的总发射功率,通过在覆盖区域的边缘处等距放置多个天线来获得的。此外,本文表明,由于促进使用多个天线的IEEE 802.11n标准规定,任何收发器上的天线最大数量为四个,因此可以使用两个接入点在正交时间内发送相同的数据包。用于传输高质量H.264视频的时隙,导致所有节点在半径为60m的覆盖范围内对于MCS-5和MCS-6均经历大于36dB的平均峰值信噪比。因为仅使用两个时隙,所以以1/2码率获得这些结果,这是当前合作方案中使用的码率的改进。

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