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Adaptive framework for rate adaptation in 802.11n wireless link

机译:802.11n无线链路中速率自适应的自适应框架

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Amendments in 802.11n have opened doors to variety of methods to stretch data rates up to 600Mbps. These include spatial diversity, spatial multiplexing both feasible due to MIMO channels, frame aggregation, block acknowledgements, smaller guard interval, channel bonding etc. This paper discusses adaptive framework using of these techniques for efficient rate adaptation of 802.11n. Rate adaptation algorithm have been designed to achieve various objective such as high throughput, low packet error rate, low delay and jitter etc. The paper argues use of SNR to improve throughput depending on the channel condition. SNR is coarse indicator of the rate to be considered for next transmission. The actual rate could be finalized by probing. An algorithm also needs to differentiate between losses due to fading and collision. Authors suggest use of block acknowledgements and RTS/CTS for the same.
机译:802.11n的修订为各种方法打开了大门,这些方法可以将数据速率扩展到600Mbps。这些包括空间分集,由于MIMO信道而可行的空间复用,帧聚合,块确认,较小的保护间隔,信道绑定等。本文讨论了使用这些技术实现802.11n高效速率自适应的自适应框架。已经设计了速率自适应算法以实现各种目标,例如高吞吐量,低分组错误率,低延迟和抖动等。本文认为,根据信道条件,使用SNR来提高吞吐量。 SNR是下一次传输要考虑的速率的粗略指示。实际汇率可以通过调查确定。算法还需要区分由于衰落和碰撞而造成的损失。作者建议使用块确认和RTS / CTS。

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