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An Enhanced Link Adaptation Strategy for IEEE 802.11 Wireless Ad Hoc Networks

机译:IEEE 802.11无线Ad Hoc网络的增强型链路自适应策略

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The multi-rate capability provided by the IEEE 802.11 physical layer requires that the MAC layer adapts the transmission rate according to the receiver-side channel conditions. Many link adaptation schemes for a multi-hop wireless ad hoc network have been proposed so far where most of them probe the receiver's channel condition using RTS/CTS handshake and select the highest attainable data rate at which the receiver can decode successfully. A key problem with such schemes is that they do not consider the interference from hidden nodes in multi-hop and multi-rate environments, and hence, they may not work properly since the higher rate also increases the probability of interference. In this paper, we investigate the relation between interference and transmission rates and show that a transmitter can achieve higher performance by transmitting at the decreased rate in multi-hop ad hoc networks. Based on the observation, we present a new effective link adaptation scheme that integrates the receiver-based and senderbased techniques and determines the best transmission strategy taking the interference as well as the receiver's channel quality into consideration.
机译:IEEE 802.11物理层提供的多速率功能要求MAC层根据接收器侧信道条件调整传输速率。迄今为止,已经提出了用于多跳无线自组织网络的许多链路自适应方案,其中大多数方案都是使用RTS / CTS握手探测接收机的信道状况,并选择接收机可以成功解码的最高可达到的数据速率。这种方案的关键问题在于,它们没有考虑多跳和多速率环境中来自隐藏节点的干扰,因此,它们可能无法正常工作,因为更高的速率还会增加干扰的可能性。在本文中,我们研究了干扰与传输速率之间的关系,并表明,通过在多跳自组织网络中以降低的速率进行传输,发射机可以实现更高的性能。基于观察,我们提出了一种新的有效链路自适应方案,该方案将基于接收器和基于发送器的技术进行了集成,并在考虑干扰以及接收器的信道质量的情况下确定了最佳的传输策略。

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