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Design aspects of short-range millimeter-wave networks: A MAC layer perspective

机译:短距离毫米波网络的设计方面:MAC层的观点

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Increased density of wireless devices, ever growing demands for extremely high data rate, and spectrum scarcity at microwave bands make the millimeter-wave frequencies an important player in future wireless networks. However, millimeter-wave communication systems exhibit severe attenuation, blockage, and deafness, and may need microwave networks for coordination and fall-back support. To compensate for high attenuation, mmWave systems exploit highly directional operation, which in turn substantially reduces the interference footprint. The significant differences between millimeter-wave networks and legacy communication technologies challenge the classical design approaches, especially at the MAC layer, which has received comparatively less attention than PHY and propagation issues in the literature so far. In this article, the MAC layer design aspects of short-range millimeter- wave networks are discussed. In particular, we explain why current mmWave standards fail to fully exploit the potential advantages of short-range mmWave technology, and argue for the necessity of new collision-aware hybrid resource allocation frameworks with on-demand control messages, the advantages of a collision notification message, and the potential of multihop communication to provide reliable mmWave connections.
机译:无线设备密度的提高,对极高数据速率的不断增长的需求以及微波频段的频谱稀缺性使毫米波频率成为未来无线网络的重要参与者。但是,毫米波通信系统表现出严重的衰减,阻塞和耳聋,并且可能需要微波网络进行协调和后备支持。为了补偿高衰减,mmWave系统采用了高度定向的操作,从而大大减少了干扰足迹。毫米波网络与传统通信技术之间的显着差异挑战了传统的设计方法,特别是在MAC层,与迄今为止的文献报道相比,PHY和传播问题受到的关注相对较少。本文讨论了短距离毫米波网络的MAC层设计方面。特别是,我们解释了为什么当前的mmWave标准不能充分利用短距离mmWave技术的潜在优势,并提出了具有按需控制消息的新型冲突感知混合资源分配框架的必要性,冲突通知的优势消息,以及多跳通信提供可靠的毫米波连接的潜力。

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