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Interference Analysis for Highly Directional 60-GHz Mesh Networks: The Case for Rethinking Medium Access Control

机译:高度定向的60 GHz网状网络的干扰分析:重新考虑媒体访问控制的案例

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We investigate spatial interference statistics for multigigabit outdoor mesh networks operating in the unlicensed 60-GHz “millimeter (mm) wave” band. The links in such networks are highly directional: Because of the small carrier wavelength (an order of magnitude smaller than those for existing cellular and wireless local area networks), narrow beams are essential for overcoming higher path loss and can be implemented using compact electronically steerable antenna arrays. Directionality drastically reduces interference, but it also leads to “deafness,” making implicit coordination using carrier sense infeasible. In this paper, we make a quantitative case for rethinking medium access control (MAC) design in such settings. Unlike existing MAC protocols for omnidirectional networks, where the focus is on interference management, we contend that MAC design for 60-GHz mesh networks can essentially ignore interference and must focus instead on the challenge of scheduling half-duplex transmissions with deaf neighbors. Our main contribution is an analytical framework for estimating the collision probability in such networks as a function of the antenna patterns and the density of simultaneously transmitting nodes. The numerical results from our interference analysis show that highly directional links can indeed be modeled as pseudowired, in that the collision probability is small even with a significant density of transmitters. Furthermore, simulation of a rudimentary directional slotted Aloha protocol shows that packet losses due to failed coordination are an order of magnitude higher than those due to collisions, confirming our analytical results and highlighting the need for more sophisticated coordination mechanisms.
机译:我们研究了在未经许可的60 GHz“毫米(mm)波”频带中运行的千兆级室外网状网络的空间干扰统计数据。这种网络中的链路具有高度的方向性:由于载波波长小(比现有的蜂窝和无线局域网的载波波长小一个数量级),窄波束对于克服更高的路径损耗至关重要,可以使用紧凑的电子可控技术来实现天线阵列。方向性可以大大减少干扰,但同时也会导致“耳聋”,使使用载波侦听的隐式协调变得不可行。在本文中,我们为在这种情况下重新考虑媒体访问控制(MAC)设计提供了定量的案例。与现有的针对全向网络的MAC协议(侧重于干扰管理)不同,我们认为60 GHz网状网络的MAC设计实际上可以忽略干扰,而必须侧重于与聋人邻居调度半双工传输的挑战。我们的主要贡献是一个分析框架,用于根据天线方向图和同时发送节点的密度来估计此类网络中的碰撞概率。我们的干扰分析得出的数值结果表明,高定向链路的确可以建模为伪线,因为即使发射机密度很高,冲突概率也很小。此外,对基本定向时隙Aloha协议的仿真表明,由于协调失败而导致的数据包丢失比由于冲突而导致的数据包丢失高一个数量级,这证实了我们的分析结果,并强调了对更复杂协调机制的需求。

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