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Uncoordinated MAC for Adaptive Multi-Beam Directional Networks: Analysis and Evaluation

机译:自适应多光束方向网络的未开放MAC:分析和评估

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In this paper, we consider medium access control (MAC) policies for emerging systems that are equipped with fully digital antenna arrays which are capable of adaptive multi-beam directional communications. With this technology, a user can form multiple simultaneous transmit or receive beams, allowing for greater spatial reuse and higher network throughput. The enabling technology that we consider is the ability to use digital post-processing to form multiple receive beams in real-time without a priori knowledge of the time and angle-of-arrival of the transmission. We present a novel unslotted, uncoordinated ALOHA-like random access MAC policy for multi-beam directional systems that asymptotically achieves the capacity of the network. Such an approach is particularly useful for systems where propagation delay makes the overhead associated with any sort of coordination prohibitive. We also consider the impact of numerous practical considerations including power constraints, latency, and beamwidth on the performance of our MAC policy.
机译:在本文中,我们考虑对于新兴,配备全数字天线阵列,其能够自适应多波束定向通信的系统的介质访问控制(MAC)策略。利用这种技术,一个用户可以形成多个同时发射或接收波束,从而可获得更大的空间复用和更高的网络吞吐量。在有利的技术,我们考虑的是使用数字后处理,以形成多个接收实时梁没有时间的先验知识和角度的到达传输的能力。我们提出了一个新颖的无槽,不协调ALOHA状随机接入MAC为渐近达到网络的容量多波束定向系统策略。这样的方法对于其中传播延迟使得与任何种类协调望而却步相关联的开销系统特别有用。我们也考虑了许多实际的考虑,包括功率限制,延迟和波束宽度在我们的MAC政策的性能的影响。

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