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Adaptive learning based directional MAC protocol for millimeter wave (mmWave) wireless networks

机译:毫米波(mmWave)无线网络的基于自适应学习的定向MAC协议

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Directional antennas are used to counter the increased path loss at millimeter wave (mmWave) frequencies (beyond 30 GHz). Usage of directional antennas imply lack of channel sensing on the part of various network nodes. Consequently coordination among various network nodes becomes critical for efficient network operation. In this paper we propose the adaptive learning directional medium access control (AL-DMAC) protocol based on reinforcement learning, to facilitate implicit coordination among various nodes. Our simulation results demonstrate that the AL-DMAC protocol along with a suitably chosen neighbor discovery mechanism yields higher network throughput than both the naive directional slotted ALOHA (DSA) protocol and the memory guided directional medium access control (MD-MAC) protocol. Further the AL-DMAC protocol and the MD-MAC protocol have comparable performance in terms of fairness, measured in terms of the Jain's fairness index.
机译:定向天线用于抵消毫米波(mmWave)频率(超过30 GHz)下路径损耗的增加。定向天线的使用意味着在各个网络节点上缺乏信道感测。因此,各种网络节点之间的协调对于有效的网络操作变得至关重要。本文提出了一种基于强化学习的自适应学习定向媒体访问控制(AL-DMAC)协议,以促进各个节点之间的隐式协调。我们的仿真结果表明,与朴素的定向时隙ALOHA(DSA)协议和内存导向的定向媒体访问控制(MD-MAC)协议相比,AL-DMAC协议以及适当选择的邻居发现机制产生的网络吞吐量更高。此外,以Ja那教的公平性指数衡量,AL-DMAC协议和MD-MAC协议在公平性方面具有可比的性能。

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