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Autonomous Relay for Millimeter-Wave Wireless Communications

机译:毫米波无线通信自主中继

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Millimeter-wave (mmWave) communication is the rising technology for next-generation wireless transmission. Benefited by its abundant bandwidth and short wavelength, mmWave is advanced in multi-gigabit transmittability and beamforming. In contrast, the short wavelength also makes mmWave easily blocked by obstacles. In order to bypass these obstacles, relays are widely needed in mmWave communications. Unmanned autonomous vehicles (UAVs), such as drones and self-driving robots, enable the mobile relays in real applications. Nevertheless, it is challenging for a UAV to find its optimal relay location automatically. On the one hand, it is difficult to find the location accurately due to the complex and dynamic wireless environment; on the other hand, most applications require the relay to forward data immediately, so the autonomous process should be fast. To tackle this challenge, we propose a novel method AutoRelay specialized for mmWave communications. In AutoRelay, the UAV samples the link qualities of mmWave beams while moving. Based on the real-time sampling, the UAV gradually adjusts its path to approach the optimal location by leveraging compressive sensing theory to estimate the link qualities in candidate space, which increases the accuracy and save the time. Performance results demonstrate that AutoRelay outperforms existing methods in achieving an accurate and efficient relay strategy.
机译:毫米波(mmWave)通信是下一代无线传输的新兴技术。凭借其丰富的带宽和短波长,mmWave在数千兆位的可传输性和波束成形方面是先进的。相反,短波长也使mmWave容易被障碍物阻挡。为了绕过这些障碍,毫米波通信中广泛需要继电器。无人机和自动驾驶机器人等无人驾驶自动驾驶汽车(UAV)使移动继电器在实际应用中成为可能。然而,对于无人机而言,自动找到其最佳中继位置是一项挑战。一方面,由于复杂而动态的无线环境,很难准确找到位置;另一方面,大多数应用程序要求中继器立即转发数据,因此自治过程应该很快。为了解决这一挑战,我们提出了一种专门针对毫米波通信的新颖方法AutoRelay。在AutoRelay中,UAV在移动时对毫米波光束的链接质量进行采样。在实时采样的基础上,无人机通过利用压缩感测理论来估计候选空间中的链路质量,逐渐调整其路径以接近最佳位置,从而提高了准确性并节省了时间。性能结果表明,在实现准确而有效的中继策略方面,AutoRelay优于现有方法。

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