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HOW TO MOBILIZE MMWAVE: A JOINT BEAM AND CHANNEL TRACKING APPROACH

机译:如何动员MMWave:联合光束和通道跟踪方法

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Maintaining reliable millimeter wave (mmWave) connections to many fast-moving mobiles is a key challenge in the theory and practice of 5G systems. In this paper, we develop a new algorithm that can jointly track the beam direction and channel coefficient of mmWave propagation paths using phased antenna arrays. Despite the significant difficulty in this problem, our algorithm can simultaneously achieve fast tracking speed, high tracking accuracy, and low pilot overhead. In static scenarios, this algorithm can converge to the minimum Cramér-Rao lower bound of beam direction with high probability. Simulations reveal that this algorithm greatly outperforms several existing algorithms. Even at SNRs as low as 5dB, our algorithm is capable of tracking a mobile moving at an angular velocity of 5.45 degrees per second and achieving over 95% of channel capacity with a 32-antenna phased array, by inserting only 10 pilots per second.
机译:维持可靠的毫米波(MMWAVE)连接到许多快速移动的手机是5G系统理论和实践中的关键挑战。在本文中,我们开发了一种新的算法,可以使用相控天线阵列共同跟踪MM波传播路径的光束方向和信道系数。尽管在此问题中具有显着困难,但我们的算法可以同时实现快速跟踪速度,高跟踪精度和低导架开销。在静态场景中,该算法可以收敛到具有高概率的光束方向的最小Cramér-Rao下限。仿真显示该算法大大优于现有算法。即使在低至5dB的SNR中,我们的算法也能够以每秒5.45度的角速度跟踪移动移动,并通过每秒插入10个导频,实现超过95%的通道容量。

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