Power-efficient beam sweeping for initial synchronization in mm-Wave wireless networks

I. Guerreiro, J. Axnäs, D. Hui, C. Cavalcante
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引用次数: 1

Abstract

This paper addresses the problem of initial synchronization of users in an indoor mm-Wave scenario. With the use of a massive number of antenna elements at access nodes, the resulting beams have narrow beam width. However, the transmission of individual narrow beams may cause poor coverage in some areas as the energy is concentrated over the direction of their main lobes. To cope with that, a beam sweep procedure using phased arrays is adopted. Access nodes simultaneously transmit individual beams until a certain area of interest is thoroughly scanned. Then, distant points are covered as each beam can radiate energy using an individual transmit power. The goal is to find the minimum power setting by adjusting the individual power levels so that users over the scanned area can observe a minimum received power level. Due to the combinatorial nature and high dimensionality, this paper describes a non-iterative two-stage algorithm to perform the beam sweeping with moderate complexity, which is compared with a baseline iterative selfish algorithm. Preliminary simulation results indicate that the two-stage algorithm may perform at least equally well as the baseline approach in terms of total transmit power, consuming about 7% less power in the used simulation setup, and without suffering from any convergence issue.
毫米波无线网络初始同步的高能效波束扫描
本文研究了室内毫米波场景下用户的初始同步问题。由于在接入节点上使用了大量的天线单元,因此产生的波束具有较窄的波束宽度。然而,由于能量集中在其主波瓣的方向上,单个窄波束的传输可能在某些区域造成较差的覆盖。为了解决这一问题,采用了相控阵的波束扫描方法。接入节点同时发送单个波束,直到对某个感兴趣的区域进行彻底扫描。然后,距离较远的点被覆盖,因为每个光束可以使用单独的发射功率辐射能量。目标是通过调整单个功率水平来找到最小功率设置,以便扫描区域的用户可以观察到最小接收功率水平。由于波束扫描的组合性和高维性,本文提出了一种非迭代的两阶段算法来进行波束扫描,该算法具有中等的复杂度,并与基线迭代自算法进行了比较。初步的仿真结果表明,两阶段算法在总发射功率方面的表现至少与基线方法一样好,在使用的仿真设置中消耗的功率减少了约7%,并且没有任何收敛问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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