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Self-organized beam scheduling as an enabler for coexistence in 5G unlicensed bands

机译:自组织波束调度作为5G免许可频段共存的促成因素

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摘要

In order to support user data-rates of Gbps and above in the fifth generation(5G)communication systems, udmillimetre-wave(mm-wave) communication is proposed as one of the most important enabling technologies. In this paper, we consider the spectrum bands shared by 5G cellular base stations (BS) and some existing networks, such as WiGig and proposed a method for spectrally efficient coexistence of multiple interfering BSs through adaptive self-organized beam scheduling. These BSs might use multiple radio access technologies belonging to multiple operators and are deployed in the unlicensed bands, such as 60GHz. Different from the recently emerging coexistence scenarios in the unlicensed 5GHz band,where the proposed methods are based on omni-directional transmission, beamforming needs to be employed in mm-wave bands to combat the high path loss problem. The proposed method is concerned with this new scenario of communication in the unlicensed bands where(a)beam-forming is mandatory to combat severe path loss, (b) without optimal scheduling of beams mutual interference could be severe due to the possibility of beam-collisions, (c)unlike LTE which uses time-frequency resource blocks, a new resource, i.e., the beam direction, is used as mandatory feature. We propose in this paper a novel multi-RAT coexistence mechanism where neighbouring 5G BSs, each serving their own associated users, schedule their beam configurations in a self-organized manner such that their own utility function, e.g. spectral efficiency, is maximized. The problem is formulated as a combinatorial optimization problem and it is shown via simulations that our proposed distributed algorithms yield a comparable spectral efficiency for the entire networks as that using an exhaustive search, which requires global coordination among coexisting RATs and also has a much higher algorithmic complexity.
机译:为了在第五代(5G)通信系统中支持Gbps以上的用户数据速率,建议将毫米波(mm-wave)通信作为最重要的使能技术之一。在本文中,我们考虑了5G蜂窝基站(BS)和一些现有网络(例如WiGig)共享的频带,并提出了一种通过自适应自组织波束调度在频谱上有效地共存多个干扰BS的方法。这些BS可能使用属于多个运营商的多种无线电接入技术,并且被部署在诸如60GHz的非许可频带中。与无执照的5GHz频带中最近出现的共存方案不同,在这种情况下,所提出的方法是基于全向传输的,因此需要在毫米波频带中使用波束成形来解决高路径损耗问题。所提出的方法与在免许可频段中的这种新通信场景有关,在这种情况下,(a)强制形成波束以应对严重的路径损耗,(b)没有最佳的波束调度,由于存在波束干扰的可能性,相互干扰会很严重。 (c)与使用时频资源块的LTE不同,新资源(即波束方向)被用作强制特征。我们在本文中提出了一种新颖的多RAT共存机制,其中每个各自为自己的关联用户提供服务的相邻5G BS以自组织方式调度其波束配置,以使其自身的效用函数(例如,频谱效率最大化。该问题被表述为组合优化问题,并且通过仿真显示,我们提出的分布式算法可为整个网络提供与使用穷举搜索相当的频谱效率,这需要在共存RAT之间进行全局协调,并且算法要高得多。复杂。

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