集中式RAN的BBU-RRH交换方案

S. Nanba, T. Warabino, S. Kaneko
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引用次数: 55

摘要

在过去几年里,由于智能手机和平板电脑的兴起,移动数据流量一直在快速增长。在业务量爆炸性增长的情况下,通过提高无线电资源的空间重用,小型小区部署是增加系统容量的最有效方法之一。然而,这给运营商带来了巨大的成本影响。集中式无线局域网(C-RAN)已经提出,通过将基带单元集中到中心侧,可以减少本地基站站点的土建工程和/或电力成本,从而具有降低网络成本的潜在能力。此外,C-RAN还可以通过基带单元(BBU)池功能进一步降低网络成本,其中集中的BBU资源可以根据流量负载动态分配给远程无线电头(RRHs)。本文提出了半静态和自适应的BBU-RRH切换方案,并通过仿真对其有效性进行了评价。在100个RRH的条件下,RRH相当于一个小区,并且在办公室(业务)区域具有典型的流量分布,我们证实,与传统小区部署相比,半静态和自适应方案的bbu数量可以分别减少26%和47%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BBU-RRH switching schemes for centralized RAN
Mobile data traffic has been increasing at a rapid pace over the past few years due to the rise of both smartphones and tablets. Small cell deployments are one of the most effective ways to increase system capacity by improving the spatial reuse of radio resources for the explosive increase in traffic loads. However, it leads to be a large cost impact for operators. Centralized RAN (C-RAN) has been proposed, which has the potential ability to reduce network costs due to reductions in civil work and/or electricity costs at local base station sites by centralizing baseband units to the center side. Moreover, C-RAN can be expected to further reduce network costs using baseband unit (BBU) pooling functions in which the centralized BBU resources can be dynamically allocated to remote radio heads (RRHs) depending on traffic load. This paper proposes semi-static and adaptive BBU-RRH switching schemes for C-RAN and evaluates their effectiveness through simulations. Under conditions of 100 RRHs, here, a RRH is comparable to a cell, and traffic distribution with a typical traffic profile in office (business) area, we confirmed that the number of BBUs can be reduced by 26% and 47% for semi-static and adaptive schemes, respectively, compared with conventional cell deployment.
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