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Calibration algorithm for C-RAN BBU-RRH switching schemes

机译:C-RAN BBU-RRH开关方案的校准算法

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In face of the rapid growth of data traffic in cellular networks, Cloud Radio Access Network (C-RAN) architecture has been proposed as a solution to obtain better performance in terms of efficiency, expansibility, elasticity, stability and expenditure such as Capital Expenditure (CAPEX) and Operational Expenditure (OPEX). However, C-RAN demands a comprehensive evaluation model and accurate qualitative metrics for designing Base Band Unit (BBU) and Remote Radio Head (RRH) switching mechanism. Many literatures have studied an energy consumption model which discusses the optimized resource utilization and power saving compared with typical RAN architecture, but it seems that they did not consider how to guarantee the quality of service (QoS) that may require more limitation. This paper is the first to study the C-RAN to achieve the reasonable BBU-RRH switching with good QoS by considering two new factors, resource waste (ReW) and traffic backlog (TB), which directly affect system performance. New BBU-RRH switching model for C-RAN is proposed for finding out the loss indicated by ReW and TB. An algorithm that optimizes the QoS, resource utilization and power saving of system is derived and it contains two parameters called higher threshold (HT) and lower threshold (LT) that represent upper limit and lower limit of one BBU's resource utilization, respectively. And we provide a parameter Pu as the evaluation criteria for HT and LT. Numerical results validated theoretical analyses and revealed HT set to 0.85 and LT set to 0.35 as optimal configuration under the assumptions in this paper. Compared with existing literatures, this paper solves the calibration of HT and LT for C-RAN BBU-RRH switching schemes.
机译:面对蜂窝网络中数据流量的快速增长,已经提出了云无线电接入网络(C-RAN)架构作为在效率,可扩展性,弹性,稳定和支出方面获得更好的性能的解决方案(如资本支出)资本支出)和业务支出(OPEX)。然而,C-RAN要求为设计基带单元(BBU)和远程无线电头(RRH)切换机构设计综合评估模型和准确的定性度量。许多文献研究了能耗模型,该模型与典型的RAN架构相比讨论了优化的资源利用和省电,但似乎他们没有考虑如何保证可能需要更多限制的服务质量(QoS)。本文是第一个通过考虑两个新因素,资源废物(REW)和交通积压(TB)来实现具有良好QoS的合理BBU-RRH切换的C-RAN,直接影响系统性能。 C-RAN的新BBU-RRH开关模型是为了找出REW和TB所示的损失。导出了一种优化QoS,资源利用和省电的算法,它包含称为更高阈值(HT)和较低阈值(LT)的两个参数,该参数分别表示一个BBU资源利用率的上限和下限。我们提供参数PU作为HT的评估标准。数值结果验证了理论分析,并揭示了HT设置为0.85,并将其设置为0.35,作为本文的假设下的最佳配置。与现有文献相比,本文解决了HT和LT的C-RAN BBU-RRH开关方案的校准。

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