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Traffic adaptation and energy saving potential of centralized radio access networks with coordinated resource allocation and consolidation

机译:具有协调的资源分配和整合功能的集中式无线接入网的流量自适应和节能潜力

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In this paper, we investigate traffic adaptation and energy saving potential of centralized radio access networks (C-RAN) with coordinated resource allocation and consolidation (CoRAC). The proposed CoRAC scheme comprises dynamic base-band unit-remote radio unit (BBU-RRU) mapping and cooperative dynamic downlink/uplink (DL/UL) reconfiguration. Specifically, in our proposed scheme, the logical connections between BBUs and RRUs are adaptively adjusted according the the traffic condition and interference patterns. Cell clusters are correspondingly formed, on which the developed cooperative reconfiguration method is conducted. With this setup,, the DL/UL configurations are no longer determined with respect to an individual cell, but are chosen in form of the cluster-specific configuration patterns (CPs) with optimized performance metrics. Our proposed CoRAC scheme is custom designed for time-division duplex (TDD) systems aiming at (1) asymmetric traffic adaptation with load balancing; and (2) cross-subframe co-channel interference (CCI) management. In addition to (1) and (2), the CoRAC is beneficial from the perspective of network energy savings. This is because by shutting down under-utilized BBUs and selecting appropriate DL/UL configurations for traffic adaptation, the power consumption of both BBUs and RRUs (in terms of per-subframe radiated transmission power) can be reduced. System level evaluation results are provided, which show that by employing our proposed scheme, remarkable performance improvements can be obtained relative to the existing methods, in terms of the packet throughput, traffic adaptation and power consumption.
机译:在本文中,我们研究了具有协调资源分配和整合(CoRAC)的集中式无线接入网(C-RAN)的流量自适应和节能潜力。提出的CoRAC方案包括动态基带单元-远程无线电单元(BBU-RRU)映射和协作动态下行链路/上行链路(DL / UL)重新配置。具体而言,在我们提出的方案中,BBU和RRU之间的逻辑连接是根据流量条件和干扰模式进行自适应调整的。相应地形成了细胞簇,在其上进行了开发的协同重构方法。通过此设置,不再针对单个小区确定DL / UL配置,而是以具有优化性能指标的特定于群集的配置模式(CP)的形式进行选择。我们提出的CoRAC方案是针对时分双工(TDD)系统定制设计的,旨在(1)具有负载平衡的非对称流量自适应; (2)跨子帧同信道干扰(CCI)管理。除了(1)和(2)之外,从网络节能的角度来看,CoRAC也是有益的。这是因为通过关闭未充分利用的BBU并选择适当的DL / UL配置进行业务适配,可以减少BBU和RRU的功耗(就每个子帧辐射的传输功率而言)。提供的系统级评估结果表明,通过采用我们提出的方案,相对于现有方法,在数据包吞吐量,流量自适应和功耗方面都可以获得显着的性能提升。

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