Energy footprint reduction in 5G reconfigurable hotspots via function partitioning and bandwidth adaptation

N. Bartzoudis, Oriol Font-Bach, M. Miozzo, Carlos Donato, Pavel Harbanau, Manuel Requena, David López, Iñaki Ucar, A. A. Saloña, P. Serrano, Josep Mangues, M. Payaró
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引用次数: 4

Abstract

Cloud-based radio access networks (C-RAN) are expected to face important challenges in the forthcoming fifth generation (5G) communication systems. For this reason, more flexible C-RAN architectures have recently been proposed in the literature, where the radio communication stack is partitioned and placed across different RAN nodes to tackle the 5G capacity and latency requirements. In this paper, we show that this functional split also supports energy efficiency, especially when it is combined with bandwidth adaptation. To this aim, we have built a dynamic hotspot prototype, where the hardware-accelerated physical-layer is placed in the remote radio head, and higher software-based layers are placed in a server (either directly connected or remotely accessible). This setup allowed us to experimentally evaluate the power consumption of key hardware modules when adapting the bandwidth and the modulation and coding scheme. The real-time operation of the testbed allows further experimentation with different 5G use cases and the evaluation of other key performance indicators.
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通过功能划分和带宽适应减少5G可重构热点的能源足迹
基于云的无线接入网络(C-RAN)预计将在即将到来的第五代(5G)通信系统中面临重大挑战。出于这个原因,最近在文献中提出了更灵活的C-RAN架构,其中无线电通信堆栈被划分并放置在不同的RAN节点上,以解决5G容量和延迟要求。在本文中,我们表明这种功能分裂也支持能源效率,特别是当它与带宽适应相结合时。为此,我们构建了一个动态热点原型,其中硬件加速物理层放置在远程无线电头中,而基于软件的更高层放置在服务器中(直接连接或远程访问)。这种设置允许我们在适应带宽、调制和编码方案时实验性地评估关键硬件模块的功耗。测试平台的实时运行允许对不同5G用例进行进一步实验,并对其他关键性能指标进行评估。
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The 5G-Crosshaul Packet Forwarding Element pipeline: Measurements and analysis A testbed for flexible and energy-efficient resource management with virtualized LTE-A nodes Mobile network energy efficiency optimization in MIMO multi-cell systems Energy footprint reduction in 5G reconfigurable hotspots via function partitioning and bandwidth adaptation Design considerations for 5G mm-wave receivers
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