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Base Station switching and edge caching optimisation in high energy-efficiency wireless access network

机译:高能效无线接入网络中的基站交换和边缘缓存优化

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摘要

The improvement of the energy efficiency and the reduction of the latency are two of the main goals of the next generation of Radio Access Networks (RANs). In order to achieve the latter, Multi-access Edge Computing (MEC) is emerging as a promising solution: it consists of the placement of computing and storage servers, directly at each Base Station (BS) of these networks. For the RAN energy efficiency, the dynamic activation of the BSs is considered an effective approach. In this paper, the caching feature of the MEC paradigm is considered in a portion of an heterogeneous RAN, powered by a renewable energy generator system, energy batteries and the power grid, where micro cell BSs are deactivated in case of renewable energy shortage. The performance of the caching in the RAN is analysed through simulations for different traffic characteristics, as well as for different capacity of the caches and different spread of it. New user association policies are proposed, in order to totally exploit the MEC technology and reduce the network energy consumption. Simulation results reveal that, thanks to this technology and the proposed methodologies, the experienced delay and the energy consumption drop, respectively, up to 60% and 40%.
机译:能量效率的提高和延迟的减少是下一代无线电接入网络(RANS)的两个主要目标。为了实现后者,多访问边缘计算(MEC)被揭示为有希望的解决方案:它包括直接在这些网络的每个基站(BS)处的计算和存储服务器的放置。对于RAN能效,BSS的动态激活被认为是一种有效的方法。在本文中,MEC范例的缓存特征在一部分异构RAN的一部分中考虑,由可再生能量发生器系统,能量电池和电网供电,其中微电池BS在可再生能量短缺中被停用。通过模拟进行不同的流量特性,以及用于缓存的不同容量和不同的扩散,通过模拟进行分析。提出了新的用户协会策略,以完全利用MEC技术并降低网络能耗。仿真结果表明,由于这种技术和所提出的方法,经验丰富的延迟和能耗下降,分别高达60%和40%。

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