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Energy-aware caching and collaboration for green communication systems

机译:绿色通信系统的能量感知缓存与协作

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Social networks and mobile applications tend to enhance the need for high-quality content access. To meet the growing demand for data services in 5G cellular networks, it is important to develop effective content caching and distribution techniques, to reduce redundant data transmission and thereby improve network efficiency significantly. It is anticipated that energy harvesting and self-powered Small Base Stations' (SBS) are the rudimentary constituents of next-generation cellular networks. However, uncertainties in harvested energy are the primary reasons to opt for energy-efficient (EE) power control schemes to reduce SBS energy consumption and ensure the quality of services for users. Using edge collaborative caching, such EE design can also be achievable via the use of the content cache, decreasing the usage of capacity limited SBSs backhaul and reducing energy utilisation. Renewable energy (RE) harvesting technologies can be leveraged to manage the huge power demands of cellular networks. To reduce carbon footprint and improve energy efficiency, we tailored a more practical approach and propose green caching mechanisms for content distribution that utilise the content caching and renewable energy concept. Simulation results and analysis provide key insights that the proposed caching scheme brings a substantial improvement regarding content availability, cache storage capacity at the edge of cellular networks, enhances energy efficiency, and increases cache collaboration time up to 24%. Furthermore, self-powered base stations and energy harvesting are an ultimate part of next-generation wireless networks, particularly in terms of optimum economic sustainability and green energy in developing countries for the evolution of mobile networks.
机译:社交网络和移动应用程序倾向于提高高质量内容访问的需求。为了满足5G蜂窝网络中对数据服务的需求不断增长,重要的是要开发有效的内容缓存和分配技术,以减少冗余数据传输,从而显着提高网络效率。预计能量收集和自动的小型基站(SBS)是下一代蜂窝网络的基本成分。然而,收获能量的不确定性是选择节能(EE)电源控制方案的主要原因,以降低SBS能源消耗,并确保用户服务质量。使用边缘协作缓存,这种EE设计也可以通过使用内容缓存来实现,降低容量有限的SBSS回程和降低能量利用的使用。可以利用可再生能源(RE)采伐技术来管理蜂窝网络的巨大电力需求。为了减少碳足迹并提高能源效率,我们量身定制了更实用的方法,并提出了利用内容缓存和可再生能源概念的内容分布的绿色缓存机制。仿真结果和分析提供了拟议的缓存方案为内容可用性提高了大量改进的关键见解,蜂窝网络边缘缓存存储容量增强了能效,并将高速缓存协作时间提高到24%。此外,自我支持的基站和能量收集是下一代无线网络的最终部分,特别是在发展中国家的最佳经济可持续性和绿色能源方面,用于移动网络的演变。

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