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Cache-at-relay: energy-efficient content placement for next-generation wireless relays

机译:中继缓存:下一代无线中继的节能内容放置

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摘要

Uploading and downloading content have recently become one of the major reasons for the growth of Internet traffic volume. With the increasing popularity of social networking tools and their video upload/download applications, as well as the connectivity enhancements in wireless networks, it has become a second nature for mobile users to access on-demand content on-the-go. Urban hot spots, usually implemented via wireless relays, answer the bandwidth need of those users. On the other hand, the same popular contents are usually acquired by a large number of users at different times, and fetching those from the initial content source each and every time makes inefficient use of network resources. In-network caching provides a solution to this problem by bringing contents closer to the users. Although in-network caching has been previously studied from latency and transport energy minimization perspectives, energy-efficient schemes to prolong user equipment lifetime have not been considered. To address this problem, we propose the cache-at-relay (CAR) scheme, which utilizes wireless relays for in-network caching of popular contents with content access and caching energy minimization objectives. CAR consists of three integer linear programming models, namely, select relay, place content, and place relay, which respectively solve content access energy minimization, joint minimization of content access and caching energy, and joint minimization of content access energy and relay deployment cost problems. We have shown that place relay significantly minimizes the content access energy consumption of user equipments, while place content provides a compromise between the content access and the caching energy budgets of the network. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:最近,上载和下载内容已成为Internet流量增长的主要原因之一。随着社交网络工具及其视频上载/下载应用程序的日益普及,以及无线网络中的连接性增强,它已成为移动用户随时随地访问点播内容的第二天性。通常通过无线中继实现的城市热点可以满足这些用户的带宽需求。另一方面,通常,大量的用户在不同的时间获取相同的流行内容,并且每次都从初始内容源中获取相同的流行内容会导致网络资源的利用效率低下。通过使内容更靠近用户,网络内缓存提供了解决此问题的方法。尽管以前已经从等待时间和传输能量最小化的角度研究了网络内缓存,但尚未考虑使用节能方案来延长用户设备的寿命。为了解决此问题,我们提出了一种“中继时缓存”(CAR)方案,该方案利用无线中继对具有内容访问和缓存能量最小化目标的受欢迎内容进行网络内缓存。 CAR由三个整数线性规划模型组成,即选择中继,放置内容和放置中继,分别解决了内容访问能量最小化,内容访问和缓存能量联合最小化,内容访问能量联合最小化和中继部署成本问题。我们已经表明,位置中继可以最大程度地减少用户设备的内容访问能耗,而位置内容则可以在内容访问和网络的缓存能量预算之间做出折衷。版权所有(c)2015 John Wiley&Sons,Ltd.

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