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Spectrum efficiency maximization using primal-dual adaptive algorithm for distributed mobile devices caching over edge computing networks

机译:使用原始对偶自适应算法的频谱效率最大化,用于边缘计算网络上缓存的分布式移动设备

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The information-centric network techniques enable the in-network caching mechanism to cache the popular data contents in the mobile devices. Even though each mobile device's caching memory can be limited, caching in mobile devices offers the great potential of caching capability because of the massive mobile devices. Using caching in mobile devices, a mobile user can obtain its requested files from other mobile users through device-to-device (D2D) communication instead of the remote data-source provider, which significantly reduces the duplicate data traffics in the core network and through base stations. In this paper, we use the distributed mobile devices caching, where we randomly distribute and store the popular data contents in mobile devices of a cellular network. To avoid the interference among D2D communications, we partition the entire wireless cell into several squarelets and only activate the D2D connections within each squarelet. Then, we derive the expected number of mobile users in a squarelet and develop a primal-dual adaptive algorithm to maximize the overall spectrum efficiency for these mobile users with unknown wireless channel conditions. To evaluate the performance of our proposed adaptive algorithm, we compare our obtained spectrum efficiency with the spectrum efficiency under the optimal situation where all wireless channel conditions are given. Our proposed algorithm can guarantee the smallest ratio for the obtained spectrum efficiency under these two situations, showing the performance lower bound of our proposed adaptive algorithm.
机译:以信息为中心的网络技术使网络内缓存机制能够在移动设备中缓存流行的数据内容。即使可以限制每个移动设备的缓存内存,但由于庞大的移动设备,移动设备中的缓存提供了巨大的缓存功能潜力。使用移动设备中的缓存,移动用户可以通过设备到设备(D2D)通讯而不是远程数据源提供程序从其他移动用户获取其请求的文件,从而大大减少了核心网络中的重复数据流量,并通过基站。在本文中,我们使用分布式移动设备缓存,在该设备中,我们将流行数据内容随机分发并存储在蜂窝网络的移动设备中。为了避免D2D通信之间的干扰,我们将整个无线小区划分为几个小模块,并仅激活每个小模块内的D2D连接。然后,我们得出一个小方块中的移动用户的预期数量,并开发一种原始对偶自适应算法,以使具有未知无线信道条件的这些移动用户的整体频谱效率最大化。为了评估我们提出的自适应算法的性能,我们将获得的频谱效率与在给出所有无线信道条件的最佳情况下的频谱效率进行比较。在这两种情况下,我们提出的算法可以保证获得的频谱效率的最小比率,这说明了我们提出的自适应算法的性能下限。

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