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Optimizing the spatial content caching distribution for device-to-device communications

机译:优化设备到设备通信的空间内容缓存分配

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We study the optimal geographic content placement problem for device-to-device (D2D) networks in which the content popularity follows the Zipf law. We consider a D2D caching model where the locations of the D2D users (caches) are modeled by a Poisson point process (PPP) and have limited communication range and finite storage. Unlike most related work which assumes independent placement of content, and does not capture the locations of the users, we model the spatial properties of the network including spatial correlation in terms of the cached content. We propose two novel spatial correlation models, the exchangeable content model and a Mate?rn (MHC) content placement model, and analyze and optimize the hit probability, which is the probability of a given D2D node finding a desired file at another node within its communication range. We contrast these results to the independent placement model, and show that exchangeable placement performs worse. On the other hand, MHC placement yields a higher cache hit probability than independent placement for small cache sizes.
机译:我们研究了设备到设备(D2D)网络的最佳地理内容放置问题,其中内容流行度遵循ZIPF法。我们考虑D2D缓存模型,其中D2D用户(缓存)的位置由泊松点处理(PPP)建模,并且具有有限的通信范围和有限存储。与具有独立放置内容的大多数相关工作不同,并且不捕获用户的位置,我们模拟网络的空间属性,包括在缓存内容方面的空间相关性。我们提出了两种新的空间相关模型,可交换内容模型和伴侣?RN(MHC)内容放置模型,分析和优化命中概率,这是给定D2D节点在其内部的另一个节点处找到所需文件的概率通信范围。我们将这些结果对比独立的展示位置模型,并显示可交换的放置更糟糕。另一方面,MHC放置比小缓存大小的独立放置产生更高的高速缓存命中概率。

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