Cache-aided wireless device-to-device (D2D) networks have demonstrated promising performance improvement for video distribution compared to conventional distribution methods. Understanding the fundamental scaling behavior of such networks is thus of paramount importance. However, existing scaling laws for multi-hop networks have not been found to be optimal even for the case of Zipf popularity distributions (gaps between upper and lower bounds are not constants); furthermore, there are no scaling law results for such networks for the more practical case of a Mandelbrot-Zipf (MZipf) popularity distribution. We thus in this work investigate the throughput-outage performance for cache-aided wireless D2D networks adopting multi-hop communications, with the MZipf popularity distribution for file requests and users distributed according to Poisson point process. We propose an achievable content caching and delivery scheme and analyze its performance. By showing that the achievable performance is tight to the proposed outer bound, the optimal scaling law is obtained. Furthermore, since the Zipf distribution is a special case of the MZipf distribution, the optimal scaling law for the networks considering Zipf popularity distribution is also obtained, which closes the gap in the literature.


翻译:了解这些网络的基本规模化行为是至关紧要的,然而,即使在Zipf版版面分布的情况下(上下界之间的空白并非常数),现有多点网络的扩展法律也并非最佳;此外,对于曼德尔布罗特-齐普夫(MZipf)版面分布这一更实际的案例中,这类网络没有相应的法律效果;因此,我们在这项工作中调查了采用多点式通信的缓存辅助无线D2D网络的吞吐率表现,而MZipf版面分布是根据Poisson点流程对文件请求和用户的普及性分布。我们建议一个可实现的内容缓存和交付计划,并分析其绩效。通过显示可实现的绩效与拟议的外部约束紧密相关,获得最佳的缩放法。此外,由于Zipf版分布是MZipf版版面分布的一个特例,因此也获得了考虑Zif版版版面分布的网络的最佳扩展法律。

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