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Combined Shared and Dedicated Resource Allocation for D2D Communication

机译:D2D通信的组合共享和专用资源分配

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Device-to-device (D2D) communication is an effective technology enhancing spectral efficiency and network throughput of contemporary cellular networks. Typically, the users exploiting D2D reuse the same radio resources as common cellular users (CUEs) that communicate through a base station. This mode is known as shared mode. Another option is to dedicate specific amount of resources exclusively for the D2D users in so- called a dedicated mode. In this paper, we propose novel combined share/dedicated resource allocation scheme enabling the D2D users to utilize the radio resources in both modes simultaneously. To that end, we propose a graph theory-based framework for efficient resource allocation. Within this framework, neighborhood relations between the cellular users and the D2D users and between the individual D2D users are derived to form graphs. Then, the graphs are decomposed into subgraphs to identify resources, which can be reused by other users so that capacity of the D2D users is maximized. The results show that the sum D2D capacity is increased from 1.67 and 2.5 times (depending on a density of D2D users) when compared to schemes selecting only between shared or dedicated modes.
机译:设备到设备(D2D)通信是一种有效的技术,可以提高当代蜂窝网络的频谱效率和网络吞吐量。通常,利用D2D的用户复用与通过基站进行通信的普通蜂窝用户(CUE)相同的无线电资源。此模式称为共享模式。另一种选择是在所谓的专用模式下专门为D2D用户专门分配特定数量的资源。在本文中,我们提出了新颖的共享/专用组合资源分配方案,该方案使D2D用户能够同时使用两种模式的无线电资源。为此,我们提出了一种基于图论的框架进行有效的资源分配。在该框架内,蜂窝用户与D2D用户之间以及各个D2D用户之间的邻域关系被导出以形成图形。然后,将这些图分解为子图以标识资源,其他用户可以重用这些资源,从而使D2D用户的容量最大化。结果表明,与仅在共享模式或专用模式之间进行选择的方案相比,D2D的总容量增加了1.67倍和2.5倍(取决于D2D用户的密度)。

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