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Optimized power allocation and spectrum sharing in device to device underlaying cellular systems

机译:设备到设备底层蜂窝系统中的优化功率分配和频谱共享

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Device to Device (D2D) underlaying cellular networks have drawn a lot of attention recently, in both Long Term Evolution (LTE) standardization as well as academic research, with its huge potential in increasing the system capacity. However, intra-cell interference is quite a challenging issue since D2D user equipment (DUE) may share the same resources with the traditional cellular user equipment (CUE). Moreover, due to the lack of convexity, globally optimal sharing strategy is generally unattainable. In this paper, we apply bipartite matching strategy from graph theory to optimize the resource allocation in D2D underlay network. Two different situations are considered in detail, namely optimal resource allocation with fixed power transmission (FPT) and optimal resource allocation with uplink power controlled transmission (PCT). Practical constraints such as minimum spectral efficiency and maximum transmit power limitations are also considered in the optimization. Simulations and analyses show that the proposed Bipartite Matching based Allocation (BMA) can improve the system capacity significantly comparing to those traditional methods.
机译:支持蜂窝网络的设备到设备(D2D)最近在长期演进(LTE)标准化和学术研究中都引起了广泛关注,并具有增加系统容量的巨大潜力。然而,由于D2D用户设备(DUE)可能与传统的蜂窝用户设备(CUE)共享相同的资源,因此小区内干扰是一个具有挑战性的问题。此外,由于缺乏凸性,通常无法实现全局最优共享策略。在本文中,我们采用图论的二分匹配策略来优化D2D底层网络中的资源分配。详细考虑了两种不同的情况,即具有固定功率传输(FPT)的最佳资源分配和具有上行链路功率控制传输(PCT)的最佳资源分配。优化过程中还考虑了诸如最小频谱效率和最大发射功率限制之类的实际约束。仿真和分析表明,与传统方法相比,所提出的基于两方匹配的分配(BMA)可以显着提高系统容量。

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