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Joint mode selection and power control for D2D underlaid cellular networks

机译:D2D嵌入式蜂窝网络的联合模式选择和功率控制

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Device-to-Device (D2D) communication is a new paradigm proposed in cellular networks, which promises several benefits to the network providers as well as end users. Firstly, it improves spectral efficiency (SE) of cellular networks by re-using the same frequency resources occupied by cellular users. In fact, mobile users cellular networks use high data rate services (e.g., video sharing, gaming, proximity aware social networking etc.), in which they could potentially be in range for direct communications (i.e., D2D). Secondly, D2D can enhance energy efficiency (EE), since the mobile terminals use less transmission power when communicating directly between each other. Thirdly, D2D communication can also reduce communication delay and increase network throughput, due to its short distance communication. This paper investigates the future challenges in order to improve the network throughput by proposing a joint mode selection (MS) and centralized power control (PC), which maximizes the sum rate of D2D links. To keep the interference under control, coverage probabilities are studied in this paper for both cellular and D2D users, while a signal-to-interferenceplus-noise ratio (SINR) threshold is maintained for more than one CUE. Based on the latter assumption, this paper provides two sufficient conditions to ensure the existence of the Pareto optimal power, that should be verified by both Cellular User Equipment (CUE) and D2D User Equipment (DUE) during the MS process. The mathematical expressions of these two sufficient conditions are proved. Then, the PC approach is deduced based on two derived sufficient conditions. Two joint MS and PC algorithms are proposed in this paper and compared in terms of coverage probability and total power consumption with a conventional algorithm for both CUE and DUE. (C) 2019 Elsevier B.V. All rights reserved.
机译:设备到设备(D2D)通信是蜂窝网络中提出的一种新范例,它有望为网络提供商和最终用户带来诸多好处。首先,它通过重新使用蜂窝用户占用的相同频率资源来提高蜂窝网络的频谱效率(SE)。实际上,移动用户蜂窝网络使用高数据速率服务(例如,视频共享,游戏,邻近感知社交网络等),其中它们可能在直接通信(即,D2D)的范围内。其次,D2D可以提高能源效率(EE),因为移动终端在彼此之间直接通信时使用较少的传输功率。第三,D2D通信由于其短距离通信,还可以减少通信延迟并增加网络吞吐量。本文提出了一种联合模式选择(MS)和集中式功率控制(PC),以最大程度地提高D2D链路的总速率,从而研究未来的挑战,以提高网络吞吐量。为了使干扰得到控制,本文针对蜂窝和D2D用户研究了覆盖概率,同时为多个CUE保留了信噪比(SINR)阈值。基于后一个假设,本文提供了两个足够的条件来确保帕累托最优功率的存在,这应该在MS过程中同时由蜂窝用户设备(CUE)和D2D用户设备(DUE)进行验证。证明了这两个充分条件的数学表达式。然后,基于两个导出的充分条件推导PC方法。本文提出了两种联合的MS和PC算法,并在覆盖概率和总功耗方面与CUE和DUE的常规算法进行了比较。 (C)2019 Elsevier B.V.保留所有权利。

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