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Energy efficiency and sum rate tradeoffs for massive MIMO systems with underlaid device-to-device communications

机译:具有底层设备间通信的大规模MIMO系统的能效和总和权衡

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摘要

In this paper, we investigate the coexistence of two technologies that have been put forward for the fifth generation (5G) of cellular networks, namely, network-assisted device-to-device (D2D) communications and massive MIMO (multiple-input multiple-output). Potential benefits of both technologies are known individually, but the tradeoffs resulting from their coexistence have not been adequately addressed. To this end, we assume that D2D users reuse the downlink resources of cellular networks in an underlay fashion. In addition, multiple antennas at the BS are used in order to obtain precoding gains and simultaneously support multiple cellular users using multiuser or massive MIMO technique. Two metrics are considered, namely the average sum rate (ASR) and energy efficiency (EE). We derive tractable and directly computable expressions and study the tradeoffs between the ASR and EE as functions of the number of BS antennas, the number of cellular users and the density of D2D users within a given coverage area. Our results show that both the ASR and EE behave differently in scenarios with low and high density of D2D users, and that coexistence of underlay D2D communications and massive MIMO is mainly beneficial in low densities of D2D users.
机译:在本文中,我们调查了第五代蜂窝网络(5G)提出的两种技术的共存,即网络辅助设备到设备(D2D)通信和大规模MIMO(多输入多输入)。输出)。两种技术的潜在好处是众所周知的,但是由于它们的共存而导致的权衡尚未得到充分解决。为此,我们假设D2D用户以底层方式重用蜂窝网络的下行链路资源。另外,使用BS处的多个天线以便获得预编码增益并同时使用多用户或大规模MIMO技术来支持多个蜂窝用户。考虑两个指标,即平均总和(ASR)和能源效率(EE)。我们得出易于处理且可直接计算的表达式,并研究ASR和EE之间的权衡取舍,它是给定覆盖范围内BS天线数量,蜂窝用户数量和D2D用户密度的函数。我们的结果表明,在D2D用户密度较低和较高的情况下,ASR和EE的行为均不同,并且底层D2D通信和大规模MIMO的共存主要有利于D2D用户的低密度。

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