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Uplink Transmit Power Control for Single-Carrier Grouped FDMA with Iterative Multiuser Detection

机译:具有迭代多用户检测的单载波分组FDMA的上行链路传输功率控制

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摘要

We consider an uplink power allocation scheme for single-carrier frequency-division multiple access (FDMA) with iterative multiuser detection, called single-carrier grouped FDMA (SC-GFDMA). SC-GFDMA is a non-orthogonal scheme in which several users share a single time-frequency resource. Hence, the uplink signal of a user can be regarded as both a signal and a source of interference. The signal power of each user should be sufficiently high to ensure reliable signal detection and sufficiently low to suppress inter-user interference. That is, the transmit power of each user should be adjusted appropriately to achieve high spectral efficiency. In this context, a power control method for an uplink SC-GFDMA system is proposed by analyzing the signal-to-interference-plus-noise ratios of users sharing each time-frequency resource. In particular, the uplink spectral efficiency is improved by limiting the transmit power of each user according to a criterion derived using a semi-analytic method called signal-to-noise ratio-variance density evolution. Simulation results demonstrate that the proposed method can significantly increase the spectral efficiency of the system, even with a considerably reduced total transmit power.
机译:我们考虑单载波频分多址(FDMA)与迭代多用户检测,称为单载波的上行链路功率分配方案进行分组FDMA(SC-GFDMA)。 SC-GFDMA是一个其中多个用户共享一个单独的时间 - 频率资源非正交方案。因此,用户的上行链路信号可被视为既是信号和干扰的来源。每个用户的信号功率应足够高,以确保可靠的信号检测和足够低的能够抑制用户间干扰。即,每个用户的发射功率应当进行适当调整,以实现高的频谱效率。在这种情况下,用于在上行链路SC-GFDMA系统的功率控制方法是通过分析用户共享每个时间 - 频率资源的信号与干扰加噪声比的提议。具体地,上行链路频谱效率是由根据标准限制每个用户的发射功率使用称为信噪比方差密度演化半解析方法导出改进。仿真结果表明,所提出的方法可以显著增加系统的频谱效率,即使有显着地降低总发送功率。

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