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Low-complexity user pairing and power allocation algorithm for 5G cellular network non-orthogonal multiple access

机译:5G蜂窝网络非正交多址接入的低复杂度用户配对和功率分配算法

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摘要

Non-orthogonal multiple access (NOMA) is a candidate technology for the 5th generation cellular networks to reduce the big gap between network capacity and fast growing traffic. It applies superposition coding in transmitters and successive interference cancellation at the receivers to cancel intra-cell interference. The same frequency resource can be allocated simultaneously to multiple intra-cell users, holding large potentials on improving network performance. A major technical challenge of NOMA is on user pairing and power allocation (UPPA). Most of existing UPPA algorithms are based on exhaustive search with extensive computation. A new algorithm, which has the lowest computation complexity achievable for NOMA UPPA is proposed. The main idea is to pair the first users having the highest proportional fairness priority coefficient with potential second users having the highest channel conditions. A fixed power allocation strategy is adopted. The proposed algorithm is significantly faster than existing algorithms without sacrificing NOMA throughput gain.
机译:非正交多路访问(NOMA)是第五代蜂窝网络的一种候选技术,可以减少网络容量和快速增长的流量之间的巨大差距。它在发射机中应用叠加编码,并在接收机中应用相继的干扰消除,以消除小区内干扰。可以将相同频率的资源同时分配给多个小区内用户,在提高网络性能方面具有巨大潜力。 NOMA的主要技术挑战在于用户配对和功率分配(UPPA)。现有的大多数UPPA算法都是基于详尽搜索和大量计算。提出了一种新算法,该算法具有最低的计算复杂度,可用于NOMA UPPA。主要思想是将具有最高比例公平优先级系数的第一用户与具有最高信道条件的潜在第二用户配对。采用固定功率分配策略。所提出的算法在不牺牲NOMA吞吐量增益的情况下比现有算法快得多。

著录项

  • 作者

    He, Jianhua; Tang, Zuoyin;

  • 作者单位
  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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