Energy-efficient resource scheduling for NOMA systems with imperfect channel state information

Fang Fang, Haijun Zhang, Julian Cheng, Victor C. M. Leung
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引用次数: 26

Abstract

Non-orthogonal multiple access (NOMA) is considered as a promising technology for the fifth generation mobile communications. Energy-efficient resource allocation scheme is studied for a downlink NOMA wireless network, where multiple users can be multiplexed on the same subchannel by applying successive interference cancellation technique at the receivers. Most previous works focus on resource allocation for sum rate maximization with perfect channel state information (CSI) in NOMA systems. We formulate the energy-efficient resource allocation as a probabilistic mixed non-convex optimization problem by considering imperfect CSI. To solve this problem, we decouple it into user scheduling and power allocation sub-problems. We propose a low-complexity suboptimal user scheduling algorithm and a power allocation scheme to maximize the system energy efficiency under the maximum transmitted power limit, imperfect CSI and the outage probability constraints. Simulation results are provided to show that the proposed algorithms yield much improved energy efficiency performance over the conventional orthogonal frequency division multiple access scheme.
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信道状态信息不完全的NOMA系统的节能资源调度
非正交多址(NOMA)被认为是第五代移动通信的一种很有前途的技术。研究了一种下行NOMA无线网络的节能资源分配方案,该网络在接收端采用逐次干扰消除技术,可实现多用户在同一子信道上复用。以往的研究大多集中在基于完美信道状态信息(CSI)的NOMA系统中,为使总速率最大化而进行的资源分配。在考虑不完全CSI的情况下,将节能资源分配问题表述为一个概率混合非凸优化问题。为了解决这一问题,我们将其解耦为用户调度和功率分配子问题。在最大传输功率限制、不完全CSI和停电概率约束下,提出了一种低复杂度的次优用户调度算法和一种最大系统能效的功率分配方案。仿真结果表明,与传统的正交频分多址方案相比,所提算法的能效性能有很大提高。
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