基于OFDM的NOMA系统的功率分配:一种直流编程方法

P. Parida, Suvra Shekhar Das
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引用次数: 163

摘要

在这项工作中,我们考虑了基于正交频分复用的非正交多址系统的下行链路,其中使用叠加编码(SC)技术在同一子带(时频资源单元)上执行多个用户的传输。在接收端,用连续干扰消除(SIC)恢复SC编码符号。假设基站中存在完整的信道状态信息,我们提出(1)同信道用户集选择,(2)在每个子带上的复用用户之间分配功率,以及(3)跨子带分配功率以最大化系统的加权和速率。由于该问题是一个非凸组合优化问题,因此采用两步启发式求解。首先,针对每个子频段,提出了一种基于凸差分规划的贪婪用户选择和迭代次优功率分配算法。第二步,利用改进问题的直流结构,通过相同的迭代功率分配算法进行跨子带的功率分配。给出了仿真结果来评估和比较所提出算法的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power allocation in OFDM based NOMA systems: A DC programming approach
In this work, we have considered the downlink of an Orthogonal Frequency Division Multiplexing based Non Orthogonal Multiple Access system where transmission to multiple number of users is performed on the same sub-band (time-frequency resource unit) using Superposition Coding (SC) technique. At the receiver side, the SC coded symbols are recovered with Successive Interference Cancellation (SIC). Assuming that complete channel state information is present at the base station, we propose (1) co-channel user set selection, (2) power distribution among the multiplexed users on each sub-band, and (3) power allocation across the sub-bands to maximize the weighted sum rate of the system. Since the problem is a non-convex combinatorial optimization problem, two step heuristic solution is employed. In the first step, for each of the sub-bands, a greedy user selection and iterative sub-optimal power allocation algorithm based on Difference of Convex (DC) programming is presented. In the second step, exploiting the DC structure of the modified problem, power allocation across sub-band is carried out through the same iterative power allocation algorithm. Simulation results are provided to assess and compare the performance of the proposed algorithms.
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