基于二元粒子群优化的5G PDMA设计模式矩阵优化

Kun Lu, Sheng Wu, Hongwen Yang
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引用次数: 1

摘要

为满足5G系统的多样化需求,提出了模式分多址(PDMA)技术。为了减少误差传播,设计了不等分集的PDMA模式矩阵,这种设计依赖于发送端和接收端的联合设计。本文根据PDMA的特点,形成了一个离散优化问题。通过构造适应度函数来最大化PDMA系统的平均互信息(AMI),并引入二元粒子群优化(BPSO)算法来设计PDMA系统的模式矩阵。结果表明,优化后的PDMA方案可以获得较好的编码增益和分集增益。数值结果表明,优化后的PDMA方案可获得0.5 dB ~ 1.2 dB的性能增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimized design pattern matrix of PDMA based on binary particle swarm optimization for 5G
The Pattern division multiple access (PDMA) technique is proposed to meet diverse demands for the 5G system. The pattern matrix of PDMA with unequal diversity is designed to reduce error propagation, which relies on the joint design of transmission and receiver. In this paper, it forms a discrete optimization problem based on the characteristics of PDMA. We form the fitness function to maximize the average mutual information (AMI) of the PDMA system, and binary particle swarm optimization (BPSO) algorithm is introduced to design the pattern matrix of the PDMA system. It demonstrated that the optimized PDMA scheme could obtain better coding gain and diversity gain. The numerical results indicate that the optimized PDMA scheme brings about 0.5 dB-1.2 dB performance gains.
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