基于LS-DN算法的NOMA灾难通信用户匹配与功耗最小化

Chengcheng Zou Chengcheng Zou, Damin Zhang Chengcheng Zou, Linna Zhang Damin Zhang
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引用次数: 0

摘要

为解决有限时延灾难通信问题,结合差分进化算法(DE)和裸鼹鼠算法(NMR)的优点,提出了一种联合优化方案,即lsamvy和s型DE-NMR,即LS-DN。LS-DN将自适应特征的lsamvy飞行参数和s型选择因子(λ)应用于核磁共振相位工作者,并对DE算法中的交叉率(CR)和变异参数(F)进行优化,以获得平衡的勘探开发能力。利用LS-DN算法对用户聚合方案进行优化,对受灾用户进行有效聚合可以降低功耗,提高系统性能。为每个受灾户定义一个功率外部函数(power external function, Cfn)值,表示为不同聚合方案下每个受灾户的系统功耗值。通过分析非正交多址(NOMA)灾难通信的相关特性,为在不影响服务质量(QoS)的前提下最小化微基站功耗,证明了微基站功耗在很大程度上取决于用户聚合方式和功率分配。强调了联合优化对提高NOMA灾害通信系统性能的重要意义。仿真结果表明,LS-DN能够显著降低系统功耗。随着LS-DN的应用,NOMA系统的吞吐量比传统的正交多址(OMA)系统提高了65%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LS-DN Algorithm Based User Matching and Power Minimization in NOMA Disaster Communication
To address the limited and time delay disaster communication, a joint optimization scheme integrates the advantages of differential evolution algorithm (DE) and naked mole- rat algorithm (NMR), and proposes Lévy and sigmoidal DE-NMR, namely LS-DN. LS-DN applies the Lévy flight parameters of adaptive features and sigmoidal selection factor (λ) to the worker of NMR phase, and optimizes the crossover rate (CR) and variation parameter (F) in the DE algorithm, to obtain a balance the exploration and development capabilities. The proposed LS-DN algorithm is used to optimize the user aggregation scheme, since an effect aggregation of disaster victims can reduce power consumption and improve system performance. An value of power external function (Cfn ) is defined for each disaster victim, which is expressed as the system power consumption value for each disaster victim under different aggregation schemes. To minimize the microcell power without deteriorating the quality of service (QoS), it is demonstrated by analyzing the relevant characteristics of non-orthogonal multiple access(NOMA)disaster communication that the power consumption strongly depends on user aggregation method and power allocation. The significance of joint optimization for improving the performance of NOMA disaster communication systems is also emphasized. Simulation results show that LS-DN is able to significantly reduce the power consumption of the system. With the application of LS-DN, the throughput of NOMA system increases by 65% compared to the conventional orthogonal multiple access (OMA) system.  
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