Fuzzy Logic Based Power Allocation for Cooperative NOMA Systems

Melike Nur Durceylan, Ömer Faruk Gemici, Gülcihan Özdemir, Ibrahim Hökelek, H. A. Çırpan
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Abstract

Cooperative networks based on Non-Orthogonal Multiple Access (NOMA) is a promising radio access technology to cope with the challenging requirements of 5G and beyond systems. The power allocation in a cooperative NOMA system is a challenging task having a significant impact on the user perceived quality of service. In this paper, an adaptive power allocation technique is proposed using Fuzzy Logic (FL) for cooperative NOMA with imperfect successive interference cancellation (SIC). The FL system is trained to provide the power allocation coefficient by systematically varying signal-to-noise ratios (SNRs) at relays and users and randomly assigning all wireless channel coefficients. The power is allocated between the NOMA user pair within a resource block in such a way that the rate fairness is maximized and the system outage is minimized. The numerical results obtained by FL are close to the optimum outage probabilities and rate fairness results for all experiments when the number of relays and SNRs are varied. The results are promising since the computationally efficient FL can be successfully utilized at the run time for allocating power in a cooperative NOMA system.
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基于模糊逻辑的协同NOMA系统功率分配
基于非正交多址(NOMA)的协作网络是一种很有前途的无线接入技术,可以应对5G及以后系统的挑战性需求。协作式NOMA系统中的功率分配是一项具有挑战性的任务,对用户感知的服务质量有重要影响。提出了一种基于模糊逻辑(FL)的不完全连续干扰消除(SIC)协同多址互扰(NOMA)的自适应功率分配技术。FL系统经过训练,通过系统地改变中继和用户的信噪比(SNRs)以及随机分配所有无线信道系数来提供功率分配系数。在资源块内的NOMA用户对之间分配功率,以使速率公平性最大化和系统中断最小化的方式进行。当继电器个数和信噪比变化时,仿真结果接近于所有实验的最优中断概率和速率公平结果。计算效率高的FL可以在运行时成功地用于协同NOMA系统的功率分配,因此结果是有希望的。
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