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Optimal Power Distribution Algorithm for Energy Efficient IoT-NOMA Enabled Networks

机译:节能型IoT-NOMA启用网络的最佳功率分配算法

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The performance of a non-orthogonal multiple access (NOMA) system is evaluated with a successive interference cancellation (SIC) method at the receiving end to enhance the efficiency of spectral resources. This approach achieves high sum rate by enabling different users to perform their multiplexing function using the same subchannel. This paper examines the energy efficiency development in a downlink NOMA system with defective channel state information (CSI). The problem of energy efficient is foremost expressed as an optimization problem in a non-convex form with probability constraints to be transformed in solving the non-convex probability problem. This paper proposes iterative algorithms for power distribution optimization technique to improve energy efficient IoT-NOMA networks. The paper uses an Lagrange method to derive an optimal closed-form power distribution optimization expression. Simulation results validate the proposed technique with a prove of its superior performance over the existing system in terms of spectrum and energy efficiency.
机译:在接收端使用连续干扰消除(SIC)方法评估非正交多址(NOMA)系统的性能,以提高频谱资源的效率。通过使不同用户能够使用同一子信道执行其复用功能,该方法可实现较高的总和率。本文研究了具有不良信道状态信息(CSI)的下行链路NOMA系统中的能效发展。能量效率问题首先被表示为非凸形式的优化问题,该非凸形式具有在解决非凸概率问题时要转换的概率约束。本文提出了一种用于配电优化技术的迭代算法,以提高能源效率的IoT-NOMA网络。本文采用拉格朗日方法来推导最优的封闭形式功率分配优化表达式。仿真结果验证了该技术,并证明了其在频谱和能效方面优于现有系统的性能。

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