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Double iterative waterfilling for sum rate maximization in multicarrier NOMA systems

机译:双迭代注水,在多载波NOMA系统中实现总速率最大化

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This paper investigates the subcarrier and power allocation for the downlink of a multicarrier non-orthogonal multiple access (MC-NOMA) system. A three-step algorithm is proposed to deal with the sum rate maximization problem. In Step 1, we assume that each user can use all the subcarriers simultaneously and apply the synchronous iterative waterfilling algorithm (SIWA) to obtain a power vector for each user. In Step 2, subcarriers are assigned to users by a heuristic greedy method based on the achieved power allocation result of Step 1. In Step 3, SIWA is used once again to further improve the system performance with the obtained subcarrier assignment result of Step 2. The convergence of SIWA in Step 3 is proved when the number of multiplexed users is no more than two. Since SIWA is applied twice, we call our three-step method Double Iterative Waterfilling Algorithm (DIWA). Numerical results show that the proposed DIWA achieves comparable performance to an existing near-optimal solution but with much lower time complexity.
机译:本文研究了多载波非正交多路访问(MC-NOMA)系统的下行链路的子载波和功率分配。提出了一种三步算法来解决求和率最大化问题。在步骤1中,我们假设每个用户可以同时使用所有子载波,并应用同步迭代注水算法(SIWA)来获得每个用户的功率矢量。在步骤2中,基于获得的步骤1的功率分配结果,通过启发式贪婪方法将子载波分配给用户。在步骤3中,再次使用SIWA,通过步骤2获得的子载波分配结果进一步提高系统性能。当多路复用用户数不超过两个时,证明了步骤3中SIWA的收敛性。由于两次应用了SIWA,因此我们将三步法称为双重迭代注水算法(DIWA)。数值结果表明,所提出的DIWA具有与现有的近最佳解决方案相当的性能,但时间复杂度低得多。

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