Resource allocation in underwater acoustic OFDMA downlink systems

Zhaobang Chen, Meiqin Liu, Senlin Zhang, Ronghao Zheng
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Abstract

It is important to effectively allocate resources in an underwater acoustic orthogonal frequency division multiple access (OFDMA) downlink system. Traditional resource allocation algorithms in radio usually have high computational complexity, which is not suitable for the fast time-varying underwater environment. In this paper, a rate adaptive resource allocation algorithm is investigated in which subcarrier and power allocation are carried out sequentially to reduce the process' computational complexity. During the subcarrier allocation, an algorithm based on a rate constrained by what satisfies the minimum rate request is proposed. Then by combining subcarrier allocation and channel state information, an approximate suboptimal power algorithm is proposed. Compared with the root-finding and linear methods, the proposed algorithm has a higher sum rate and relatively lower computational complexity under poor underwater acoustic communication (UAC).
水声OFDMA下行系统中的资源分配
在水声正交频分多址(OFDMA)下行系统中,如何有效地分配资源是一个重要的问题。传统的无线电资源分配算法通常具有较高的计算复杂度,不适合快速时变的水下环境。本文研究了一种速率自适应资源分配算法,该算法将子载波和功率分配顺序进行,以降低过程的计算复杂度。在子载波分配过程中,提出了一种基于满足最小速率请求的速率约束算法。然后结合子载波分配和信道状态信息,提出一种近似次优功率算法。与寻根和线性方法相比,该算法在水声通信较差的情况下具有更高的和速率和相对较低的计算复杂度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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