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Subcarrier allocation and bit loading algorithms for OFDMA-based wireless networks

机译:基于OFDMA的无线网络的子载波分配和位加载算法

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Orthogonal Frequency Division Multiple Access (OFDMA) is an emerging multiple access technology. In this paper, we consider OFDMA in the context of fixed wireless networks. This paper addresses the problem of assigning subcarriers and bits to point-to-point wireless links in the presence of cochannel interference and Rayleigh fading. The objective is to minimize the total transmitted power over the entire network while satisfying the data rate requirement of each link. We formulate this problem as a constrained optimization problem and present centralized algorithms. The simulation results show that our approach results in an efficient assignment of subcarriers and transmitter power levels in terms of the energy required for transmitting each bit of information. However, centralized algorithms require knowledge of the entire network topology and channel characteristics of every link. In a practical scenario, that would not be the situation and there is a need for distributed rate allocation algorithms. To address this need, we also present a distributed algorithm for allocating subcarriers and bits in order to satisfy the rate requirements of the links.
机译:正交频分多址(OFDMA)是一种新兴的多址技术。在本文中,我们将在固定无线网络中考虑OFDMA。本文解决了在存在同信道干扰和瑞利衰落的情况下为点对点无线链路分配子载波和比特的问题。目的是在满足每个链路的数据速率要求的同时,使整个网络上的总发射功率最小。我们将此问题表述为约束优化问题,并提出了集中式算法。仿真结果表明,我们的方法可以有效地分配副载波和发射机功率水平,这取决于传输信息的每一位所需的能量。但是,集中式算法需要了解整个网络拓扑和每个链路的信道特性。在实际情况中,情况并非如此,因此需要分布式速率分配算法。为了满足这一需求,我们还提出了一种分配子载波和比特的分布式算法,以满足链路的速率要求。

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