Implementation of OFDM-based multi-relay multi-pair two-way communication network

N. Parveen, D. S. Venkateswarlu, B. Bhandari
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引用次数: 2

Abstract

With increasing demand for higher data rate, better quality of service, and higher network capacity, there is a migrat\ion from Single Input Single Output (SISO) antenna technology to a more promising Multiple Input Multiple Output (MIMO) antenna technology. On the other hand, Orthogonal Frequency Division Multiplexing (OFDM) technique has emerged as a very popular multi-carrier modulation technique to enhance the data rate of future broadband wireless communication systems. Applying these technologies with a wireless relay network where multiple user pairs conduct bidirectional communications via multiple relays based on OFDM transmission. The joint optimization of channel and relay assignment, including subcarrier pairing, subcarrier allocation as well as relay selection, for total throughput maximization is formulated as a combinatorial optimization problem. Using a graph theoretical approach, we solve the problem optimally in polynomial time by transforming it into a maximum weighted bipartite matching (MWBM) problem. Simulation studies are carried out to evaluate the network total throughput versus transmit power per node and the number of relay nodes.
基于ofdm的多中继多对双向通信网络的实现
随着对更高的数据速率、更好的服务质量和更高的网络容量的需求不断增加,从单输入单输出(SISO)天线技术向更有前途的多输入多输出(MIMO)天线技术迁移。另一方面,为了提高未来宽带无线通信系统的数据速率,正交频分复用(OFDM)技术作为一种非常流行的多载波调制技术应运而生。将这些技术应用于基于OFDM传输的多用户对通过多中继进行双向通信的无线中继网络。将信道和中继分配的联合优化,包括子载波配对、子载波分配和中继选择,表述为总吞吐量最大化的组合优化问题。利用图论方法,将该问题转化为最大加权二部匹配(MWBM)问题,在多项式时间内得到最优解。进行了仿真研究,以评估网络总吞吐量与每个节点的传输功率和中继节点的数量之间的关系。
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