Joint power and subcarrier allocation for layered multicast streaming with proportional rate ratio constraint in OFDMA wireless networks

Ying Wang, Xianfeng Liu, B. Lin, Fuwen Pang
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引用次数: 3

Abstract

This paper addresses the optimal multicast resource allocation problem in orthogonal frequency division multiple access (OFDMA) system, where the fine granularity scalability (FGS) video coding is exploited to perform source coding. With FGS, the multicast information is coded into base layer data and enhancement layer data, and there is a predefined proportional rate ratio between the transmission rate of the base layer and the enhancement layer so that an approximate playing progress can be maintained at the receiver. The multicast resource allocation problem is formulated as a mixed binary integer programming problem with the objective of maximizing the network total throughput while maintaining the required proportional rate ratio under a total transmit power constraint for the base station. The problem is solved by using Lagrangian dual decomposition method, resulting in an optimal joint subcarrier and power allocation algorithm with computational complexity being linear with the number of subcarriers. Numerical simulations are conducted to evaluate the performance of the proposed algorithm in terms of convergence and throughput. Simulation results show that the proposed optimal algorithm converges very fast and significantly outperforms the available suboptimal schemes.
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OFDMA无线网络中具有比例率约束的分层组播流联合功率和子载波分配
研究正交频分多址(OFDMA)系统中多播资源的最优分配问题,利用细粒度可扩展性(FGS)视频编码进行源编码。FGS将组播信息编码为基础层数据和增强层数据,并在基础层和增强层的传输速率之间预先设定一个比例比率,以便在接收端保持一个近似的播放进度。多播资源分配问题是一个混合二进制整数规划问题,其目标是在基站总发射功率约束下,使网络总吞吐量最大化,同时保持所需的比例速率比。利用拉格朗日对偶分解方法求解该问题,得到了一种计算复杂度与子载波数线性相关的最优联合子载波和功率分配算法。通过数值仿真,从收敛性和吞吐量两方面对所提算法的性能进行了评价。仿真结果表明,该算法收敛速度快,显著优于现有的次优方案。
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