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A layered-based resource allocation algorithm for multicast services in OFDMA system

机译:OFDMA系统中基于分层的组播服务资源分配算法

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In conventional multicast scheme (CMS), the total throughput of multicast group is constrained by the user with the worst channel quality. In order to overcome this problem of limited throughput, we consider an opportunistic multicast scheduling (OMS) based on layered coding. A novel subcarrier and bit allocation algorithm is exploited for targeting the maximum throughput (MT) of a whole multicast group while at the same time guaranteeing the quality of services (QoS) requirements of all users. In this paper, we propose an optimal resource allocation algorithm in the downlink of OFDMA-based wireless multicast group. A two-phase suboptimal algorithm is proposed to reduce the computational complexity. Simulation results show that the performance gap between the optimal algorithm and the proposed suboptimal algorithm is quite small. The proposed algorithm significantly outperforms CMS. Moreover, it obtains more throughput than another existing algorithm.
机译:在传统的多播方案(CMS)中,多播组的总吞吐量受到信道质量最差的用户的限制。为了克服吞吐量受限的问题,我们考虑基于分层编码的机会组播调度(OMS)。开发了一种新颖的子载波和比特分配算法,以针对整个多播组的最大吞吐量(MT)为目标,同时保证所有用户的服务质量(QoS)要求。本文提出了一种基于OFDMA的无线组播组下行链路的最优资源分配算法。提出了一种两阶段次优算法,以降低计算复杂度。仿真结果表明,最优算法与提出的次优算法之间的性能差距很小。所提出的算法明显优于CMS。而且,与其他现有算法相比,它获得了更高的吞吐量。

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