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Optimized resource allocation strategy for a single-cell downlink AMC-OFDMA systems

机译:单小区下行AMC-OFDMA系统的优化资源分配策略

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Resource allocation for a downlink orthogonal frequency division multiple access (OFDMA) system ensures that capacity and throughput are maximized. In the literature, either channel coding is not considered or only a fixed code rate is specified. To overcome this problem, an optimized cross-layer resource allocation strategy that distributes the user, bit and power optimally has been proposed for adaptive modulation and coding (AMC) based single-cell downlink OFDMA systems. The proposed strategy, which is referred to as optimized user, bit and power allocation (OUBPA), considers throughput as a new cost function in terms of spectral efficiency and bit-error rate (BER) to allocate the available resources. An optimized approach is presented for solving the throughput maximization problem and simulation results demonstrating that the throughput performance of the OFDMA-AMC system using OUBPA strategy outperforms conventional techniques.
机译:下行链路正交频分多址(OFDMA)系统的资源分配可确保容量和吞吐量最大化。在文献中,要么不考虑信道编码,要么仅指定固定的码率。为了克服这个问题,已经提出了一种优化的跨层资源分配策略,该策略可以优化地分配用户,比特和功率,用于基于自适应调制和编码(AMC)的单小区下行链路OFDMA系统。所提出的策略被称为优化的用户,比特和功率分配(OUBPA),它在频谱效率和误码率(BER)方面将吞吐量视为一种新的成本函数,以分配可用资源。提出了一种解决吞吐量最大化问题的优化方法和仿真结果,证明使用OUBPA策略的OFDMA-AMC系统的吞吐量性能优于传统技术。

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