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首页> 外文期刊>Wireless personal communications: An Internaional Journal >QoS-Driven Jointly Optimal Subcarrier Pairing and Power Allocation for Decode-and-Forward OFDM Relay Systems
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QoS-Driven Jointly Optimal Subcarrier Pairing and Power Allocation for Decode-and-Forward OFDM Relay Systems

机译:用于解码转发OFDM中继系统的QoS驱动的联合最优子载波配对和功率分配

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In this paper, we investigate the quality-of-service (QoS) driven subcarrier pairing and power allocation for two-hop decode-and-forward (DF) OFDM relay systems. By integrating the concept of effective capacity, our goal is to maximize the system throughput subject to a given delay-QoS constraint. Based on whether the destination can receive the signal transmitted by the source, we consider two scenarios, i.e. OFDM DF relay systems without diversity and OFDM DF relay systems with diversity, respectively. For OFDM DF relay systems without diversity, we demonstrate that the jointly optimal subcarrier pairing and power allocation can be implemented with two separate steps. For OFDM DF relay systems with diversity, we propose an iterative algorithm to achieve jointly optimal subcarrier pairing and power allocation. Furthermore, we find that the analytical results show different conclusions for the two types of OFDM relay systems. For OFDM relay systems without diversity, the optimal power allocation depend on not only the channel quality of subcarriers but also the delay QoS constraints, while the optimal subcarrier pairing just depends on the channel quality of subcarriers. For OFDM relay systems with diversity, both the optimal subcarrier pairing and power allocation depend on the channel quality of subcarriers and the delay QoS constraints. Simulation results show that our proposed scheme offers a superior performance over the existing schemes.
机译:在本文中,我们研究了两跳解码转发(DF)OFDM中继系统的服务质量(QoS)驱动的子载波配对和功率分配。通过整合有效容量的概念,我们的目标是在给定的延迟QoS约束下最大化系统吞吐量。根据目的地是否可以接收源发送的信号,我们考虑两种情况,即分别为无分集的OFDM DF中继系统和有分集的OFDM DF中继系统。对于没有分集的OFDM DF中继系统,我们证明可以通过两个单独的步骤实现联合最佳子载波配对和功率分配。对于具有分集的OFDM DF中继系统,我们提出了一种迭代算法来共同实现最佳子载波配对和功率分配。此外,我们发现对于两种类型的OFDM中继系统,分析结果显示出不同的结论。对于没有分集的OFDM中继系统,最佳功率分配不仅取决于子载波的信道质量,还取决于延迟QoS约束,而最佳子载波对则仅取决于子载波的信道质量。对于具有分集的OFDM中继系统,最佳子载波配对和功率分配都取决于子载波的信道质量和延迟QoS约束。仿真结果表明,本文提出的方案具有优于现有方案的性能。

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