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首页> 外文期刊>IEEE Transactions on Signal Processing >Bit and Power Loading for OFDM-Based Three-Node Relaying Communications
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Bit and Power Loading for OFDM-Based Three-Node Relaying Communications

机译:基于OFDM的三节点中继通信的位和功率负载

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摘要

Bit and power loading (BPL) techniques have been intensively investigated for the single-link communications. In this paper, we propose a margin-adaptive BPL approach for orthogonal frequency-division multiplexing (OFDM) systems assisted by a single cooperative relay. This orthogonal half-duplex relay operates either in the selection detection-and-forward (SDF) mode or in the amplify-and-forward (AF) mode. Maximum-ratio combining is employed at the destination to attain the achievable distributed spatial diversity-gain. Assuming perfect channel knowledge is available at all nodes, the proposed approach is to minimize the transmit-power consumption at the target throughput (average number of bits/symbol) and the target link performance. With respect to various power-constraint conditions, we investigate two distributed resource-allocation strategies, namely flexible power ratio (FLPR) and fixed power ratio (FIPR). The FLPR strategy is proposed for scenarios without individual local power constraint. The source power and relay power have a flexible ratio for each subcarrier. The FIPR strategy is proposed for scenarios with individual local power constraint. The source power and relay power have a fixed ratio for each subcarrier. Computer simulations are carried out to evaluate the proposed approach with respect to the relay location. Significant performance improvement is observed in terms of both the symbol-error-rate and the transmit-power efficiency.
机译:对于单链路通信,已经对位和功率负载(BPL)技术进行了深入研究。在本文中,我们为单个协作中继辅助的正交频分复用(OFDM)系统提出了一种边缘自适应BPL方法。该正交半双工中继器在选择检测转发(SDF)模式或放大转发(AF)模式下运行。在目标位置采用最大比率组合以获得可实现的分布式空间分集增益。假设在所有节点上都具有完善的信道知识,则所提出的方法是在目标吞吐量(平均位数/符号)和目标链路性能下,将发射功率消耗降至最低。针对各种功率约束条件,我们研究了两种分布式资源分配策略,即灵活功率比(FLPR)和固定功率比(FIPR)。 FLPR策略是针对没有单独本地电源约束的方案提出的。对于每个子载波,源功率和中继功率具有灵活的比率。 FIPR策略是针对具有个别本地电源约束的方案提出的。对于每个子载波,源功率和中继功率具有固定的比率。进行计算机仿真以评估关于中继位置的建议方法。在符号错误率和发射功率效率方面都观察到了显着的性能改进。

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