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首页> 外文期刊>IEEE transactions on mobile computing >Adaptive Relay Selection and Power Allocation for OFDM Cooperative Underwater Acoustic Systems
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Adaptive Relay Selection and Power Allocation for OFDM Cooperative Underwater Acoustic Systems

机译:OFDM协作水下声系统的自适应中继选择和功率分配

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The increasing use of relays in underwater acoustic (UWA) communications is a driving force to explore efficient techniques that can significantly improve the system performance. To fully exploit the benefits of cooperative systems, efficient management of resources including relays and power is required. In this paper, both optimal relay selection and power loading issues are investigated for an orthogonal frequency division multiplexing (OFDM) cooperative transmission over UWA channel. In our analysis, we consider amplify-and-forward (AF) relaying with perfect channel state information (CSI) at the source, relay, and destination nodes. Moreover, we assume sparse and frequency-selective Rician fading in the presence of colored Gaussian ambient noise. Unlike previous works on this topic, in our study, the power of noise is not identical for all subcarriers at both the relay and destination nodes. We solve two optimization problems that rely on the minimization of the bit error rate (BER) and maximization of the system capacity. In each problem, both optimal relay selection and power loading issues are addressed in two dependent phases. In the first phase, an unconstrained optimization problem is solved to determine the optimal relay out of multiple relays vertically located at different depths of water. We adopt all-subcarrier (AS) basis approach in our OFDM-based transmission model in which a single relay is engaged to transmit the entire OFDM block to the destination. In the second phase, after selecting the optimal relay, another optimization problem is solved to obtain the optimal power allocation. This is jointly done at both the source and relay nodes under total power constraint and fixed subcarrier rate. Extensive simulations are conducted to evaluate the performance of proposed algorithms under different scenarios.
机译:水下声(UWA)通信中继电器的使用不断增加,是探索可以显着提高系统性能的有效技术的动力。为了充分利用协作系统的优势,需要对包括继电器和电源在内的资源进行有效管理。本文针对UWA信道上的正交频分复用(OFDM)协作传输,研究了最佳中继选择和功率负载问题。在我们的分析中,我们考虑在源,中继和目标节点上使用完善的信道状态信息(CSI)进行放大转发(AF)中继。此外,我们假设存在有色高斯环境噪声时稀疏和频率选择性Rician衰落。与之前有关该主题的工作不同,在我们的研究中,中继节点和目标节点上所有子载波的噪声功率都不相同。我们解决了两个优化问题,这些问题依赖于误码率(BER)的最小化和系统容量的最大化。在每个问题中,最佳继电器选择和功率负载问题都在两个相关阶段得到解决。在第一阶段,解决了无约束的优化问题,以便从垂直位于不同水深的多个中继中确定最佳中继。我们在基于OFDM的传输模型中采用基于全副载波(AS)的方法,其中使用单个中继器将整个OFDM块传输到目的地。在第二阶段,选择最佳继电器后,解决另一个优化问题以获得最佳功率分配。在总功率约束和固定子载波速率下,这是在源节点和中继节点上共同完成的。进行了广泛的仿真,以评估所提出算法在不同情况下的性能。

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