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WSR Maximized Resource Allocation in Multiple DF Relays Aided OFDMA Downlink Transmission

机译:WSR最大化了多个DF中继中的资源分配,以辅助OFDMA下行链路传输

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This paper considers the weighted sum rate (WSR) maximized resource allocation (RA) constrained by a system sum power in an orthogonal frequency division multiple access (OFDMA) downlink transmission system assisted by multiple decode-and-forward (DF) relays. In particular, multiple relays may cooperate with the source for every relay-aided transmission. A two-step algorithm is proposed to find the globally optimum RA. In the first step, the optimum source/relay power and assisting relays that maximize the rate is found for every combination of subcarrier and destination, assuming a sum power is allocated to the transmission at that subcarrier to that destination in the relay-aided transmission mode and the direct mode, respectively. In the second step, a convex-optimization based algorithm is designed to find the globally optimum assignment of destination, transmission mode and sum power for each subcarrier to maximize the WSR. Combining the RAs found in the two steps, the globally optimum RA can be found. In addition, we show that the optimum RA in the second step can readily be derived when the system sum power is very high. The effectiveness of the proposed algorithm is illustrated by numerical experiments.
机译:本文考虑了在由多个解码转发(DF)中继辅助的正交频分多址(OFDMA)下行传输系统中,受系统和功率限制的加权总和率(WSR)最大资源分配(RA)。特别地,对于每个中继辅助传输,多个中继可以与源协作。提出了一种两步算法来找到全局最优的RA。在第一步中,假设子载波和目的地的每种组合都找到了使速率最大化的最佳源/中继功率和辅助中继,并假设在中继辅助传输模式下将总功率分配给该子载波到该目的地的传输和直接模式。在第二步中,设计了基于凸优化的算法,以找到每个子载波的目的地,传输模式和总功率的全局最优分配,以使WSR最大化。结合在两个步骤中找到的RA,可以找到全局最优的RA。此外,我们表明,当系统求和功率非常高时,可以轻松得出第二步中的最佳RA。数值实验表明了该算法的有效性。

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