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Joint Subcarrier Pairing and Power Allocation for OFDM Transmission With Decode-and-Forward Relaying

机译:带解码转发中继的OFDM联合子载波配对和功率分配

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In this paper, a point-to-point orthogonal-frequency- division multiplexing (OFDM) system with a decode-and- forward (DF) relay is considered. The transmission consists of two hops. The source transmits in the first hop, and the relay transmits in the second hop. Each hop occupies one time slot. The relay is half-duplex, and capable of decoding the message on a particular subcarrier in one time slot, and re-encoding and forwarding it on a different subcarrier in the next time slot. Thus, each message is transmitted on a pair of subcarriers in two hops. It is assumed that the destination is capable of combining the signals from the source and the relay pertaining to the same message. The goal is to maximize the weighted sum rate of the system by jointly optimizing subcarrier pairing and power allocation on each subcarrier in each hop. The weighting of the rates is to take into account the fact that different subcarriers may carry signals for different services. Both total and individual power constraints for the source and the relay are investigated. For the situations where the relay does not transmit on some subcarriers because doing so does not improve the weighted sum rate, we further allow the source to transmit new messages on these idle subcarriers. To the best of our knowledge, such a joint optimization inclusive of the destination combining has not been discussed in the literature. The problem is first formulated as a mixed integer programming problem. It is then transformed to a convex optimization problem by continuous relaxation, and solved in the dual domain. Based on the optimization results, algorithms to achieve feasible solutions are also proposed. Simulation results show that the proposed algorithms almost achieve the optimal weighted sum rate and outperform the existing methods in various channel conditions.
机译:在本文中,考虑了具有解码转发(DF)中继的点对点正交频分复用(OFDM)系统。传输由两跳组成。源在第一跳中发送,中继在第二跳中发送。每一跳占用一个时隙。中继是半双工的,并且能够在一个时隙中的特定子载波上解码消息,并在下一时隙中的不同子载波上对其进行重新编码和转发。因此,每个消息以两跳在一对子载波上发送。假定目的地能够合并来自源和中继的属于同一消息的信号。目标是通过共同优化每个跳中每个子载波上的子载波配对和功率分配来最大化系统的加权和速率。速率的加权要考虑到以下事实,即不同的子载波可以承载用于不同服务的信号。研究了源和继电器的总功率约束和单个功率约束。对于中继没有在某些子载波上进行传输(因为这样做不能提高加权和速率)的情况,我们进一步允许源在这些空闲子载波上传输新消息。据我们所知,文献中尚未讨论过包含目的地组合的联合优化。首先将该问题表述为混合整数规划问题。然后通过连续松弛将其转化为凸优化问题,并在对偶域中求解。根据优化结果,提出了可行解的算法。仿真结果表明,所提出的算法在各种信道条件下几乎都能达到最优的加权求和率,并且优于现有方法。

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