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Energy-efficient resource allocation for amplify-and-forward relaying in OFDM systems

机译:OFDM系统中用于转发转发的高能效资源分配

摘要

In this paper, we study end-to-end energy efficiency of an orthogonal frequency-division multiplexing relay-based system under power constraints for the base station and relay node with system circuit power considerations. Using a two-phase amplify-and-forward relaying protocol, we assume that relay has a fixed power constraint and the source power can vary in transmission power interval where the source employs a selective relaying mechanism for each individual subcarrier. Therefore, in our model, the source is able to adaptively select some subcarriers to be relayed. The radio resource allocation is then formulated as an energy-efficient mixed binary integer programming, and then we propose a heuristic algorithm to find the suboptimal solution. The solution consists of the suboptimal transmit power of the source, the suboptimal set of subcarriers for relaying and the optimal transmit power of each subcarrier at the source and relay in the first and second time slots. The algorithm obtains energy-efficient transmission power for a given relay transmission power based on a gradient descent method. Then a two-step iterative scheme is proposed to obtain the subcarriers to be relayed as well as the optimal power allocation at the source and relay in the first and second time slots. To evaluate the efficiency of the proposed method, we compare its efficiency through simulations with the cases without using selective subcarrier relaying and without circuit power consideration in low and high relay transmit power regimes. The simulation results indicate that using our proposed method results in a significant improvement in the energy efficiency.
机译:在本文中,我们在考虑系统电路功率的前提下,研究了基站和中继节点在功率约束下正交频分复用中继系统的端到端能效。使用两阶段放大转发中继协议,我们假设中继具有固定的功率约束,并且源功率可以在传输功率间隔中变化,其中源对每个单独的子载波采用选择性中继机制。因此,在我们的模型中,源能够自适应地选择一些要中继的子载波。然后将无线电资源分配公式化为高能效混合二进制整数规划,然后我们提出一种启发式算法来寻找次优解。该解决方案包括源的次优发射功率,用于中继的次优子载波集合以及源时隙和中继器在第一和第二时隙中每个子载波的最佳发射功率。该算法基于梯度下降法获得给定中继传输功率的节能传输功率。然后,提出了两步迭代方案,以获取要中继的子载波以及在第一时隙和第二时隙中在源和中继处的最佳功率分配。为了评估所提出方法的效率,我们通过仿真与在不使用选择性子载波中继并且在低和高中继发射功率情况下不考虑电路功率的情况下的仿真效率进行了比较。仿真结果表明,使用我们提出的方法可以显着提高能源效率。

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