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Joint Resource Allocation Optimization in OFDM Relay Networks with SWIET

机译:带有SWIET的OFDM中继网络中的联合资源分配优化。

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Simultaneous Wireless Information and Energy Transfer (SWIET) is a promising energy harvesting technique to power energy-constrained wireless nodes in wireless communications. In wireless relay networks, employing SWIET at the source-to-relay link, an energy-constrained relay node can harvest energy from the radio-frequency (RF) signals transmitted by a source node while assisting information relaying, and thus its lifetime can be prolonged. In this paper, we investigate an orthogonal-frequency-division multiplexing (OFDM) amplify-and-forward (AF) relay network with SWIET. The goal is to maximize the end-to-end achievable rate. Unlike the work in literature where only peak transmit power constraint at source is considered, we consider both peak and average transmit power constraints at source, by which the operation time of the source's batteries can be extended. The formulated problem is non-convex because the average transmit power constraint at source and the EH constraint at relay are non-convex. To tackle this non-convex problem, we transform it into two fractional programming problems. By solving the two fractional programming problems with Dinkelbach's procedure, we propose two algorithms to achieve optimal resource allocations. Simulation results verify the optimality of our proposed resource allocation scheme and show that the average power constraint at source has much impact on the end-to-end achievable rate of the SWIET-based OFDM AF relay network.
机译:同时无线信息和能量传输(SWIET)是一种有前途的能量收集技术,可以为无线通信中受能量限制的无线节点供电。在无线中继网络中,在源到中继链路上使用SWIET,受能量限制的中继节点可以在辅助信息中继的同时从源节点发送的射频(RF)信号中收集能量,因此其寿命可以是延长了。在本文中,我们研究了使用SWIET的正交频分复用(OFDM)放大转发(AF)中继网络。目标是使端到端可达到的速率最大化。与文献中仅考虑源的峰值发射功率约束的文献不同,我们同时考虑源的峰值和平均发射功率约束,通过它们可以延长源电池的工作时间。提出的问题是非凸的,因为源的平均发射功率约束和中继的EH约束是非凸的。为了解决这个非凸问题,我们将其转换为两个分数编程问题。通过用Dinkelbach的方法解决两个分数规划问题,我们提出了两种算法来实现最佳的资源分配。仿真结果验证了我们提出的资源分配方案的最优性,并表明源头的平均功率约束对基于SWIET的OFDM AF中继网络的端到端可达到的速率有很大影响。

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