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Optimal Transmission Policies for Relay Communication Networks With Ambient Energy Harvesting Relays

机译:具有环境能量收集继电器的中继通信网络的最佳传输策略

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Ambient energy harvesting has emerged as a promising technique to improve the energy efficiency and reduce the total greenhouse gas emissions for green wireless communications. Energy management for throughput maximization under random energy arrivals has been studied extensively in energy harvesting relay communication networks with either finite-size data buffer or finite-size energy storage. However, the problem is still open when the energy harvesting relay node is subject to both finite-size data and energy storage. In this paper, we study the transmission policy of joint time scheduling and power allocation under a transmission deadline, which maximizes the end-to-end system throughput in a two-hop relay communication network where the energy harvesting relay node is equipped with finite-size data buffer and battery. In particular, we first formulate the throughput maximization problem as a convex optimization problem under an offline optimization framework, and obtain the optimal offline time scheduling and power allocation by the Karush-Kuhn-Tucker conditions based on the full knowledge of energy arrivals and channel states. Then, we formulate the throughput maximization problem as a stochastic dynamic programming problem under the online optimization framework, and obtain the optimal online time scheduling and power allocation by solving a series of convex optimizations based on the casual knowledge of energy arrivals and channel states. Finally, to reduce the computation complexity, we further propose two suboptimal online transmission policies. Numerical results show the impacts of battery capacity and buffer size on the maximum throughput of the proposed policies, as well as the balance between the spectrum efficiency and the delay sensitivity.
机译:环境能量收集已成为一种有前途的技术,可以提高能源效率并减少绿色无线通信的温室气体排放总量。在具有有限大小的数据缓冲区或有限大小的能量存储的能量收集中继通信网络中,已经对随机能量到达下的吞吐量最大化的能量管理进行了广泛的研究。但是,当能量收集中继节点同时受到有限大小的数据和能量存储的约束时,问题仍然存在。在本文中,我们研究了在传输截止日期下联合时间调度和功率分配的传输策略,该策略在能量收集中继节点装有有限链路的两跳中继通信网络中最大化端到端系统的吞吐量。大小的数据缓冲区和电池。特别地,我们首先将吞吐量最大化问题公式化为离线优化框架下的凸优化问题,然后基于对能量到达和信道状态的充分了解,通过Karush-Kuhn-Tucker条件获得最优的离线时间调度和功率分配。然后,我们将吞吐量最大化问题公式化为在线优化框架下的随机动态规划问题,并通过基于能量到达和信道状态的常识解决一系列凸优化来获得最优的在线时间调度和功率分配。最后,为降低计算复杂度,我们进一步提出了两种次优的在线传输策略。数值结果显示了电池容量和缓冲区大小对所提出策略的最大吞吐量的影响,以及频谱效率和延迟灵敏度之间的平衡。

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