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Transmission with Energy Harvesting Nodes in Fading Wireless Channels: Optimal Policies

机译:在衰落的无线信道中使用能量收集节点进行传输:最佳策略

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Wireless systems comprised of rechargeable nodes have a significantly prolonged lifetime and are sustainable. A distinct characteristic of these systems is the fact that the nodes can harvest energy throughout the duration in which communication takes place. As such, transmission policies of the nodes need to adapt to these harvested energy arrivals. In this paper, we consider optimization of point-to-point data transmission with an energy harvesting transmitter which has a limited battery capacity, communicating in a wireless fading channel. We consider two objectives: maximizing the throughput by a deadline, and minimizing the transmission completion time of the communication session. We optimize these objectives by controlling the time sequence of transmit powers subject to energy storage capacity and causality constraints. We, first, study optimal offline policies. We introduce a directional water-filling algorithm which provides a simple and concise interpretation of the necessary optimality conditions. We show the optimality of an adaptive directional water-filling algorithm for the throughput maximization problem. We solve the transmission completion time minimization problem by utilizing its equivalence to its throughput maximization counterpart. Next, we consider online policies. We use stochastic dynamic programming to solve for the optimal online policy that maximizes the average number of bits delivered by a deadline under stochastic fading and energy arrival processes with causal channel state feedback. We also propose near-optimal policies with reduced complexity, and numerically study their performances along with the performances of the offline and online optimal policies under various different configurations.
机译:由可充电节点组成的无线系统的寿命大大延长并且是可持续的。这些系统的显着特征是,节点可以在进行通信的整个过程中收集能量。这样,节点的传输策略需要适应这些收获的能量到达。在本文中,我们考虑使用具有有限电池容量的能量收集发射器在无线衰落信道中进行通信来优化点对点数据传输。我们考虑两个目标:在截止期限之前使吞吐量最大化,并在通信会话的传输完成时间上最小化。我们通过控制受能量存储能力和因果关系约束的发射功率的时序来优化这些目标。首先,我们研究最佳的离线政策。我们介绍了一种定向注水算法,该算法对必要的最佳条件提供了简单明了的解释。我们显示了针对吞吐量最大化问题的自适应定向注水算法的最优性。我们通过利用其等效于吞吐量最大化对应项来解决传输完成时间最小化问题。接下来,我们考虑在线政策。我们使用随机动态规划来求解最优在线策略,该策略可以在具有因果信道状态反馈的随机衰落和能量到达过程下,最大化截止期限之前交付的平均比特数。我们还提出了降低复杂度的近最优策略,并在各种不同配置下,对它们的性能以及离线和在线最优策略的性能进行了数值研究。

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