Throughput maximization with channel acquisition in energy harvesting systems

S. Lakshminarayana, Tony Q. S. Quek
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引用次数: 3

Abstract

We consider the problem of maximizing the time average throughput in energy harvesting networks with dynamic channel state acquisition. Previous works on energy harvesting systems do not account for the energy consumed to acquire the channel state information(CSI). However, when the nodes have a limited capacity batteries and the energy available in the battery is time varying, it becomes crucial to account for the energy spent in acquiring the CSI. In such a scenario, the available energy in the battery must be optimally divided between CSI acquisition and transmission. We model the energy harvesting battery as an energy queue and use the technique of Lyapunov optimization combined with the idea of weight perturbation to jointly optimize the channel probing and transmission decisions. Since the optimization problem corresponding to the optimal CSI acquisition decision in each time slot is a combinatorial problem, we provide a low-complexity scheme to solve this in the special case ON-OFF fading channels with binary power allocation scheme, and prove that this algorithm is optimal. Finally, we provide numerical results and show that when the mean rate of the harvested energy is low, it becomes crucial to account for the energy consumed in acquiring the CSI.
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能量收集系统中通道获取的吞吐量最大化
研究了动态信道状态获取能量收集网络中时间平均吞吐量的最大化问题。以前关于能量收集系统的工作没有考虑到获取信道状态信息(CSI)所消耗的能量。然而,当节点的电池容量有限且电池中可用的能量随时间变化时,计算获取CSI所花费的能量就变得至关重要。在这种情况下,电池中的可用能量必须在CSI采集和传输之间进行最佳分配。我们将能量收集电池建模为一个能量队列,并利用李亚普诺夫优化技术结合权摄动思想对信道探测和传输决策进行联合优化。由于每个时隙的最优CSI采集决策所对应的优化问题是一个组合问题,我们提出了一种低复杂度的方案来解决具有二进制功率分配方案的ON-OFF衰落信道的特殊情况,并证明了该算法是最优的。最后,我们提供了数值结果,并表明当收获能量的平均速率较低时,考虑获取CSI所消耗的能量变得至关重要。
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