Relaying and stability in energy harvesting simple networks

M. Kashef, A. Ephremides
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引用次数: 1

Abstract

Wireless systems of rechargeable nodes have extended lifetime and are self-sufficient. The transmission policies in these systems need to adapt to the harvested energy availability. In this work, we investigate the interaction between relaying, energy harvesting, and stability. We introduce the problem of general relaying cost minimization for cooperative energy harvesting networks. We consider a simple network in which a source transmits to a destination through network-level cooperation with a number of relay nodes. The source and the relays have energy harvesting capability. To adapt the relaying process to the available harvested energy, we exploit partial relay cooperation in which the flows through the relays are controlled. The relaying cost minimization problem is feasible when the data queues of the source and the relays are stable. The stability conditions of the data queues are derived. Then, we introduce the energy consumption as a cost criterion for the optimization problem to find an energy-efficient partial relaying protocol. We assess the effect of partial relay cooperation compared to the cases of no cooperation and full relay cooperation.
能量收集简单网络中的中继和稳定性
由可充电节点组成的无线系统具有寿命延长和自给自足的特点。这些系统中的传输策略需要适应所收集的能源的可用性。在这项工作中,我们研究了继电保护、能量收集和稳定性之间的相互作用。介绍了合作能量收集网络的总中继成本最小化问题。我们考虑一个简单的网络,其中一个源通过与许多中继节点的网络级合作传输到目的地。源和继电器具有能量收集能力。为了使继电过程适应于可获得的能量,我们利用部分继电合作,其中通过继电器的流量被控制。当源和中继的数据队列稳定时,中继成本最小化问题是可行的。导出了数据队列的稳定性条件。然后,我们引入能量消耗作为优化问题的成本准则,以寻找一种节能的部分中继协议。我们评估了部分接力合作与不合作和完全接力合作情况下的效果。
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