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A Practical Supercapacitor Model for Power Management in Wireless Sensor Nodes

机译:用于无线传感器节点电源管理的实用超级电容器模型

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摘要

In this paper, a new practical method is presented to estimate supercapacitor state for wireless sensor nodes. The self-discharge process of supercapacitor, as an energy storage device in sensor nodes, is usually considered as the main factor that needs to be taken into account for power management. Recent studies have demonstrated that a supercapacitor charge-redistribution process may also have significant impact on power management. To consider charge redistribution in power management of a real-time system, a practical method is presented to estimate the state of a supercapacitor. The accuracy of the method is validated by experiments. The impact of time step on the proposed model is also investigated. The results indicate that the proposed model can achieve good accuracy with relatively large time step. Moreover, the model is easy to implement, and has low memory usage and computational cost for practical applications in a real-time system. Based on the practical model, estimations of charge and energy transferred during the redistribution process are presented, which provide important information toward developing energy aware algorithms in wireless sensor networks.
机译:本文提出了一种新的实用方法来估计无线传感器节点的超级电容器状态。超级电容器的自放电过程,作为传感器节点中的能量存储设备,通常被认为是功率管理需要考虑的主要因素。最近的研究表明,超级电容器的电荷分配过程也可能对电源管理产生重大影响。为了在实时系统的电源管理中考虑电荷的重新分配,提出了一种实用的方法来估计超级电容器的状态。实验验证了该方法的准确性。还研究了时间步长对提出的模型的影响。结果表明,所提出的模型可以在较大的时间步长下达到良好的精度。此外,该模型易于实现,并且对于实时系统中的实际应用而言具有较低的存储器使用量和计算成本。基于实际模型,提出了重新分配过程中转移的电荷和能量的估计,这为开发无线传感器网络中的能量感知算法提供了重要信息。

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