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SDF — Solar-aware distributed flow in wireless sensor networks

机译:SDF —无线传感器网络中具有太阳能意识的分布式流

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Energy is the most limiting factor in wireless sensor networks. Harvesting solar energy is a feasible solution to overcome the energy-constraint in some applications. It enables a theoretically infinite network lifetime, sustaining a mode of operation termed energy neutral consumption rate. The challenge arises, how can the harvested energy be utilized to maximize the performance of the sensor network. Considering a field monitoring application the performance is measured as the sustained sampling rate of the sensors. Maximizing the sampling rate needs to take the spatio-temporal distribution of load and energy into account, to prevent the overloading of nodes. In [12] they introduced a optimal, theoretical solution based on perfect global knowledge. In this paper we propose the solar-aware distributed flow (SDF) approach. SDF enables each node to predict the harvested energy, calculate a sustainable flow and control its local neighborhood. Extensive simulations confirmed that SDF achieves over 80% of the theoretical optimum, while introducing negligible overhead.
机译:能量是无线传感器网络中的最大限制因素。收集太阳能是在某些应用中克服能源约束的可行解决方案。从理论上讲,它可以实现无限的网络寿命,并维持称为能量中和消耗率的操作模式。随之而来的挑战是,如何利用所收集的能量来最大化传感器网络的性能。考虑到现场监视应用程序,将性能作为传感器的持续采样率进行测量。为了使采样率最大化,需要考虑负载和能量的时空分布,以防止节点过载。在[12]中,他们介绍了基于完美全球知识的最佳理论解决方案。在本文中,我们提出了太阳能感知的分布式流(SDF)方法。 SDF使每个节点都能预测所收集的能量,计算可持续流量并控制其本地邻域。大量的仿真证实,SDF达到了理论最佳值的80%以上,同时引入的开销可忽略不计。

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