无线传感器网络能量采集与软件表征的测量平台

Philipp M. Glatz, Philipp Meyer, A. Janek, T. Trathnigg, C. Steger, R. Weiss
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引用次数: 18

摘要

无线传感器网络(WSN)节点是资源受限的计算设备。自主工作的无线传感器网络的自适应行为试图最大化部署的成本效率。这包括通过优化功耗和利用能量收集为蓄能池充电来最大化使用寿命。有效利用资源的自适应行为需要有关wsn能量平衡的信息来进行决策。我们提出了一个新的平台来测量收获,储存和耗散的能量。为了适用于不同的环境,它允许附加不同的能量收集设备(EHDs)。edd不能持续供电。电力可用性模式用于确定如何有效地使用这些电源。来自收获理论的模型试图适应它。我们在我们的平台上实现了一个以能源中立为目标的模型。用于对模型进行评价和改进。我们的新平台可以用来评估模型不同来源的理论。它可以利用和表征热电、压电和磁感应发电机和太阳能电池。测量平台也跟踪能量耗散。通过软件实现与平台的通信。在此基础上的一个示例应用程序表明,该系统可以用于软件表征。本文提出了一种新型的模块化低功耗无线传感器网络测量平台设计方法。它显示了不同能源的利用和提供不同类型mote的能力。我们的工作展示了如何评估和改进能量收集理论。我们的工作也有助于通过在线软件表征模拟和仿真领域。与离线模拟相比,该方法在准确性和完整性方面有所提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A measurement platform for energy harvesting and software characterization in WSNs
Wireless Sensor Network (WSN) nodes are resource- constrained computing devices. Adaptive behavior of autonomously working WSNs tries to maximize the cost efficiency of deployments. This includes maximizing the lifetime through power consumption optimization and recharging energy reservoirs with the use of energy harvesting. The adaptive behavior that leads to efficient resource usage needs information about the WSNs energy balance for decision making. We present a novel platform to measure the harvested, stored and dissipated energy. For being applicable to different environments it allows to attach different energy harvesting devices (EHDs). EHDs do not provide power continuously. Power availability patterns are used to determine how these sources can be used efficiently. Models from harvesting theory try to adapt to it. We implement a model that targets energy neutrality on our platform. It is used to evaluate the model and improve it. Our novel platform can be used to evaluate theories that model different sources. It can utilize and characterize thermoelectric, piezoelectric and magnetic induction generators and solar cells. The measurement platform tracks energy dissipation too. Mote software is implemented to establish communication to the platform. A sample application on top of it shows that the system can be used for software characterization. This paper contributes a novel modular and low-power design for measurement platforms for WSNs. It shows utilization of different energy sources and the ability to supply different mote types. Our work shows how theories for energy harvesting can be evaluated and improved. Our work also contributes to the field of simulation and emulation through online software characterization. The approach improves in accuracy and completeness over the capabilities of offline simulation.
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