住宅环境中的热能收集概况

V. Sobral, J. Lach, J. Goodall, Bradford Campbell
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引用次数: 4

摘要

虽然依靠能量收集为物联网(IoT)设备供电消除了更换电池的维护负担,但能量产生的波动构成了设计可靠的自供电物联网设备的主要不确定性来源。为了表征能量收集的时空变异性,需要在潜在的能量收集源范围内开展数据收集活动。在这项工作中,我们提出了一个数据集,通过测量热电发电机(TEG)在16个部署地点19至53天的运行条件,来表征住宅环境中的热能。我们展示了易于使用的热能测量平台,该平台由现成的组件模块和定制的TEG接口电路构建。我们通过推导TEG的最大功率输出和估计每个收集位置的可用能量,演示了收集的测量数据如何为能量收集物联网设备的设计提供信息。
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Thermal Energy Harvesting Profiles in Residential Settings
While relying on energy harvesting to power Internet of Things (IoT) devices eliminates the maintenance burden of battery replacement, energy generation fluctuation constitutes a major source of uncertainty to design reliable self-powered IoT devices. To characterize spatial-temporal variability of energy harvesting, data acquisition campaigns are needed across the range of potential harvesting sources. In this work we present a dataset to characterize thermal energy sources in residential settings by measuring thermoelectric generator (TEG) operating conditions over 16 deployment locations for periods ranging from 19 to 53 days. We present our easy-to-use thermal energy measurement platform built from off-the-shelf component modules and a custom TEG interface circuit. We demonstrate how the collected measurements can inform the design of energy harvesting IoT devices by deriving the TEG's maximum power output and estimating the available energy at each harvesting location.
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