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Tethys: Collecting Sensor Data without Infrastracture or Trust

机译:Tethys:无需基础设施或信任即可收集传感器数据

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摘要

Careful resource monitoring is necessary to understand usage patterns and set conservation goals in an institutional setting. Sensor systems provide data to measure consumption and evaluate the effectiveness of active interventions. However, deploying sensing systems can be difficult when infrastructure support is limited. This paper describes the process of designing Tethys, a wireless water flow sensor that collects data at per-fixture granularity without dependence on existing infrastructure and trusted gateways. Rather than rely on electrical infrastructure, Tethys implements energy harvesting to allow for long term deployment. To avoid dependence on existing network infrastructure, Tethys crowdsources the data collection process to residents' smartphones acting as gateways. These gateways are untrusted and unreliable, so Tethys implements end-to-end reliability and security between the sensing device and a cloud backend. We present initial findings from a deployment in undergraduate residential halls. Our results demonstrate that Tethys can capture meaningful patterns in shower use. For instance, visible water conservation signs are statistically correlated with shorter mean shower length (p <; 0:05) and are a potential area for future studies.
机译:仔细的资源监控对于了解使用模式和在机构环境中设定保护目标是必要的。传感器系统提供数据以测量消耗量并评估主动干预的有效性。但是,在基础架构支持有限的情况下,部署传感系统可能会很困难。本文介绍了无线水流传感器Tethys的设计过程,该传感器可以按固定装置的粒度收集数据,而无需依赖现有的基础架构和可信网关。 Tethys不再依赖电气基础设施,而是实施能量收集以允许长期部署。为了避免依赖现有的网络基础架构,Tethys将数据收集过程众包给充当网关的居民智能手机。这些网关是不可信且不可靠的,因此Tethys在传感设备和云后端之间实现了端到端的可靠性和安全性。我们介绍了在大学宿舍中部署的初步结果。我们的结果表明,特提斯可以在淋浴中捕捉到有意义的图案。例如,可见的节水迹象与较短的平均淋浴长度(p <; 0:05)在统计上相关,并且是未来研究的潜在领域。

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