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Architecture of a hydroelectrically powered wireless sensor node for underground environmental monitoring

机译:用于地下环境监测的水力发电无线传感器节点的体系结构

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This study describes a sensor node powered by an energy harvesting method based on the watermill principle. This method is suitable whenever a sensor node has to be deployed in the nearby of an underground water line, such as a drainage system or an aqueduct. The operating scenario for whom this solution has been developed and employed is a wireless sensor network for the monitoring of the environmental conditions of the so-called `Bottini' in Siena, Italy. The `Bottini' is a network of medieval aqueducts dug in the underground of the historic centre of the city, in which water still flows nowadays. Using the proposed energy harvesting system the sensor nodes are able to operate independently, minimising the maintenance and allowing the real-time monitoring of environmental parameters, thanks, in order to manage the preservation of this ancient site. The entire system is composed of three parts: the power generation system, the data acquisition system and the wireless transmission system. The whole architecture has been tested in the operating scenario, precisely in `Fontebranda', one of the biggest fountains in the `Bottini' network.
机译:这项研究描述了一种基于水磨原理由能量收集方法提供动力的传感器节点。每当必须将传感器节点部署在地下水管线(例如排水系统或渡槽)附近时,此方法均适用。开发并采用此解决方案的操作方案是一个无线传感器网络,用于监视意大利锡耶纳的所谓“ Bottini”的环境状况。 “ Bottini”是在城市历史中心地下挖出的中世纪渡槽网络,如今仍在其中流动。使用提出的能量收集系统,传感器节点能够独立运行,从而最大程度地减少了维护并允许实时监控环境参数,这是为了管理这个古老遗址的保护。整个系统由三部分组成:发电系统,数据采集系统和无线传输系统。整个体系结构已经在操作场景中进行了测试,正好在“ Bottini”网络中最大的喷泉之一“ Fontebranda”中进行了测试。

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