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Hydrogen Sulfide (H2S) Gas Safety System for Oil Drilling Sites using Wireless Sensor Network

机译:使用无线传感器网络的石油钻井场地中的硫化氢(H2S)气体安全系统

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Toxic and Combustible gases are one of the most notorious killers of Oil and Gas Industry (OGI) workers. Hardly can one find an accident in which they are not involved, as such governments around the world enforce the use of gas sensors in all works that are related to these gases. Until recently, wired gas sensing systems are used. Although, they are rugged and reliable, they are expensive to install and maintain. Wireless gas leakage detection systems are flexible, easy to install and maintain. However, gas sensors tend to consume lots of energy, while those that consume less energy are not accurate. In this paper, an experimental research is carried out to investigate the energy performance of a Zigbee Wireless Sensor Network (WSN) made up of wireless sensor nodes and industrial-grade gas sensors to create a Wireless Gas Safety and Monitoring System (WG-SMS). The system uses careful combination of energy harvesting, sensor node role assignment and adaptive sleep cycle to achieve maximum attainable lifetime by saving 60% more energy.
机译:有毒和可燃气体是石油和天然气工业(OGI)工人最臭名昭著的杀手之一。几乎没有人会发现没有涉及的事故,因为世界各地的此类政府都在与这些气体有关的所有工程中强制使用气体传感器。直到最近,仍使用有线气体传感系统。尽管它们坚固耐用且可靠,但是它们的安装和维护成本很高。无线气体泄漏检测系统灵活,易于安装和维护。但是,气体传感器往往消耗大量能量,而那些消耗较少能量的传感器则不准确。本文进行了一项实验研究,以研究由无线传感器节点和工业级气体传感器组成的Zigbee无线传感器网络(WSN)的能源性能,以创建无线气体安全和监控系统(WG-SMS) 。该系统结合了能量收集,传感器节点角色分配和自适应睡眠周期的精心组合,通过节省60%以上的能量来实现最长的使用寿命。

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