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Novel MI-based (FracBot) Sensor Hardware Design for Monitoring Hydraulic Fractures and Oil Reservoirs

机译:基于MI的新型(FRACBOT)传感器硬件设计,用于监控液压骨折和储油液

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Monitoring of hydraulic fractures and unconventional oil and gas reservoirs are crucial for determining the rich venue of oil and natural gas reserves. Wireless sensor nodes are a promising technology to collect data from hydraulic fractures and oil reservoirs in real time, such nodes are not available in the market since they need to be designed for this special application to overcome limitations caused by the small size requirement and the environment. To overcome limitations caused by harsh environmental conditions and energy constraints, this paper proposes a novel prototype of magnetic induction (MI)-based wireless sensor node (FracBot) to be used as a platform for a new generation of Wireless Underground Sensor Networks (WUSNs) for monitoring hydraulic fractures, unconventional reservoirs and measuring other wellbore parameters. We design and develop the hardware of the MI-based wireless sensor for short range communication using near field communication (NFC) as a physical layer combined with energy harvesting capability and ultra-low power requirements. We realize theses characteristics using cost-effective and commercial off-the-shelf components. We confirm the performance of our design via theoretical and experimental evaluation. the FracBot can operate perpetually with minimum energy radiated conditions. Also, it can establish the communication link and transmit the data using modulation ASK with the data rate of 1.6 kbit/s.
机译:监测液压骨折和非传统石油和天然气储层对于确定石油和天然气储量的丰富地点至关重要。无线传感器节点是一个有前途的技术,可以实时收集来自液压骨折和储油油藏的数据,这些节点在市场上不可用,因为他们需要设计用于这种特殊应用来克服由小尺寸要求和环境引起的限制。为了克服由苛刻的环境条件和能量限制引起的限制,本文提出了一种新颖的磁感应(MI)的无线传感器节点(FRACBOT)的原型用作新一代无线地下传感器网络(WUSNS)的平台用于监测液压骨折,非传统储层和测量其他井筒参数。我们使用近场通信(NFC)设计和开发基于MI的无线传感器的硬件作为物理层与能量收集能力和超低功耗要求相结合。我们实现了使用成本效益和商业现成部件的特色。我们通过理论和实验评估确认我们的设计表现。 FracBot可以永久操作,最小能量辐射条件。此外,它可以建立通信链路并使用调制询问以1.6 kbit / s的数据速率来发送数据。

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