陈祥勇. 机场油库油品泄漏监测的无线传感器节点设计[J]. 油气储运, 2015, 34(7): 779-783. DOI: 10.6047/j.issn.1000-8241.2015.07.022
引用本文: 陈祥勇. 机场油库油品泄漏监测的无线传感器节点设计[J]. 油气储运, 2015, 34(7): 779-783. DOI: 10.6047/j.issn.1000-8241.2015.07.022
CHEN Xiangyong. Design of wireless sensor nodes for monitoring leakage in airport oil tankfarm[J]. Oil & Gas Storage and Transportation, 2015, 34(7): 779-783. DOI: 10.6047/j.issn.1000-8241.2015.07.022
Citation: CHEN Xiangyong. Design of wireless sensor nodes for monitoring leakage in airport oil tankfarm[J]. Oil & Gas Storage and Transportation, 2015, 34(7): 779-783. DOI: 10.6047/j.issn.1000-8241.2015.07.022

机场油库油品泄漏监测的无线传感器节点设计

Design of wireless sensor nodes for monitoring leakage in airport oil tankfarm

  • 摘要: 根据对机场油库油品泄漏的无线网络化监测方式需求,采用光离子化传感(PID)技术,设计了一种基于MSP430单片机与CC2520射频通信相结合,并以锂电池供电结合太阳能补给的低功耗无线传感器节点。该节点以低电压工作的PID集成器件配合专门设计的主动式集气装置,并采用集成温度传感器进行温度补偿。对该节点用于机场油库油品泄漏检测的有效性分析和功耗估计表明,可以满足无线网络化监测油品泄漏的要求。提出了一种新的机场油库油品泄漏监测报警系统设计方案,综合应用检测技术、计算机技术、无线网络技术等,研究设计集气装置,并采用节点协同监测及节点低功耗设计等,使整个系统体现了智能化、安全可靠、节能实用的设计原则,可以满足机场油库现场实际监测需求。

     

    Abstract: Wireless networks are required to monitor oil leakage in airport oil tankfarm. Accordingly, wireless sensor nodes with low power consumption are developed by using photo ionization detector (PID) techniques. These nodes combine MSP430 single-chip microcomputers and CC2520 radio frequency communication system. In addition, these nodes use lithium battery and solar power as energy supplies. These nodes contain low-voltage integral PID elements and tailor-made positive gas-collection devices, and their integral temperature sensors can be used for temperature compensation. Assessments have been made for efficiency and power consumption of these nodes for oil leakage detection in airport oil tankfarm. Study results show that these nodes can satisfy relevant requirements related to detection of oil by using wireless network. Eventually, design for an innovative oil leakage detection and alarm system is developed for airport oil tankfarm. The new system integrates detection technologies, computer technologies and wireless network. It is characterized by specifically designed gas-collection devices, coordinated monitoring of different nodes and low power consumption. Generally speaking, the entire system is advantageous for smartness, safety, reliability, low power consumption and operability. The system can satisfy demands for on-site monitoring operations.

     

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