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Study on a Low-Cost and Large-Scale Environmentally Adaptive Protocol Stack of Nuclear and Space Wireless Sensor Network Applications Under Gamma Radiation

机译:伽玛辐射下核与空间无线传感器网络应用的低成本大规模环境自适应协议栈研究

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摘要

With the advancement of computer and communication technologies, wireless sensor networks (WSNs) are increasingly used in nuclear and space applications of radiation dose monitoring, earth observation, etc. In both cases, intensive radiation effects on electronic survivability are a concern. Gamma-ray damaging mechanisms in semiconductor devices are described as, and specifically linked to, semiconductor property changes in detectors, transistors, and integrated circuits. Radiation damage is cumulative and can result in the premature failure of WSN nodes. Thus, radiation-resistant electronics are commonly used for space and nuclear applications. However, these devices present a significant cost, especially when monitoring large areas. This paper focuses on studying a protocol stack that achieves an effective compromise in the cost and performance in a large-scale gamma radiation environment. The probability density function of a Weibull distribution is used to model failures of individual nodes in simulated WSNs. The distribution parameters are based on results of radiation-damage tests performed on semiconductor devices in the Gamma-220 facility (~(60)Co source) at the Canadian Nuclear Laboratories (CNL). The simulation of the protocol stack proposed in this paper through network simulator 2 (NS2) and the resulting performance analyses could provide useful design insights and considerations for nuclear and space applications. Our work is the first study on designing an environmentally adaptive protocol stack in a large-scale gamma radiation environment for nuclear and space applications.
机译:随着计算机和通信技术的进步,无线传感器网络(WSN)越来越多地用于辐射剂量监控,对地观测等在核和太空应用中。在这两种情况下,强烈的辐射对电子生存能力的影响成为一个问题。半导体器件中的伽马射线破坏机制被描述为检测器,晶体管和集成电路中的半导体特性变化,并且具体与之相关联。辐射损伤是累积性的,可能导致WSN节点过早失效。因此,抗辐射电子设备通常用于太空和核应用。但是,这些设备的成本很高,尤其是在监视大面积区域时。本文重点研究协议栈,该协议栈可在大规模伽马辐射环境中有效降低成本和性能。威布尔分布的概率密度函数用于对模拟WSN中各个节点的故障进行建模。分布参数基于在加拿大核实验室(CNL)的Gamma-220设施(〜(60)Co源)中的半导体器件上进行的辐射损伤测试的结果。通过网络模拟器2(NS2)对本文提出的协议栈进行仿真,并进行性能分析,可以为核和太空应用提供有用的设计见解和考虑因素。我们的工作是关于在大规模伽马辐射环境中设计用于核和空间应用的环境适应协议栈的第一项研究。

著录项

  • 来源
    《Nuclear Technology》 |2017年第1期|75-87|共13页
  • 作者单位

    Canadian Nuclear Laboratories, Fuel and Fuel Channel Safety Branch, Chalk River, Ontario K0J1J0, Canada;

    University of Waterloo, Department of Computer Science, Waterloo, Ontario N2L3G1, Canada;

    Canadian Nuclear Laboratories, Applied Physics Branch, Chalk River, Ontario, K0J1J0, Canada;

    Canadian Nuclear Laboratories, Fuel and Fuel Channel Safety Branch, Chalk River, Ontario K0J1J0, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:42:45

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