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A ZigBee-Based Wireless Sensor Network Node for Ultraviolet Detection of Flame

机译:基于ZigBee的无线传感器网络节点,用于火焰的紫外线检测

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摘要

This paper describes a ZigBee-based wireless sensor network node for the ultraviolet (UV) detection of flame. The sensor node is composed of a ZnSSe UV photodetector, a current-sensitive front end including a high-gain current-to-voltage amplifier with 120 dB and a logarithm converter, and a transceiver operated at a 2.4-GHz industrial, scientific, and medical band. A passive photodetector is designed to have a cutoff at 360 nm and convert the UV emission of flame into picoamperes. Including mixed signal processing and ZigBee transmission, the speed of flame detection is as fast as 70 ms. The sensor node consumes only an average of 2.3 mW from a 3.3-V supply. The performance of a prototype sensor node was verified when the luminous flame was imaged onto the sensor node with different angles ranging from $-30^{circ}$ to 30 $^{circ}$ and distances of 0.1, 0.2, and 0.3 m enabling effective fire safety applications.
机译:本文介绍了一种基于ZigBee的无线传感器网络节点,用于火焰的紫外线(UV)检测。传感器节点由ZnSSe紫外线光电探测器,对电流敏感的前端组成,该前端包括具有120 dB的高增益电流至电压放大器和对数转换器,以及在2.4 GHz工业,科学和工业应用环境下工作的收发器。医疗乐队。无源光电检测器设计为在360 nm处具有截止值,并将火焰的UV发射转换为皮安。包括混合信号处理和ZigBee传输,火焰检测速度高达70毫秒。传感器节点的3.3V电源平均功耗仅为2.3mW。当发光火焰以不同的角度成像到传感器节点上时,原型传感器节点的性能得到了验证,该角度范围从 $-30 ^ {circ} $ 到30 $ ^ {circ} $ 以及0.1、0.2和0.3 m的距离使有效消防安全应用。

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