Development of a mid-infrared sensor system for early fire identification in cotton harvesting operations.

Yafei Li, Yang Lu, Chuantao Zheng, Shuo Yang, Kaiyuan Zheng, Fang Song, Chunguang Li, W. Ye, Yu Zhang, Yiding Wang, F. Tittel
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引用次数: 1

Abstract

To realize early fire identification in cotton harvesting operations, a mid-infrared carbon monoxide (CO) sensor system was developed. To match the broadband light source with a 15° divergence angle, a multipass gas cell (MPGC) with an effective path length of 180 cm was designed to improve sensor sensitivity, leading to a limit of detection (LoD) of 0.83 parts-per-million by volume (ppmv). A damping module with springs at the bottom and front/back sides was fabricated, which can effectively reduce the vibration intensity by >80%. The sensor system can operate normally from -40 °C to 85 °C by stabilizing the temperature of the optical module through heating or cooling as well as using automotive electronic components. An adaptive early fire identification algorithm based on a dual-parameter threshold alarming method was proposed to avoid false and missing alarms. Field deployments on a harvester verified the good practicability of the sensor system.
用于棉花收获作业早期火灾识别的中红外传感器系统的研制。
为实现棉花收获过程中火灾的早期识别,研制了一种中红外一氧化碳传感器系统。为了匹配发散角为15°的宽带光源,设计了有效路径长度为180 cm的多通气池(MPGC),以提高传感器灵敏度,导致检测限(LoD)为0.83百万分之一体积(ppmv)。制作了底部和前后两侧带有弹簧的阻尼模块,可有效降低振动强度>80%。通过加热或冷却稳定光模块的温度以及使用汽车电子元件,传感器系统可以在-40°C至85°C范围内正常工作。为了避免误报和漏报,提出了一种基于双参数阈值报警方法的自适应火灾早期识别算法。在一台收割机上的现场部署验证了该传感器系统的良好实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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