Analyzing Sensitivity Characteristics according to Decrease in Intensity of Light from LED Light Source of Photoelectric Spot-Type Detector

Jong-Hwan Jung
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Abstract

After the revision of “Fire Safety Standards for Automatic Fire Alarm System and Visual Alarm Equipment (NFSC 203)” in 2015 made it mandatory to install smoke detectors in apartments and medical facilities, their number has increased significantly. The detector used in the experiment was a photoelectric spot-type analog smoke detector. The experiment was conducted by configuring a real-time smoke monitoring system. In addition, the sensitivity characteristics of the smoke detector according to the decrease in intensity of light were analyzed. This was achieved by controlling the intensity of light related to the lifespan of the LED, a vital component of the smoke detector. When a intensity of LED light decreased by 10%, the sensitivity of the smoke detector decreased by 12.5%. When a intensity of light decreased by 30%, it decreased to 61% of the smoke detector sensitivity value. From these results, An equation for the change in sensitivity of a smoke detector according to the decrease in intensity of light was derived. It was confirmed that when the light intensity of the LED decreases, the sensitivity of the smoke detector decreases by about 37% more than the decrease in light intensity. Therefore, when developing a photoelectric spot-type smoke detector, establishing the LED current-radiation light characteristic curve and the correlation between the current of the light source and the ambient temperature will significantly improve the product's function and post-management.
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根据LED光源光强衰减分析光电点型探测器的灵敏度特性
2015年修订的《火灾自动报警系统和视觉报警设备消防安全标准(NFSC 203)》规定,公寓和医疗设施必须安装烟雾探测器后,烟雾探测器的数量大幅增加。实验中使用的探测器为光电点型模拟感烟探测器。实验通过配置实时烟雾监测系统进行。此外,还分析了感烟探测器随光强减小的灵敏度特性。这是通过控制与LED寿命相关的光强度来实现的,LED是烟雾探测器的重要组成部分。当LED光强度降低10%时,感烟探测器的灵敏度降低12.5%。当光的强度降低30%时,它降低到感烟探测器灵敏度值的61%。根据这些结果,导出了烟雾探测器灵敏度随光强减小而变化的方程。实验证实,当LED的光强降低时,感烟探测器的灵敏度比光强降低的幅度大37%左右。因此,在开发光电点型感烟探测器时,建立LED电流-辐射光特性曲线以及光源电流与环境温度的相关关系,将显著提高产品的功能和后期管理。
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