Wang Boqiang, Zhao Xuezeng, Zhang Yiyong, Song Zigang, Wang Zhuogang
School of Mechatronics Engineering, Harbin Institute of Technology, Harbin 150006, China.
703 Research Institute, China State Shipbuilding Corporation Limited, Harbin 150010, China.
Sensors (Basel). 2024 Mar 6;24(5):1692. doi: 10.3390/s24051692.
Smoke detectors face the challenges of increasing accuracy, sensitivity, and high reliability in complex use environments to ensure the timeliness, accuracy, and reliability of very early fire detection. The improvement in and innovation of the principle and algorithm of smoke particle concentration detection provide an opportunity for the performance improvement in the detector. This study is a new refinement of the smoke concentration detection principle based on capacitive detection of cell structures, and detection signals are processed by a multiscale smoke particle concentration detection algorithm to calculate particle concentration. Through experiments, it is found that the detector provides effective detection of smoke particle concentrations ranging from 0 to 10% obs/m; moreover, the detector can detect smoke particles at parts per million (PPM) concentration levels (at 2 and 5 PPM), and the accuracy of the detector can reach at least the 0.5 PPM level. Furthermore, the detector can detect smoke particle concentrations at better than 1 PPM accuracy even in an environment with 6% obs/m oil gas particles, 7% obs/m large dust interference particles, or 8% obs/m small dust interference particles.
烟雾探测器面临着在复杂使用环境中提高准确性、灵敏度和高可靠性的挑战,以确保极早期火灾探测的及时性、准确性和可靠性。烟雾颗粒浓度检测原理和算法的改进与创新为探测器性能提升提供了契机。本研究是基于电容式检测单元结构的烟雾浓度检测原理的新改进,检测信号通过多尺度烟雾颗粒浓度检测算法进行处理以计算颗粒浓度。通过实验发现,该探测器能对0至10% obs/m范围内的烟雾颗粒浓度进行有效检测;此外,该探测器能够检测百万分之一(PPM)浓度水平(2和5 PPM)的烟雾颗粒,且探测器的精度至少能达到0.5 PPM水平。此外,即使在存在6% obs/m油气颗粒、7% obs/m大灰尘干扰颗粒或8% obs/m小灰尘干扰颗粒的环境中,该探测器也能以优于1 PPM的精度检测烟雾颗粒浓度。