赵 政. 基于光散射多源耦合的粉尘浓度检测技术[J]. 煤矿安全, 2023, 54(8): 195-201.
    引用本文: 赵 政. 基于光散射多源耦合的粉尘浓度检测技术[J]. 煤矿安全, 2023, 54(8): 195-201.
    ZHAO Zheng. Dust concentration detection technology based on light scattering multi-source coupling[J]. Safety in Coal Mines, 2023, 54(8): 195-201.
    Citation: ZHAO Zheng. Dust concentration detection technology based on light scattering multi-source coupling[J]. Safety in Coal Mines, 2023, 54(8): 195-201.

    基于光散射多源耦合的粉尘浓度检测技术

    Dust concentration detection technology based on light scattering multi-source coupling

    • 摘要: 光散射法在粉尘检测领域被广泛应用,而技术的核心是检测误差;为进一步减小粉尘浓度的检测误差,提出一种光散射多源耦合的粉尘浓度检测技术。分析了MIE光散射的基本原理,数学推演得到光散射多源耦合理论,确定了光散射的2个最佳角度,研制出光散射多源耦合粉尘浓度检测单元及样机;基于试验准备与系统,对样机的光电传感器1和传感器2进行试验,采用多源数据耦合方法,将光电传感器1和传感器2的AD值进行耦合,提出一种粉尘浓度检测算法,形成了光散射多源耦合粉尘浓度检测技术。试验发现:光散射多源耦合样机的检测相对误差≤9.5%,比光电传感器1小4.7%,比光电传感器2小4.9%,证明光散射多源耦合样机比单角度的检测相对误差减小4.7%。

       

      Abstract: The light scattering method is widely used in the field of dust detection, and the core of the technology is the detection error. In order to further reduce the detection error of dust concentration, a light scattering multi-source coupling dust concentration detection technology is proposed in this paper. The study analyzes the basic principle of MIE light scattering, mathematically deduces the light scattering multi-source coupling theory, determines the two optimal angles of light scattering, and develops the light scattering multi-source coupling dust concentration detection unit and prototype. Based on the test preparation and system, the photoelectric sensors 1 and 2 of the prototype are tested. The multi-source data coupling method is used to couple the AD values of the photoelectric sensors 1 and 2, and a dust concentration detection algorithm is proposed to form the light scattering multi-source coupled dust concentration detection technology. The test found that the detection relative error of the light scattering multi-source coupling prototype is less than 9.5%, which is 4.7% smaller than that of photoelectric sensor 1 and 4.9% smaller than that of photoelectric sensor 2. It is proved that the relative error of the light scattering multi-source coupling prototype is reduced by 4.7% compared with the single-angle detection.

       

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