Evaluation of PM2.5 and PM10 using normalized first-order absolute sum of high-frequency spectrum

Wenming Yang, Xiang Chen, Q. Liao
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引用次数: 2

Abstract

A new method for air quality evaluation using only visible image analysis is introduced in this paper. Based on the fact that suspended particles in air are visible, we attempted to use visible images to develop an appropriate measure which can be closely related to the density of suspended particles (namely the values of PM2.5 and PM10). Furthermore, using this measure, we can evaluate the values of PM2.5 and PM10 via digital image processing. Combined with water droplets, suspended particles in air can form fog or haze. Based on the monochrome atmospheric scattering model, which has been widely used to describe the formation of a haze image, we propose a measure, normalized first-order absolute sum of high-frequency spectrum (NFAS) and attempt to investigate its relationship with the values of PM2.5 and PM10. The experimental results showed the proposed measure is closely related to PM2.5 and has a relation with PM10.
用归一化高频频谱一阶绝对和评价PM2.5和PM10
本文介绍了一种仅利用可见光图像分析进行空气质量评价的新方法。基于空气中悬浮颗粒是可见的这一事实,我们试图利用可见图像来制定一个与悬浮颗粒密度(即PM2.5和PM10的值)密切相关的合适的测量方法。此外,利用该测量方法,我们可以通过数字图像处理来评估PM2.5和PM10的值。空气中的悬浮颗粒与水滴结合,可形成雾或霾。本文基于单色大气散射模型(单色大气散射模型已被广泛用于描述雾霾图像的形成),提出了一种测量方法——归一化高频频谱绝对和(NFAS),并试图探讨其与PM2.5和PM10值的关系。实验结果表明,该指标与PM2.5密切相关,与PM10有一定关系。
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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