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Evaluating Low-Cost Commercially Available Sensors for Air Quality Monitoring and Application of Sensor Calibration Methods for Improving Accuracy

机译:评估低成本市售传感器,用于空气质量监测和应用传感器校准方法,以提高准确性

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In this paper, we present the results of the evaluation of three low-cost laser sensor s and comparison with the standard device Metone Aerocet 531s which is capable of counting dust particles as small as 0.3 μm. The sensors used in this study are PMS5003 (Plantower), SPS30 (Sesirion), SM-UART-04L (Amphenol). During the measurement, the overall trend of the outputs from the sensors was similar to that of the Aerocet 531s. The PMS5003 sensor has a relatively small standard error in the all particle measurement ranges (<15 μg/m ~( 3 ) in the low particle concentration range). All sensors have a high linearity compared to data from standard equipment, PMS5003: PM1.0 R ~( 2 ) = 0.89; PM2.5 R ~( 2 ) = 0.95; PM10 R ~( 2 ) = 0.87; SPS30 PM2.5 R ~( 2 ) = 0.95 and PM10 R ~( 2 ) = 0.99; SM-UART-04L PM1.0 R ~( 2 ) = 0.98. Three main sensor calibration methods (single-point calibration, two-point calibration and multi-point curve correction) with implementation steps for each method as well as their practical applications in calibrating low-cost air quality sensors according to standard measuring equipment are also detailed illustrated.
机译:在本文中,我们介绍了三个低成本激光传感器S的评估结果,并与标准装置的标准装置Metone Aerocet 531进行了比较,其能够将小于0.3μm的灰尘颗粒计数。本研究中使用的传感器是PMS5003(Plantower),SPS30(Sesirion),SM-UART-04L(Amphenol)。在测量期间,传感器的输出的总体趋势类似于Aerocet 531s的输出。 PMS5003传感器在所有粒子测量范围内具有相对较小的标准误差(低粒子浓度范围内<15μg/ m〜(3))。与来自标准设备的数据相比,所有传感器都具有高线性,PMS5003:PM1.0 R〜(2)= 0.89; PM2.5 R〜(2)= 0.95; PM10 R〜(2)= 0.87; SPS30 PM2.5 R〜(2)= 0.95和PM10 R〜(2)= 0.99; SM-UART-04L PM1.0 R〜(2)= 0.98。根据标准测量设备校准低成本空气质量传感器的三种主要传感器校准方法(单点校准,两点校准和多点校正和多点曲线校正)也详细校准了校准低成本空气质量传感器的实际应用。插图。

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