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首页> 外文期刊>Journal of the air & waste management association >Interinstrument comparison of remote-sensing devices and a new method for calculating on-road nitrogen oxides emissions and validation of vehicle-specific power
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Interinstrument comparison of remote-sensing devices and a new method for calculating on-road nitrogen oxides emissions and validation of vehicle-specific power

机译:仪器之间的遥感比较和一种计算道路上氮氧化物排放量的新方法以及车辆专用功率的验证

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Emissions of nitrogen oxides (NOx) by vehicles in real driving environments are only partially understood. This has been brought to the attention of the world with recent revelations of the cheating of the type of approval tests exposed in the dieselgate scandal. Remote-sensing devices offer investigators an opportunity to directly measure in situ real driving emissions of tens of thousands of vehicles. Remote-sensing N0_2 measurements are not as widely available as would be desirable. The aim of this study is to improve the ability of investigators to estimate the N0_2 emissions and to improve the confidence of the total NOx results calculated from standard remote-sensing device (RSD) measurements. The accuracy of the RSD speed and acceleration module was also validated using state-of-the-art onboard global positioning system (GPS) tracking. Two RSDs used in roadside vehicle emissions surveys were tested side by side under off-carriageway conditions away from transient pollution sources to ascertain the consistency of their measurements. The speed correlation was consistent across the range of measurements at 95% confidence and the acceleration correlation was consistent at 95% confidence intervals for all but the most extreme acceleration cases. VSP was consistent at 95% confidence across all measurements except for those at VSP ≥ 15 kW t~-1, which show a small underestimate. The controlled distribution gas nitric oxide measurements follow a normal distribution with 2o equal to 18.9% of the mean, compared to 15% observed during factory calibration indicative of additional error introduced into the system. Systematic errors of +84 ppm were observed but within the tolerance of the control gas. Interinstrument correlation was performed, with the relationship between the FEAT and the RSD4600 being linear with a gradient of 0.93 and an R~2 of 0.85, indicating good correlation. A new method to calculate NOx emissions using fractional N0_2 combined with NO measurements made by the RSD4600 was constructed, validated, and shown to be more accurate than previous methods. Implications: Synchronized remote-sensing measurements of NO were taken using two different remote-sensing devices in an off-road study. It was found that the measurements taken by both instruments were well correlated. Fractional N0_2 measurements from a prior study, measurable on only one device, were used to create new NO_x emission factors for the device that could not be measured by the second device. These estimates were validated against direct measurement of total NO_x emission factors and shown to be an improvement on previous methodologies. Validation of vehicle-specific power was performed with good correlation observed.
机译:在实际驾驶环境中,车辆排放的氮氧化物(NOx)仅得到部分了解。最近在柴油机门丑闻中暴露的批准测试类型作弊的最新发现引起了全世界的关注。遥感设备为研究人员提供了直接测量成千上万辆汽车实际行驶排放的机会。遥感N0_2测量的应用范围不广。这项研究的目的是提高研究人员估算NO_2排放量的能力,并提高根据标准遥感设备(RSD)测量得出的总NOx结果的置信度。 RSD速度和加速度模块的准确性也通过使用最新的机载全球定位系统(GPS)跟踪进行了验证。在行车条件下,在远离瞬态污染源的情况下,对路边车辆排放调查中使用的两个RSD进行了并排测试,以确定其测量的一致性。除了最极端的加速情况外,所有测量范围内的速度相关性在95%置信度下都是一致的,加速度相关性在95%置信区间内是一致的。除了VSP≥15 kW t〜-1时,VSP在所有测量中均以95%的置信度保持一致,这表明其被低估了。受控分布气体一氧化氮的测量结果遵循正态分布,其中2o等于平均值​​的18.9%,而在工厂校准期间观察到的15%表明了引入系统的其他误差。观察到+84 ppm的系统误差,但在对照气体的容许范围内。进行仪器间相关,FEAT与RSD4600之间的关系呈线性关系,梯度为0.93,R〜2为0.85,表明相关性良好。构造,验证了使用分数N0_2结合RSD4600进行的NO测量来计算NOx排放的新方法,该方法比以前的方法更准确。含义:在越野研究中,使用两种不同的遥感设备对NO进行了同步遥感测量。发现这两种仪器所进行的测量具有良好的相关性。来自先前研究的分数N0_2测量只能在一个设备上进行测量,用于为该设备创建新的NO_x排放因子,而第二个设备无法测量。这些估计值已针对总NO_x排放因子的直接测量进行了验证,并且显示出对以前方法的改进。在观察到良好相关性的情况下进行了车辆特定功率的验证。

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