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A robust method for collecting and processing the on-road instantaneous data of fuel consumption and speed for motorcycles

机译:用于收集和处理燃料消耗和摩托车速度的道路上瞬时数据的鲁棒方法

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摘要

Using the laboratory-based fuel consumption models for predicting real-world fuel consumption requires the measurement of data under certain conditions to obtain high accuracy of predicted result. Therefore, it is necessary to develop a logging device for measuring the real-time fuel consumption and speed of vehicle on the road. This article presents a study on developing the onboard data logging device to collect real-world data of fuel consumption and speed for motorcycles with the update rate of 1 Hz. The instantaneous speed of the motorcycle was determined based on the rotational speed of the wheel and the wheel radius. Another module was used to determine the instantaneous fuel consumption rate (FR) though measuring the duration injection pulse. The relationship between the duration injection pulse and the injected amount of fuel was established with high correlation coefficient of 0.997. In addition, a filter was designed to remove noise in the dataset collected using the data logging device. The random errors in the speed and the FR profiles were detected and replaced, the percentage of these errors is 1.8% and 2.4%, respectively. The developed method is a precise one for transient fuel consumption and speed measurement. In chassis dynamometer test, the average deviation between steady speed measured by the chassis and the data logging device is only approximately 0.35%. At transient state, the biggest deviation between these two datasets is less than 3.5%. The average FR at steady speed measured by the developed method is slightly different from the one measured by the carbon balance method. The difference is 0.9%, 2.5%, and 0.25% at the speeds of 30 km/h, 50 km/h, and 70 km/h, respectively. Following the transient test cycle, the fuel consumption measured by the developed method is 4.35% lower than that determined by the carbon balance method. Implications: A robust method for collecting and processing the on-road instantaneous data of fuel consumption and speed was developed for motorcycles. The proposed method can record well the real-world driving data for motorcycles, including the fuel consumption and speed, with the update rate of 1 Hz. The filter was designed to minimize noise while maintaining data integrity of the collected dataset, the percentage of errors in the the speed and the FR profiles is 1.8% and 2.4%, respectively. The proposed method, therefore, can be used as effective tools for future studies relating to the fuel consumption and emission of motorcycles on the road.
机译:使用基于实验室的燃料消耗模型来预测现实世界的燃料消耗需要在某些条件下测量数据,以获得预测结果的高精度。因此,有必要开发一种用于测量道路上的实时燃料消耗和车辆速度的测井装置。本文提出了开发车载数据测井设备的研究,以收集摩托车的燃料消耗和速度的实际数据,以1 Hz的更新速率。基于车轮和车轮半径的旋转速度来确定摩托车的瞬时速度。虽然测量持续时间注入脉冲,但是使用另一个模块来确定瞬时燃料消耗率(FR)。建立持续时间注射脉冲与注入量的关系,具有0.997的高相关系数。此外,滤波器被设计用于消除使用数据记录设备收集的数据集中的噪声。检测和更换速度和FR谱的随机误差,这些误差的百分比分别为1.8%和2.4%。开发方法是用于瞬态燃料消耗和速度测量的精确。在底盘测力计测试中,由机箱测量的稳态速度与数据记录设备之间的平均偏差仅为约0.35%。在瞬态状态下,这两个数据集之间的最大偏差小于3.5%。通过开发方法测量的稳定速度的平均FR与通过碳平衡法测量的速度略有不同。差异为0.9%,2.5%和0.25%,速度分别为30 km / h,50 km / h和70 km / h。在瞬态试验周期之后,由开发方法测量的燃料消耗低于碳平衡法确定的4.35%。含义:为摩托车开发了一种用于收集和处理燃料消耗和速度的道路上瞬时数据的鲁棒方法。所提出的方法可以良好地记录摩托车的现实世界驾驶数据,包括燃料消耗和速度,更新速率为1 Hz。滤波器被设计成最小化噪声,同时保持收集数据集的数据完整性,速度和FR谱的误差百分比分别为1.8%和2.4%。因此,该方法可以用作未来研究与道路上摩托车燃料消耗和排放有关的有效工具。

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    School of Transportation Engineering Hanoi University of Science and Technology Hanoi Vietnam;

    Faculty of Transport Safety and Environment University of Transport and Communications Hanoi Vietnam;

    School of Transportation Engineering Hanoi University of Science and Technology Hanoi Vietnam;

    School of Environmental Science and Technology Hanoi University of Science and Technology Hanoi Vietnam;

    School of Transportation Engineering Hanoi University of Science and Technology Hanoi Vietnam;

    School of Transportation Engineering Hanoi University of Science and Technology Hanoi Vietnam;

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