Estimation of the Error of the Simplified Algorithm of Processing of Functions of Deflations of Deformed Frames of Bodies of Rolling Stock

Y. Horobets
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Abstract

The study is aimed at assessing the size of the error that arises when processing the results of examining the geometric characteristics of the bearing structures of rolling stock units using an algorithm without using trigonometric functions. The object of the research is a method of simplified alignment of the deflection function of body frame beams to the horizontal plane. One of the biggest problem areas is the lack of understanding by some customers of the work of the possibility of using this algorithm due to the lack of information about the errors that arise in the simplified calculation. The study was carried out by comparing the results of processing the initial data by two methods, obtained during the work on the inspection of the state of the supporting structures of the unit of the shunting diesel locomotive TGM6. One method, the algorithm of which is the subject of this study, assumes that no complex calculations are used during data processing. The second method involves the use of an algorithm for aligning the deflection functions of the body frame beams of a rolling stock unit of railways in the horizontal plane, taking into account all trigonometry tools, which will exclude the accompanying calculation errors of the simplified method. After processing the initial data, two sets of results were obtained – with the desired calculation error and without. Comparison of these datasets yielded an error value for frame tilt of 5.7. For clarity, the size of the error was compared with the expanded uncertainty values of the main sources of uncertainty in the methodology for examining the bearing structures of rolling stock. On the basis of the analysis of two methods of leveling the inclination to the horizontal plane of the deformed rolling stock body frame, the expediency of such an approach has been proved. The results obtained make it possible to reasonably use the Simplified approach to processing the data obtained during the survey of the geometric characteristics of the rolling stock. If necessary, the developed mathematical model can be used to improve the accuracy of calculating the uncertainty of measurements of geometric characteristics, as well as for use in the study of modification of existing or development of new measurement techniques.
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机车车体变形车架收缩函数处理简化算法的误差估计
该研究旨在评估在使用不使用三角函数的算法处理检查机车车辆单元轴承结构几何特征的结果时产生的误差大小。本文的研究对象是框架梁挠度函数在水平面上的简化对齐方法。最大的问题之一是,由于缺乏关于简化计算中出现的错误的信息,一些客户对使用该算法的可能性缺乏理解。对TGM6调车内燃机车机组支承结构状态检测工作中所获得的两种初始数据处理结果进行了对比研究。一种方法,其算法是本研究的主题,假设在数据处理过程中不使用复杂的计算。第二种方法涉及使用一种算法来对准铁路机车车辆单元的车身框架梁的挠度函数在水平面上,考虑到所有的三角工具,这将排除伴随的简化方法的计算误差。在对初始数据进行处理后,得到了两组结果——具有期望的计算误差和没有计算误差。这些数据集的比较得出帧倾斜的误差值为5.7。为了清楚起见,将误差的大小与检查机车车辆轴承结构的方法中主要不确定源的扩展不确定值进行了比较。通过对变形车体框架的两种倾斜度调平方法的分析,证明了这种方法的方便性。所得结果为合理地利用简化方法对机车车辆几何特性调查数据进行处理提供了可能。如有必要,所建立的数学模型可用于提高几何特性测量不确定度计算的准确性,也可用于研究现有测量技术的改进或开发新的测量技术。
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