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基于碰撞后自行车手运动轨迹的汽车-自行车碰撞情况研究。

Research on the Circumstances of a Car-Cyclist Collision, Based on the Trajectory of the Cyclist's Movement after the Collision.

机构信息

Department of Automobile Engineering, Faculty of Transport Engineering, Vilnius Gediminas Technical University, J. Basanaviciaus str. 28B, LT-03224 Vilnius, Lithuania.

出版信息

Sensors (Basel). 2022 Aug 23;22(17):6324. doi: 10.3390/s22176324.

Abstract

This article examines a simulated collision between a car and a cyclist, assessing the trajectory of the cyclist's movement after the impact, namely the throwing distances and angles of the cyclist and bicycle. Information about the car and cyclist models used for the study is provided. Special software PC CRASH 8.1 for the analysis and reconstruction of traffic accidents was used to simulate a car-cyclist collision. Simulations of car-cyclist collisions were carried out, with different speeds for the car and the cyclist, and locations at the time of the impact. The movement of a bicycle after a crash tends to be irregular and is dependent on various parameters that are usually not possible to evaluate. Therefore, the parameters of the movement of the bicycle after the collision (the throwing angle and the distance) usually do not allow determination of the speed of the car before the accident. The movement of the cyclist after impact was more informative for determining the speed of the car before the accident. For example, when there was an angle of 30°, 60°, or 90° between the longitudinal axes of the car and the cyclist, there was a clear dependence between the speed of the car and the cyclist's throwing distance, and usually also between the speed of the car and the cyclist's throwing angle. Thus, in such cases, it is possible to determine approximately the initial speed of the car before the collision, based on the trajectory of the cyclist's movement after the impact, namely his throwing distance and angle. In cases of real traffic accidents, with knowledge of the location of the car-cyclist collision and the position of the cyclist after the traffic accident, the speed of the car before the accident can be determined according to the abovementioned dependencies. Thus, the proposed methodology could be used in the reconstruction and examination of traffic accidents.

摘要

本文研究了汽车与自行车碰撞的模拟情况,评估了碰撞后自行车运动员的运动轨迹,即自行车运动员和自行车的投掷距离和角度。提供了用于研究的汽车和自行车模型的信息。使用专门的 PC CRASH 8.1 软件分析和重建交通事故来模拟汽车-自行车碰撞。对汽车-自行车碰撞进行了模拟,汽车和自行车的速度和撞击位置都有所不同。碰撞后自行车的运动往往是不规则的,取决于通常无法评估的各种参数。因此,碰撞后自行车的运动参数(投掷角度和距离)通常不允许确定事故发生前汽车的速度。撞击后自行车运动员的运动对于确定事故发生前汽车的速度更具信息性。例如,当汽车和自行车的纵轴之间存在 30°、60°或 90°的角度时,汽车速度和自行车运动员投掷距离之间存在明显的相关性,通常汽车速度和自行车运动员投掷角度之间也存在相关性。因此,在这种情况下,根据撞击后自行车运动员运动的轨迹,即其投掷距离和角度,可以大致确定碰撞前汽车的初始速度。在实际交通事故中,根据汽车-自行车碰撞的位置和事故后自行车运动员的位置,可以根据上述相关性确定事故发生前汽车的速度。因此,所提出的方法可以用于交通事故的重建和检查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/099f/9460042/6b1826a2d37b/sensors-22-06324-g001.jpg

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