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Validation of the PC-Crash pedestrian model

机译:验证PC碰撞行人模型

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The pedestrian model in PC-Crash is based on a multibody system, where several bodies are interconnected by joints. Each of these bodies can have different properties to represent the different parts of the human body. The joint properties can be specified independently as well. The theoretical background of the pedestrian model has been introduced in SAE 1999-01-0445 and the model shows to give a good correlation of the gross movement of the pedestrian compared to crash test data. As there are many parameters, which can and have to be specified for the pedestrian model as input parameters, an in-depth validation of the different parameters has to be done to validate this model. This paper describes in detail the validation process for the pedestrian model. A significant number of crash tests (approximately 30) was used as a basis to compare the results of the simulations and the real movement of the test subjects. Different test configurations were selected to provide a set of crash tests, which represents real cases as close as possible. For this reason crash tests with different vehicle types and vehicle shapes were investigated and crash tests with different driving conditions (braking, sliding) were used as well. To show the difference between dummy movement and the movement of human test subjects some tests with human test subjects and some real cases, which were very well documented, have been used. Each of the different tests was reconstructed using PC-Crash and the pedestrian model and the significant difference between simulation results and crash tests are pointed out. A special interest has been focused on the pedestrian trajectories and the contact locations between the pedestrian and other objects. All tests and simulations are compared in the conclusion and the usability of the pedestrian model in different accident configuration is discussed. Typical parameter ranges for the different input parameters like pedestrian geometry, weight and stiffness parameters are presented as well.
机译:PC崩溃的行人模型基于多体系,其中几个机构通过关节互连。这些体中的每一个可以具有不同的性质来表示人体的不同部位。联合性能也可以独立指定。 SAE 1999-01-0445介绍了行人模型的理论背景,模型显示与碰撞测试数据相比,行人的总运动良好的相关性。由于有许多参数,可以且必须为行人模型指定为输入参数,必须对不同参数进行深入验证来验证该模型。本文详细介绍了行人模型的验证过程。将大量的碰撞测试(约30)用作比较模拟结果和测试对象的真实运动的基础。选择不同的测试配置以提供一组碰撞测试,该测试表示尽可能接近的真实情况。因此,研究了具有不同车辆类型和车辆形状的碰撞测试,并使用不同的驾驶条件(制动,滑动)进行碰撞试验。为了表明虚拟运动与人类测试的运动之间的差异,已经使用了具有人体测试对象的一些测试和一些实际情况,这些案例被使用了很好的记录。使用PC崩溃重建每个不同的测试,并且指出了仿真结果和碰撞测试之间的显着差异。特殊兴趣专注于行人轨迹和行人和其他物体之间的接触位置。讨论了所有测试和模拟,讨论了在不同事故配置中的结论和行人模型的可用性。典型的参数范围为行人几何,重量和刚度参数等不同输入参数。

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