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An inverse railway wagon model and its applications

机译:逆向货车模型及其应用

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An inverse wagon model was developed to estimate wheel-rail contact forces using only measurements of wagon body responses as inputs. The purpose of this work was to provide mathematical modelling to embed in low-cost devices that can be mounted on each freight wagon in a large wagon fleet. To minimize cost, complication, and the maintenance inconvenience of these devices, the constraint is imposed that transducers and connections are limited to locations on the wagon body. Inputs to the inverse model developed include only vertical and lateral translational accelerations and angular accelerations of roll, pitch, and yaw of the wagon body. The model combines the integration and partial modal matrix (PMM) techniques together to form an IPMM method. Besides wheel-rail contact forces some motion quantities such as the lateral and yaw displacements of wheelset are also predicted. Results from the inverse model were compared with data from full scale laboratory suspension tests for vertical suspension excitations. The inverse model was also compared with results from simulations completed in VAMPIRE~® for more complicated track input profiles. The model results and the applications of the model are discussed.
机译:开发了逆货车模型以仅使用货车车身响应的测量值作为输入来估计轮轨接触力。这项工作的目的是提供数学模型,以将其嵌入可以安装​​在大型货车车队的每个货车上的低成本设备中。为了使这些设备的成本,复杂性和维护不便最小化,施加了约束,即换能器和连接被限制在货车车体上的位置。开发的逆模型的输入仅包括货车车体的垂直和横向平移加速度以及侧倾,俯仰和偏航的角加速度。该模型将集成和部分模态矩阵(PMM)技术结合在一起,形成了IPMM方法。除了轮轨接触力外,还预测了一些运动量,例如轮对的横向和偏航位移。将逆模型的结果与垂直悬架激励的全尺寸实验室悬架测试数据进行比较。还将逆模型与VAMPIRE®中完成的模拟结果进行了比较,以获得更复杂的轨道输入曲线。讨论了模型结果和模型的应用。

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