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Dynamic Analysis of a Tracked Vehicle Based on a Subsystem Synthesis Method

机译:基于子系统合成方法的跟踪车辆动态分析

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This paper concerns about subsystem synthesis method for dynamic analysis of complex multi-body tracked vehicle systems which can be divided into several subsystems. Using subsystem synthesis method, subsystems in the complex model can be independently analyzed with virtual massless reference bodies. The virtual massless reference body has information of position, velocity and acceleration for base body. In the subsystem synthesis method, analyses of position, velocity and acceleration of the subsystems are carried out in a forward recursive fashion. For overall multi-body tracked vehicle system analysis, subsystems can be synthesized to the base body with effective matrix and vector from the virtual massless reference body of each subsystem. Using these effective matrix and vector of subsystems, equations of motion with base body can be solved independently. After then equations of motion of each subsystem can be solved using results of base body. Advantages of the proposed method are investigated in terms of computational efficiency and solution accuracy. In order to show the effectiveness of the proposed method, a multi-body tracked vehicle of seafloor massive sulfide has been analyzed.
机译:本文涉及可分为多个子系统的复杂多体跟踪车辆系统动态分析的子系统合成方法。使用子系统综合方法,通过虚拟的基本参考体可以独立地分析复杂模型中的子系统。虚拟无麻的参考主体具有基体的位置,速度和加速度的信息。在子系统合成方法中,以前向递归方式进行子系统的位置,速度和加速度的分析。对于总体多体履带式车辆系统分析,子系统可以用来自每个子系统的虚免受基准体的有效矩阵的基体合成到基体上。使用这些有效矩阵和子系统的向量,可以独立地解决与基体的运动方程。然后可以使用基体的结果来解决每个子系统的运动方程。在计算效率和解决方案准确性方面,研究了所提出的方法的优点。为了展示所提出的方法的有效性,已经分析了一种多体履带的海底硫化物车辆。

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