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An Efficient Unified Method for the Combined Simulation of Multibody and Hydraulic Dynamics: Comparison with Simplified and Co-Integration Approaches

机译:一种高效的统一方法,用于组合微爱和液压动力学仿真:与简化和共同集成方法的比较

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A formulation developed at the Laboratory of Mechanical Engineering allows robust and efficient simulation of large and complex multibody systems. Simulators of cars, excavators and other systems have been developed showing that real-time simulations are possible even when facing demanding manoeuvres.Hydraulic actuators are present in many industrial applications of multibody systems, like in the case of the heavy machinery field. When simulating the dynamics of this kind of problems that combine multibody dynamics and hydraulics, two different approaches are common: to resort to kinematically guide the variable length of the actuator, thus avoiding the need to consider the dynamics of the hydraulic system; or to perform a multi-rate integration of both subsystems if a more detailed description of the problem is required, for example, when the objective of the study is to optimize the pump control.This work addresses the inclusion of hydraulic actuators dynamics in the above-mentioned self-developed multibody formulation, thus leading to a unified approach. An academic example serves to compare the efficiency, accuracy and ease of implementation of the simplified (kinematic guidance), multi-rate and unified approaches. Such a comparison is the main contribution of the paper, as it may serve to provide guidelines on which approach to select depending on the problem characteristics.
机译:在机械工程实验室开发的制剂允许稳健而有效地模拟大型和复杂的多体系。已经开发了汽车,挖掘机和其他系统的模拟器,表明即使面对苛刻的Manoeuvres,即使在苛刻的Manoeuvres时也是可能的实时模拟。在多体系系统的许多工业应用中存在液压致动器,如重型机械领域的情况。在模拟组合多Buyody动态和液压系统的这种问题的动态时,两种不同的方法很常见:令求助于运动器的可变长度,从而避免需要考虑液压系统的动态;或者,如果需要更详细地描述问题的描述,例如,当研究的目的是优化泵控制时,则执行两个子系统的多速率集成。本工作解决了上述液压执行器动态的包含液压执行器动力学 - 释放自我开发的多体制剂,从而导致统一的方法。学术榜样用于比较简化(运动学指南),多速率和统一方法的实施效率,准确性和易于实现。这样的比较是本文的主要贡献,因为它可以提供根据问题特征选择的准则。

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