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An improved methodology for dynamic modelling and simulation of electromechanically coupled drive systems: An experimental validation

机译:机电耦合驱动系统的动态建模和仿真的改进方法:实验验证

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摘要

The complexity of electromechanical coupling drive system (ECDS)s, specifically electrical drive systems, makes studying them in their entirety challenging since they consist of elements of diverse nature, i.e. electric, electronics and mechanics. This presents a real struggle to the engineers who want to design and implement such systems with high performance, efficiency and reliability. For this purpose, engineers need a tool capable of modelling and/or simulating components of diverse nature within the ECDS. However, a majority of the available tools are limited in their capacity to describe the characteristics of such components sufficiently. To overcome this difficulty, this paper first proposes an improved methodology of modelling and simulation for ECDS. The approach is based on using domain-based simulators individually, namely electric and mechanic part simulators and also integrating them with a co-simulation. As for the modelling of the drive machine, a finely tuned dynamic model is developed by taking the saturation effect into account. In order to validate the developed model as well as the proposed methodology, an industrial ECDS is tested experimentally. Later, both the experimental and simulation results are compared to prove the accuracy of the developed model and the relevance of the proposed methodology.
机译:机电耦合驱动系统(ECDS),特别是电驱动系统的复杂性,使它们的整体研究变得具有挑战性,因为它们由多种性质的元素组成,即电,电子和机械。这给想要以高性能,高效率和可靠性设计和实施此类系统的工程师们带来了真正的挑战。为此,工程师需要一种能够对ECDS内不同性质的组件进行建模和/或仿真的工具。但是,大多数可用工具的能力有限,不足以充分描述此类组件的特征。为了克服这个困难,本文首先提出了一种改进的ECDS建模和仿真方法。该方法基于分别使用基于域的仿真器,即电气和机械零件仿真器,并将它们与协同仿真集成在一起。对于驱动器的建模,通过考虑饱和效应来开发微调的动态模型。为了验证开发的模型和建议的方法,对工业ECDS进行了实验测试。随后,将实验结果和仿真结果进行比较,以证明所开发模型的准确性以及所提出方法的相关性。

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