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Modeling of hybrid electromechanical systems using a component-based approach

机译:利用基于组件的方法建模混合机电系统

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Current approaches for modeling electromechanical systems (EMS) are either based on deriving the system equations by applying a single formulation to all problem domains, or they are based on trying to integrate different software packages/modules to solve the interdisciplinary problem. In this paper, we present a component-based approach that is suitable for hybrid electromechanical systems. This approach allows the governing equations of each component to be defined in terms of its natural variables. The different component equations are then brought together to form a single system of differential-algebraic equations (DAE's), which can be numerically solved to obtain the system response. The formulation includes monitor functions which can be used to detect when a qualitative system change has occurred, and to switch to a new set of governing equations to reflect this change. To handle discrete devices, the approach takes advantage of the fact that even such devices generally display piecewise smooth behavior, i.e., in the interval between successive sampling/switching times, they usually act as continuous devices. A single step integrator is used to integrate the system response interval by interval, without stepping over a sampling/switching time during an integration time step. The integration is restarted at each sampling/switching time. There is considerable flexibility in how the components can be defined. Examples of mechanical and electrical components are presented, and two numerical examples are solved to illustrate the efficacy of the proposed method. One example is a link that is driven by a DC motor through a gearbox. The results of this example were verified against Simulink, and good agreement was observed. The second example is a hybrid system that uses encoder feedback to control velocity of a dc motor driven link.
机译:用于建模机电系统(EMS)的电流方法是基于通过对所有问题域应用单个配方来导出系统方程,或者它们是基于尝试集成不同的软件包/模块来解决跨学科问题。在本文中,我们介绍了一种适用于混合机电系统的基于组件的方法。该方法允许在其自然变量方面定义每个组件的控制方程。然后将不同的部件方程组合在一起以形成单个差分代数方程(DAE)系统,其可以在数量上解决以获得系统响应。该配方包括监视功能,可以用于检测发生定性系统的变化,并切换到新的管理方程集以反映这种变化。为了处理离散设备,该方法利用了甚至这些设备通常显示分段平滑行为的事实,即,在连续采样/切换时间之间的间隔中,它们通常充当连续设备。单个步骤积分器用于通过间隔集成系统响应间隔,而不踩过积分时间步骤期间的采样/切换时间。在每个采样/切换时间内重新启动集成。如何定义组件时具有相当大的灵活性。提出了机械和电气部件的示例,并解决了两个数值示例以说明所提出的方法的功效。一个示例是由DC电机通过变速箱驱动的链接。该示例的结果验证了针对Simulink的验证,观察到良好的一致性。第二示例是混合系统,其使用编码器反馈来控制DC电机驱动链路的速度。

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