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A model-based interfacing concept for accurate power hardware-in-the-loop systems

机译:基于模型的接口概念可实现精确的电源硬件在环系统

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This article introduces a novel concept for the interface of power hardware-in-the-loop (PHiL) test systems. In a PHiL system, a real device under test is connected to dynamic simulation models that emulate high power flows running to and from the device under test. The states of these dynamic models are thus used to physically actuate the real hardware component and likewise the states of the latter serve as an external excitation of the dynamic model. Thus, a PHiL system constitutes a complex interaction of dynamic mathematical models and real hardware components. The purpose of PHiL systems is to operate and test the hardware component as closely to its future designated environment as possible. A crucial factor for a highly accurate PHiL system lies in the interface between virtual dynamic simulation and the physical hardware. Accuracy and performance is often impaired by signal communication delays, sensor noise and insufficient performance of test bed control systems. The approach presented in this article reduces unwanted oscillations based on an online receding optimization of specific state variables in the dynamic simulation environment. In addition, the adherence to physical conservation laws is assured. The interface algorithm makes use of an online model which incorporates knowledge about the dynamics in the underlying simulation. The performance of the proposed methodology is demonstrated and discussed by means of a highly dynamic automotive powertrain PHiL test bed in combination with a complex multibody real-time vehicle simulation.
机译:本文介绍了一种用于电源硬件在环(PHiL)测试系统接口的新颖概念。在PHiL系统中,真实的被测设备连接到动态仿真模型,该模型模拟流向和来自被测设备的高功率流。这些动态模型的状态因此被用于物理地致动实际的硬件组件,并且同样地,后者的状态用作动态模型的外部激励。因此,PHiL系统构成了动态数学模型和实际硬件组件的复杂交互。 PHiL系统的目的是在尽可能接近其未来指定环境的条件下操作和测试硬件组件。高精度PHiL系统的关键因素在于虚拟动态仿真与物理硬件之间的接口。信号通信延迟,传感器噪声和测试台控制系统的性能不足通常会损害准确性和性能。本文提出的方法基于动态仿真环境中特定状态变量的在线后退优化来减少不必要的振荡。此外,可以确保遵守自然保护法。接口算法利用在线模型,该模型在基础仿真中结合了有关动力学的知识。通过高度动态的汽车动力总成PHiL测试台与复杂的多体实时车辆仿真相结合,论证和讨论了所提出方法的性能。

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