Hardware-in-the-Loop Simulation for Large-Scale Applications

A. Krama, Mohamed Gharib
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Abstract

The hardware-in-the-loop (HIL) testing methodology has recently gained wide acceptance from the scientific community worldwide, as it allows virtual or actual components of a complex system to be implemented and tested together with the controller in a real-time environment. In this paper, three different case studies are investigated to show the use of the HIL testing methodology in different disciplines. In the first case study, a shunt active power filter for power quality improvement in a distribution network is presented and investigated using the HIL methodology. In the first case study, a HIL platform for drill string system control has also been developed and its operational principle and hardware components are explained. In the third case study, a HIL testing platform was developed for high power induction motor driving drill string system, in which the drill string is studied together with the induction motor and a variable frequency drive to match real-world case scenarios. A variety of tests were performed to provide a comprehensive study on the effectiveness of the HIL testing platform on different applications that take advantage of state-of-the-art real-time simulators. The presented HIL infrastructure can be extended to accommodate different studies on other electromechanical systems.
大规模应用的硬件在环仿真
硬件在环(HIL)测试方法最近得到了全世界科学界的广泛接受,因为它允许在实时环境中与控制器一起实现和测试复杂系统的虚拟或实际组件。在本文中,调查了三个不同的案例研究,以显示在不同学科中使用HIL测试方法。在第一个案例研究中,提出了一种用于改善配电网电能质量的并联有源电力滤波器,并使用HIL方法对其进行了研究。在第一个案例研究中,还开发了用于钻柱系统控制的HIL平台,并解释了其工作原理和硬件组成。在第三个案例研究中,开发了高功率感应电机驱动钻柱系统的HIL测试平台,将钻柱与感应电机和变频驱动器一起进行研究,以匹配实际案例场景。进行了各种测试,以全面研究利用最先进的实时模拟器的HIL测试平台在不同应用中的有效性。所提出的HIL基础结构可以扩展,以适应其他机电系统的不同研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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