首页> 外文会议>ASME Power Conference pt.B; 20050405-07; Chicago,IL(US) >REAL TIME SIMULATION FOR SPEED CONTROL OF SWITCHED RELUCTANCE MOTOR DRIVE POWERED BY A FUEL CELL SYSTEM
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REAL TIME SIMULATION FOR SPEED CONTROL OF SWITCHED RELUCTANCE MOTOR DRIVE POWERED BY A FUEL CELL SYSTEM

机译:燃料电池系统驱动的开关磁阻电机驱动器速度控制的实时仿真

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In a competitive world, using real-time simulation rather than off-line simulation provides significant advantage for imitating system dynamics in a real world. Real-time simulation could minimize decision risks for real implementation, shorten design cycle, enhance reliability of research results, and, last but not least, save research and development cost. Moreover, real-time simulation could be also implemented to include real hardware into the loop while is kept as flexible as an off-line numerical simulation. In this paper, a real time simulation mechanism is presented for studying switch reluctance motor(SRM) drive control powered by a fuel cell. The fuel cell stack model is simulated by a software package developed by Emmeskay, Inc., which can be operated in real time. The whole real time simulation is conducted on a two-node platform hosted by RT-Lab, a software product of Opal-RT Technologies, Inc. and engineered by fixed-step real time operating system. In particular, as an illustrating example, an SRM drive control model is first built and then connected with fuel cell stack model. The whole system model is then compiled and operated in real-time on the two-node platform. The real-time simulation result is validated by its off-line simulation counterpart. It is pointed out that this real-time simulation set-up could be easily converted into a hardware-in-the-loop (HIL) simulation carrying real hardware such as microcontroller, real motor, etc., when deemed as necessary. The simulation methodology presented in this paper also indicates a potential low cost approach to support experimentally real-time research and development activities for fuel cell related systems. Considering the high cost to build a real fuel cell system, the set-up described in this paper is extremely meaningful for research and development communities.
机译:在竞争激烈的世界中,使用实时仿真而不是离线仿真为模仿现实世界中的系统动力学提供了显着优势。实时仿真可以最大程度地减少实际实施过程中的决策风险,缩短设计周期,增强研究结果的可靠性,并且最后但同样重要的是,可以节省研发成本。此外,还可以实现实时仿真,以将实际硬件包括在循环中,同时保持与离线数值仿真一样的灵活性。本文提出了一种实时仿真机制,用于研究由燃料电池驱动的开关磁阻电动机(SRM)驱动控制。燃料电池堆模型是由Emmeskay,Inc.开发的软件包进行仿真的,该软件包可以实时运行。整个实时仿真在RT-Lab托管的两节点平台上进行,RT-Lab是Opal-RT Technologies,Inc.的软件产品,由固定步长的实时操作系统设计。特别地,作为说明性示例,首先建立SRM驱动控制模型,然后将其与燃料电池堆模型连接。然后,整个系统模型将在两节点平台上实时编译和操作。实时仿真结果通过其离线仿真副本进行验证。要指出的是,在认为必要时,可以将这种实时仿真设置轻松转换为带有真实硬件(例如微控制器,真实电动机等)的硬件在环(HIL)仿真。本文介绍的仿真方法还表明了一种潜在的低成本方法,可支持燃料电池相关系统的实验性实时研究与开发活动。考虑到构建真正的燃料电池系统的高昂成本,本文中描述的设置对研发社区非常有意义。

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