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Mechatronic engineering as one facet of CAPE

机译:机电工程作为斗篷的一方

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摘要

The engineering process for railway vehicles comprises a broad variety of different domain expertise - control system, electrical and mechanical engineering. All of these domains are complex by themselves and most of the existing manufacturers are really satisfied having one domain sufficiently supported. One of the successful attempts is Adtranz's CAPE/C (Computer Aided Project Engineering for Control Systems) environment [[1]]. Having such an environment in mind we at ABB Corporate Research have started investigations on traction control engineering which comprises the electrical and mechanical engineering domain. In this paper we present our approach and developed tool support for a closed loop engineering process for development of traction control algorithms, which are validated and refined through mechanical design and simulation. Both domains are using analytical or programmed system representations realised in the control platform Matlab/SIMULINK and the mechanical platform ADAMS. They are integrated electrical engineering environment we have in mind. We conclude this paper with a presentation vision environment where we give some insights about the integration basics and give an outlook of how the co-operation of specific tasks of electrical engineering domain could collaborate with other engineering tasks of railway construction.
机译:铁路车辆的工程过程包括各种不同的域专业知识控制系统,电气和机械工程。所有这些域都是复杂的,而且大多数现有制造商都非常满意拥有一个域,该域具有充分支持的一个域。成功尝试之一是Adtranz的CAPE / C(控制系统的计算机辅助项目工程)环境[[1]]。在ABB企业研究中考虑到了这样的环境,已经开始对牵引力控制工程的调查,该工程包括电气和机械工程领域。在本文中,我们介绍了我们的方法,并开发了用于开发牵引控制算法的闭环工程过程的工具支持,通过机械设计和仿真验证和精制。两个域都使用控制平台MATLAB / SIMULINK和机械平台ADAM中实现的分析或编程系统表示。他们是我们铭记的集成电气工程环境。我们将本文与演示愿景环境结束,我们对整合基础提供了一些见解,并展望了电气工程领域的特定任务的合作如何与铁路建设的其他工程任务合作。

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