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Bond graphs, modeling and simulation in industry: some examples where costly mistakes could have been avoided

机译:行业中的粘合图,建模和仿真:避免了昂贵错误的一些例子

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In order to develop new concepts into prototypes and ultimately into products, physical system modeling is virtually a necessity. At the concept stage, low order models are needed to understand the interactive dynamics of complex systems, and, as development proceeds into prototyping and manufacture, more sophisticated models may be needed to size components, determine fatigue life, plus more. As the product becomes more and more defined, the modeling depends more and more on special purpose software packages that evaluate stress and strain, magnetic circuit design, fluid flow fields, etc. These packages require that the product is near final form, as the input files for these programs require details about the system that would not be known in the concept development stage. The modeling discussed in this paper is specifically directed to the concept development of mechatronic systems. These systems typically involve multiple energy domains where electro-mechanical, pneumatic, and -hydraulic devices are involved. Since the device or system is not well defined at this stage, the modeling must be handled by the inventors using physical principles, and assembling the various pieces of the model into an overall dynamic model that can be simulated. Bond graphs are particularly well suited for concept development of multi-energy domain systems. This is demonstrated here using several examples where modeling at an early stage of development would have avoided some very costly mistakes.
机译:为了将新的概念开发成原型和最终进入产品,物理系统建模几乎是必需品。在概念阶段,需要低阶模型来了解复杂系统的交互式动态,随着开发进入原型制造和制造,可能需要更复杂的模型来规模组件,确定疲劳寿命,加上更多。由于产品变得越来越多地,建模越来越多地取决于评估应力和应变,磁路设计,流体流动场等的专用软件包等。这些封装要求产品近最终形式,作为输入这些程序的文件需要有关在概念开发阶段中未知的系统的详细信息。本文讨论的建模专门针对机电系统的概念发展。这些系统通常涉及多个能量域,其中涉及电动机电,气动和-THRUALIC装置。由于设备或系统在该阶段没有很好地定义,因此必须使用物理原则来处理建模,并使用物理原则处理,并将模型的各种部分组装成可以模拟的整体动态模型。粘合图特别适用于多能源域系统的概念开发。这里使用几个例子来展示了一个在开发早期阶段的建模将避免一些非常昂贵的错误。

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