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SOLVING CONFLICTING ENGINEERING PROBLEMS IN EDUCATION, RESEARCH AND PRACTICE - ENHANCED APPROACH

机译:解决教育,研究与实践中的互补工程问题 - 增强方法

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The nature of engineering is problem solving. The challenge of ongoing design research is to develop a tool that would support the most difficult phase of design - solving problems with contradictions and finding the best possible idea for conceptual design of products. The Brief Theory of Inventive Problem Solving (BTIPS) is a prospective tool for performing such a task. Derived from TRIZ, TSIP and TIPS, BTIPS slightly differs from those methods. Principles, Effects and Prediction modules in BTIPS are enhanced to meet the newest challenges of engineering pedagogy and technology development. To meet those challenges principles of Size Reduction, Miniaturization, Nanotechnology and Biotechnology were added. Design principles and technological effects were enriched with new developments based on nanotechnology and biotechnology. Furthermore the procedure of the Virtual Element approach was added to the Prediction module. The tests of functions' separation and minimum information contents to evaluate the derived end solution are also the new additions. BTIPS is living and developing; it is taught and used, and, thus, constantly improved. This paper points out the enhancements and shows some ways of BTIPS application in solving problems with conflicting constraints in conceptual design.
机译:工程的性质是解决问题。正在进行的设计研究的挑战是开发一种工具,该工具将支持最困难的设计 - 解决问题解决问题,并找到了产品概念设计的最佳理想。本发明问题解决(BTIPS)的简要理论是用于执行这种任务的前瞻性工具。来自TRIZ,TSIP和提示,BTIPS略有不同于这些方法。 BTIPS中的原理,效果和预测模块得到了增强,以满足工程教学和技术发展的最新挑战。为了满足这些挑战,增加了规模,小型化,纳米技术和生物技术的规模原则。基于纳米技术和生物技术的新发展,富集设计原则和技术效应。此外,将虚拟元方法的过程添加到预测模块中。函数的分离和最小信息内容进行评估的函数的测试也是新的添加。 BTIPS正在生活和发展;它被教导和使用,因此不断提高。本文指出了增强功能,并显示了在概念设计中解决冲突的限制问题中的一些方法。

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