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Applying TRIZ and AHP to develop innovative design for automated assembly systems

机译:应用TRIZ和AHP开发自动化装配系统的创新设计

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Innovative design in the development of new product and process has become the core value in most business establishments. These innovative designs are often associated with the long-established trade-off compromises or conflicting performance parameters where speed and reliability or quality and cost are readily acknowledged. The rate of change in technology and the commercial environment suggests that the opportunity for innovative design is accelerating and systematic support for innovation process is needed. This study combines the Russian theory of inventive problem solving (TRIZ) and the analytical hierarchy process (AHP) for designing the automated manufacturing systems. This study applied the contradiction matrix table, 40 innovative principles, and 39 engineering parameters to compromise the trade-off between design contradictions and engineering parameters. The design engineers can acquire more feasible solutions and inspiration through the proposed approach. However, due to vagueness and uncertainty in the decision maker’s judgment, an AHP is employed as a decision support tool that can adequately represent qualitative and subjective assessments under the multiple criteria decision making environment. Moreover, the proposed approach can help decision makers facilitate the selection and evaluation of innovative designs in the presence of intangible attributes and uncertainty. In short, the objectives of this research are to use TRIZ to propose the automated design alternatives under the innovative design consideration and to use an AHP to evaluate and select the best feasible alternative under multiple criteria. A case study of designing automated connector assembly line has been used to demonstrate the applicability of the proposed approach. Keywords TRIZ - Analytical hierarchy process - Contradiction matrix table - Automated manufacturing system
机译:新产品和工艺开发中的创新设计已成为大多数企业机构的核心价值。这些创新的设计通常与长期存在的折衷妥协或冲突的性能参数相关联,在这些参数中,速度,可靠性,质量和成本都得到了公认。技术和商业环境的变化速度表明,创新设计的机会正在加速,并且需要对创新过程的系统支持。这项研究结合了俄罗斯的发明问题解决理论(TRIZ)和层次分析过程(AHP)来设计自动化制造系统。本研究运用矛盾矩阵表,40条创新原理和39个工程参数来折衷设计矛盾和工程参数之间的权衡。通过提出的方法,设计工程师可以获得更可行的解决方案和灵感。但是,由于决策者判断中的模糊性和不确定性,AHP被用作决策支持工具,可以在多标准决策环境下充分代表定性和主观评估。此外,所提出的方法可以帮助决策者在存在无形属性和不确定性的情况下,促进创新设计的选择和评估。简而言之,本研究的目的是使用TRIZ提出创新设计考虑下的自动化设计替代方案,并使用AHP来评估和选择多个标准下的最佳可行替代方案。设计自动连接器装配线的案例研究已被用来证明所提出方法的适用性。关键词TRIZ-层次分析法-矛盾矩阵表-自动化制造系统

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