To address the fuzziness and variability in determining customer demand importance,a dynamic analysis method based on intuitionistic fuzzy numbers is proposed.First,selected customers use intuitionistic fuzzy numbers ...To address the fuzziness and variability in determining customer demand importance,a dynamic analysis method based on intuitionistic fuzzy numbers is proposed.First,selected customers use intuitionistic fuzzy numbers to represent the importance of each demand.Then,the preference information is aggregated using customer weights and time period weights through the intuitionistic fuzzy ordered weighted average operator,yielding a dynamic vector of the subjective importance of the demand index.Finally,the feasibility of the proposed method is demonstrated through an application example of a vibrating sorting screen.展开更多
卓越工程师培养的质量保障和控制是一项复杂的系统工程,需要科学和规范的方法提供指导和决策支持。深入分析卓越工程师培养的通用标准和质量保障要求,构建基于动态质量功能展开(DQFD,Dynamic Quality Function Deployment)的卓越工程师...卓越工程师培养的质量保障和控制是一项复杂的系统工程,需要科学和规范的方法提供指导和决策支持。深入分析卓越工程师培养的通用标准和质量保障要求,构建基于动态质量功能展开(DQFD,Dynamic Quality Function Deployment)的卓越工程师培养质量保障控制模型,将质量需求以及来自社会、学生和各种监控活动的反馈信息逐层内化到质量规划和设计、保障要素规划和设计的各个环节中,实现卓越工程师培养质量的持续改进。展开更多
文摘To address the fuzziness and variability in determining customer demand importance,a dynamic analysis method based on intuitionistic fuzzy numbers is proposed.First,selected customers use intuitionistic fuzzy numbers to represent the importance of each demand.Then,the preference information is aggregated using customer weights and time period weights through the intuitionistic fuzzy ordered weighted average operator,yielding a dynamic vector of the subjective importance of the demand index.Finally,the feasibility of the proposed method is demonstrated through an application example of a vibrating sorting screen.
文摘卓越工程师培养的质量保障和控制是一项复杂的系统工程,需要科学和规范的方法提供指导和决策支持。深入分析卓越工程师培养的通用标准和质量保障要求,构建基于动态质量功能展开(DQFD,Dynamic Quality Function Deployment)的卓越工程师培养质量保障控制模型,将质量需求以及来自社会、学生和各种监控活动的反馈信息逐层内化到质量规划和设计、保障要素规划和设计的各个环节中,实现卓越工程师培养质量的持续改进。