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Implementing Lean Six Sigma into curriculum design and delivery - a case study in higher education

机译:在课程设计和交付中实施精益六西格码(Lin 6 Sigma)-以高等教育为例

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Purpose - The purpose of this paper is to propose the development and adoption of a Lean Six Sigma Framework (LSSF) that attempts to create a more balanced and integrated approach between Lean and Six Sigma and one that is capable of achieving improved efficacy of curriculum and programme development in a higher education environment. The implementation of the LSSF is new to the higher education sector. Design/methodology/approach - Using the standard DMAIC cycle as the key driver in the implementation process, most in-depth Lean Six Sigma (LSS) case studies have focussed on manufacturing and engineering-based problems and solutions. This case study offers a detailed analysis of the design and implementation of an integrated LSSF within higher education and focusses primarily on the curriculum design and delivery of a new undergraduate engineering programme in a subject university. As such, this offers a unique perspective of LSS implementation in Higher Education Institutions (HEIs) which drives systems improvements in to the heart of the teaching and learning process. Findings - The design, development and subsequent application of the LSSF enabled the curriculum development team to comprehensively apply LSS in to a subject institution. The Shainin Key Variables Search Technique (KVST) more specifically enabled the team to prioritise the key variables by way of order of importance and, this allowed the team to apply the most appropriate tools and techniques at the key points within the LSSF in order to obtain maximum performance. Research limitations/implications - Whilst this work provides key information on how LSS initiatives are implemented across different institution types, the work has only focussed at a very small sample of HEIs and the case study only being applied to one institution. The work will need to be extended much more widely to incorporate a larger set of HEIs (both research and teaching focussed) in order to provide a more complete map of LSS development in HEIs. Practical implications - The aim of the paper is to provide LSS project leaders in HEIs with a coherent and balanced LSSF in an attempt to assist them in implementing comprehensive LSS programmes thus maximising the improvements in efficiency and operational performance of departments within HEIs. Originality/value - This paper is the first of its kind to study the application of Shainin's KVST in the implementation of LSS programmes in HEIs. The key features highlighted in this work raise important issues regarding the need and importance of developing a balanced LSSF for HEI project implementation.
机译:目的-本文的目的是建议开发和采用精益六西格玛框架(LSSF),该框架试图在精益和六西格玛之间创建一种更加平衡和集成的方法,并且该方法能够提高课程和培训的效率。高等教育环境中的课程开发。 LSSF的实施对高等​​教育部门来说是新的。设计/方法/方法-使用标准DMAIC周期作为实施过程中的关键驱动力,最深入的精益六西格码(LSS)案例研究集中于基于制造和工程的问题和解决方案。本案例研究对高等教育中综合性LSSF的设计和实施进行了详细分析,并且主要侧重于课程设计和在一所主题大学中提供的新的本科工程课程。因此,这为在高等教育机构(HEI)中实施LSS提供了独特的视角,这将系统改进带入了教学过程的核心。结果-LSSF的设计,开发和后续应用使课程开发团队能够将LSS全面应用于主题机构。 Shainin关键变量搜索技术(KVST)更具体地使团队能够按重要性顺序对关键变量进行优先排序,这使团队能够在LSSF的关键点上应用最合适的工具和技术,以便获得最高性能。研究的局限性/意义-尽管这项工作提供了有关如何在不同机构类型中实施LSS计划的关键信息,但这项工作仅集中于一小部分HEI,而案例研究仅应用于一个机构。为了提供更完整的HEI的LSS发展图,需要将工作扩展到更大范围,以纳入更多的HEI(包括研究和教学)。实际意义-本文的目的是为高校中的LSS项目负责人提供一个连贯且平衡的LSSF,以帮助他们实施全面的LSS计划,从而最大程度地提高HEI部门的效率和运营绩效。原创性/价值-本文是研究Shainin的KVST在HEI中实施LSS程序的应用的首例。这项工作中强调的关键特征提出了有关为HEI项目实施开发平衡的LSSF的必要性和重要性的重要问题。

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