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The “Static” and “Dynamic” Design Verification Stages of the Lean Development Process: Automotive Industry

机译:精益开发过程的“静态”和“动态”设计验证阶段:汽车工业

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he design verification steps that take place in today’s automotive industry, which constitute the values of each successive or simultaneous phase in the new product development process, create a complex structure with the inclusion of each new technology and discipline. Therefore, step by step, each design verification phase definition in the flow contains important phase transition measurements or approval tolerances that ensure the simplicity and continuity of vehicle development processes. In addition, classification of design verification stages within the framework of this study or evaluation in two classes (static and dynamic) is a new approach, but it is a synthesis with the analysis of the new product development process. The vehicle’s basic structure, which constitutes the ergonomic and functional requirements of the vehicle in a static environment, takes into account the dynamic environment variables with crash or accident tests. Increasing new technology adaptations in the automotive industry have changed the new product development process that performs this function structurally and created the concept of design verification under consecutive or simultaneous process simplicity. From the autonomous driving to the use of alternative energy, possible accident scenarios and design verification phase transitions in the integration of parts and systems of the newly developed vehicle create a new structure that models and directs the lean product development process especially in the automotive industry in the coming days. In the lean product development process that takes place in the automotive industry, the design verification transition steps or the approval-control analysis of the development stages, which form a new and effective approach, are re-modeling the entire flow. Therefore, successful execution of design verification steps used in the control of new interdisciplinary product development phase transitions provides value creation.?Within the scope of this study, the effectiveness of the static and dynamic design verification steps, which are carried out in 5 global automotive companies included in the research, which constitute the stage transitions of the new product development process, has been measured. Apart from the design verification transition stages, the process variables that differ among the automotive companies involved in the research are excluded from the scope of this study. In other words, in field researches in the automotive industry, new vehicle design steps or basic engineering steps in the new product development process steps, while creating independent fixed variables, interdisciplinary collaborations, static and dynamic design verification transition stages they perform, or their sequence in the basic flow, is accepted as a dependent variable. Therefore, in the study, the positive effect of the automotive companies that included the static and dynamic design verification phase transition approvals in the lean product development process was investigated. Under the comparative analysis structure of the research, the effect of automotive companies, which accept international vehicle specifications as static design verification input, on market performance has been examined in depth. The detailed depth in the comparison analysis conducted under the second field studies of the study is due to the prediction of dynamic design verification stages to provide a high impact on the market performance, according to the static verification analysis. The new product development stages of the dependent variables were fixed and the flow-oriented?“effect”?of the independent variables in the basic process influenced by the design verification activities was analyzed under the new automotive industry company comparisons. In addition, the impact of the automotive design activities that make up the comparison analysis of the research on the scope of the lean product development stage and its effect on the basic process flow has been demonstrated competition-oriented. Therefore, sub-variables, options, criteria, results, which form a defined comparison problem, create basic test values that affect the problem.
机译:他设计了在当今汽车行业中进行的验证步骤,该步骤构成了新产品开发过程中每次连续或同步阶段的价值,创造了一种复杂的结构,包括包括每项新技术和纪律。因此,步骤逐步下,流中的每个设计验证阶段定义包含重要的相位过渡测量或批准公差,以确保车辆开发过程的简单性和连续性。此外,在这项研究的框架内的设计验证阶段的分类或两类评估(静态和动态)是一种新方法,但它是对新产品开发过程分析的合成。车辆的基本结构构成了静态环境中车辆的符合人体工程学和功能性要求,考虑到崩溃或事故测试的动态环境变量。提高汽车工业的新技术适应已经改变了结构性地执行此功能的新产品开发过程,并在连续或同时流程下创造了设计验证的概念。从自动驾驶到使用替代能源的使用,可能的事故情景和设计验证阶段转换在新开发的车辆的零件和系统的集成中,创造了一种新的结构,旨在指导精益产品开发过程,特别是在汽车行业中即将到来的日子。在汽车行业发生的精益产品开发过程中,设计验证转型步骤或开发阶段的审批控制分析,形成了一种新的和有效的方法,重新建立整个流程。因此,在新跨界产品开发阶段转换控制中使用的设计验证步骤的成功执行提供了价值创建。在本研究的范围内,静态和动态设计验证步骤的有效性,在5个全球汽车中进行已经衡量了该研究,包括在研究新产品开发过程的阶段过渡。除了设计验证过渡阶段,涉及该研究的汽车公司之间不同的过程变量被排除在本研究的范围之外。换句话说,在汽车行业的实地研究中,新的车辆设计步骤或基础工程步骤在新产品开发过程步骤中,同时创建独立的固定变量,跨学科合作,静态和动态设计验证转换阶段他们执行,或它们的序列在基本流程中,被接受为从属变量。因此,在研究中,研究了包括静态和动态设计验证阶段转型批准的汽车公司的积极效果。在研究的比较分析结构下,汽车公司接受国际车辆规格作为静态设计验证投入的影响,深入研究了市场性能。根据静态验证分析,在研究的第二场研究下进行的比较分析中进行的比较分析中的详细深度是由于静态验证分析的动态设计验证阶段对市场性能的高影响力。根据新的汽车工业公司的比较分析了由新的汽车行业公司比较分析了依赖变量的新产品开发阶段,并定向左转此外,在竞争对图中,弥补了弥补了对贫民开发阶段范围及其对基本过程流程的影响的对比分析的影响。因此,子变量,选项,标准,结果,即形成了定义的比较问题,创建影响问题的基本测试值。

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