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首页> 外文期刊>IJIDeM: International Journal on Interactive Design and Manufacturing >Product-requirement-model to approach the identification of uncertainties in battery systems development
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Product-requirement-model to approach the identification of uncertainties in battery systems development

机译:产品要求模型,用于识别电池系统开发中的不确定性

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摘要

Electric mobility is on the verge of becoming a mass market. Major automotive OEMs have initiated programs to electrify their product portfolio. This transition poses new challenges and requires new innovative concepts in automotive development processes, especially for battery systems as the key component within electric powertrains. Battery system costs account for up to 40% of the electric vehicle's total costs. Additionally, development cycles of battery systems for automotive applications are characterized by long development periods. Hence, the initiatives to advance electrification result in numerous development projects affiliated with significant development expenses. Battery systems can be referred to as mechatronic and electrochemical systems. They require a complex interaction of diverse scientific and engineering disciplines. Fast innovation cycles have effects regarding product requirements and assumptions towards their allocation. Hereby, uncertainties can lead to risks within development projects, especially in terms of time and costs. In current development processes, necessary changes are only dealt with reactively, causing unplanned additional expenses and delays. Thus, there is need for handling potential changes proactively, i.e. managing uncertainties leading to those changes as early as possible. New methods are necessary to identify and handle uncertainties of complex product systems within requirements engineering. An approach towards comprehensive uncertainty management is taken within this publication.
机译:电动流动性正处于大众市场。主要的汽车OEM已启动程序以使其产品组合能够实现电气。这一转型造成了新的挑战,需要在汽车开发过程中进行新的创新概念,特别是对于电池系统作为电动动力系统内的关键部件。电池系统成本占电动汽车总成本的40%。此外,用于汽车应用的电池系统的开发周期的特点是长发时期的特征。因此,推进电气化的举措导致截所未有的大量发展项目,具有重要的开发费用。电池系统可称为机电和电化学系统。他们需要各种科学和工程学科的复杂相互作用。快速创新周期对产品要求和对其分配的假设具有效果。因此,不确定性可能导致开发项目中的风险,特别是在时间和成本方面。在当前的开发过程中,必要的变化仅处理反应性,导致意外的额外费用和延误。因此,需要主动处理电位变化,即管理导致这些变化的不确定性尽早。需要新的方法来识别和处理需求工程中复杂产品系统的不确定性。在本出版物中采取了一种综合不确定性管理的方法。

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