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A Variant Management based Methodology for the Requirements-Engineering Process of Mechanical Parts

机译:基于变体管理的机械零件需求工程过程方法

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The value of software or functionality that is realized using software within modern cars is about 35% of the value of the car itself. We typically have more than 70 ECU in a car with functionality realized and controlled by software. Although most of the current research is focused on software engineering issues, the problems addressed in the software area also occur in the development of mechanical components. Globalization is not limited to software, it also impacts the development departments of OEMs (Original Equipment Manufacturers) with components requested and produced all over the world. Additionally, variability of hardware components used to customize cars is drastically increasing and can be compared to the variability growth in software. Therefore, the efficient and effective handling of requirements for mechanical parts is one of the key factors for a sustainable success within automobile industry. To be able to cope with the expected complexity, Volkswagen decided to introduce a new product line based requirements management methodology. The paper describes the developed methodology and experience made when introducing such a methodology.
机译:在现代汽车内使用软件实现的软件或功能的价值约占汽车本身价值的35%。我们通常在汽车中拥有超过70个ECU,其功能通过软件实现和控制。虽然目前的大多数研究专注于软件工程问题,但在机械部件的开发中也发生了软件区域中解决的问题。全球化不仅限于软件,它也会影响OEM(原始设备制造商)的发展部门与世界各地要求和生产的组件。此外,用于定制汽车的硬件组件的可变性急剧增加,并且可以与软件的可变性增长进行比较。因此,有效有效地处理机械零件的要求是汽车行业可持续成功的关键因素之一。为了能够应对预期的复杂性,大众汽车决定引入基于新的产品线的要求管理方法。本文介绍了在引入这种方法时所做的发达的方法和经验。

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