可进化可靠的MEMS设计工具软件组件解析划分

C. Hoover, P. Khosla
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引用次数: 2

摘要

将软件需求转换为软件设计涉及到将解决方案迭代地划分为软件组件。该过程是人力密集型的,并且不能保证满足诸如可重用性、可演化性和可靠性能等设计目标。设计、构建和修改高保证系统的昂贵过程激发了对精确方法和工具的需求,以生成设计,其相应的实现是可重用的、可发展的和可靠的。我们演示了将软件解决方案的基本元素划分为可重用和进化的软件组件的分析方法。首先,我们简要概述了划分在当前设计方法中的作用,并解释了为什么计算机辅助设计(CAD)工具用于自动化微机电系统(MEIMS)的设计是高保证应用。在此基础上,提出了该方法,并将其应用于计算机辅助设计软件的设计中,对飞机导航单元的MEMS加速度计进行了优化设计。最后,讨论了本研究的意义和未来的研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical partition of software components for evolvable and reliable MEMS design tools
Transforming software requirements into a software design involves the iterative partition of a solution into software components. The process is human-intensive and does not guarantee that design objectives such as reusability, evolvability, and reliable performance are satisfied. The costly process of designing, building, and modifying high assurance systems motivates the need for precise methods and tools to generate designs whose corresponding implementations are reusable, evolvable, and reliable. We demonstrate an analytical approach for partitioning basic elements of a software solution into reusable and evolvable software components. First, we briefly overview the role of partitioning in current design methods and explain why computer-aided design (CAD) tools to automate the design of microelectromechanical systems (MEIMS) are high assurance applications. Then we present our approach and apply it to the design of CAD software to layout an optimized design of a MEMS accelerometer to be used in the navigational units of aircraft. Lastly, we discuss the implications of our approach and future research directions.
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