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MULTIDISCIPLINARY COLLABORATION METHODOLOGY FOR SYSTEM-OF-SYSTEMS (SoS)

机译:系统间(SoS)的多学科协作方法

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摘要

Collaboration of system of systems differences, impose robust design challenges for multidisciplinary design methodology. Integrating application-specific signal processor cores, memory, analog and MEMs functions on the same monolithic chip of silicon involves unique collaborative design methodology in both the macro and micro arenas. Macro collaborative automation tools reflecting rapid prototyping techniques, enabling teams of designers to work together from remote sites is today's realization. Micro collaborative approaches in submicron manufacturing capability, requires advances in interoperability simulation technology, hardware description languages, design analysis tools, model availability and accuracy, physical design tools, design synthesis tools, pre-developed and tested libraries of intellectual property, design advisors and test generators is tomorrow's future. At present, no micro collaborative design environment is capable of this methodology. Establishment of cross-tool interoperability design interchange standards that can bridge the gap between future and present collaborative design methodology and reduce the cost of system-of-systems (SoS) design and design time is required.
机译:系统差异的系统协作,对多学科设计方法提出了强大的设计挑战。在一块硅单片芯片上集成专用信号处理器内核,存储器,模拟和MEMs功能需要在宏观和微观领域采用独特的协作设计方法。宏协作自动化工具反映了快速的原型技术,使设计师团队能够从远程站点一起工作已成为当今的现实。亚微米制造能力中的微协作方法要求互操作性仿真技术,硬件描述语言,设计分析工具,模型可用性和准确性,物理设计工具,设计综合工具,预先开发和测试的知识产权库,设计顾问和测试方面的进步发电机是明天的未来。当前,没有任何微型协作设计环境可以使用此方法。需要建立跨工具互操作性设计互换标准,该标准可以弥合未来和当前协作设计方法之间的差距,并减少系统间(SoS)设计和设计时间的成本。

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