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Rapid prototyping and Design Space Exploration methodologies for many-accelerator systems

机译:用于多加速器系统的快速原型设计和设计空间探索方法

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The ever-growing design complexity of modern embedded systems and the need for lower energy consumption have lead to design techniques which target to bridge the gap between the designer's productivity and the design complexity. In particular, Virtual Prototyping enables the system modeling and simulation in multiple abstraction levels, while the automated Design Space Exploration (DSE) targets to find optimized design solutions in a reasonable time. However, there is the need for more efficient techniques for prototyping and co-simulation, as the rapid simulation has become a stringent requirement. In addition, as emerging heterogeneous architectures expose even higher design complexity, typical DSE techniques may not achieve high-quality design solutions. Towards this direction, the proposed design flow introduces (a) a set of prototyping techniques which target to faster but accurate simulation, also supporting the system co-simulation with other environments, and (b) a number of DSE methodologies for high-complexity computation and communication architectures.
机译:现代嵌入式系统不断增长的设计复杂性以及对降低能耗的需求,导致了旨在弥合设计人员的生产率与设计复杂性之间差距的设计技术。特别是,虚拟原型可以在多个抽象级别进行系统建模和仿真,而自动设计空间探索(DSE)的目标是在合理的时间内找到优化的设计解决方案。但是,由于快速仿真已成为一项严格的要求,因此需要用于原型设计和协同仿真的更有效的技术。另外,由于新兴的异构体系结构暴露了更高的设计复杂性,典型的DSE技术可能无法实现高质量的设计解决方案。朝着这个方向,拟议的设计流程引入了(a)一套旨在更快,更准确地仿真的原型技术,还支持与其他环境的系统协同仿真;以及(b)多种DSE方法用于高复杂度的计算和通信架构。

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