基于进化蚁群优化的粗粒度可重构系统协同软硬件划分

Dawei Wang, Sikun Li, Y. Dou
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引用次数: 9

摘要

可重构架构的灵活性、性能和成本效益使其在嵌入式应用中得到广泛应用。粗粒度可重构系统设计非常复杂,需要多领域专家在应用算法设计、软硬件协同设计和系统决策等方面进行协作。然而,现有的可重构系统设计方法和环境只能支持硬件/软件协同设计,忽略了多领域专家之间的协作。提出了一种基于进化蚁群优化的粗粒度可重构系统设计协同划分方法。我们为系统决策工程师、软件设计人员、硬件设计人员和应用算法开发人员创建了一个分布式协作设计环境。该方法不仅利用蚁群算法在全局最优解搜索中的优势,而且为多领域专家协同工作提供了一个框架。实验结果表明,该方法提高了粗粒度可重构系统设计的硬件/软件划分质量和速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Collaborative hardware/software partition of coarse-grained reconfigurable system using evolutionary ant colony optimization
The flexibility, performance and cost effectiveness of reconfigurable architectures have lead to its widespread use for embedded applications. Coarse-grained reconfigurable system design is very complex for multi-fields experts to collaborate on application algorithm design, hardware/software co-design and system decision. However, existing reconfigurable system design methods and environments can only support hardware/software co-design, ignoring the collaboration between multi-field experts. This paper presents a collaborative partition approach of coarse-grained reconfigurable system design using evolutionary ant colony optimization. We create a distributed collaborative design environment for system decision engineers, software designers, hardware designers and application algorithm developers. The method not only utilizes the advantages of ant colony optimization for searching global optimal solutions, but also provides a framework for multi-field experts to work collaboratively. Experimental results show that the method improves the quality and speed of hardware/software partition for coarse-grained reconfigurable system design.
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