Distributed control for reconfigurable FPGA systems: A high-level design approach

C. Trabelsi, S. Meftali, J. Dekeyser
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引用次数: 5

Abstract

Due to their exponential complexity, designing adaptation control for Reconfigurable Systems-on-Chip (RSoC) is becoming one of the most challenging tasks, resulting in longer design cycles and increased time-to-market. This paper addresses this issue and proposes a novel adaptation control design approach for FPGA-based reconfigurable systems aiming to increase design productivity. This approach combines control distribution and high-level modeling in order to decrease design complexity and enhance design reuse and scalability. Control distribution is based on allocating local control aspects (monitoring, decision and reconfiguration) to distributed controllers, while respecting global system constraints/objectives using a coordinator. High-level modeling makes use of Model-Driven Engineering and the MARTE (Modeling and Analysis of Real-Time and Embedded Systems) standard in order to move from high level models to automatic code generation, which significantly simplifies the control design. The proposed design approach is integrated in a model-driven RSoC design flow and allows to model adaptation aspects at different design levels: application, architecture, allocation and deployment, which allows to target a wide range of control requirements. In order to validate our approach, a video processing application was implemented on a reconfigurable system that contained four distributed hardware controllers.
可重构FPGA系统的分布式控制:一种高级设计方法
由于其指数级复杂性,设计可重构片上系统(RSoC)的自适应控制正成为最具挑战性的任务之一,导致设计周期更长,上市时间更长。本文针对这一问题,提出了一种新的基于fpga的可重构系统自适应控制设计方法,旨在提高设计效率。这种方法结合了控制分布和高级建模,以降低设计复杂性,增强设计重用和可伸缩性。控制分布基于将本地控制方面(监控、决策和重新配置)分配给分布式控制器,同时使用协调器尊重全局系统约束/目标。高级建模利用模型驱动工程和MARTE(实时和嵌入式系统建模和分析)标准,以便从高级模型转移到自动代码生成,这大大简化了控制设计。所提出的设计方法集成在模型驱动的RSoC设计流程中,并允许在不同的设计级别(应用程序、体系结构、分配和部署)对适应性方面进行建模,从而可以针对广泛的控制需求。为了验证我们的方法,在包含四个分布式硬件控制器的可重构系统上实现了一个视频处理应用程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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