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A scalable FPGA-based architecture for digital controllers and a corresponding rapid prototyping design methodology

机译:一种可扩展的基于FPGA的数字控制器架构和相应的快速原型设计方法

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Recent advances in embedded automation applications require quality of results in terms of speed and computational complexity, along with strict time-to-market schedules. To cope with these demands, the design industry is searching for novel approaches. Performance is sought by utilizing modern FPGA devices, offering hundreds of GFLOPs with maximum power efficiency. Productivity is enforced with modern design methodologies like High-Level Synthesis and Electronic System Level design, that offer an efficient abstraction level to boost-up early prototyping. This paper presents a scalable architecture and a corresponding design methodology for the design of digital controllers, as a reference for modern control applications. The advantages of the proposed methodology are: (a) improved performance through hardware acceleration of demanding application cores, (b) improved quality of results with floating point calculations, (c) flexibility and integration of common peripheral devices supported by a RISC microcontroller, (d) low-overhead scalability from single core to multi core architectures and (e) improved designer productivity by working with C level design descriptions only. Experimental results show that the proposed System-on-Chip architecture is an efficient rapid prototyping platform for digital control applications, with very promising future extension capabilities.
机译:嵌入式自动化应用的最新进展需要在速度和计算复杂性方面的结果,以及严格的上市时间表。为了应对这些需求,设计行业正在寻找新颖的方法。通过利用现代FPGA设备寻求性能,提供具有最大功率效率的数百个GFLOPS。生产力与高电平合成和电子系统级设计等现代设计方法强制执行,提供有效的抽象水平来提高早期原型。本文介绍了一种可扩展的架构和相应的数字控制器设计方法,作为现代控制应用的参考。提出的方法的优点是:(a)通过硬件加速度提高苛刻应用程序核心的性能,(b)提高了浮点计算的结果的质量,(c)RISC微控制器支持的公共外围设备的灵活性和集成( d)从单核到多核架构的低开销可扩展性和(e)仅通过使用C级设计描述来提高设计人员的生产率。实验结果表明,提出的芯片系统架构是一种有效的数字控制应用快速原型平台,具有非常有前途的未来扩展功能。

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