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FPGA design methodology for industrial control systems—a review

机译:适用于工业控制系统的FPGA设计方法论

摘要

This paper reviews the state of the art of fieldprogrammable gate array (FPGA) design methodologies with a focus on industrial control system applications. This paper starts with an overview of FPGA technology development, followed by a presentation of design methodologies, development tools and relevant CAD environments, including the use of portable hardware description languages and system level programming/design tools. They enable a holistic functional approach with the major advantage of setting up a unique modeling and evaluation environment for complete industrial electronics systems. Three main design rules are then presented. These are algorithm refinement, modularity, and systematic search for the best compromise between the control performance and the architectural constraints. An overview of contributions and limits of FPGAs is also given, followed by a short survey of FPGA-based intelligent controllers for modern industrial systems. Finally, two complete and timely case studies are presented to illustrate the benefits of an FPGA implementation when using the proposed system modeling and design methodology. These consist of the direct torque control for induction motor drives and the control of a diesel-driven synchronous stand-alone generator with the help of fuzzy logic.
机译:本文以工业控制系统应用为重点,回顾了现场可编程门阵列(FPGA)设计方法的现状。本文首先概述了FPGA技术的发展,然后介绍了设计方法,开发工具和相关的CAD环境,包括便携式硬件描述语言和系统级编程/设计工具的使用。它们使整体功能性方法成为可能,其主要优点是为完整的工业电子系统设置了独特的建模和评估环境。然后介绍了三个主要设计规则。这些是算法的改进,模块化和系统地寻找控制性能与体系结构约束之间的最佳折衷方案。还概述了FPGA的贡献和局限性,然后简短概述了针对现代工业系统的基于FPGA的智能控制器。最后,提供了两个完整而及时的案例研究,以说明使用建议的系统建模和设计方法时FPGA实施的好处。其中包括用于感应电动机驱动的直接转矩控制以及借助模糊逻辑控制柴油驱动的同步独立发电机。

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