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Model-based design approach for embedded digital controllers design

机译:嵌入式数字控制器设计的基于模型的设计方法

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摘要

Modern embedded systems are rapidly becoming a driving factor of the explosive growth of e-industry due to their increasingly sophisticated functionalities and complex features. At the same time, the advances of microelectronics and semiconductor technologies have enabled to increase the capacity-level integration of digital circuits like field programmable gate array (FPGA). The design of their systems is based on the challenge of increasing their performance by an abstraction of their implementation details to manage complexity. Designers need a more direct path between the specification and implementation. Different approaches to high-level synthesis design methodologies are currently used for high description language code generation. This paper examining a case study of the model-based design (MBD) approach using Xilinx System Generator, validated on two control drive applications such as direct current motor and alternative current motor. Results indicate that MBD approach enables designers to implement advanced algorithm including complex computing with good data precision and limited FPGA resources.
机译:由于其日益复杂的功能和复杂的功能,现代嵌入式系统正迅速成为电子工业爆炸性增长的驱动因素。同时,微电子学和半导体技术的进步已使诸如现场可编程门阵列(FPGA)之类的数字电路的容量级集成得以增强。系统的设计基于通过抽象化实现细节来管理复杂性来提高其性能的挑战。设计人员需要在规范和实现之间建立更直接的路径。当前,高水平综合设计方法的不同方法用于高描述语言代码的生成。本文研究了使用Xilinx系统生成器的基于模型的设计(MBD)方法的案例研究,该实例在两个控制驱动器应用(例如直流电动机和交流电动机)上得到了验证。结果表明,MBD方法使设计人员能够实现高级算法,包括具有良好数据精度和有限FPGA资源的复杂计算。

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