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Hardware/Software Codesign Guidelines for System on Chip FPGA-Based Sensorless AC Drive Applications

机译:基于片上FPGA的无传感器交流驱动器应用的硬件/软件协同设计指南

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摘要

This paper aims to provide Hardware/Software (Hw/Sw) codesign guidelines for system-on-chip field-programmable gate array-based sensorless ac drive applications. Among these guidelines, an efficient Hw/Sw partitioning procedure is presented. This Hw/Sw partitioning is performed taking into account both the control requirements (bandwidth and stability margin) and the architectural constraints (e.g., available area, memory, and hardware multipliers). A nondominated sorting genetic algorithm (NSGA-II) is used to solve the corresponding multi-objective optimization problem. The proposed Hw/Sw partitioning approach is then validated on a sensorless control algorithm for a synchronous motor based on an extended Kalman filter. Among the nondominated implementation solutions supplied by the NSGA-II, those that are considered as the most interesting are synthesized. Their time/area performances after synthesis are compared with success to their predictions. In addition, one of these optimal solutions is also tested on an experimental setup.
机译:本文旨在为基于片上系统现场可编程门阵列的无传感器交流驱动器应用提供硬件/软件(Hw / Sw)编码准则。在这些指南中,提出了一种有效的硬件/软件分区程序。进行此硬件/软件分区时要同时考虑控制要求(带宽和稳定性裕量)和体系结构约束(例如,可用区域,内存和硬件乘数)。非支配排序遗传算法(NSGA-II)用于解决相应的多目标优化问题。然后,在基于扩展卡尔曼滤波器的同步电动机的无传感器控制算法上对提出的硬件/软件分配方法进行了验证。在NSGA-II提供的非主导型实施解决方案中,那些被认为是最有趣的解决方案得到了综合。将他们合成后的时间/区域表现与成功与他们的预测进行比较。此外,这些最佳解决方案之一也已通过实验设置进行了测试。

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