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FPGA Implementation of a Hybrid Sensorless Control of SMPMSM in the Whole Speed Range

机译:全速范围内SMPMSM的混合无传感器控制的FPGA实现

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This paper presents an FPGA-based (Field Programmable Gate Array) sensorless controller for Surface Mounted Permanent Magnet Synchronous Machines (SMPMSM). A hybrid sensorless controller combining the signal injection technique and a linearly compensated flux observer is proposed. Using a Delta-Sigma A/D converter and FPGA oversampling technique, this work realizes a high performance high frequency (HF) injection sensorless control method which needs lower HF current response and introduces lower acoustic noises. The linearly compensated flux observer, based on back electromotive force (EMF) is used for sensorless control in the high speed range. The flux observer exhibits high dynamic and steady-state performance and is robust to parameter variation. Using model-based design, with the tools of MATLAB/Simulink and Simulink HDL (hardware description language) Coder, the whole control system is designed and implemented in a single chip. Experimental results demonstrate that the developed sensorless controller has high performance in the whole speed range.
机译:本文提出了一种用于表面安装永磁同步电机(SMPMSM)的基于FPGA的(现场可编程门阵列)无传感器控制器。提出了一种结合信号注入技术和线性补偿通量观测器的无传感器混合控制器。这项工作使用Delta-Sigma A / D转换器和FPGA过采样技术,实现了一种高性能的高频(HF)注入无传感器控制方法,该方法需要较低的HF电流响应并引入较低的声噪声。基于反电动势(EMF)的线性补偿磁通观测器用于高速范围内的无传感器控制。磁通观测器具有很高的动态和稳态性能,并且对参数变化具有鲁棒性。使用基于模型的设计,并使用MATLAB / Simulink和Simulink HDL(硬件描述语言)编码器的工具,可以在单个芯片中设计和实现整个控制系统。实验结果表明,所开发的无传感器控制器在整个速度范围内均具有高性能。

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