首页> 外文期刊>Applied Sciences >Fictitious Reference Iterative Tuning-Based Two-Degrees-of-Freedom Method for Permanent Magnet Synchronous Motor Speed Control Using FPGA for a High-Frequency SiC MOSFET InverterMOSFET Inverter
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Fictitious Reference Iterative Tuning-Based Two-Degrees-of-Freedom Method for Permanent Magnet Synchronous Motor Speed Control Using FPGA for a High-Frequency SiC MOSFET InverterMOSFET Inverter

机译:基于FPGA的虚拟参考迭代调谐两自由度方法,用于高频SiC MOSFET逆变器的FPGA永磁同步电动机速度控制

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This paper proposes proportional-integral/proportional gain controller parameter tuning in a two-degrees-of-freedom (2DOF) control system using the fictitious reference iterative tuning (FRIT) method for permanent magnet synchronous motor (PMSM) speed control using a field-programmable gate array (FPGA) for a high-frequency SiC MOSFET (metal oxide semiconductor field-effect transistor) inverter. The PI-P (proportional-integral/proportional) controller parameters can be tuned using the FRIT method from one-shot experimental data without using a mathematical model of the plant. Particle swarm optimization is used for FRIT optimization. An inverter that uses a SiC MOSFET is presented to achieve high-frequency operation at up to100 kHz using a switching pulse-width modulation (PWM) technique. As a result, a high-responsivity and high-stability PMSM (permanent magnet synchronous motor) control system is achieved, where the speed response follows the ideal response characteristic for both the step response and the disturbance response. High-responsivity and optimal disturbance rejection can be achieved using the 2DOF control system. FPGA-based digital hardware control is used to maximize the switching frequency of the SiC MOSFET inverter. Finally, an experimental system is set up, and experimental results are presented to prove the viability of the proposed method.
机译:本文提出了一种采用虚拟参考迭代调谐(FRIT)方法的两自由度(2DOF)控制系统中的永磁同步电动机(PMSM)速度控制的比例积分/比例增益控制器参数调节方法,用于高频SiC MOSFET(金属氧化物半导体场效应晶体管)逆变器的可编程门阵列(FPGA)。可以使用FRIT方法从单次实验数据中调整PI-P(比例积分/比例)控制器参数,而无需使用工厂的数学模型。粒子群优化用于FRIT优化。提出了一种使用SiC MOSFET的逆变器,以通过开关脉宽调制(PWM)技术实现高达100 kHz的高频工作。结果,实现了高响应性和高稳定性的PMSM(永磁同步电动机)控制系统,其中速度响应遵循阶跃响应和干扰响应的理想响应特性。使用2DOF控制系统可以实现高响应性和最佳抗干扰性。基于FPGA的数字硬件控制用于最大化SiC MOSFET逆变器的开关频率。最后,建立了一个实验系统,并给出实验结果证明了该方法的可行性。

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