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An improved FPGA implementation of direct torque control for induction machines

机译:感应电机直接转矩控制的改进FPGA实现

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摘要

This paper presents a novel direct torque control (DTC) approach for induction machines, based on an improved torque and stator flux estimator and its implementation using Field Programmable Gate Arrays (FPGA). The DTC performance is significantly improved by the use of FPGA, which can execute the DTC algorithm at higher sampling frequency. This leads to the reduction of the torque ripple and improved flux and torque estimations. The main achievements are: i) calculating a discrete integration operation of stator flux using backward Euler approach, ii) modifying a so called non-restoring method in calculating the complicated square root operation in stator flux estimator, iii) introducing a new flux sector determination method, iv) increasing the sampling frequency to 200kHz such that the digital computation will perform similar to that of the analog operation, and v) using two’s complement fixed-point format approach to minimize calculation errors and the hardware resource usage in all operations. The design was achieved in VHDL, based on a Matlab/Simulink simulation model. The Hardware-In-the-Loop (HIL) method is used to verify the functionality of the FPGA estimator. The simulation results are validated experimentally. Thus, it is demonstrated that FPGA implementation of DTC drives can achieve excellent performance at high sampling frequency.
机译:本文基于改进的扭矩和定子磁通估算器及其使用现场可编程门阵列(FPGA)的实现,提出了一种用于感应电机的新型直接转矩控制(DTC)方法。通过使用FPGA可以显着提高DTC性能,该FPGA可以以更高的采样频率执行DTC算法。这样可以减少转矩脉动,并改善磁通和转矩估计。主要成就是:i)使用后向欧拉方法计算定子磁链的离散积分运算,ii)修改计算定子磁链估计器中复杂平方根运算时的所谓非恢复方法,iii)引入新的磁链扇区确定iv)将采样频率提高到200kHz,以使数字计算的性能类似于模拟操作,并且v)使用二进制补码定点格式方法来最大程度地减少所有操作中的计算误差和硬件资源的使用。该设计基于Matlab / Simulink仿真模型在VHDL中完成。硬件在环(HIL)方法用于验证FPGA估计器的功能。仿真结果通过实验验证。因此,证明了DTC驱动器的FPGA实现可以在高采样频率下实现出色的性能。

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