首页> 外文期刊>Annals of the American Thoracic Society >Study on the fuzzy proportional-integral-derivative direct torque control strategy without flux linkage observation for brushless direct current motors
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Study on the fuzzy proportional-integral-derivative direct torque control strategy without flux linkage observation for brushless direct current motors

机译:无磁通直流电动机无磁通连杆观察的模糊比例 - 积分 - 衍生直接控制策略研究

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摘要

Considering the difficulty in setting and observing the flux linkage in the existing direct torque control for the brushless direct current motor, which is the cumbersome torque calculation method in direct torque control systems without flux linkage observation, the torque observation, voltage vector selection, and speed loop were studied further in such systems. The fuzzy proportional-integral-derivative direct torque control strategy is presented without flux linkage observation. In terms of torque observation, the cumbersome counter electromotive force calculation method was abandoned, and observation was made combining the three-phase current and Hall signal. In terms of optimal choice of voltage vector, the voltage vector selection table was built using the voltage hysteresis output and Hall signal. In terms of rotation speed control, the adaptive fuzzy proportional-integral-derivative was used to replace the traditional proportional-integral-derivative for the proportional-integral-derivative parameter self-adjustment. A control system simulation model was set up in MATLAB/Simulink for simulation verification. A hardware experimental platform was set up using DSP2812 as the main control board for experimental verification. The research results show that the fuzzy proportional-integral-derivative direct torque control without flux linkage observation further increased the dynamic response rate of the motor speed and reduced the electromagnetic torque ripple amplitude; thus, it is more suitable for application in high-precision and high-stability systems.
机译:考虑到难以设置和观察无刷直流电动机的现有直接扭矩控制中的磁通连杆,这是直接扭矩控制系统中的麻烦扭矩计算方法,无磁通连杆观察,扭矩观察,电压矢量选择和速度在这种系统中进一步研究了环。呈现模糊的比例积分直接扭矩控制策略,无助焊剂汇编观察。在扭矩观察方面,废弃了麻烦的反电动势计算方法,并结合了三相电流和霍尔信号的观察。就电压矢量的最佳选择而言,使用电压滞后输出和霍尔信号建造电压矢量选择表。在转速控制方面,自适应模糊比例积分衍生物用于取代比例 - 积分衍生物的自调节的传统比例积分衍生物。 MATLAB / SIMULINK设置控制系统仿真模型进行仿真验证。使用DSP2812设置硬件实验平台作为实验验证的主控板。研究结果表明,模糊的比例积分衍生物直接扭矩控制没有磁通连杆观察进一步提高了电动机速度的动态响应速率,并降低了电磁扭矩脉动幅度;因此,它更适合于高精度和高稳定性系统的应用。

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