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Predictive control with variable amplitude of voltage vector of interior PMSM direct torque control system

机译:内部PMSM直接扭矩控制系统电压矢量可变幅度的预测控制

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Based on stator flux and torque's expressions of interior permanent magnet synchronous motor (PMSM) direct torque control (DTC) system in stator flux frame, voltage vector with variable amplitude and fixed angle is used as candidate output voltage vector. The amplitude of stator flux and torque at next sampling point after applying voltage vector with different amplitude are obtained. A one-step selection algorithm is established based on the cost function of stator flux and torque's errors, which can choose voltage vector to minimize the cost function. More candidate voltage vectors will lead to better control performance, but it will cause heavier calculation burden. In this paper, control performances of interior PMSM DTC system are compared using 10 different methods to divide voltage vector. Considering control performance and calculation burden, dividing voltage vector into five equal parts to get the aggravate of 5 candidate voltage vectors is an ideal way. And system performance tends to be stable.
机译:基于定子磁通和扭矩的内部永磁同步电动机(PMSM)直接扭矩控制(DTC)系统的定子通量框架,具有可变幅度和固定角度的电压矢量用作候选输出电压矢量。获得在施加具有不同幅度的电压矢量之后的下一个采样点处的定子通量和扭矩的幅度。基于定子通量的成本函数和扭矩的误差建立一步选择算法,可以选择电压矢量以最小化成本函数。更多候选电压矢量将导致更好的控制性能,但它会导致较重的计算负担。在本文中,使用10种不同方法对电压向量进行比较了内部PMSM DTC系统的控制性能。考虑控制性能和计算负担,将电压矢量分成五个相等的部分,以获得5个候选电压矢量的加重是理想的方式。而系统性能趋于稳定。

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