$n$-level voltage-source inverter (VSI)-fed three-pha'/> A Space-Vector-Based Hysteresis Current Controller for a General <formula formulatype='inline'><tex Notation='TeX'>$n$</tex></formula>-Level Inverter-Fed Drive With Nearly Constant Switching Frequency Control
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A Space-Vector-Based Hysteresis Current Controller for a General $n$-Level Inverter-Fed Drive With Nearly Constant Switching Frequency Control

机译:基于空间矢量的迟滞电流控制器,用于具有近似恒定开关频率的通用 $ n $ 级逆变器供电的驱动器控制

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A current-error space-vector-based hysteresis current controller for a general $n$-level voltage-source inverter (VSI)-fed three-phase induction motor (IM) drive is proposed here, with control of the switching frequency variation for the full linear modulation range. The proposed current controller monitors the space-vector-based current error of an $n$ -level VSI-fed IM to keep the current error within a parabolic boundary, using the information of the current triangular sector in which the tip of the reference vector lies. Information of the reference voltage vector is estimated using the measured current-error space vectors, along the $alpha$ - and $beta$-axes. Appropriate dimension and orientation of this parabolic boundary ensure a switching frequency spectrum similar to that of a constant-switching-frequency voltage-controlled space vector pulsewidth modulation (PWM) (SVPWM)-based IM drive. Like SVPWM for multilevel inverters, the proposed controller selects inverter switching vectors, forming a triangular sector in which the tip of the reference vector stays, for the hysteresis PWM control. The sector in the $n$-level inverter space vector diagram, in which the tip of the fundamental stator voltage stays, is precisely detected, using the sampled reference space vector estimated from the instantaneous current-error space vectors. The proposed controller retains all the advantages of a conventional hysteresis controller such as fast current control, with smooth transition to the overmodulation region. The proposed controller is implemented on a five-level VSI-fed 7.5-kW IM drive.
机译:通用 $ n $ 级电压源逆变器(VSI)的基于电流误差空间矢量的磁滞电流控制器本文提出了一种由三相感应电动机(IM)供电的驱动器,它在整个线性调制范围内控制开关频率变化。建议的电流控制器监视 $ n $ 级VSI馈送的IM的基于空间矢量的当前误差,以保持使用参考矢量尖端所在的当前三角形扇区的信息,在抛物线边界内确定当前误差。使用测得的电流误差空间矢量以及 $ alpha $ -和估算参考电压矢量的信息。 Formulatype =“ inline”> $ beta $ -轴。该抛物线边界的适当尺寸和方向可确保开关频谱类似于基于恒定开关频率电压控制的空间矢量脉宽调制(SVPWM)的IM驱动器。像用于多电平逆变器的SVPWM一样,所提出的控制器选择逆变器开关矢量,以形成一个三角形扇区,在其中滞留参考矢量的尖端,用于磁滞PWM控制。 $ n $ 级逆变器空间矢量图中的扇区,其中基本定子电压的尖端保持不变。使用从瞬时电流误差空间矢量估算出的采样参考空间矢量,可以精确地检测出该参考矢量。所提出的控制器保留了常规磁滞控制器的所有优点,例如快速电流控制,并可以平滑过渡到过调制区域。拟议的控制器在五级VSI馈送的7.5 kW IM驱动器上实现。

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