Switching Frequency Variation Control in Hysteresis PWM Controller for IM Drives Using Variable Parabolic Bands for Current Error Space Phasor

P. N. Tekwani, R. Kanchan, L. Sanjay, K. Gopakumar
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引用次数: 4

Abstract

Variation of switching frequency over the entire operating speed range of an induction motor (IM) drive is the major problem associated with conventional two-level three-phase hysteresis controller as well as the space phasor based PWM hysteresis controller. This paper describes a simple hysteresis current controller for controlling the switching frequency variation in the two-level PWM inverter fed IM drives for various operating speeds. A novel concept of continuously variable hysteresis boundary of current error space phasor with the varying speed of the IM drive is proposed in the present work. The variable parabolic boundary for the current error space phasor is suggested for the first time in this paper for getting the switching frequency pattern with the hysteresis controller, similar to that of the constant switching frequency voltage-controlled space vector PWM (VC-SVPWM) based inverter fed IM drive. A generalized algorithm is also developed to determine parabolic boundary for controlling the switching frequency variation, for any IM load. Only the adjacent inverter voltage vectors forming a triangular sector, in which tip of the machine voltage vector lies, are switched to keep current error space vector within the parabolic boundary. The controller uses a self-adaptive sector identification logic, which provides smooth transition between the sectors and is capable of taking the inverter up to six-step mode of operation, if demanded by drive system. The proposed scheme is simulated and experimentally verified on a 3.7 kW IM drive
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基于变抛物带电流误差空间相量的IM驱动器迟滞PWM控制器开关频率变化控制
传统的两电平三相迟滞控制器和基于空间相量的PWM迟滞控制器的主要问题是在感应电动机驱动器的整个工作速度范围内开关频率的变化。本文介绍了一种简单的磁滞电流控制器,用于控制两电平PWM逆变供电IM驱动器在不同工作速度下的开关频率变化。本文提出了随转速变化电流误差空间相量滞回边界连续变的新概念。本文首次提出了电流误差空间相量的可变抛物线边界,用于与基于恒开关频率压控空间矢量PWM (VC-SVPWM)的逆变馈电IM驱动器相似的迟滞控制器的开关频率模式。本文还提出了一种广义算法来确定抛物线边界,以控制任意负载的开关频率变化。只有相邻的逆变器电压矢量形成一个三角形扇形,即机器电压矢量的尖端所在的扇形,以保持电流误差空间矢量在抛物线边界内。控制器使用自适应扇区识别逻辑,提供扇区之间的平稳过渡,如果驱动系统需要,可以使逆变器达到六步操作模式。该方案在一个3.7 kW的IM驱动器上进行了仿真和实验验证
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