基于vhdl - ams的互耦合SRM非对称h型半桥变换器建模

C. Şahin, A. E. Amac, M. Karaçor
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引用次数: 0

摘要

如今,相对于传统的开关磁阻电机,互耦磁阻电机(MCSRM)产生更大的转矩,由于技术和控制算法的发展,得到了应有的价值和重视。转矩的产生是通过传统SRM的自感变化来实现的,而MCSRM的转矩产生则取决于相间的互感。确定电感并将其正确地传递给变流器模型非常重要,因为机器转矩直接随电感值而变化。文献中对SRM驱动器建模的方法有查找表法、电感值变化法等多种方法。然而,通过将从机器静态分析中获得的电感值顺利地传递到模型中,可以实现精确的建模。为此,本研究提出了一种基于“超高速集成电路硬件描述语言-模拟混合信号”(VHDL-AMS)的非对称h型半桥变换器作为MCSRM驱动的建模方法。根据电机转子的相电流和角度,利用VHDL-AMS计算互感值。因此,该方法可以动态地确定随电机转子位置变化的电感。
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VHDL-AMS-based modeling of an asymmetric H-type half-bridge converter for mutually coupled SRM
Nowadays, mutually coupled reluctance machine (MCSRM), which produces further torque compare to classical switched reluctance machine (SRM), has acquired a deserving value and importance thanks to developing technology and control algorithm. While torque is produced through the changing of self-inductance at classical SRM, it depends on mutual inductance that occurs between phases at MCSRM. Determination of the inductance and transferring of it to the converter model correctly are quiet important, since the machine torque has directly varied by inductance value. There are various methods on SRM drives modeling such as look-up table, manipulated by the variation of inductance value in the literature. However, exact modeling can be possible with transferring of the inductance values acquired from the machine static analysis to the model smoothly. In order to achieve that, it is proposed a “Very high-speed integrated circuit Hardware Description Language-Analog Mixed Signal” (VHDL-AMS) based modeling method for an asymmetric H-type half-bridge converter as a MCSRM drive in this study. Mutual inductance values are calculated by VHDL-AMS, according to phase current and angle of the machine rotor. Consequently, inductance that varies depending upon the machine rotor position is determined by the proposed method dynamically.
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