Application of multiband hysteresis modulation in field oriented control based IPMSM drive fed by asymetrical multilevel cascaded H-Bridge inverter

A. Ejlali, D. Khaburi, J. Soleimani
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引用次数: 2

Abstract

Recently, Inner permanent magnet synchronous Machines are widely used in several applications such as hybrid electric vehicles (HEVs), starters/alternators, power steering, and air conditioning motors. This paper presents multiband hysteresis modulation to Field Oriented Controlled (FOC) IPMSM fed by a 9-level asymmetrical Cascaded Half Bridge (CHB) inverter. For this reason, hysteresis controllers have 9-band current error. The CHB is more attractive choice due to its modular structure and higher number of output voltage level for the same number of semiconductors in comparison with symmetrical CHB. The results show several advantages of this method such as high accuracy, fast dynamic response, insensitivity to parameter variations and simple implementation.
多频带迟滞调制在非对称多电平级联h桥逆变器驱动磁场定向控制中的应用
近年来,内永磁同步电机广泛应用于混合动力汽车(hev)、启动/交流发电机、动力转向和空调电机等领域。本文提出了用9电平非对称级联半桥(CHB)逆变器对场定向控制(FOC) IPMSM进行多频带迟滞调制的方法。因此,迟滞控制器具有9波段电流误差。与对称式CHB相比,CHB的模块化结构和相同数量半导体的输出电压电平数量更高,是更有吸引力的选择。结果表明,该方法具有精度高、动态响应快、对参数变化不敏感、实现简单等优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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