Study of Robust Speed Control of Hybrid Excited Synchronous Machine with Field Weakening

M. Ostroverkhov, Yevhen Monakhov, V. Chumack
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Abstract

In hybrid excited synchronous machine (HESM) the magnetic flux is created by permanent magnets located on rotor and electric excited winding on stator. This advantage provides maximum torque and acceleration at the start-up and speed over nominal. In this paper the speed control of HESM with field weakening is developed and investigated. The control is developed based upon reverse task of dynamics in combination of local functionals minimization of instantaneous values of energy. The control system ensures robustness to parameter`s change and dynamic decomposition HESM without appliance of algorithms of adaptation and compensation. System controllers does not include parameters of HESM and differentiation operations that ensures simplicity of realization. The research of control was made for 4 different HESM without reconfiguration of controllers with a twofold increase of speed relative to the nominal. The control system maintains a constant torque in the first control zone and a constant mechanical power in the second control zone by changing the excitation current of HESM. The results of the study of the speed control of the HESM with the weakening of the field showed high quality control.
弱磁场混合励磁同步电机鲁棒速度控制研究
在混合励磁同步电机(HESM)中,磁通量是由转子上的永磁体和定子上的电励磁绕组产生的。这一优势提供了最大的扭矩和加速度,在启动和速度超过标称。本文提出并研究了带弱磁场的高速电磁炉的速度控制问题。该控制是基于动态逆任务,结合局部泛函的能量瞬时值的最小化而开发的。在不采用自适应和补偿算法的情况下,保证了控制系统对参数变化和动态分解的鲁棒性。系统控制器不包括HESM参数和微分操作,以确保实现的简单性。在不重新配置控制器的情况下,对4种不同的HESM进行了控制研究,转速相对标称提高了两倍。控制系统通过改变HESM的励磁电流,在第一控制区保持恒定的转矩,在第二控制区保持恒定的机械功率。研究结果表明,随着磁场的减弱,HESM的速度控制具有良好的控制质量。
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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