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Stability analysis and improvement of V/Hz controlled adjustable speed drives equipped with small DC-link thin film capacitors

机译:配备小型DC-link薄膜电容器的V / Hz可控变频器的稳定性分析和改进

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Due to thin film capacitor's enhanced reliability and improved input current harmonic performance, adjustable speed drives (ASDs) without using electrolytic dc-link capacitors have been researched extensively in recent years. However, because of challenging stability and motor control issues associated with small thin film based dc-link capacitors, in depth studies on a V/Hz controlled ASD cannot be found in publications. In this paper, a state space model, taking into account the dc-link choke, the thin film dc-link capacitor as well as the inverter switching dead-time effect, is developed to analyze the stability of such a system. Instability is quantified analytically. A novel active damping method is proposed to improve the overall system stability. The accuracy of the model and the effectiveness of the active damping method are verified through experimentation using a 3% thin film capacitor on a 2.2kW, 380V, 50Hz setup.
机译:由于薄膜电容器具有增强的可靠性和改进的输入电流谐波性能,因此近年来对不使用电解直流环节电容器的可调速驱动器(ASD)进行了广泛的研究。但是,由于具有挑战性的稳定性以及与基于薄膜的小型直流环节电容器相关的电动机控制问题,因此在出版物中找不到对V / Hz控制的ASD的深入研究。本文建立了一个状态空间模型,考虑了直流环节扼流圈,薄膜直流环节电容器以及逆变器开关停滞时间效应,以分析这种系统的稳定性。通过分析量化不稳定性。提出了一种新型的主动阻尼方法,以提高整体系统的稳定性。通过在2.2kW,380V,50Hz设置下使用3%薄膜电容器进行实验,验证了模型的准确性和主动阻尼方法的有效性。

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