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Predictive Control With Novel Virtual-Flux Estimation for Back-to-Back Power Converters

机译:具有新型虚通量估计的背对背功率转换器的预测控制

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摘要

This work proposes and experimentally verifies a virtual flux (VF) estimation method for the predictive control of back-to-back voltage-source power converters with a space vector modulator (SVM). The novelty of the proposed approach is the development of a time domain initial bias compensation virtual flux (IBC-VF) estimation method and its combination with a predictive control scheme with constant switching frequency. Theoretical analysis and implementation procedures of the proposed method are developed in detail. Compared to two conventional bandpass filter-based VF estimation methods, the proposed IBC-VF method shows a much faster dynamic response. The whole IBC-VF-based predictive control scheme is realized in the frame and so does not require Park's transformation. The proposed control scheme is implemented on a commercial off-the-shelf field-programmable-gate-array-based platform. By using a single-cycle timed loop (SCTL) technique, the whole computation is finished within 2.6 , making the compensation of the calculation time obsolete. Both simulation and experimental results emphasize the effectiveness of the proposed scheme.
机译:这项工作提出并通过实验验证了一种虚拟通量(VF)估计方法,用于使用空间矢量调制器(SVM)进行背对背电压源功率转换器的预测控制。该方法的新颖之处在于开发了时域初始偏置补偿虚拟通量(IBC-VF)估计方法,并将其与具有恒定开关频率的预测控制方案相结合。详细阐述了该方法的理论分析和实现步骤。与两种传统的基于带通滤波器的VF估计方法相比,所提出的IBC-VF方法显示出更快的动态响应。整个基于IBC-VF的预测控制方案都是在框架中实现的,因此不需要Park的变换。所提出的控制方案是在基于商业现成现场可编程门阵列的平台上实现的。通过使用单周期定时循环(SCTL)技术,整个计算在2.6之内完成,从而使计算时间的补偿变得过时了。仿真和实验结果均强调了该方案的有效性。

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