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The Electronic Realization of Synchronous Machines: Model Matching, Angle Tracking, and Energy Shaping Techniques

机译:同步电机的电子实现:模型匹配,角度跟踪和能量整形技术

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In this article, we investigate grid-forming and grid-following control strategies starting from a nonlinear state-space modeling viewpoint. An electronic synchronous machine is an inverter whose integral of the dc-bus measurement generates the angle of the instantaneous modulation vector. We show how this minimal augmentation constitutes an exact physical realization without requiring inner-current loops. The dc-link capacitance becomes the equivalent rotational inertia of the converter. Additional features, such as a phase locked loop, a voltage controller, and a power tracking mechanism are then designed via two energy-shaping techniques. One energy function is used to implement a grid-following control scheme, via the inherent synchronizing torque, while the other is used to implement a grid-forming control scheme. An alternative interpretation of active-power droop is suggested by this method. The results are first derived systematically, and then evaluated experimentally on a front-to-front setup.
机译:在本文中,我们将从非线性状态空间建模的观点出发研究网格形成和网格跟随控制策略。电子同步电机是一台逆变器,其直流母线测量的积分生成瞬时调制矢量的角度。我们展示了这种最小的扩充如何构成精确的物理实现而无需内部电流环路。直流母线电容变成转换器的等效旋转惯量。然后,通过两种能量整形技术来设计诸如锁相环,电压控制器和功率跟踪机制之类的其他功能。一个能量函数用于通过固有的同步转矩来执行网格跟随控制方案,而另一个能量函数用于执行网格形成控制方案。该方法提出了有功功率下垂的另一种解释。首先系统地得出结果,然后在从前到前的设置中通过实验进行评估。

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