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Synchronization of Parallel Single-Phase Inverters With Virtual Oscillator Control

机译:并联单相逆变器与虚拟振荡器控制的同步

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A method to synchronize and control a system of parallel single-phase inverters without communication is presented. Inspired by the phenomenon of synchronization in networks of coupled oscillators, we propose that each inverter be controlled to emulate the dynamics of a nonlinear dead-zone oscillator. As a consequence of the electrical coupling between inverters, they synchronize and share the load in proportion to their ratings. We outline a sufficient condition for global asymptotic synchronization and formulate a methodology for controller design such that the inverter terminal voltages oscillate at the desired frequency, and the load voltage is maintained within prescribed bounds. We also introduce a technique to facilitate the seamless addition of inverters controlled with the proposed approach into an energized system. Experimental results for a system of three inverters demonstrate power sharing in proportion to power ratings for both linear and nonlinear loads.
机译:提出了一种无需通信即可同步控制并联单相逆变器系统的方法。受耦合振荡器网络中的同步现象的启发,我们建议控制每个逆变器以模拟非线性死区振荡器的动力学。由于逆变器之间的电气耦合,它们可以同步并按比例分配负载。我们概述了全局渐近同步的充分条件,并制定了控制器设计的方法,以使逆变器端子电压以所需的频率振荡,并且负载电压保持在规定的范围内。我们还介绍了一种技术,可促进将通过建议方法控制的逆变器无缝添加到通电系统中。三个逆变器系统的实验结果表明,线性和非线性负载的功率分配均与额定功率成比例。

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