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Comparative Experimental Study of Predictive and Resonant Controllers of Grid-Tied Inverter under Unbalanced Grid Conditions

机译:电网不平衡条件下并网逆变器预测与谐振控制器的对比实验研究

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摘要

Simultaneous and flexible reduction of active and reactive power (P and Q) oscillations during grid imbalance in distributed power generation system is quite complex and poses a major research challenge. Various control techniques such as proportional-integral, proportional-resonant (PR) and hysteresis control have already proved their effectiveness under unbalanced grid (UG) conditions. Out of the above control techniques, PR controller is considered to be the most popular controller due to its simultaneous tracking ability for both positive and negative sequence of grid current. The model predictive controller is relatively recent, and its performance has been evaluated for UG conditions. But, no comparative experimental study with the popular PR controller has been reported for flexible P and Q transfer to the UG. In this paper, a comparative practical study is presented for verifying the static and dynamic performance of the two controllers in a distributed generation system during grid unbalance. The paper also examines the impact of sampling time on the static and dynamic performance of the controllers. Discrete-time designs of the two controllers are included, and stability is ensured. A one-kilowatt experimental laboratory prototype has been built to validate the results.
机译:在分布式发电系统中,电网不平衡时要同时灵活地减少有功和无功(P和Q)的振荡是相当复杂的,这是一个重大的研究挑战。诸如比例积分,比例谐振(PR)和磁滞控制等各种控制技术已经证明了它们在不平衡电网(UG)条件下的有效性。在上述控制技术中,由于PR控制器同时对电网电流的正序和负序进行跟踪,因此PR控制器被认为是最受欢迎的控制器。模型预测控制器是相对较新的,并且已针对UG条件评估了其性能。但是,尚未报道使用流行的PR控制器进行比较实验研究以将P和Q灵活地传输到UG。在本文中,提出了一个比较实用的研究,以验证电网不平衡期间分布式发电系统中两个控制器的静态和动态性能。本文还研究了采样时间对控制器静态和动态性能的影响。包括两个控制器的离散时间设计,并确保了稳定性。已经建立了一个1千瓦的实验实验室原型来验证结果。

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