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Sliding mode control for Maximum Power Point Tracking of photovoltaic inverters in microgrids

机译:微电网中光伏逆变器最大功率点跟踪的滑模控制

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摘要

In this paper the design of sliding mode controllers for Maximum Power Point Tracking (MPPT) of a photovoltaic inverter in microgrids is presented. A master-slave configuration of the microgrid is considered in islanded operation mode where the photovoltaic Distributed Generation unit (DGu) serves as a slave. The DGu is also affected by nonlinearities, parameters and modelling uncertainties, which make the use of the sliding mode control methodology particularly appropriate. Specifically, a sliding mode controller, relying on the so-called unit vector approach, is first proposed to control the photovoltaic inverter. Then, a Second Order Sliding Mode (SOSM) controller, adopting a Suboptimal SOSM algorithm, is proposed to alleviate the chattering phenomenon and feed a continuos modulating signal into the photovoltaic inverter. Simulation tests, carried out on a realistic scenario, confirm satisfactory closed-loop performance of the proposed control scheme.
机译:本文提出了微电网中光伏逆变器最大功率点跟踪(MPPT)的滑模控制器设计。在孤岛操作模式下考虑微电网的主从配置,在该模式下,光伏分布式发电单元(DGu)充当从站。 DGu还受到非线性,参数和建模不确定性的影响,这使得使用滑模控制方法特别合适。具体地,首先提出了基于所谓的单位矢量方法的滑模控制器来控制光伏逆变器。然后,提出了采用次优SOSM算法的二阶滑模控制器,以减轻抖动现象并将连续调制信号馈入光伏逆变器。在实际情况下进行的仿真测试证实了所提出控制方案的令人满意的闭环性能。

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