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用于并网逆变器的新型改进滑模控制器的设计与实现,以控制电压和频率。

Design and implementation of a new modified sliding mode controller for grid-connected inverter to controlling the voltage and frequency.

作者信息

Ghanbarian Mohammad Mehdi, Nayeripour Majid, Rajaei Amirhossein, Mansouri Mohammad Mahdi

机构信息

Shiraz University Technology, Shiraz, Iran.

出版信息

ISA Trans. 2016 Mar;61:179-187. doi: 10.1016/j.isatra.2015.11.023. Epub 2015 Dec 17.

Abstract

As the output power of a microgrid with renewable energy sources should be regulated based on the grid conditions, using robust controllers to share and balance the power in order to regulate the voltage and frequency of microgrid is critical. Therefore a proper control system is necessary for updating the reference signals and determining the proportion of each inverter in the microgrid control. This paper proposes a new adaptive method which is robust while the conditions are changing. This controller is based on a modified sliding mode controller which provides adapting conditions in linear and nonlinear loads. The performance of the proposed method is validated by representing the simulation results and experimental lab results.

摘要

由于含可再生能源的微电网的输出功率应根据电网状况进行调节,因此使用鲁棒控制器来分配和平衡功率以调节微电网的电压和频率至关重要。所以,需要一个合适的控制系统来更新参考信号并确定微电网控制中每个逆变器的比例。本文提出了一种新的自适应方法,该方法在条件变化时具有鲁棒性。该控制器基于改进的滑模控制器,可在线性和非线性负载中提供自适应条件。通过给出仿真结果和实验室实验结果验证了所提方法的性能。

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