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Dynamic Modeling and Operation Strategy for a Microgrid With Wind and Photovoltaic Resources

机译:具有风能和光伏资源的微电网的动态建模和运行策略

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摘要

This paper presents a dynamic modeling and control strategy for a sustainable microgrid primarily powered by wind and solar energy. A current-source-interface multiple-input dc-dc converter is used to integrate the renewable energy sources to the main dc bus. Potential suitable applications range from a communication site or a residential area. A direct-driven permanent magnet synchronous wind generator is used with a variable speed control method whose strategy is to capture the maximum wind energy below the rated wind speed. This study considers both wind energy and solar irradiance changes in combination with load power variations. As a case study a 30-kW wind/solar hybrid power system dynamic model is explored. The examined dynamics shows that the proposed power system is a feasible option for a sustainable microgrid application.
机译:本文提出了一种主要由风能和太阳能驱动的可持续微电网的动态建模和控制策略。电流源接口多输入DC-DC转换器用于将可再生能源集成到主DC总线。潜在的合适应用范围包括通信站点或住宅区。直接驱动的永磁同步风力发电机采用变速控制方法,其策略是捕获低于额定风速的最大风能。这项研究考虑了风能和太阳辐照度的变化以及负载功率的变化。作为案例研究,探索了一个30 k​​W的风/太阳能混合动力系统动态模型。动力学研究表明,拟议的电力系统是可持续微电网应用的可行选择。

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