并网模式下基于风/燃料电池的混合微电网运行与控制

T. Vigneysh, N. Kumarappan, R. Arulraj
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引用次数: 18

摘要

微电网是负载和微源的集合,它们作为一个单一的可控系统运行,为小区域提供热量和电力。混合电网包括交流电网和直流电网。交流电源和负载连接到交流电网,而直流电源和负载连接到直流电网,两个电网通过双向变换器连接在一起。本文提出了一种由风力发电机和燃料电池堆组成的混合微电网,以减少在单个交流电网或直流电网中常见的多次AC-DC-AC和DC-AC-DC转换过程。所提出的混合电网以并网方式运行。为了实现交直流电网之间的平稳电力交换和混合微电网在各种资源条件下的稳定运行,对电力电子变流器实施了各种控制机制。考虑了一种小型混合网格,并在MATLAB/SIMULINK环境下进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Operation and control of wind/fuel cell based hybrid microgrid in grid connected mode
A microgrid is a collection of loads and micro sources that operate as a single controllable system to provide both heat and power to a small area. A hybrid grid consists of both AC and DC grid. AC power sources and loads are connected to the AC grid whereas DC power sources and loads are connected to the DC grid and both the grids are connected together by a bidirectional converter. In this paper, a hybrid microgrid consisting a wind turbine and fuel cell stack is proposed to reduce the process of multiple AC-DC-AC and DC-AC-DC conversions which are commonly seen in an individual AC grid or DC grid. The proposed hybrid grid is operating in grid connected mode. The various control mechanisms are implemented for the power electronic converters for smooth power exchange between AC and DC grids and for stable operation of the proposed hybrid microgrid under various resource conditions. A small hybrid grid is considered and simulated using the MATLAB/SIMULINK environment.
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