Model Development for an Islanded Microgrid

Nicolae Alexandru Sârbu, D. Petreus
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引用次数: 1

Abstract

Microgrids play a key role in the integration of renewable energies into the classical grid and, thus, reducing our reliance on fossil fuels. Interconnecting different types of distributed energy resources is a challenging task which requires proper control methods to be set up. Moreover, due to the dependency of renewable energies on different weather factors, smart optimization techniques must be employed for microgrids to make operational and economic sense. Simulation is an essential tool for developing and testing such algorithms, before deploying them in a real-world scenario. This paper presents a model of a small scale islanded microgrid, developed in MATLAB Simulink, used to simulate different control and optimization methods. Mixed Integer Linear Programming (MILP) is used as an example of a microgrid cost optimization method, which is validated using the developed model. The results presented show that the microgrid model as well as the optimization algorithm function as intended. This work serves as a starting point for further research.
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孤岛微电网的模型开发
微电网在将可再生能源整合到传统电网中发挥着关键作用,从而减少了我们对化石燃料的依赖。不同类型的分布式能源的互联是一项具有挑战性的任务,需要建立适当的控制方法。此外,由于可再生能源对不同天气因素的依赖,必须采用智能优化技术使微电网具有运营和经济意义。在将这些算法部署到实际场景之前,仿真是开发和测试这些算法的重要工具。本文提出了一个小型孤岛微电网模型,在MATLAB Simulink中开发,用于模拟不同的控制和优化方法。以混合整数线性规划(MILP)为例,对微电网成本优化方法进行了验证。结果表明,微网模型和优化算法均达到预期效果。这项工作是进一步研究的起点。
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