Modeling and Analysis of Microgrid Energy Scheduling Based on Colored Petri Net

Xin Liang, Yifan Hou, Mi Zhao
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Abstract

Colored Petri nets (CPN) can be used to model and study systems with discrete, asynchronous, and concurrent behaviors. Microgrid systems have these features, that can be modeled and studied by CPN. In this paper, the energy scheduling between various distributed power sources and users in a microgrid system is studied based on the analysis of working characteristics of wind turbines, photovoltaic arrays and flexible loads. A CPN model of a microgrid system including distributed power generations is established, which can realize the functions of scheduling energy generated by distributed power generators in the microgrid system and interacting with the external power grid. Owing to the modular and hierarchical modeling method, the proposed model can be conveniently expanded in the scale and function as required, which has universality and adaptability. Finally, the theoretical significance and practical values of the established model are demonstrated by the system simulation.
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基于有色Petri网的微电网能量调度建模与分析
彩色Petri网(CPN)可用于建模和研究具有离散、异步和并发行为的系统。微电网系统具有这些特征,可以用CPN进行建模和研究。本文在分析风电机组、光伏阵列和柔性负载工作特性的基础上,研究了微电网系统中各分布式电源和用户之间的能量调度问题。建立了包含分布式发电机组的微网系统CPN模型,该模型能够实现分布式发电机组在微网系统内的发电量调度和与外部电网的交互功能。由于采用模块化和层次化的建模方法,该模型可以根据需要方便地扩展规模和功能,具有通用性和适应性。最后,通过系统仿真验证了所建立模型的理论意义和实用价值。
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