不确定条件下微电网分析的广义随机Petri网(GSPN

D. Jana, N. Chakraborty
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引用次数: 1

摘要

Petri网(PNs)广泛用于说明和分析工业系统在离散和连续时间事件条件下的性能。努力利用Petri网建设智能电网,特别是微电网系统,对安全、自动化和节能运行提出了重大挑战。这是由于接入微电网的能源资源和负荷功能不确定所致。本研究提出通过考虑可再生能源资源的可变性和随机负荷分布来促进微电网建模,显示了在Petri网并行计算任务下描述的指示性结果。在了解绿色能源经济应用的基础上,利用广义随机Petri网(GSPN)建立了反映微电网可交付特性的综合模型。通过有用的标记生成可达性图,以分析整个系统属性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generalized Stochastic Petri Nets (GSPN) for Analysis of Microgrid under Uncertainities
Petri Nets (PNs) are extensively used to illustrate and analyze industrial systems performance under both discrete and continuous-time event conditions. Endeavor to utilize Petri Nets for building a smart grid, specially a microgrid system leads to major challenges for secure, automated and energy competent operations. This is due to uncertain function of energy resources and loads integrated into microgrid. This work proposes to promote microgrid modeling by considering variability in renewable energy resources and stochastic load profile showing indicative results depicted as under parallel computing task by Petri Nets. With the knowledge of economic green energy application, a comprehensive model has been prepared using Generalized Stochastic Petri Nets (GSPN) to reflect deliverable features of microgrid. A reachability graph is generated by useful marking to analyze the entire system properties.
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