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Analysis of a standalone microgrid stability using generic Markov jump linear systems

机译:使用通用马尔可夫跳跃线性系统分析独立微电网稳定性

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Recent developments to address the stability of small power systems, such as AC & DC microgrids include the use of advanced techniques that apply to Markov Jump Linear Systems (MJLSs). The system is considered to oscillate between discrete, finite operating modes, and can be represented as a Stochastic Hybrid System (SHS). Analytical solutions in terms of the moments of the power system dynamic and algebraic states were derived in previous studies. The method is validated for small systems (2 states, 2 modes). However, its scalability to larger systems remains an open question. In this paper, we apply the model to a standalone microgrid (two inverters, 36 states, 2 buses and 3 modes of operation). The resulting system statistics converge to Monte Carlo simulations. Future work will extend the application of the model to arbitrary large scale systems and will derive bounds on the statistics of the dynamic states.
机译:解决小型电力系统的稳定性的最新发展,例如AC&DC微电网包括使用适用于马尔可夫跳跃线性系统(MJLS)的先进技术。该系统被认为是在离散,有限的操作模式之间振荡,并且可以表示为随机混合系统(SHS)。在先前的研究中得出了动力系统动态和代数状态的时刻的分析解决方案。该方法验证了小系统(2个状态,2种模式)。然而,其对更大系统的可扩展性仍然是一个开放的问题。在本文中,我们将模型应用于独立的微电网(两个逆变器,36个州,2个总线和3种操作模式)。由此产生的系统统计信息会聚到蒙特卡罗模拟。将来的工作将将模型的应用扩展到任意大规模系统,并将导出动态状态统计信息的范围。

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