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A Port-Hamiltonian Approach to Plug-and-Play Voltage and Frequency Control in Islanded Inverter-Based AC Microgrids

机译:一种端口 - 汉密尔顿途径采用岛逆变器的AC微电网中的即插即用电压和频率控制方法

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In this paper, we propose a decentralized scalable, plug-and-play control of voltage-source inverters (VSIs) in islanded, inverter-based AC micro-grids at primary level. Particularly in islanded mode without inertia from conventional generators in the main grid, voltage and frequency stabilization must be performed exclusively by these VSIs. In contrast to existing approaches, we propose a systematic procedure that does not require the proposition of a Lyapunov function as well as avoids computationally expensive and possibly infeasible numerical optimization. It follows passivity techniques, namely interconnection and damping assignment passivity-based control (IDA-PBC) on the basis of port-Hamiltonian systems (PHSs) theory. By employing the Hamiltonian naturally obtained from the PHS approach as Lyapunov function and analyzing load dynamics, we prove microgrid-wide asymptotic voltage and frequency stability. A simulation validating our theoretical results concludes our work.
机译:在本文中,我们提出了在初级级别的基于insed基于逆变器的交流微网的电压源逆变器(VSIS)的分散的可扩展,即插即用控制。特别是在没有惯性的孤立的岛状模式中,在主电网中,必须由这些VSI专门执行电压和频率稳定。与现有方法相比,我们提出了一种不需要提出Lyapunov功能的系统程序,以及避免计算昂贵和可能不可行的数值优化。它遵循基于端口 - 哈密顿系统(PHSS)理论的基于主技术,即互连和阻尼分配基于频率的控制(IDA-PBC)。通过使用从PHS方法自然获得的Hamiltonian作为Lyapunov函数和分析负载动力学,我们证明了微普里德 - 宽的渐近电压和频率稳定性。验证我们的理论结果的模拟结束了我们的工作。

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