A Structure Preserving Approach for Control of Future Distribution Grids and Microgrids Guaranteeing Large Signal Stability

M. Cupelli, S. Bhanderi, S. K. Gurumurthy, A. Monti
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引用次数: 1

Abstract

This paper describes the application of the Port Controlled Hamiltonian Network for Modelling and Control of non-linear power system dynamics. Goal of this work is to propose a methodology for system level design for power electronics driven electrical networks able to guarantee large signal stability. Starting from a model-level modular approach, the system is defined using the interconnection concept. The paper focuses on a DC micro-grid scenario where several converters interact with a lumped load. Contrary to previous work, the load is modelled as a Constant Power Load (CPL) introducing new challenges in terms of system stability.
一种保证大信号稳定性的未来配电网和微电网控制结构保持方法
本文介绍了港口控制哈密顿网络在非线性电力系统动力学建模和控制中的应用。这项工作的目标是提出一种能够保证大信号稳定性的电力电子驱动电网的系统级设计方法。从模型级模块化方法开始,使用互连概念定义系统。本文重点研究了一个直流微电网场景,其中几个变流器与一个总负载相互作用。与以前的工作相反,负载被建模为恒定功率负载(CPL),在系统稳定性方面引入了新的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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