网格等效电路中考虑不确定性的BTB-VSC统一鲁棒控制设计

Marcelo de Castro, I. D. de Souza, Gabriel A. Fogli, Ademir da S. T. Junior, P. M. de Almeida, J. G. de Oliveira, P. G. Barbosa
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引用次数: 1

摘要

本文介绍了基于背靠背的电压源变换器(VSC)的统一模型和控制系统的设计。考虑到BTB变换器处理双向潮流和共耦合点电网等效电阻和电感的不确定性,设计了基于鲁棒极点布置的控制器。以状态空间形式给出了BTB变换器的非线性和线性化模型以及状态反馈控制的设计。BTB-VSC系统在数字环境中进行了组装和测试。仿真结果表明,该控制器能够满足双向潮流和不同电网等效阻抗值的性能要求。索引术语-背靠背,电压源转换器,鲁棒控制,多变量控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unified Robust Control Design for BTB-VSC Subject to Uncertainties in Grid Equivalent Circuit
This paper presents the design of a unified model and control system for a voltage source converter (VSC)-based Back-To-Back (BTB). The controller based on robust pole placement is designed taking into account that the BTB converter deals with bidirectional power flow and uncertainties related to grid equivalent resistance and inductance at the Point of Common Coupling (PCC). Non-linear and linearized models for the BTB converter along with the design of a state feedback control are presented in a state-space formulation. A BTB-VSC system is assembled and tested in a digital environment. Results for simulations performed are presented showing that the controller can meet desired performance requirements for bidirectional power flow and for different grid equivalent impedance values. Index Terms—Back-to-Back, Voltage Source Converter, Robust Control, Multi-variable Control.
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