학술논문

DC microgrid voltage stability by dynamic feedback linearization
Document Type
Conference
Source
2018 IEEE International Conference on Industrial Technology (ICIT) Industrial Technology (ICIT), 2018 IEEE International Conference on. :129-134 Feb, 2018
Subject
Aerospace
Components, Circuits, Devices and Systems
Computing and Processing
Engineering Profession
Fields, Waves and Electromagnetics
Power, Energy and Industry Applications
Robotics and Control Systems
Signal Processing and Analysis
Transportation
Microgrids
Voltage control
Supercapacitors
Batteries
Integrated circuit modeling
Stability analysis
Equivalent circuits
DC Microgrids control
voltage stability
Feedback linearization
Nonlinear control
Power converters
Language
Abstract
Recent developments in power electronics and renewable energy sources have brought the risen of Direct Current (DC) Microgrids. By power converters' utilization, a DC Microgrid is able to integrate renewables, storage systems, and other devices in a simpler topology, since the major part of the modern grid's compounds have DC nature. This paper proposes a control strategy aiming to regulate the voltage in the DC bus of a Microgrid by a supercapacitor. The control law is applied to a bidirectional boost converter that connects the supercapacitor to the DC grid. The control scheme is based on dynamical feedback linearization and consists in splitting the system in different time scale dynamics, creating consequently a simplified model. Simulations on Matlab/Simulink illustrate how the control strategy is able to regulate the DC voltage with good performance.