A power management system for interconnected AC islanded microgrids using back-to-back converter
Udoha, E; Das, S; Abusara, M
Date: 15 November 2023
Conference paper
Publisher
Institution of Engineering and Technology (IET)
Publisher DOI
Related links
Abstract
Islanded AC microgrids are mini-power grids formed by assembling distributed generation sources, energy storage systems and
loads. They are reliable and can operate at different voltages and frequencies to meet the requirements of the load. Interconnected
Islanded Microgrids consist of multiple islanded microgrids interconnected ...
Islanded AC microgrids are mini-power grids formed by assembling distributed generation sources, energy storage systems and
loads. They are reliable and can operate at different voltages and frequencies to meet the requirements of the load. Interconnected
Islanded Microgrids consist of multiple islanded microgrids interconnected to improve power system availability and stability,
control flexibility, resiliency and reserve capacity. Islanded microgrids can be interconnected using back-to-back power
converters to decouple connecting frequencies whose active and reactive power control can be done wirelessly and
autonomously under a low communication link. This paper proposes a novel structure and control strategy using back-to-back
converters and power transformers to interconnect multiple islanded AC microgrids to a global AC bus. Microgrids and global
bus can utilise their resources to improve their operation and benefits. The control strategy uses a frequency signalling
mechanism to limit the power demand of individual global converters and adjusts its droop coefficients accordingly and in
proportion to deviation in frequency. The global droop controllers of the global connecting converters receive information about
the status of the frequencies of individual microgrids using a low bandwidth communication link to enhance network power
flow. MATLAB/Simulink results validate the performance of the proposed structure and control strategy.
Earth and Environmental Science
Faculty of Environment, Science and Economy
Item views 0
Full item downloads 0
Related items
Showing items related by title, author, creator and subject.
-
Combined power extraction with adaptive power management module for increased piezoelectric energy harvesting to power wireless sensor nodes
Chew, ZJ; zhu, M (Institute of Electrical and Electronics Engineers (IEEE), 9 January 2017)This paper, for the first time, presents a combined power extraction with adaptive full analogue power management module (PMM) for increased piezoelectric energy harvesting. The PMM is adaptive to variations in the amplitude ... -
Low power adaptive power management with energy aware interface for wireless sensor nodes powered using piezoelectric energy harvesting
Chew, Zheng Jun; Zhu, Meiling (Institute of Electrical and Electronics Engineers (IEEE), 7 January 2016)A batteryless power management circuit incorporating an energy aware interface (EAI) for wireless sensor nodes (WSNs) powered by piezoelectric energy harvester (PEH) has been proposed and implemented. Traditional power ... -
Towards Optimal Power Splitting in Simultaneous Power and Information Transmission
Mi, Y; Luo, C; Min, G; et al. (Institute of Electrical and Electronics Engineers (IEEE), 21 February 2019)Simultaneous wireless information and power transfer (SWIPT) offers novel designs that could enhance the sustainability and resilience of communication systems. Due to the very limited receiving power from radio frequency ...