EngineeringEnvironmental Science

António José Arsénio Santos Costa, D. Valério, P. J. Costa Branco

2018.9.28IET Cyber-Physical Systems: Theory and Applications

DOI: 10.1049/iet-cps.2018.5037

tlooto Summary

Model predictive control proves to be a suitable strategy in this system and is proposed and evaluated about the evolution of power dispatch decisions and of the batteries state of charge, depending on the available power storage capacity.

Abstract

This study proposes and evaluates a predictive control model for the management of the power flow in a hybrid microgeneration power plant with additional storage capacity. The plant integrates a photovoltaic array, a wind turbine, a diesel generator, and a lithium ion battery bank. One objective of the proposed predictive control model is to maximise the use of power from renewable resources looking for the weather predictions and thus minimise the use of fossil power from the diesel generator and corresponding CO 2 emissions. Another aim is to maximise the duration of lithium ion batteries, since extending their lifetime is crucial for the system's economic viability, and since battery disposal brings environmental concerns as well. A numerical evaluation is performed about the evolution of power dispatch decisions and of the batteries state of charge, depending on the available power storage capacity. Model predictive control proves to be a suitable strategy in this system.

Citation format

COSTA, António José Arsénio Santos; VALÉRIO, D.; BRANCO, P. J. Costa. Predictive control model to manage power flow on a hybrid wind‐photovoltaic and diesel microgeneration power plant with additional storage capacity. IET Cyber-Physical Systems: Theory and Applications, 2018, 3: 206–211.