@inproceedings{8e86e46389ec42f18962992244cdeeb4,
title = "A Variable Power Reaching Law-Based Integral Sliding Mode Controller Design to Maintain Power Sharing in DC Microgrids",
abstract = "This research proposes a variable power reaching law-integral sliding mode controller (VPRL-ISMC) to sustain power-sharing inside a DC microgrid. The main purpose of this study is to keep power-sharing in DC-microgrid components stable while keeping the DC-bus voltage constant. As a result, another important aim is to maintain a constant DC-bus voltage at the DC-bus. The output power of each microgrid unit is managed using the suggested VPRL-ISMC to meet the aforementioned goals. A solar PV system, a battery, and DC loads are all part of the planned DC microgrid. The control Lyapunov theory is employed to assure the overall stability of each unit inside the DC microgrid. Eventually, simulation results are given to demonstrate the proposed controller's efficacy, as well as comparison findings to prove the new control scheme's value over the previous controller.",
keywords = "ISMC, Lyapunov function, PV system, RESs, VPRL",
author = "T. Rani and Roy, \{T. K.\}",
year = "2021",
month = dec,
doi = "10.1109/EICT54103.2021.9733577",
language = "English",
series = "2021 5th International Conference on Electrical Information and Communication Technology, EICT 2021",
publisher = "Institute of Electrical and Electronics Engineers",
booktitle = "2021 5th International Conference on Electrical Information and Communication Technology, EICT 2021",
address = "United States",
note = "5th International Conference on Electrical Information and Communication Technology, EICT 2021 ; Conference date: 17-12-2021 Through 19-12-2021",
}