JOURNAL ARTICLE

Distributed Model Predictive Control Based on Bus Voltage Derivative and SoC Dynamic Model for Shipboard DC Microgrids

Changyu BanSunhua HuangLinyun XiongYang ZhouQingde WangRuikai SongLuwei WangFei Li

Year: 2024 Journal:   Electronics Vol: 13 (14)Pages: 2880-2880   Publisher: Multidisciplinary Digital Publishing Institute

Abstract

State-of-charge (SoC) consistency and bus voltage regulation are two major control objectives of shipboard DC microgrids. To achieve these objectives, this paper presents a novel distributed model predictive control (DMPC) strategy with multiple cost functions. Firstly, based on the bus voltage derivative and SoC dynamic model, the voltage and SoC control equations in discrete form are established. Subsequently, considering the safe operation of battery energy storage systems (BESSs), a DMPC taking the energy storage current as the control set is designed. Finally, the average voltage compensation is taken to achieve precise control of the average voltage. The proposed method can avoid the complex process of adjusting weight coefficients, thereby simplifying controller design. Furthermore, the robustness and practicality of the proposed DMPC method are verified through MATLAB/Simulink 2021a simulations and hardware-in-the-loop (HiL) experiments.

Keywords:
Voltage Model predictive control MATLAB Control theory (sociology) Robustness (evolution) Computer science State of charge Energy storage Engineering Control engineering Battery (electricity) Control (management) Power (physics) Electrical engineering

Metrics

4
Cited By
2.54
FWCI (Field Weighted Citation Impact)
32
Refs
0.83
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Microgrid Control and Optimization
Physical Sciences →  Engineering →  Control and Systems Engineering
Advanced Battery Technologies Research
Physical Sciences →  Engineering →  Automotive Engineering
Hybrid Renewable Energy Systems
Physical Sciences →  Energy →  Energy Engineering and Power Technology
© 2026 ScienceGate Book Chapters — All rights reserved.