Performance Evaluation of a PID-Controlled Synchronous Buck Converter Based Battery Charging Controller for Solar-Powered Lighting System in a Fishing Trawler

Author:

Chakraborty SajibORCID,Hasan Mohammed Mahedi,Worighi Imane,Hegazy Omar,Razzak M. Abdur

Abstract

A Proportional-Integral-Derivative (PID)-controlled synchronous buck converter (SBC)-based battery charging system was designed to charge a lead-acid cell battery using commercially available Photovoltaic (PV) panel. The proposed system was installed aboard a fishing trawler to power its electrical system replacing the conventional system, which uses a diesel generator and a few kerosene lamps for lighting purposes. A PID algorithm instead of traditional Maximum power point tracker (MPPT) is used in the proposed system since the charging process of the battery requires a maximum current instead of maximum power. The proposed control algorithm is compared with the popular MPPT technique Perturb and Observation (P&O) to validate its dynamic performance at different solar irradiance levels using MATLAB/Simulink®. The simulation and the experimental results have demonstrated that the dynamic response of the proposed algorithm is significantly improved by considering higher charging current, the capability to charge the battery at low irradiance, high stability, and lower cost. Finally, a successful 15-day field trial was conducted at sea using the proposed system, and a maximum charging current output of 6.5 A was achieved by the SBC during noon time; it was sufficient to charge a 12 V, 100 Ah battery, with a state of charge (SoC) of 33%, at a voltage charging rate of +0.3 V/h.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

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1. Integral Backstepping Control of Sinusoidal Ripple Current Charge for Battery Chargers;2023 7th CAA International Conference on Vehicular Control and Intelligence (CVCI);2023-10-27

2. Photovoltaic-Fed Buck Converter for Low Energy Efficient IoT Systems;2023 International Conference on Self Sustainable Artificial Intelligence Systems (ICSSAS);2023-10-18

3. Current and future prospective for battery controllers of solar PV integrated battery energy storage systems;Frontiers in Energy Research;2023-02-13

4. A Modified PI-Controller Based High Current Density DC–DC Converter for EV Charging Applications;IEEE Access;2023

5. Design of ANN Based Controller for Battery Charging Using Synchronous Buck Converter;2022 22nd National Power Systems Conference (NPSC);2022-12-17

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