LAPSE:2023.17473
Published Article

LAPSE:2023.17473
Passivity-Based Control of Water Pumping System Using BLDC Motor Drive Fed by Solar PV Array with Battery Storage System
March 6, 2023
Abstract
In remote locations, it is advisable to combine solar water pumping with electric energy storage and power supply for other forms of consumption. In such complex systems, individual subsystems feature their own local control, and the general automatic control of the system in different modes of its operation is carried out in accordance with an energy management strategy (EMS). In this paper, the functions of local and general control of the solar water pumping system with battery storage and external power supply are combined in the system of passivity-based control (PBC). The EMS is constructed in such a way that for all modes, only two PBC systems are developed, which are switched depending on the battery’s state of charge and the current levels of the two main disturbances—solar irradiation and electrical consumption. For each system, two control influence former (CIF) structures were synthesized and their operation was investigated by computer simulation. Despite the simplicity of CIFs’ implementation, due to the introduced interconnection and damping coefficients, such control allows the provision of the required voltage regulation with a static error up to 1%, sufficient quality of transients during disturbances and switching of the system structure, as well as system asymptotic stability.
In remote locations, it is advisable to combine solar water pumping with electric energy storage and power supply for other forms of consumption. In such complex systems, individual subsystems feature their own local control, and the general automatic control of the system in different modes of its operation is carried out in accordance with an energy management strategy (EMS). In this paper, the functions of local and general control of the solar water pumping system with battery storage and external power supply are combined in the system of passivity-based control (PBC). The EMS is constructed in such a way that for all modes, only two PBC systems are developed, which are switched depending on the battery’s state of charge and the current levels of the two main disturbances—solar irradiation and electrical consumption. For each system, two control influence former (CIF) structures were synthesized and their operation was investigated by computer simulation. Despite the simplicity of CIFs’ implementation, due to the introduced interconnection and damping coefficients, such control allows the provision of the required voltage regulation with a static error up to 1%, sufficient quality of transients during disturbances and switching of the system structure, as well as system asymptotic stability.
Record ID
Keywords
battery energy storage system (BESS), brushless DC motor (BLDCM), energy management strategy (EMS), interconnection and damping assignment (IDA), passivity-based control (PBC), photovoltaic array, solar water pumping system (SWPS)
Subject
Suggested Citation
Shchur I, Lis M, Biletskyi Y. Passivity-Based Control of Water Pumping System Using BLDC Motor Drive Fed by Solar PV Array with Battery Storage System. (2023). LAPSE:2023.17473
Author Affiliations
Shchur I: Department of Electric Mechatronics and Computer-Controlled Electromechanical Systems, Lviv Polytechnic National University, 79013 Lviv, Ukraine [ORCID]
Lis M: Faculty of Electrical Engineering, Czestochowa University of Technology, 35-959 Czestochowa, Poland
Biletskyi Y: Department of Electric Mechatronics and Computer-Controlled Electromechanical Systems, Lviv Polytechnic National University, 79013 Lviv, Ukraine [ORCID]
Lis M: Faculty of Electrical Engineering, Czestochowa University of Technology, 35-959 Czestochowa, Poland
Biletskyi Y: Department of Electric Mechatronics and Computer-Controlled Electromechanical Systems, Lviv Polytechnic National University, 79013 Lviv, Ukraine [ORCID]
Journal Name
Energies
Volume
14
Issue
23
First Page
8184
Year
2021
Publication Date
2021-12-06
ISSN
1996-1073
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Original Submission
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PII: en14238184, Publication Type: Journal Article
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LAPSE:2023.17473
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https://doi.org/10.3390/en14238184
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Mar 6, 2023
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