Enhancing Stability of AC-DC Microgrid Cluster and Reducing Diesel Dependency With BSS

被引:0
作者
Gupta, Sonam [1 ]
Shukla, Anup [1 ]
机构
[1] Indian Inst Technol Jammu, Dept Elect Engn, AADHRIT Lab, Jagti 181221, India
关键词
Microgrids; Batteries; Power system stability; Generators; Voltage control; Real-time systems; Phase locked loops; Grid forming; Frequency control; Thermal stability; Droop control; DSOGI-EPLL; grid forming; microgrid (MG) cluster; synchronization; ENERGY MANAGEMENT; SYSTEM;
D O I
10.1109/TIA.2025.3540800
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Renewable integrated microgrids face significant challenges, including stability issues during transient voltage fluctuations and reliance on diesel generators during islanded operations. Improving the reliability and efficiency of these systems is crucial. This paper presents an innovative control strategy for PV and wind-integrated microgrid cluster, focusing on enhancing stability and reducing diesel generator dependency. The proposed strategy utilizes a Double Second Order Generalized Integrator with an Enhanced Phase-Locked Loop (DSOGI-EPLL), referencing the frequency determined by droop control and a Localized Autonomous Controller (LAC).This configuration ensures precise synchronization and stable operation in grid-connected and islanded modes. A key feature of this strategy is LAC, which uses rule-based control logic to manage microgrid cluster operations dynamically. The LAC adjusts real-time operational modes and breaker configurations based on generation, load, and battery State of Charge (SoC). By integrating a Battery Storage System (BSS), the strategy significantly reduces dependence on diesel generators during grid outages. Stability during transitions from grid-connected to islanded modes is further improved by switching from DSOGI EPLL to droop control mode. The proposed strategy has been validated through simulations and Hardware-In-Loop (HIL) testing. In the HIL setup, the 2.5 kW wind turbine and 2 kW Battery Storage System (BSS) are considered as the hardware under test, while all other components, including the PV system, are validated through simulation. This demonstrated the practical feasibility and effectiveness of the strategy.
引用
收藏
页码:4958 / 4970
页数:13
相关论文
共 39 条
[1]   Distributed Optimization for Reactive Power Sharing and Stability of Inverter-Based Resources Under Voltage Limits [J].
Abdolmaleki, Babak ;
Simpson-Porco, John W. ;
Bergna-Diaz, Gilbert .
IEEE TRANSACTIONS ON SMART GRID, 2024, 15 (02) :1289-1303
[2]   A centralized and heuristic approach for energy management of an AC microgrid [J].
Almada, J. B. ;
Leao, R. P. S. ;
Sampaio, R. F. ;
Barroso, G. C. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 60 :1396-1404
[3]   A Feasibility Study of Implementing IEEE 1547 and IEEE 2030 Standards for Microgrid in the Kingdom of Saudi Arabia [J].
Alsafran, Ahmed Sulaiman .
ENERGIES, 2023, 16 (04)
[4]  
Ashish Abhishek, 2023, P 11 NAT POW EL C, P1
[5]  
Basumatary K., 2022, P 2022 IEEE INT C PO, P1
[6]  
Chang Jae-Won, 2017, 2017 52 INT U POWER
[7]   Robust Normalized Mixed-Norm Adaptive Control Scheme for PQ Improvement at PCC of a Remotely Located Wind-Solar PV-BES Microgrid [J].
Chishti, Farheen ;
Murshid, Shadab ;
Singh, Bhim .
IEEE TRANSACTIONS ON INDUSTRIAL INFORMATICS, 2020, 16 (03) :1708-1721
[8]   A local energy management of a hybrid PV-storage based distributed generation for microgrids [J].
Choudar, Adel ;
Boukhetala, Djamel ;
Barkat, Said ;
Brucker, Jean-Michel .
ENERGY CONVERSION AND MANAGEMENT, 2015, 90 :21-33
[9]   Under frequency load shedding for low inertia grids utilizing smart loads [J].
Darbandsari, A. ;
Amraee, T. .
INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2022, 135
[10]   Power Control in AC Isolated Microgrids With Renewable Energy Sources and Energy Storage Systems [J].
de Matos, Jose G. ;
Silva, Felipe S. F. E. ;
Ribeiro, Luiz A. de S. .
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2015, 62 (06) :3490-3498