Return
An Active Compensation System Interface Prototype Verification
DOI:10.3390/electronics15173971.png)
Abstract
En 中文
This paper presents the design, simulation, and experimental validation of an Active Compensation System (ACS) intended for bidirectional energy exchange between the utility grid and a battery energy storage system. The proposed architecture combines a bridgeless totem-pole power factor correction converter BLTP-PFC and a bidirectional CLLLC resonant DC/DC converter. A comparative evaluation of different converter topologies is performed considering efficiency, bidirectional operation capability, implementation complexity, and suitability for active compensation applications. Simulation and laboratory measurements verify operation in both charging and discharging modes. Experimental results demonstrate a maximum output power of 2.18 kW, power factor close to unity, current THD of 1.43%, and system efficiency exceeding 96%. The results confirm the suitability of the proposed topology for future smart-grid, renewable-energy, and battery-energy-storage applications.
Keywords:
active compensation system
battery storage system
bidirectional power flow
Journal
IF:
2.6
Papers:
1.0W
Citations:
4.7W
Organization
Cited Papers
Supercapacitors Fast Ageing Control in Residential Microgrid Based Photovoltaic/Fuel Cell/Electric Vehicle Charging Station
ENERGIES
IF3.2


