Back close

An Intelligent Controller Based Shunt Hybrid Filter for Harmonic Mitigation in Adjustable Speed Drives

School: School of Engineering, Coimbatore

Project Incharge:Dr. Sindhu M. R.
Funded by:DST
An Intelligent Controller Based Shunt Hybrid Filter for Harmonic Mitigation in Adjustable Speed Drives

The Intelligent Controller-Based Shunt Hybrid Filter (SHF) dynamically suppresses current harmonics and improves power quality in Adjustable Speed Drive (ASD) systems under varying load conditions.By integratingadaptive control with a hybrid active-passive compensation topology, the system achieves superior Total Harmonic Distortion (THD) reduction and dynamic reactive power compensation.  The intelligent SHF ensuresreal-time harmonic mitigation, enhanced current waveform symmetry, and stable DC-link voltage regulation, thereby boosting the overall efficiency and reliability of modern ASD-fed industrial drives. A laboratory model of adaptive shunt hybrid filter was set up and effectiveness for harmonic and reactive compensation for an Adjustable Speed drive is investigated in this project.

Amount: Rs. 17, 40, 000/-
Status: Completed

Related Projects

Cooperative MIMO in Wireless Sensor Network for Precision Agriculture
Cooperative MIMO in Wireless Sensor Network for Precision Agriculture
Design, synthesis and characterization of modified peptide nucleic acids having electrochemical/fluorescent markers
Design, synthesis and characterization of modified peptide nucleic acids having electrochemical/fluorescent markers
Smart Water Management
Smart Water Management
Investigation into the surface integrity of the Titanium Alloys during high speed machining
Investigation into the surface integrity of the Titanium Alloys during high speed machining
Development of a Model for Evaluation and Assessment of Meanness of SMEs and Effective Large-scale Implementation of Lean Strategies.
Development of a Model for Evaluation and Assessment of Meanness of SMEs and Effective Large-scale Implementation of Lean Strategies.
Admissions Apply Now