SOHAM MANJREKAR


Regenerative Clamp Converter

MS thesis · Center for Distributed Energy, Georgia Tech · Advisor: Dr. Deepak Divan
2025MS Thesis·ConvertersGT

Design and analysis of regenerative clamp converters that recover leakage-inductor energy in high-power isolated converter topologies, reducing device stress and improving efficiency. The clamp architecture was then extended into a multiport interface, so the auxiliary port can integrate PV or another distributed energy resource while still doing its job as a clamp.

The problem

In high-power isolated topologies, energy stored in the transformer’s leakage inductance has to go somewhere at every switching transition. A dissipative clamp turns it into heat and voltage stress on the devices. Recovering that energy instead of burning it buys back efficiency and lets the switches be sized against a lower peak voltage.

What the work covers

  • Analysis and modelling of the regenerative clamp, including the conditions under which leakage energy is returned to the source rather than dissipated.
  • Reduction of device voltage stress and the resulting effect on converter efficiency in high-power isolated topologies.
  • Extension of the clamp into a multiport interface: the auxiliary port carries a PV or DER input while the clamping function is preserved.
  • Simulation and hardware validation of the proposed architecture.

Documents

MS thesisDesign_and_Analysis_of_a_Regenerative_Clamp_Converter_for_Energy_Capture_and_Recovery_in_High_Power_Converter_Topologies.pdf Open PDF ↗

Back to all projects