DOE OSTI · 2454971
PHIL Interface Design for Use With a Voltage-Regulated Amplifier
Abstract
Power hardware-in-the-loop (PHIL) has emerged as a leading strategy to thoroughly assess the impact of proprietary inverter controls on a specific power system. The development of a PHIL test bed typically involves an inverter under test, a power amplifier, controllable DC supply, and a digital real-time simulator (DRTS) to simulate the power system under study. As a result of PHIL nonidealities, a form of digital compensation within the DRTS is used, which is commonly referred to as a PHIL interface. Many existing methods use legacy power amplifiers that do not contain internal voltage regulation. These existing interface methods are based around a voltage regulator within the DRTS and do not consider the interaction with the controls in newer amplifiers. In this study, a three-step approach of PHIL interface development for modern power amplifiers with built-in voltage regulation is introduced and is validated in hardware with a 30-kW grid-following inverter.
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Meyers, Toby, Prabakar, Kumaraguru (ORCID:0000000229620743), Pratt, Annabelle, Tiwari, Soumya, Fossum, John. 2024-09-27. PHIL Interface Design for Use With a Voltage-Regulated Amplifier. https://doi.org/10.1109/isgt-la56058.2023.10328333
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