Concurrent frequency–voltage stabilization for hybrid microgrid with virtual inertia support

Abdul Latif, S. M. Suhail Hussain, Atif Iqbal, Dulal Chandra Das, Taha Selim Ustun, Ahmed Al-Durra

    Research output: Contribution to journalArticlepeer-review

    10 Scopus citations

    Abstract

    This paper presents a novel control scheme for combined frequency and voltage stabilization of an islanded multi-generator hybrid microgrid (IHμG). The control concept incorporates an improved virtual inertia support scheme (IVIS) and the recently developed yellow saddle goatfish technique (YSGA) to obtain optimal control parameters. IHμG model consists of an AVR-based voltage compensating loop for synchronous biodiesel generator, wind generator, wave generator, photon exchange membrane fuel cell (PEMFC), and controllable heat pump and freezer. An integer order proportional-integral-derivative (IOPID) controller is leveraged for frequency-voltage stabilization. A comparative response assessment has been performed with/without IVIS. The utilization of YSGA has been justified by comparative assessment with particle swarm optimization, firefly, and sine-cosine techniques. A meticulous performance evaluation of YSGA optimized IOPID control scheme in the IHμG has been conducted through several case studies. Furthermore, the rigorous sturdiness assessment of YSGA optimized IOPID controller was performed under different uncertainties such as: variation of amplifier gain, ±30% variation in demanded loading magnitude, moment of inertia and droop co-efficient. Finally, real-time hardware-in-the-loop (HIL) simulation platform is utilized to validate the proposed control approach.

    Original languageBritish English
    Pages (from-to)2257-2275
    Number of pages19
    JournalIET Renewable Power Generation
    Volume17
    Issue number9
    DOIs
    StatePublished - 6 Jul 2023

    Keywords

    • automatic microgrid voltage restorer (AμVR)
    • frequency-voltage stabilization
    • improved virtual inertia support (IVIS)
    • islanded multi-generator hybrid microgrid (IHμG)
    • renewable-bio generation

    Fingerprint

    Dive into the research topics of 'Concurrent frequency–voltage stabilization for hybrid microgrid with virtual inertia support'. Together they form a unique fingerprint.

    Cite this