Article, 2024

Adaptive generalized predictive voltage control of islanded ac microgrid in presence of symmetric and asymmetric faults

Electric Power Systems Research, ISSN 1873-2046, 0378-7796, Volume 226, Page 109964, 10.1016/j.epsr.2023.109964

Contributors

Felegari, Bashir [1] Asvadi-Kermani, Omid [1] Oshnoei, Arman 0000-0003-3178-6643 [2] Momeni, Hamid Reza [1] Muyeen, S M Muyeen 0000-0003-4955-6889 (Corresponding author) [3]

Affiliations

  1. [1] Tarbiat Modares University
  2. [NORA names: Iran; Asia, Middle East];
  3. [2] Aalborg University
  4. [NORA names: AAU Aalborg University; University; Denmark; Europe, EU; Nordic; OECD];
  5. [3] Qatar University
  6. [NORA names: Qatar; Asia, Middle East]

Abstract

In islanded microgrids, efficiently controlling the output voltage and frequency of voltage source inverters while maintaining stability poses a significant challenge, particularly during grid fault conditions. This paper presents an online adaptive Kalman-based constrained generalized predictive voltage controller (AGPVC) that there are constraints on the inverter control signal and its changes to maintain microgrid s’ voltage and frequency are stayed within the specified limits and restore them to reference values after short circuit faults, after the system s’ dynamic changes. Notably, the proposed controller operates without requiring knowledge of the system's physical parameters, relying solely on local information to regulate the inverter output. The constrained and adaptive model estimation mechanisms increase the stability and scalability of the proposed method for implementation on the different systems. The transient and steady-steady state response of the output voltage in both normal and faulty conditions shows that for the 380 V reference maximum voltage drop during fault is 40 V less than the traditional method after the fault happens. The effectiveness of the proposed controller is verified through time-domain simulations conducted in MATLAB/Simulink.

Keywords

MATLAB/Simulink, asymmetrical faults, changes, circuit fault, conditions, constraints, control, control signal, dynamic changes, effect, estimation mechanism, fault, fault conditions, frequency, grid, grid fault conditions, implementation, information, inverter, inverter control signal, inverter output, islanded microgrid, knowledge, limitations, local information, mechanism, method, microgrid, output, output voltage, parameters, physical parameters, predictive voltage control, presence, reference, reference values, response, scalability, short circuit fault, signal, simulation, source inverter, stability, state response, system, system S, system physical parameters, time-domain simulations, traditional methods, values, voltage, voltage control, voltage source inverter

Funders

  • Qatar Foundation

Data Provider: Digital Science