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Solar, Wind and Their Hybridization Integration for Multi-Machine Power System Oscillation Controllers Optimization: A Review

期刊

ENERGIES
卷 16, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/en16010024

关键词

phase-lock loop (PLL); virtual synchronous generator (VSG); maximum power point tracker (MPPT); damping controller; power system stabilizer (PSS); flexible AC transmission system (FACTS)

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The massive growth in global electrical energy demand has led to the integration of solar and wind energy into the electrical power mix. However, the intermittent nature of wind and solar photovoltaic (PV) energy requires the implementation of a good maximum power tracking (MPPT) scheme. The integration also introduces synchronization challenges and various modes of power system oscillations, affecting the overall stability. Various technological models, such as MPPT schemes and artificial intelligence, have been designed to address these challenges.
Massive growth in global electrical energy demand has necessitated a genuine exploration and integration of solar and wind energy into the electrical power mix. This incorporation goes a long way in improving the cumulative generated power capacity of the power system. However, wind and solar photovoltaic (PV) are intermittent in nature, making the provisioning of a good maximum power tracking (MPPT) scheme necessary. Furthermore, the integration is characterized by synchronization challenges and introduces various modes of power system oscillations as it is converter-driven. This greatly affects the overall stability of the integrated power mix. Consequently, various technological models have been designed to address these challenges ranging from MPPT schemes, phase-lock loop (PLL), virtual synchronous generator (VSG), power system stabilizers (PSS), flexible AC transmission system (FACTS), coordinated control and artificial intelligence (AI). In this work, a multi-machine power system model is reviewed for integration stability studies. Various technical solutions associated with the integration are also reviewed. MPPT, PLL, VSG, PSS, FACTS, coordinated control, and various optimization technique schemes used for damping controller design are discussed.

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