FACTS and Synchronous Condensers in High-PV Power Systems: A Comparative Technical Review

High penetration of photovoltaic (PV) generation reduces system strength and introduces voltage control, power quality, and transfer capacity constraints across transmission and distribution networks. This review comparatively examines the operating principles, control mechanisms, dynamic response, and deployment implications of key FACTS devices that include: TCSC, TSSC, SVC, STATCOM and SSSC together with Synchronous Condensers. The comparison is organized around a common analytical perspective comprising reactive-power controllability, response speed, voltage support capability, short-circuit contribution, oscillation damping, and practical implementation considerations. The review shows that converter-based shunt devices provide very fast reactive current support and effective voltage regulation but contribute to limited fault current and may require harmonic mitigation; series controllers primarily enhance transfer capability and damping through manipulation of line reactance or injected series voltage. Synchronous Condensers remain particularly valuable where inertia, fault-level support and strong grid behaviour are required, although with higher losses, larger footprint and greater maintenance burden. On this basis, the paper provides technically grounded guidance on matching device type to grid need and on the coordinated deployment of electronic and rotating compensation in high-PV systems.

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Publication Details

Journal
WSEAS TRANSACTIONS ON POWER SYSTEMS
Published
2026-09-14
DOI
https://doi.org/10.37394/232016.2026.21.18
Primary Topic
Microgrid Control and Optimization
Type
article
Field-Weighted Citation Impact
0.00

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article

FACTS and Synchronous Condensers in High-PV Power Systems: A Comparative Technical Review

Rudiren Sarma, Leeshen Pather
WSEAS TRANSACTIONS ON POWER SYSTEMS
Microgrid Control and Optimization
article

FACTS and Synchronous Condensers in High-PV Power Systems: A Comparative Technical Review

Rudiren Sarma, Leeshen Pather
article en

Abstract

High penetration of photovoltaic (PV) generation reduces system strength and introduces voltage control, power quality, and transfer capacity constraints across transmission and distribution networks. This review comparatively examines the operating principles, control mechanisms, dynamic response, and deployment implications of key FACTS devices that include: TCSC, TSSC, SVC, STATCOM and SSSC together with Synchronous Condensers. The comparison is organized around a common analytical perspective comprising reactive-power controllability, response speed, voltage support capability, short-circuit contribution, oscillation damping, and practical implementation considerations. The review shows that converter-based shunt devices provide very fast reactive current support and effective voltage regulation but contribute to limited fault current and may require harmonic mitigation; series controllers primarily enhance transfer capability and damping through manipulation of line reactance or injected series voltage. Synchronous Condensers remain particularly valuable where inertia, fault-level support and strong grid behaviour are required, although with higher losses, larger footprint and greater maintenance burden. On this basis, the paper provides technically grounded guidance on matching device type to grid need and on the coordinated deployment of electronic and rotating compensation in high-PV systems.

WSEAS TRANSACTIONS ON POWER SYSTEMSVol. 21
Durban University of Technology (ZA), University of KwaZulu-Natal (ZA)
Inyuvesi Yakwazulu-Natali
Affordable and clean energy
Openalex Percentile: Top 15%
Microgrid Control and Optimization
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FACTS and Synchronous Condensers in High-PV Power Systems: A Comparative Technical Review — Rudiren Sarma, Leeshen Pather · WSEAS TRANSACTIONS ON POWER SYSTEMS (2026) | TGRS Research Map | TGRS