Comparative Assessment of TCSC and STATCOM for Voltage Stability Enhancement under High Renewable Penetration: A Case Study of the Nigerian 330 kV Power Grid
- Muibi K. A.1, Olalere N. A.2, Osokoya S. O1, Ogundero I. O.1
- DOI: 10.5281/zenodo.22289885
- ISA Journal of Engineering and Technology (ISAJET)
Widespread penetration of
hybrid renewable energy (HRE) sources with intermittent and non-dispatchable
potential and little reactive power support into transmission networks
comprised of weakly-structured transmission grids threaten voltage stability.
This paper compares two FACTS controllers, the Thyristor Controlled Series
Capacitor (TCSC), and Static Synchronous Compensator (STATCOM) in the long-term
voltage and transient stability improvement of a renewable integrated network.
Case study: Nigerian 330kV, 34 bus network. Based on identified renewable
potential, Birnin-Kebbi and Kano buses are added wind and solar PV generation.
Newton-Raphson power flows and continuation power flow (P–V curve) are combined
with eigenvalue analysis to establish the steady-state stability. Three phase
faults on the idealized network are used to analyse generator rotor angle and
speed in transient stability. Pre-compensation in this weak renewable-based
network illustrates severe undervoltage at Gombe (0.865 p.u.) and Jos (0.885
p.u.) buses, a critical loading limit of λ= 1.7337 and existence of a negative
eigenvalue indicating some degree of latent small-signal instability. Pre-compensation using TCSC (200% series
compensation) during the critical loading marginally improved the Gombe and Jos
bus voltages at 0.985 and 0.957 p.u., respectively, whereas STATCOM (200%
shunt) improved voltages to 1.049 and 1.023 p.u. With all bus voltages regulated within ANSI
C84.1 norms. In a strongly renewable-based weak network, the STATCOM
outperforms the TCSC in long-term voltage stabilization.
Keywords: FACTS controllers; STATCOM; TCSC; voltage stability;
transient stability; hybrid renewable energy.