Hybrid SVG + Capacitor Bank Reactive Power Compensation Your capacitor bank trips once a month, the contactor welds shut, and the DISCOM bill still carries a penalty line. The 250 kVA rectifier load from your new VFDs is the reason, and adding more capacitors will make it worse. A hybrid SVG + capacitor bank system fixes the root cause instead of compensating for it. This article explains why fixe...
SVG and AHF maintenance is the scheduled inspection, measurement and component-replacement programme that keeps a static var generator (SVG) and an active harmonic filter (AHF) inside their design limits — stable reactive power compensation, a corrected power factor, and harmonic current below the limits agreed at the point of common coupling (PCC). Most plants do not lose power quality equi...
Why a Solar Plant Needs Active Compensation A Static Var Generator (SVG) is an active, IGBT-based power-electronics compensator that stabilises voltage, supplies or absorbs reactive power and filters harmonic current at the point of common coupling (PCC) of a solar plant. It turns unstable PV output into grid-compliant power for EPC contractors, electrical engineers, procurement teams and power-qu...
A 1,000 kVA transformer feeding six-pulse VFDs, spot welders and single-phase loads is a textbook harmonic source. Field measurements on such busbars typically show current THD of 25–40 % at the PCC, with the 5th and 7th orders dominant. Third-order currents add up in the neutral conductor and overheat it. Fixed capacitor banks rarely survive this environment. When the natural resonan...
Poor power quality rarely appears as its own line on an electricity bill, but it can raise the charges a facility already pays by increasing current, losses and power-factor or demand penalties. When a bill climbs the tariff is blamed first — yet low power factor, harmonic distortion and voltage imbalance make a plant draw more current than the useful work it produces requires. This article ...