Design and development of intelligent controller for active power conditioner
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Abstract
The widespread use of power electronic circuits in electrical networks
newlinehas resulted in distorted current waveforms. This causes non-sinusoidal
newlinevoltage drop across the transmission line impedances and transformers, which
newlineproduces a non-sinusoidal input voltage at Point of Common Coupling (PCC).
newlineUnbalanced three-phase line currents are caused by an asymmetric load
newlinedistribution. In electric distribution systems, harmonics are primarily caused
newlineby nonlinear loads. The harmonic components of the signal have been
newlinetheoretically and experimentally analyzed. It is observed that the fifth and
newlineseventh order harmonic current components dominate the frequency spectrum.
newlineSeveral harmonic mitigation approaches have been proposed to reduce
newlineharmonics, such as transformer connection, Passive Power Filter (PPF), Active
newlinePower Filter (APF), and Hybrid Power Filters (HPF). It is essential to
newlinecompensate harmonic components at the PCC in order to eliminate resonance,
newlineheating, and equipment malfunctions. Harmonics are compensated by a tuned
newlinePPF. The Shunt Active Power Filter is among the most widely used active
newlinepower filter. This kind of filter restores line current to its sinusoidal state by
newlinegenerating opposite harmonics.
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