Control strategies of active filters in the context of power conditioning
S.G. Dan, D.D. Benjamin, R. Măgureanu, L. Asminoaei, Remus Teodorescu, Frede Blaabjerg
Abstract
S.G. Dan, D.D. Benjamin, R. Măgureanu, L. Asminoaei, Remus Teodorescu, Frede Blaabjerg
Abstract
Active power filters have been intensively explored in the past decade. Various topologies and control schemes have been documented aiming at reducing the cost and improving the performance of the compensation system. Hybrid active filters inherit the efficiency of passive filters and the improved performance of active filters, and thus constitute a viable improved approach for harmonic compensation. In this paper a parallel hybrid filter is studied for current harmonic compensation. The hybrid filter is formed by a single tuned LC filter per phase and a small-rated power three-phase active filter, which are directly connected in series without any matching transformer. The required rating of the active filter is much smaller than a conventional standalone active filter would be. No additional switching-ripple filter is required for the hybrid filter because the LC filter functions not only as a harmonic filter but also as a switching-ripple filter around 10 kHz. Simulation results and experimental results obtained in laboratory confirmed the validity and effectiveness of the control
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Active power filters have been intensively explored in the past decade. Various topologies and control schemes have been documented aiming at reducing the cost and improving the performance of the compensation system. Hybrid active filters inherit the efficiency of passive filters and the improved performance of active filters, and thus constitute a viable improved approach for harmonic compensation. In this paper a parallel hybrid filter is studied for current harmonic compensation. The hybrid filter is formed by a single tuned LC filter per phase and a small-rated power three-phase active filter, which are directly connected in series without any matching transformer. The required rating of the active filter is much smaller than a conventional standalone active filter would be. No additional switching-ripple filter is required for the hybrid filter because the LC filter functions not only as a harmonic filter but also as a switching-ripple filter around 10 kHz. Simulation results and experimental results obtained in laboratory confirmed the validity and effectiveness of the control
Key concepts: Active filter, Electronic filter topology, Voltage-controlled filter, All-pass filter, High-pass filter, Control theory (sociology), Ripple, Prototype filter