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A new controltechnique for three-phase shunt hybrid power filter
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The application of particle swarm optimizationto passive and hybrid active power filter design
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N. He, D. Xu, and L. Huang, "The application of particle swarm optimizationto passive and hybrid active power filter design," IEEE Trans.Ind. Electron., vol. 56, no. 8, pp. 2841-2851, Aug. 2009.
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W. Chen, X. Yang, and Z. Wang, "A novel hybrid common-mode EMIfilter with active impedance multiplication," IEEE Trans. Ind. Electron.,vol. 58, no. 5, pp. 1826-1834, May 2011.
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Implementationand control of a hybrid multilevel converter with floating DC linksfor current waveform improvement
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C. A. Silva, L. A. Cordova, P. Lezana, and L. Empringham, "Implementationand control of a hybrid multilevel converter with floating DC linksfor current waveform improvement," IEEE Trans. Ind. Electron., vol. 58,no. 6, pp. 2304-2312, Jun. 2011.
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A transformerless hybrid active filter usinga three-level pulsewidth modulation (PWM) converter for a mediumvoltagemotor drive
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Jun
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H. Akagi and R. Kondo, "A transformerless hybrid active filter usinga three-level pulsewidth modulation (PWM) converter for a mediumvoltagemotor drive," IEEE Trans. Power Electron., vol. 25, no. 6,pp. 1365-1374, Jun. 2010.
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Linear feedbackcontrol of a parallel active harmonic conditioner in power systems
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FeedbackfeedforwardPI-type iterative learning control strategy for hybrid activepower filter with injection circuit
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Experimental design ofa nonlinear control technique for three-phase shunt active power filter
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S. Rahmani, N. Mendalek, and K. Al-Haddad, "Experimental design ofa nonlinear control technique for three-phase shunt active power filter,"IEEE Trans. Ind. Electron., vol. 57, no. 10, pp. 3364-3375, Oct. 2010.
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A repetitive-based controller for thecompensation of 61 ±1 harmonic components
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Aug
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G. Escobar, P. G. Hernandez-Briones, P. R. Martinez, M. Hernandez-Gomez, and R. E. Torres-Olguin, "A repetitive-based controller for thecompensation of 61 ±1 harmonic components," IEEE Trans. Ind. Electron.,vol. 55, no. 8, pp. 3150-3158, Aug. 2008.
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Neural network and bandless hysteresisapproach to control switched capacitor active power filter for reductionof harmonics
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May
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M. A. M. Radzi and N. A. Rahim, "Neural network and bandless hysteresisapproach to control switched capacitor active power filter for reductionof harmonics," IEEE Trans. Ind. Electron., vol. 56, no. 5, pp. 1477-1484,May 2009.
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Current harmoniccompensation by a single-phase shunt active power filter controlled byadaptive neural filtering
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M. Cirrincione, M. Pucci, G. Vitale, and A. Miraoui, "Current harmoniccompensation by a single-phase shunt active power filter controlled byadaptive neural filtering," IEEE Trans. Ind. Electron., vol. 56, no. 8,pp. 3128-3143, Aug. 2009.
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A signal-processing adaptive algorithm for selectivecurrent harmonic cancellation in active power filters
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F. D. Freijedo, J. Doval-Gandoy, O. Lopez, P. Fernandez-Comesana, andC. Martinez-Penalver, "A signal-processing adaptive algorithm for selectivecurrent harmonic cancellation in active power filters," IEEE Trans.Ind. Electron., vol. 56, no. 8, pp. 2829-2840, Aug. 2009.
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A shunt active power filter withenhanced performance using ANN-based predictive and adaptive controllers
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An implementation of an adaptive control algorithmfor a three-phase shunt active filter
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B. Singh and J. Solanki, "An implementation of an adaptive control algorithmfor a three-phase shunt active filter," IEEE Trans. Ind. Electron.,vol. 56, no. 8, pp. 2811-2820, Aug. 2009.
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A new control strategy for single-phaseshunt active power filters using a Lyapunov function
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H. Komurcugil and O. Kukrer, "A new control strategy for single-phaseshunt active power filters using a Lyapunov function," IEEE Trans. Ind.Electron., vol. 53, no. 1, pp. 305-312, Feb. 2006.
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