A novel, DSP based algorithm for optimizing the harmonics and reactive power under non-sinusoidal supply voltage conditions
This paper presents a simple control algorithm for a shunt active filter for compensation of harmonics and reactive power under nonsinusoidal supply voltage conditions. Under nonsinusoidal supply conditions, any attempt to achieve unity power factor results in a nonsinusoidal current, which increase...
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| Published in | IEEE transactions on power delivery Vol. 20; no. 4; pp. 2526 - 2534 |
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| Main Authors | , |
| Format | Journal Article |
| Language | English |
| Published |
New York, NY
IEEE
01.10.2005
Institute of Electrical and Electronics Engineers The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
| Subjects | |
| Online Access | Get full text |
| ISSN | 0885-8977 1937-4208 |
| DOI | 10.1109/TPWRD.2005.855488 |
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| Abstract | This paper presents a simple control algorithm for a shunt active filter for compensation of harmonics and reactive power under nonsinusoidal supply voltage conditions. Under nonsinusoidal supply conditions, any attempt to achieve unity power factor results in a nonsinusoidal current, which increases the total harmonic distortion (THD). On the other hand, attempt at getting harmonic free current may not yield unity power factor because of the harmonics present in the voltage waveform. The proposed algorithm optimizes this trade-off using the Lagrange multiplier technique and achieves the best compromise. It does not employ the normally used p-q theory and is applicable to both single phase and three phase systems. With the proposed technique, it is possible to obtain an optimized power factor satisfying the specified THD limit. The algorithm has been tested under various supply and load conditions using MATLAB simulations and validated with an experimental prototype based on DSP TMS320LF2407A. |
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| AbstractList | This paper presents a simple control algorithm for a shunt active filter for compensation of harmonics and reactive power under nonsinusoidal supply voltage conditions. Under nonsinusoidal supply conditions, any attempt to achieve unity power factor results in a nonsinusoidal current, which increases the total harmonic distortion (THD). On the other hand, attempt at getting harmonic free current may not yield unity power factor because of the harmonics present in the voltage waveform. The proposed algorithm optimizes this trade-off using the Lagrange multiplier technique and achieves the best compromise. It does not employ the normally used p-q theory and is applicable to both single phase and three phase systems. With the proposed technique, it is possible to obtain an optimized power factor satisfying the specified THD limit. The algorithm has been tested under various supply and load conditions using MATLAB simulations and validated with an experimental prototype based on DSP TMS320LF2407A. The algorithm has been tested under various supply and load conditions using MATLAB simulations and validated with an experimental prototype based on DSP TMS320LF2407A. |
| Author | Agarwal, V. George, S. |
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| Cites_doi | 10.1109/61.400941 10.1109/61.915499 10.1016/S0378-7796(03)00070-1 10.1109/PESW.2000.847338 10.1109/61.216874 10.1109/63.334773 10.1109/41.475504 10.1109/63.844510 10.1109/IECON.2002.1185384 10.1109/2943.715502 10.1109/IECON.1995.483485 10.1109/MIA.2004.1270801 |
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| Keywords | Waveform MATLAB software Optimization method digital signal processor (DSP) Power system harmonics Harmonic analysis nonlinear system Non linear system Reactive power Lagrange multiplier Experimental result Reactive current compensation Algorithm performance optimization Active filter Numerical simulation Active filters Harmonic distortion Power factor Digital signal processor |
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| References | ref12 Soares (ref8) ref11 ref10 ref2 ref1 ref17 Marques (ref7) ref16 ref9 ref4 ref3 ref6 Shepherd (ref13) 1979 ref5 Ravindran (ref14) 1987 |
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| Snippet | This paper presents a simple control algorithm for a shunt active filter for compensation of harmonics and reactive power under nonsinusoidal supply voltage... The algorithm has been tested under various supply and load conditions using MATLAB simulations and validated with an experimental prototype based on DSP... |
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| SubjectTerms | Active filters Algorithms Applied sciences Digital signal processing digital signal processor (DSP) Disturbances. Regulation. Protection Electric potential Electrical engineering. Electrical power engineering Electrical power engineering Exact sciences and technology harmonic distortion Harmonics Lagrange multiplier Lagrangian functions Matlab nonlinear system optimization Power electronics, power supplies Power factor Power harmonic filters Power networks and lines Power supplies Power system harmonics Reactive power Reactive power control Studies Total harmonic distortion Voltage Voltage control |
| Title | A novel, DSP based algorithm for optimizing the harmonics and reactive power under non-sinusoidal supply voltage conditions |
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