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Compensation Techniques Based on Reactive Power Conservation

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The paper introduces two definitions of instantaneous reactive power terms, which are conservative in every network and apply even under non-sinusoidal conditions. Both quantities coincide with usual reactive power for sinusoidal operation, however they assume a different meaning for distorted behaviour. The first one is an energy-related term, and its unbiased integral accounts for the average energy stored in the network. The second has a differential nature and is suitable for dynamic analysis and control of harmonic and reactive power sources acting in the network. The combined use of both approaches allows cooperative operation of static and dynamic reactive and harmonic compensators, like STATCOMs and Active Power Filters.
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Bibliografia
  • 1. A k a g i H . a n d N a b a e A . : Control Strategy of Active Power Filters Using Multiple Voltage Source PWM Converters. IEEE Trans. on Ind. App., Vol. IA-22, 3, May/June 1986, pp.460-465.
  • 2. A k a g i H . : Control strategy and site selection of a shunt active filter for damping of harmonic propagation in power distribution systems. IEEE Trans. Power Delivery, Vol. 12, pp. 354-363, Jan. 1997
  • 3. A k a g i H . , F u j i t a H . a n d Wa d a K . : A shunt active filter based on voltage detection for harmonic termination of a radial power distribution line. IEEE Trans on Industry Applications., Vol. 35, pp. 638-645, May/June 1999.
  • 4. C z a r n e c k i L . S . : Orthogonal Decomposition of the Currents in a 3-Phase Nonlinear Asymmetrical Circuit with a Nonsinusoidal Voltage Source. IEEE Trans. on Instrumentation and Measurements, Vol. IM-37, 1, pp.30-34, March 1988.
  • 5. C z a r n e c k i L . S . : Scattered and reactive current, voltage, and Power in Circuits with nonsinusoidal waveforms and their compensation. IEEE Trans. on Instrumentation and Measurements, Vol. IM-40 (1991), 3, pp. 563-567.
  • 6. F e r r e r o A . : Definitions of Electrical Quantities Commonly Used in Non- Sinusoidal Conditions. European Trans. on Electrical Power Engineering (ETEP), Vol. 8, 4, 1998, pp. 235-240.
  • 7. J i n t a k o s o n w i t P . , F u j i t a H . , A k a g i H . , O g a s a w a r a S . : Implementation and Performance of Cooperative Control of Shunt Active Filters for Harmonic Damping Throughout a Power Distribution System. IEEE Trans on Industry Applications., Vol. 39, 2, pp. 556-563, March/April 2003.
  • 8. M a t t a v e l l i P. : A Closed-loop selective harmonic compensation for Active Filters. IEEE Transactions on Industry Applications, Vol. 37, 1, Jan/Feb 2001, pp. 81-89.
  • 9. Me r h e j S . J . , N i c h o l s W. H . : Harmonic Filtering for the Offshore Industry. IEEE Trans. on Industry Applications, Vol. 30, 3, May/June 1994, pp. 533-542.
  • 10. P e n g F. Z . : Application Issues of Active Power Filters. IEEE Industry Applications Magazine, Vol. 4, 5, September/October 1998, pp. 21-30.
  • 11. P e n g F . Z . , A k a g i H . a n d N a b a e A . : A New Approach to harmonic Compensation in Power Systems - A Combined system of shunt passive and series active filters. IEEE Trans on Industry Applications, Vol. 26, 6, 1990, pp. 983-990.
  • 12. Te n t i P. , Ma t t a v e l l i P. : A Time-Domain Approach to Power Terms Definition under non-sinusoidal conditions. Six International Workshop on Power Definition and Measurements under Nonsinusoidal Conditions, Milan (Italy), October 2003.
  • 13. T e n t i P . , T e d e s c h i E . , M a t t a v e l l i P . : Optimization of Hybrid Filters for Distributed Harmonic and Reactive Compensation. IEEE International Conferenze on Power Electronics and Drive Systems (PEDS 2005), Kuala Lumpur (Malaysia), December, 2005.
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Bibliografia
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bwmeta1.element.baztech-article-BAT1-0029-0025
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