Technical Methods for the Prevention and Correction of Voltage Sags and Short Interruptions (references)

 

[1]   Roger C. Dugan. Electrical Power Systems Quality .Editorial McGraw–Hill, 1996.

[2]   Ministerio de Economía. Real Decreto 1955/2000 por el que se regulan las actividades de transporte, distribución, comercialización, suministro y procedimientos de autorización de instalaciones de energía eléctrica. BOE, Diciembre 2000.

[3]   Comité técnico AEN/CTN 208 CEM. Características de la

 

[5] Pacific Gas and Electric Company. Short duration voltage sags can cause disruptions PG&E, pp 1-12, Junio 2000.

[6] Ambra Sannino. Mitigation of voltage sags and short interruptions through distribution system design. Dept. of Electrical Engineering University of Palermo, pp 1-6, 2000.

[7] M. F. McGranaghan. Voltage sags in industrial systems. IEEE Trans., 29(2), pp 397-403, Abril 1993.

[8] Muhammad H. Rashid. Electrónica de Potencia. Circuitos, dispositivos y aplicaciones. Prentice-Hall, 2nd edition, 1993.

[9] Lie Xu. Development of prototype custom power devices for power quality enhancement. NINTH INTERNATIONAL CONFERENCE ON HARMONICS AND QUALITY POWER, pp 775-783, Octubre 2000.

[10] Eduardo Alegría. Static voltage regulator ride-through support for semiconductor facilities. POWER SYSTEMS WORLD 98 POWER QUALITY CONFERENCE, Noviembre 1998.

[11] Eduardo Alegría. Power conditioning using the STS and SVR. PG&E Energy Services, Julio 1998.

[12] Mark Stephens. Guide for the design of semiconductor equipment to meet voltage sag inmunity standards. International SEMATECH, pp 14-18, 1999.

[13] Robert C. Degeneff. Reducing the effect of sags and momentary interruptions: a total owning cost prospective. NINTH INTERNATIONAL CONFERENCE ON HARMONICS AND QUALITY POWER, pp 397-403, Octubre 2000.

[14] Dave Mueller (Electrotek Concepts Inc.). Effects of voltage sags in process industry applications. PQ Network, 1997.

[15] Doug Dorr. Correcting voltage sags with constant voltage transformers. Power Quality Magazine, Junio 2002.

[16] California Distributed Energy Resource Guide. Energy storage and UPS systems, Enero 2002.

[17] Paul Scherrer Institute. Supercapacitors. ABB, 1998.

[18] Reza Salavani. SMES system. Air Force Research Laboratory´s Materials and Manufacturing Directorate, 2002.

[19] American Superconductor. What is SMES? webmaster@smpstech.com, 2002.

[20] GE Industrial Systems. PQVR. American Superconductor, pp 1-2, 2000.

[21] William E. Brumsickle. DySC: cost effective industrial power line conditioning. Soft Switching Technologies, pp 1-9, 1998.

[22] P. Dähler. Requirements and solutions for DVR a case study. ABB Industrie AG, pp 5-13, 2000.

[23] Manuel Pérez Donsión, Calidad de potencia en los sistemas de energía eléctrica: perspectivas futuras. Departamento de Ingeniería Eléctrica de la Universidad de Vigo, pp 1-9, 2002.

[24] P. Dähler. Requirements and solutions for DVR a case study. ABB Industrie AG, pp 1-5, 2000.

[25] Alex McEachern. Sag inmunity. Power Standards Testing Laboratory, 2000.

[27] Westinghouse. Custom Power Systems. Power Generation, 1996.

[28] Grupo de trabajo “Calidad de onda” de UNESA. Guía sobre la calidad de la onda en las redes eléctricas. UNESA, Comité de distribución-Comisión técnica, 1996.