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Making Connections [Wind Generation Facilities]
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Zavadil, R.1
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Equivalencing the collector system of a large wind power plant
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Montreal, Canada, June
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E. Muljadi, C. P. Butterfield, A. Ellis, J. Mechenbier, J. Hochheimer, R. Young, N. Miller, R. Delmerico, R. Zavadil, and J. C. Smith, "Equivalencing the collector system of a large wind power plant," in Proc. 2006 IEEE Power Engineering Society General Meeting, Montreal, Canada, June 2006.
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Proc. 2006 IEEE Power Engineering Society General Meeting
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Muljadi, E.1
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Miller, N.7
Delmerico, R.8
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Smith, J.C.10
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3
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70349182024
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Development and Validation of WECC Variable Speed Wind Turbine Dynamic Models for Grid Integration Studies
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Los Angeles, USA, June
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M. Behnke, A. Ellis, Y. Kazachkov, T. McCoy, E. Muljadi, W. Price, and J. Sanchez-Gasca, "Development and Validation of WECC Variable Speed Wind Turbine Dynamic Models for Grid Integration Studies," in Proc. 2007 WindPower Conference, Los Angeles, USA, June 2007.
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(2007)
Proc. 2007 WindPower Conference
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Behnke, M.1
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Price, W.6
Sanchez-Gasca, J.7
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4
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71949120905
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Wind Plant Collector Design WG, Reactive Power Compensation for Wind Power Plants, in Proc. 2009 IEEE Power and Energy Society General Meeting, Calgary, Canada, July 2009.
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Wind Plant Collector Design WG, "Reactive Power Compensation for Wind Power Plants," in Proc. 2009 IEEE Power and Energy Society General Meeting, Calgary, Canada, July 2009.
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Modeling of Wind Power Plants for Short Circuit Analysis in the Transmission Network
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Chicago, USA, April
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Nader Samaan, Robert Zavadil, J. Charles Smith and Jose Conto, "Modeling of Wind Power Plants for Short Circuit Analysis in the Transmission Network," in Proc. of IEEE/PES Transmission and Distribution Conference and Exposition, Chicago, USA, April 2008.
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(2008)
Proc. of IEEE/PES Transmission and Distribution Conference and Exposition
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Samaan, N.1
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Modeling of Large Wind Farm Systems for Dynamic and Harmonics Analysis
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Chicago, USA, April
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Jun Li, Nader Samaan and Stephen Williams, "Modeling of Large Wind Farm Systems for Dynamic and Harmonics Analysis," in Proc. of IEEE/PES Transmission and Distribution Conference and Exposition, Chicago, USA, April 2008.
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Proc. of IEEE/PES Transmission and Distribution Conference and Exposition
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Li, J.1
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0026890466
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Grounding Transformer Applications and Associated Protection Schemes
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E. R. Detjen and K. R. Shah, "Grounding Transformer Applications and Associated Protection Schemes," IEEE Trans. Industrial applications, vol. 28, no. 4, pp. 788-796, Jul.-Aug. 1992.
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Wind Plant Collector Design WG, Wind Power Plant Substation and Collector System Redundancy, Reliability, and Economics in Proc. 2009 IEEE Power and Energy Society General Meeting, Calgary, Canada, July 2009.
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Wind Plant Collector Design WG, "Wind Power Plant Substation and Collector System Redundancy, Reliability, and Economics" in Proc. 2009 IEEE Power and Energy Society General Meeting, Calgary, Canada, July 2009.
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71949101736
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Wind Plant Collector Design WG, Characteristics of Wind Turbine Generators for Wind Power Plants, in Proc. 2009 IEEE Power and Energy Society General Meeting, Calgary, Canada, July 2009.
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Wind Plant Collector Design WG, "Characteristics of Wind Turbine Generators for Wind Power Plants," in Proc. 2009 IEEE Power and Energy Society General Meeting, Calgary, Canada, July 2009.
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71949112958
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FERC Order No. 661-A, Interconnection for Wind Energy, Docket No. RM05-4-001, December 2005.
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FERC Order No. 661-A, Interconnection for Wind Energy, Docket No. RM05-4-001, December 2005.
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2007 National Electrical Safety Code, C2 Standard, IEEE, 2006.
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2007 National Electrical Safety Code, C2 Standard, IEEE, 2006.
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2008 National Electrical Code, NFPA 70 Standard, National Fire Prevention Association, 2008.
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2008 National Electrical Code, NFPA 70 Standard, National Fire Prevention Association, 2008.
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National Fire Prevention Association
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2009 NFPA 70E Standard, National Fire Prevention Association, 2009.
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2009 NFPA 70E Standard
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0043081685
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IEEE guide for the application of sheath-bonding methods for single-conductor cables and the calculation of induced voltages and currents in cable sheaths, Nov. 25
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IEEE Std. 386-2006, IEEE Standard for Separable Insulated Connector Systems for Power Distribution Systems Above 600 V.
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IEEE Std. 386-2006, IEEE Standard for Separable Insulated Connector Systems for Power Distribution Systems Above 600 V.
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19
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71949105608
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ANSI C57.12.10-1997, American National Standard Requirements for Transformers 230 kV and Below, 833/958 through 8333/10 417 kVA, Single Phase, and 750/862 through 60 000/80 000/100 000 kVA Three-Phase without Load Tap Changing; and 2750/4687 through 60 000/80 000/100 000 kVA with Load Tap Changing-Safety Requirements.
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ANSI C57.12.10-1997, American National Standard Requirements for Transformers 230 kV and Below, 833/958 through 8333/10 417 kVA, Single Phase, and 750/862 through 60 000/80 000/100 000 kVA Three-Phase without Load Tap Changing; and 2750/4687 through 60 000/80 000/100 000 kVA with Load Tap Changing-Safety Requirements.
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20
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71949083959
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IEEE Std C57.12.00-2000, IEEE Standard General Requirements for Liquid-Immersed Distribution, Power, and Regulating Transformers
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IEEE Std C57.12.00-2000, IEEE Standard General Requirements for Liquid-Immersed Distribution, Power, and Regulating Transformers
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21
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71949091915
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IEEE Std C57.91-1995(R2004), IEEE Guide for Loading Mineral-Oil-Immersed Transformers.
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IEEE Std C57.91-1995(R2004), IEEE Guide for Loading Mineral-Oil-Immersed Transformers.
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22
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71949128025
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IEEE Std. C57.110-2008, IEEE Recommended Practice for Establishing Liquid-Filled and Dry-Type Power and Distribution Transformer Capability When Supplying Nonsinusoidal Load Currents.
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IEEE Std. C57.110-2008, IEEE Recommended Practice for Establishing Liquid-Filled and Dry-Type Power and Distribution Transformer Capability When Supplying Nonsinusoidal Load Currents.
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