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Studying the Impact of Solar PV on Power System Dynamics Using Integrated Transmission and Distribution Network Models

Journal of energy engineering, v.144 no.1, 2018년, pp.04017072 -   

Jain, Himanshu (Student, Dept. of Electrical and Computer Engineering, Virginia Tech, Blacksburg, VA 24061(corresponding author). ORCID: .) ,  Broadwater, Robert P. (Professor, Dept. of Electrical and Computer Engineering, Virginia Polytechnic Institute and State Univ., 302 Whittemore (0111), Blacksburg, VA 24061.) ,  Dilek, Murat (Software Developer, Electrical Distribution Design, Inc., 820 University City Blvd., Blacksburg, VA 24060.) ,  Bank, Jason (Principal Engineer, Electrical Distribution Design, Inc., 820 University City Blvd., Blacksburg, VA 24060.)

초록이 없습니다.

참고문헌 (36)

  1. IEEE Syst. J. Ding T. 1 99 2017 A hierarchical modeling for reactive power optimization with joint transmission and distribution networks by curve fitting 

  2. Eftekharnejad, Sara, Vittal, Vijay, Heydt, G. T., Keel, Brian, Loehr, Jeffrey. Impact of increased penetration of photovoltaic generation on power systems. IEEE transactions on power systems : a publication of the Power Engineering Society, vol.28, no.2, 893-901.

  3. Gannett R. A. (2001). “Control strategies for high power four-leg voltage source inverters.” M.S. thesis Virginia Polytechnic Institute and State Univ. Blacksburg VA. 

  4. Gridlab-D [Computer software]. Pacific Northwest National Laboratory Richland WA. 

  5. Huang, Qiuhua, Vittal, Vijay. Integrated Transmission and Distribution System Power Flow and Dynamic Simulation Using Mixed Three-Sequence/Three-Phase Modeling. IEEE transactions on power systems : a publication of the Power Engineering Society, vol.32, no.5, 3704-3714.

  6. ICSEG (Illinois Center for a Smarter Electric Grid). (2016). “IEEE 39 bus system.” ⟨http://publish.illinois.edu/smartergrid/ieee-39-bus-system/⟩ (Jun. 6 2016). 

  7. IEEE Power and Energy Society. (2016). “Distribution test feeders.” ⟨http://ewh.ieee.org/soc/pes/dsacom/testfeeders/⟩ (Jun. 6 2016). 

  8. Jain H. (2017). “Dynamic simulation of power systems using three phase integrated transmission and distribution system models: Case study comparisons with traditional analysis methods.” Ph.D. dissertation Virginia Polytechnic Institute and State Univ. Blacksburg VA. 

  9. Jain, Himanshu, Parchure, Abhineet, Broadwater, Robert P., Dilek, Murat, Woyak, Jeremy. Three-Phase Dynamic Simulation of Power Systems Using Combined Transmission and Distribution System Models. IEEE transactions on power systems : a publication of the Power Engineering Society, vol.31, no.6, 4517-4524.

  10. 10.1109/PESGM.2016.7741235 Jain H. Rahimi K. Tbaileh A. Broadwater R. P. Jain A. K. and Dilek M. (2016b). “Integrated transmission and distribution modeling and analysis: Need & advantages.” Proc. 2016 Power and Energy Society General Meeting IEEE Piscataway NJ. 

  11. Power system stability and control Kundur P. 872 2012 

  12. 10.1109/POWERCON.2010.5666627 Liu H. Jin L. Le D. and Chowdhury A. A. (2010). “Impact of high penetration of solar photovoltaic generation on power system small signal stability.” Proc. 2010 Int. Conf. on Power System Technology (POWERCON) IEEE Piscataway NJ. 

  13. Int. J. Renewable Energy Res. Mantilla M. A. 507 5 2 2015 Control of three phase inverters for renewable energy systems under unbalanced grid voltages 

  14. MathWorks. (2016). “250-kW grid-connected PV array.” ⟨http://www.mathworks.com/help/physmod/sps/examples/250-kw-grid-connected-pv-array.html⟩ (Jun. 7 2016). 

  15. MATPOWER [Computer software]. Power Systems Engineering Research Center Tempe AZ. 

  16. 10.2172/1167065 

  17. 10.1109/GreenTech.2013.23 Muljadi E. Singh M. Bravo R. and Gevorgian V. (2013a). “Dynamic model validation of PV inverters under short-circuit conditions.” Proc. 2013 IEEE Green Technologies Conf. IEEE Piscataway NJ 98-104. 

  18. 10.2172/1096111 

  19. 10.2172/1164870 

  20. Nasr-Azadani, Ehsan, Canizares, Claudio A., Olivares, Daniel E., Bhattacharya, Kankar. Stability Analysis of Unbalanced Distribution Systems With Synchronous Machine and DFIG Based Distributed Generators. IEEE transactions on smart grid, vol.5, no.5, 2326-2338.

  21. Nelson J. A. (2010). “Effects of cloud-induced photovoltaic power transients on power system protection.” M.S. thesis California Polytechnic State Univ. San Luis Obispo CA. 

  22. NERC (North American Electric Reliability Corporation). (2015). “NERC libraries of standardized powerflow parameters and standardized dynamics models.” ⟨http://www.nerc.com/comm/PC/Model%20Validation%20Working%20Group%20MVWG%202013/NERC%20Standardized%20Component%20Model%20Manual.pdf⟩ (Oct. 10 2017). 

  23. Owens B. (2014). “The rise of distributed power.” ⟨https://www.ge.com/sites/default/files/2014%2002%20Rise%20of%20Distributed%20Power.pdf⟩ (Jun. 5 2016). 

  24. The integrated grid modeling system (IGMS) for combined transmission and distribution simulation Palmintier B. 2015 

  25. Palmintier, Bryan, Hale, Elaine, Hansen, Timothy M., Jones, Wesley, Biagioni, David, Sorensen, Harry, Wu, Hongyu, Hodge, Bri-Mathias. IGMS: An Integrated ISO-to-Appliance Scale Grid Modeling System. IEEE transactions on smart grid, vol.8, no.3, 1525-1534.

  26. 10.1109/PSCC.2016.7541029 Palmintier B. Hale E. Hodge B. M. Baker K. and Hansen T. M. (2016b). “Experiences integrating transmission and distribution simulations for DERs with the Integrated Grid Modeling System (IGMS).” Proc. 2016 Power Systems Computation Conf. IEEE Piscataway NJ. 

  27. Pitchumani R. (2015). “Spurring solar installations in Hawaii.” ⟨http://energy.gov/eere/articles/spurring-solar-installations-hawaii⟩ (Jun. 5 2016). 

  28. Pyper J. (2016). “The US solar market is now 1 million installations strong.” ⟨https://www.greentechmedia.com/articles/read/The-U.S.-Solar-Market-Now-One-Million-Installations-Strong⟩ (Feb. 13 2017). 

  29. 10.2172/1129274 Schauder C. (2014). “Advanced inverter technology for high concentration levels of PV generation in distribution systems.” ⟨http://www.nrel.gov/docs/fy14osti/60737.pdf⟩ (Nov. 1 2015). 

  30. 10.2172/1040683 Schneider K. P. Fuller J. C. Turner F. K. and Chen Y. (2009). “Modern grid strategy: Enhanced GridLAB-D capabilities final report.” ⟨http://www.pnnl.gov/main/publications/external/technical_reports/PNNL-18864.pdf⟩ (Feb. 13 2017). 

  31. Spitsa, V., Salcedo, R., Xuanchang Ran, Martinez, J. F., Uosef, R. E., de Leon, F., Czarkowski, D., Zabar, Z.. Three–Phase Time–Domain Simulation of Very Large Distribution Networks. IEEE transactions on power delivery : a publication of the Power Engineering Society, vol.27, no.2, 677-687.

  32. Tamimi, B., Canizares, C., Bhattacharya, K.. System Stability Impact of Large-Scale and Distributed Solar Photovoltaic Generation: The Case of Ontario, Canada. IEEE transactions on sustainable energy, vol.4, no.3, 680-688.

  33. 10.1109/PES.2007.385563 Tan Y. T. and Kirschen D. S. (2007). “Impact on the power system of a large penetration of photovoltaic generation.” Proc. 2007 Power and Energy Society General Meeting IEEE Piscataway NJ. 

  34. USDOE (U.S. Department of Energy). (2016). “Electronic code of federal regulations (title 10 chapter 11 subchapter d part 431 subpart K-Distribution transformers).” ⟨http://www.ecfr.gov/cgi-bin/text-idx?SID=fb9b81787f3d7d4d7c453df82505b3aa&mc=true&node=sp10.3.431.k&rgn=div6%20-%20se10.3.431_1196⟩ (Nov. 17 2016). 

  35. USEPA (U.S. Environmental Protection Agency). (2017). “Distributed generation.” ⟨https://www.epa.gov/energy/distributed-generation/⟩ (Jun. 5 2016). 

  36. Western Electricity Coordinating Council Modeling and Validation Work Group. (2014). “WECC solar plant dynamic modeling guide.” ⟨https://www.wecc.biz/_layouts/15/WopiFrame.aspx?sourcedoc=/Reliability/WECC%20Solar%20Plant%20Dynamic%20Modeling%20Guidelines.pdf&action=default&DefaultItemOpen=1⟩ (Feb. 17 2016). 

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