Rajiv K. Varma - Smart Solar PV Inverters with Advanced Grid Support Functionalities
Здесь есть возможность читать онлайн «Rajiv K. Varma - Smart Solar PV Inverters with Advanced Grid Support Functionalities» — ознакомительный отрывок электронной книги совершенно бесплатно, а после прочтения отрывка купить полную версию. В некоторых случаях можно слушать аудио, скачать через торрент в формате fb2 и присутствует краткое содержание. Жанр: unrecognised, на английском языке. Описание произведения, (предисловие) а так же отзывы посетителей доступны на портале библиотеки ЛибКат.
- Название:Smart Solar PV Inverters with Advanced Grid Support Functionalities
- Автор:
- Жанр:
- Год:неизвестен
- ISBN:нет данных
- Рейтинг книги:3 / 5. Голосов: 1
-
Избранное:Добавить в избранное
- Отзывы:
-
Ваша оценка:
- 60
- 1
- 2
- 3
- 4
- 5
Smart Solar PV Inverters with Advanced Grid Support Functionalities: краткое содержание, описание и аннотация
Предлагаем к чтению аннотацию, описание, краткое содержание или предисловие (зависит от того, что написал сам автор книги «Smart Solar PV Inverters with Advanced Grid Support Functionalities»). Если вы не нашли необходимую информацию о книге — напишите в комментариях, мы постараемся отыскать её.
Smart Solar PV Inverters with Advanced Grid Support Functionalities
Smart Solar PV Inverters with Advanced Grid Support Functionalities’
Smart Solar PV Inverters with Advanced Grid Support Functionalities — читать онлайн ознакомительный отрывок
Ниже представлен текст книги, разбитый по страницам. Система сохранения места последней прочитанной страницы, позволяет с удобством читать онлайн бесплатно книгу «Smart Solar PV Inverters with Advanced Grid Support Functionalities», без необходимости каждый раз заново искать на чём Вы остановились. Поставьте закладку, и сможете в любой момент перейти на страницу, на которой закончили чтение.
Интервал:
Закладка:
46 46 Ching‐Yin, L. (1999). Effects of unbalanced voltage on the operation performance of a three‐phase induction motor. IEEE Transactions on Energy Conversion 14: 202–208.
47 47 (2018). IEEE standard for interconnection and interoperability of distributed energy resources with associated electric power systems interfaces. IEEE Std 1547‐2018 (Revision of IEEE Std 1547‐2003).
48 48 Shahnia, F., Majumder, R., Ghosh, A.1, Ledwich, G., and Zare, F. (2010). Sensitivity analysis of voltage imbalance in distribution networks with rooftop PVs. In Proc. 2010 IEEE PES General Meeting, 1–8.
49 49 Reiman, A.P., McDermott, T.E., Reed, G.F., and Enayati, B. (2015). Guidelines for high penetration of single‐phase PV on power distribution systems. In Proc. 2015 IEEE Power & Energy Society General Meeting, 1–5.
50 50 Bird, L., Milligan, M., and Lew, D. (2013). Integrating Variable Renewable Energy: Challenges and Solutions. NREL, Golden, CO, USA, Techn. Rep. NREL/TP‐6A20‐60451.
51 51 (2016). What the duck curve tells us about managing a green grid. https://www.caiso.com/Documents/FlexibleResourcesHelpRenewables_FastFacts.pdf(accessed 08 February 2020).
52 52 (2017). Confronting the duck curve: how to address over‐generation of solar energy. https://www.energy.gov/eere/articles/confronting‐duck‐curve‐how‐address‐over‐generation‐solar‐energy(accessed 08 February 2020).
53 53 Kraiczy, M., Wang, H., Schmidt, S. et al. (2018). Reactive power management at the transmission–distribution interface with the support of distributed generators – a grid planning approach. IET Generation, Transmission & Distribution 12: 5949–5955.
54 54 Hoff, T. and Shugar, D.S. (1995). The value of grid‐support photovoltaics in reducing distribution system losses. IEEE Transactions on Energy Conversion 10: 569–576.
55 55 Hung, D.Q. and Mithulananthan, N. (2013). Multiple distributed generator placement in primary distribution networks for loss reduction. IEEE Transactions on Industrial Electronics 60: 1700–1708.
56 56 S. K. Solanki, V. Ramachandran, and J. Solanki (2012). Steady state analysis of high penetration PV on utility distribution feeder. In Proc. IEEE PES T&D Conference and Exposition, 1–6.
57 57 Enslin, J.H.R. and Heskes, P.J.M. (2004). Harmonic interaction between a large number of distributed power inverters and the distribution network. IEEE Transactions on Power Electronics 19: 1586–1593.
58 58 (2014). IEEE recommended practice and requirements for harmonic control in electric power systems. IEEE Std 519‐2014 (Revision of IEEE Std 519‐1992).
59 59 Arrillaga, J. and Watson, N.R. (2003). Power System Harmonics. New York: Wiley.
60 60 Bradt, M., Badrzadeh, B., Camm, E. et al. (2011). Harmonics and resonance issues in wind power plants. In Proc. 2011 IEEE Power & Energy Society General Meeting, 1–8.
61 61 CEATI International Inc. (2016). Analysis of Parallel and Series Resonance on the Electrical Distribution System. CEATI, Montreal, QC, Canada, Rep. No. T154700 #5171.
62 62 Varma, R.K., Berge, J., Axente, I., Sharma, V., and Walsh, K. (2012). Determination of maximum PV solar system connectivity in a utility distribution feeder. In Proc. 2012 IEEE PES T&D Conference and Exposition, 1–8.
63 63 NERC (2019). Improvements to Interconnection Requirements for BPS‐Connected Inverter‐Based Resources. NERC, Atlanta, GA, USA, Reliability Guideline.
64 64 Pan, Y., Ren, W., Ray, S., Walling, R., and Reichard, M. (2011). Impact of inverter interfaced distributed generation on overcurrent protection in distribution systems. In Proc. 2011 IEEE Power Engineering and Automation Conference, 371–376.
65 65 Margossian, H., Capitanescu, F., and Sachau, J. (2013). Feeder protection challenges with high penetration of inverter based distributed generation. In Proc. 2013 EUROCON, 1369–1374.
66 66 Ko, A.D., Burt, G.M., Galloway, S. et al. (2007). UK distribution system protection issues. IET Generation, Transmission & Distribution 1: 679–687.
67 67 Short, T.A. (2003). Electric Power Distribution Handbook. Boca Raton, FL: CRC Press.
68 68 Sa'ed, J.A., Favuzza, S., Ippolito, M.G., and Massaro, F. (2013). Investigating the effect of distributed generators on traditional protection in radial distribution systems. In Proc. 2013 IEEE Grenoble Conference, 1–6.
69 69 Mahadanaarachchi, V.P. and Ramakumar, R. (2008). Impact of distributed generation on distance protection performance – a review. In Proc. 2008 IEEE Power & Energy Society General Meeting, 1–7.
70 70 NERC (2017). Integrating Inverter‐based Resources into Low Short Circuit Strength Systems. NERC, Atlanta, GA, USA, Reliability Guideline.
71 71 Jafari, M., Olowu, T.O., Sarwat, A.I., and Rahman, M.A. (2019). Study of smart grid protection challenges with high photovoltaic penetration. In Proc. 2019 North American Power Symposium, 1–6.
72 72 Johnston, W. and Katiraei, F. (2012). Impact and sensitivity studies of PV inverters contribution to faults based on generic PV inverter models – Ontario Grid Connection Study, Canadian Solar Industries Association Report.
73 73 Kou, G., Chen, L., VanSant, P. et al. (2020). Fault characteristics of distributed solar generation. IEEE Transactions on Power Delivery 35: 1062–1064.
74 74 Marchesoni, M., Marinopoulos, A., Massucco, S., and Picco, V. (2012). High penetration of very large scale PV Systems into the European electric network. In Proc. 2012 IEEE International Energy Conference and Exhibition (ENERGYCON), 658–662.
75 75 Nimpitiwan, N., Heydt, G.T., Ayyanar, R., and Suryanarayanan, S. (2007). Fault current contribution from synchronous machine and inverter based distributed generators. IEEE Transactions on Power Delivery 22: 634–641.
76 76 Baran, M.E. and El‐Markaby, I. (2005). Fault analysis on distribution feeders with distributed generators. IEEE Transactions on Power Systems 20: 1757–1764.
77 77 Brahma, S.M. and Girgis, A.A. (2004). Development of adaptive protection scheme for distribution systems with high penetration of distributed generation. IEEE Transactions on Power Delivery 19: 56–63.
78 78 Bravo, R.J., Yinger, R., and Robles, S. (2013). Three phase solar photovoltaic inverter testing. In Proc. 2013 IEEE Power & Energy Society General Meeting, 1–5.
79 79 Hooshyar, H. and Baran, M.E. (2013). Fault analysis on distribution feeders with high penetration of PV systems. IEEE Transactions on Power Systems 28: 2890–2896.
80 80 Dalal, S.B., Knuth, W., Gaun, A., and Grisenti, A. (2018). Fault current mitigation using 550 kV air core reactors. In Proc. 2018 IEEE PES T&D Conference and Exposition, 1–9.
81 81 Ohrstrom, M. and Soder, L. (2011). Fast protection of strong power systems with fault current limiters and PLL‐aided fault detection. IEEE Transactions on Power Delivery 26: 1538–1544.
82 82 McGranaghan, M., Ortmeyer, T., Crudele, D. (2008). Renewable Systems Interconnection Study: Advanced Grid Planning and Operations. Sandia National Laboratories, Albuquerque, NM, USA, Rep. SAND2008‐0944 P.
83 83 Ye, Z., Walling, R., Garces, L., et al. (2004). Study and Development of Anti‐Islanding Control for Grid‐Connected Inverters. NREL, Golden, CO, USA, Techn. Rep. NREL/SR‐560‐36243.
84 84 John Sundar, D. and Kumaran, M.S. (2015). A comparative review of islanding detection schemes in distributed generation systems. International Journal of Renewable Energy Research 5: 1016–1023.
85 85 Kundur, P. (1994). Power System Stability and Control. New York: McGraw‐Hill.
86 86 Achilles, S., Schramm, S., and Bebic, J. (2008). Transmission System Performance Analysis for High‐Penetration Photovoltaics. NREL, Golden, CO, USA, Rep. NREL/SR‐581‐42300.
87 87 Eftekharnejad, S., Vittal, V., Heydt, G.T. et al. (2013, 2013). Small signal stability assessment of power systems with increased penetration of photovoltaic generation: a case study. IEEE Transactions on Sustainable Energy 4: 960–967.
Читать дальшеИнтервал:
Закладка:
Похожие книги на «Smart Solar PV Inverters with Advanced Grid Support Functionalities»
Представляем Вашему вниманию похожие книги на «Smart Solar PV Inverters with Advanced Grid Support Functionalities» списком для выбора. Мы отобрали схожую по названию и смыслу литературу в надежде предоставить читателям больше вариантов отыскать новые, интересные, ещё непрочитанные произведения.
Обсуждение, отзывы о книге «Smart Solar PV Inverters with Advanced Grid Support Functionalities» и просто собственные мнения читателей. Оставьте ваши комментарии, напишите, что Вы думаете о произведении, его смысле или главных героях. Укажите что конкретно понравилось, а что нет, и почему Вы так считаете.