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An analytical approach for transmission expansion planning with generation variations

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Treść / Zawartość
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Warianty tytułu
Konferencja
International Conference on Environment and Electrical Engineering (17 ; 06-09.06.2017 ; Milan, Italy)
Języki publikacji
EN
Abstrakty
EN
Today, the transmission expansion planning for an existing power system under different constraints, is one of the major challenge for power engineers. There are several reasons; one of the reasons is rapid growth in load and inadequate capacity addition. Hence, it is important and essential to implement an algorithm for the transmission expansion which works well and have a good feasibility under certain assumptions and available constraints. Transmission expansion planning used in proposed paper works on an analytical algorithm which has been implemented for specific load condition with variations in generation. For that purpose, an economical factor has been measured that considers economical aspects of the line to be added for expansion. The prescribed analytical approach is also implemented for its feasibility check on a practical case study system.
Rocznik
Strony
72--79
Opis fizyczny
Bibliogr. 16 poz., rys., tab.
Twórcy
autor
  • Indian Institute of Technology Roorkee, India
autor
  • PEC University of Technology Chandigarh, India
Bibliografia
  • [1] Junhua Zhao and John Foster, “Flexible Transmission Network Planning Considering the Impacts of Distributed Generation”. Energy economics and managenent group, School of economics, Queensland university. Availableat: http://eemg.uq.edu.au/filething/get/194/01.pdf.
  • [2] Xinsong Zhang, Yue Yuan, Boweng WU, Qiang Li, “A Novel Algorithm for Power System Planning Associated with Large-scale Wind Farms in Deregulated Environment” IEEE 4th International conference on electric utility deregulation and restructuring and power technologies (DRPT), 2011, China
  • [3] Kaur Raminder, Kaur Tarlochan, Kumar Maneesh, Verma Shilpa, “Optimal transmission expansion planning under deregulated environment: An analytical approach” IEEE 1st International Conf. on Power Electronics, Intelligent Control and EnergySystems (ICPEICES) 2016 India.
  • [4] Rajeev Kumar Gajbhiye,, Devang Naik, Sanjay Dambhare, and S. A. Soman, “An Expert System Approach for Multi-YearShort-Term Transmission System Expansion Planning: An Indian Experience” IEEE Trans. on Power Systems, Vol. 23, No. 1, February 2008.
  • [5] M. Oloomi, H. M. Shanechi, G. Balzer and M. Shahidehpour, “Transmission planning approaches in restructured power systems,” in Proc. IEEE/Power Eng. Soc. Power Tech. Conf.,Bologna, Italy, vol. 2, 2003.
  • [6] I.I. Skoteinos, G.A. Orfanos, P.S. Georgilakis and N.D. Hatziargyriou “Methodology for Assessing Transmission Investments in Deregulated Electricity Markets”, IEEE Trondheim PowerTech, 2011.
  • [7] Risheng Fang and David J. Hill, “A New Strategy for Transmission Expansion in Competitive Electricity Markets”, IEEE Transactions on power systems, Vol. 18, No. 1, February 2003.
  • [8] V.S.K. Murthy Balijepalli, and S.A. Khaparde, “Novel Approaches for Transmission System Expansion Planning Including Coordination Issues” IEEE Power and Energy Society General Meeting, July 2010.
  • [9] CEA General Guidelines for Substation, New Delhi, India, June 2012.
  • [10] Manual on transmission planning criteria, New Delhi, India January 2013.
  • [11] T. Tachikawa, “A study of transmission planning under a deregulated environment in power system,” in Proc. IEEE Int. Conf. Electric Utility Deregulation and Restructuring, pp. 649-654,2000.
  • [12] Power transmission corporation of uttarakhand ltd. website available: www.ptcul.org.
  • [13] Vahid Asadzadeh, Masoud Aliakbar Golkar, S. Masoud Moghaddas- Tafreshi, “Economics-Based Transmission Expansion Planning In Restructured Power Systems Using Decimal Codification Genetic Algorithm” IEEE Jordan Conference on Applied Electrical Engineering and Computing Technologies (AEECT), 2011.
  • [14] MahendraL alwani and Mool Singh “Conventional and Renewable Energy Scenario of India: Present and Future” ,Canadian Journal on Electrical and Electronics Engineering Vol. 1, No. 6, October 2010.
  • [15] Luminita BAROTE, Lonela NEGREA, “Wind Energy Probability estimation using Weibull Distribution Function ” , Annals of the Oradea University. Fascicle of Management and Technological Engineering, Volume VII (XVII), 2008.
  • [16] J. Clerk Maxwell, A Treatise on Electricity and Magnetism, 3rd ed., vol. 2. Oxford: Clarendon, 1892, pp. 68-73.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bfcb16ee-db3e-4c27-90af-477d8ddcf48a
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