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Energy Policy Analysis and Modelling

Author

Listed:
  • Munasinghe,Mohan
  • Meier,Peter

Abstract

Energy plays a vital role in economic and social development. The analysis of energy issues and policy options is therefore a vital area of study. This book presents a hierarchical modelling scheme intended to support energy planning and policy analysis in developing countries. The authors introduce the concept of 'Integrated National energy Planning' (INEP), and examine the spreadsheet models, optimization models, and linear planning models which energy planners use. Environmental considerations are also introduced into the analysis. Techniques are then applied to two important energy subsectors, electricity and fuelwood, before problems of integration and policy implementation are discussed. Throughout the book, the authors examine actual practice in developing countries. Illustrative case material is drawn from Egypt, West Africa, Sudan, Pakistan, Colombia, India, Sri Lanka and Morocco. This book will be of interest to students and practitioners of energy planning, and to those concerned with the wider development implications of energy policy.

Suggested Citation

  • Munasinghe,Mohan & Meier,Peter, 1993. "Energy Policy Analysis and Modelling," Cambridge Books, Cambridge University Press, number 9780521363266, January.
  • Handle: RePEc:cup:cbooks:9780521363266
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    Citations

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    Cited by:

    1. Wyrwa, Artur & Suwała, Wojciech & Pluta, Marcin & Raczyński, Maciej & Zyśk, Janusz & Tokarski, Stanisław, 2022. "A new approach for coupling the short- and long-term planning models to design a pathway to carbon neutrality in a coal-based power system," Energy, Elsevier, vol. 239(PE).
    2. Dawit, Woubishet, 2009. "Fuel Efficient Technology Adoption in Ethiopia: Evidence from Improved “Mirt” Stove Technology: a Case in Selected Kebeles from “Adea” Wereda," Ethiopian Journal of Economics, Ethiopian Economics Association, vol. 17(2), pages 107-107, August.
    3. Varma, Rashmi & Sushil,, 2019. "Bridging the electricity demand and supply gap using dynamic modeling in the Indian context," Energy Policy, Elsevier, vol. 132(C), pages 515-535.
    4. Samantak Das & Dripto Mukhopadhyay & Sanjib Pohit, 2005. "Mitigating Carbon Emission through Economic Instruments : An Indian Perspective," Energy Working Papers 22132, East Asian Bureau of Economic Research.
    5. Guta, Dawit Diriba, 2014. "Effect of fuelwood scarcity and socio-economic factors on household bio-based energy use and energy substitution in rural Ethiopia," Energy Policy, Elsevier, vol. 75(C), pages 217-227.
    6. Alyousef, Yousef & Stevens, Paul, 2011. "The cost of domestic energy prices to Saudi Arabia," Energy Policy, Elsevier, vol. 39(11), pages 6900-6905.
    7. Wolde-Rufael, Yemane, 2006. "Electricity consumption and economic growth: a time series experience for 17 African countries," Energy Policy, Elsevier, vol. 34(10), pages 1106-1114, July.
    8. Yuehong Lu & Zafar A. Khan & Manuel S. Alvarez-Alvarado & Yang Zhang & Zhijia Huang & Muhammad Imran, 2020. "A Critical Review of Sustainable Energy Policies for the Promotion of Renewable Energy Sources," Sustainability, MDPI, vol. 12(12), pages 1-31, June.
    9. Ribó-Pérez, David & Van der Weijde, Adriaan H. & Álvarez-Bel, Carlos, 2019. "Effects of self-generation in imperfectly competitive electricity markets: The case of Spain," Energy Policy, Elsevier, vol. 133(C).
    10. Sadeghi, Mehdi & Mirshojaeian Hosseini, Hossein, 2008. "Integrated energy planning for transportation sector--A case study for Iran with techno-economic approach," Energy Policy, Elsevier, vol. 36(2), pages 850-866, February.

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