A MATHEMATICAL MODEL OF MANAGING A REGULATED MONOPOLY DISTRICT HEATING MARKET

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Abstract

This paper formulates an approach to managing the district heating of consumers in a hierarchical two-level system. The upper level is a regulator (e.g., a regional tariff service) that adjusts the heat energy tariff for consumers. The lower level is a district heating system that technologically and organizationally combines heat energy production and transport within a unified heat supply organization. The interaction of all participants in the process of heat supply to consumers is described. Optimization criteria are proposed for the upper and lower levels. A bi-level mathematical model of the district heating system is developed using the theory of hydraulic circuits and bi-level programming. This model operates in the conditions of a regulated monopoly heat energy market. The developed approach is applied to the real district heating system of Angarsk.

About the authors

V. A Stennikov

Melentiev Energy Systems Institute, Siberian Branch, Russian Academy of Sciences

Author for correspondence.
Email: sva@isem.irk.ru
Irkutsk, Russia

O. V Khamisov

Melentiev Energy Systems Institute, Siberian Branch, Russian Academy of Sciences

Email: khamisov@isem.irk.ru
Irkutsk, Russia

A. V Penkovskii

Melentiev Energy Systems Institute, Siberian Branch, Russian Academy of Sciences

Email: penkoffsky@isem.irk.ru
Irkutsk, Russia

References

  1. Frederiksen, S., Werner, S. District Heating and Cooling. - Lund: Studentlitteratur, 2013. - 588 р.
  2. Башмаков А.И. Анализ основных тенденций развития систем теплоснабжения России // Новости теплоснабжения. - 2008. - № 2. - С. 6-9.
  3. Wenren, S. District Heating and Cooling in Sweden // Energy. -2013. - No. 126. - P.419-429.
  4. Belyaev, L. Electricity Market Reforms: Economics and Policy Challenges. - New York: Springer - Verlag, 2011. - 252 p.
  5. Stoft, S. Power System Economics: Designing Markets for Electricity. - Wiley-IEEE Press, 2002. - 493 p.
  6. Paiho, S., Saastamoinen, H. How to Develop District Heating in Finland? // Energy Policy. - 2018. - No. 122. - P. 668-676.
  7. Biggara, D., Soderberg, M. Empirical Analysis of How Political Ideology and Ownership Influence Price Stability in the Swedish District Heating Market// Energy Policy. - 2020. - No. 145. - P. 1-7.
  8. Osman, N. Barriers to District Heating Development in the Netherlands: A Business Model Perspective: Master thesis for Business Adnimistration. - Enschede: University of Twente, 2017. - URL: https://essay.utwente.nl/73054/1/Osman_BA_BMS.pdf.
  9. Wojdyga, K., Chorzelski, M. Chances for Polish District Heating Systems // Energy Procedia. - 2017. - No. 116. - P. 106-118.
  10. District Heating and Cooling, Combined Heat and Power and Renewable Energy Sources. - URL: http://basrec.net/wp-content/uploads/2014/06/Appendix%20-%20country%20 survey.pdf (дата обращения 06.02.2021).
  11. Ziemele1, J., Vigants, G., Vitolins, V., Blumberga, D., Veidenbergs, I. District Heating Systems Performance Analyses. Heat Energy Tariff // Environmental and Climate Technologies. - 2014. - No. 13. - P. 32-43.
  12. Sarma, U., Bazbauers, G. District Heating Regulation: Parameters for the Benchmarking Model // Energy Procedia. - 2016. - No. 95. - P. 401-407.
  13. Askeland, K., Bozhkova, K. District Heating in Norway. An Analysis of Shifting from Individual Electric Heating to District Heating: Master’s Thesis. - Aalborg: Aalborg University, 2017. - URL: https://projekter.aau.dk/projekter/files/260084106/Master_thesis_Askeland_Bozhkova.pdf.
  14. Šommet, J. Sustainable Development in Estonian Mining // Environmental and Climate Technologies. - 2013. - No. 11. - P. 34-40.
  15. Jing, Lin, Boqiang, Lin. Heat Tariff and Subsidy in China Based on Heat Cost Analysis // Energy Economics. - 2018. - No. 71. - P. 411-420.
  16. Dempe, S. Foundations of Bi-level Programming. - Dordrecht, The Netherlands: Kluwer Academic Publishers, 2002. - 318 p.
  17. Стенников В.А., Пеньковский А.В., Хамисов О.В. Поиск равновесия Курно на рынке тепловой энергии в условиях конкурентного поведения источников тепла // Проблемы управления. - 2017. - № 1. - С. 10-18.
  18. Меренков А.П., Хасилев В.Я. Теория гидравлических цепей. - Москва: Наука, 1985. - 294 с.
  19. Shoup, E. A practical Guide to Computer Methods for Engineers. - England: Prentice-hall, 1979. - 255 p.

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