Models of interaction between power and gas supply systems at the present stage of energy development

 
PIIS000233100002359-8-1
DOI10.31857/S000233100002359-8
Publication type Article
Status Published
Authors
Affiliation: Gubkin Russian State University of Oil and Gas (National Research University)
Address: Russian Federation, Moscow
Journal nameIzvestiia Rossiiskoi akademii nauk. Energetika
EditionIssue 4
Pages14-20
Abstract

The paper stresses the importance of creating hybrid (electricity and gas) systems using gasfired generators. This will allow to optimize the structure of energy supply systems, including RES, to improve the reliability of electric power supply to consumers. It is emphasized that the mathematical apparatus for solving the problem of coordinated control of hybrid systems must adequately take into account the line-pack effect. As one of the promising directions for the development of the gas infrastructure development in a changing energy situation, local gasification based on LNG is being considered. The expediency of economic and technological development of models of hybrid systems is justified, when the local gasification system is also used as the only source for power generation. New problems of analysis and synthesis of reliability, arising in connection with the creation of hybrid systems, are listed.

Keywordspower supply system, gas supply system, gas-fired generators, renewable energy sources (RES), hybrid systems, lumped models, analysis and synthesis of reliability
Received26.11.2018
Publication date04.12.2018
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1. Zlotnik A., Dyachenko S., Backhaus S., Chertkov M. Model reduction and optimization of natural gas pipeline dynamics // Proceed. of ASME. 2015. Dynamic Systems and Control Conf. 2015, Oct 28–30. Columbus, Ohio, USA.– 2015. V. 3.

2. Zlotnik A., Chertkov M., Backhaus S. Optimal control of transient flow in natural gas networks // Proceed. of 2015 54th IEEE Conf. on Decision and Control. Dec 15–18, Osaka, Japan.

3. Zlotnik A., Roald L., Backhaus S., Chertkov M., Anderson G. Control policies for operational coordination of electric power and natural gas transmission systems // Proceed. of American Control Conf. 2016, Jul 6–8, Boston, MA, USA.

4. Yang J., Zhang N., Kang Ch., Pinson P. Modeling the transient security constraints of natural gas network in day-ahead power system scheduling // Proceed. of IEEE PES General Meeting. 2017, Jul 16–20, Chicago, IL, USA.

5. Chiang N-Y., Zavala V.M. Large-scale optimal control of interconnected natural gas and electrical transmission systems // Appl. Energy. 2016. V. 168. P. 226–235.

6. Ríos-Mercado R.Z., Borraz-Sánchez C. Optimization problems in natural gas transportation systems: A state-of-the-art review // Appl. Energy. 2014. V. 147. P. 536–555.

7. Sukharev M.G., Samojlov R.V. Optimal'noe upravlenie magistral'nym gazoprovodom pri nestatsionarnom rezhime techeniya // Izvestiya RAN. Ehnergetika. 2001. № 5. S. 83–92.

8. Sukharev M.G., Pankratov V.S., Samojlov R.V. Optimizatsiya nestatsionarnykh rezhimov dejstvuyuschikh magistral'nykh gazoprovodov // Gazovaya promyshlennost'. 2002. № 9. S. 72–75.

9. Sukharev M.G., Samojlov R.V. Analiz i upravlenie statsionarnymi i nestatsionarnymi rezhimami transporta gaza. M.: Rossijskij gos. univers. nefti i gaza (NIU) im. I.M. Gubkina, 2016. 399 s.

10. Sukharev M.G., Popov R.V. Model' issledovaniya zhivuchesti krupnykh gazotransportnykh sistem v ehkstremal'nykh pogodnykh usloviyakh. Metodicheskie voprosy issledovaniya nadezhnosti bol'shikh sistem ehnergetiki. Vyp. 66. Aktual'nye problemy nadezhnosti sistem ehnergetiki / Otv. red. N.I. Voropaj, M.A. Korotkevich, A.A. Mikhalevich. Minsk: BNTU, 2015. S. 280–286.

11. Gazprom postroit zavod SPG v Yaroslavskoj oblasti [Ehlektronnyj resurs] // Yaroslavskij region. 2017. 18 aprelya. Rezhim dostupa: https://yarreg.ru/ articles/v-yaroslavskoy-oblasti-postroyat-zavod-po-s/

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