

SOME APPLICATIONS OF SUPERCAPACITORS IN DISTRIBUTED AND RENEWABLE ENERGY
https://doi.org/10.15518/isjaee.2017.07-09.090-104
Abstract
Тhe present paper considers the niches for use of supercapacitor as part of wind turbines and gas microturbines on the base of an analysis of published data. Moreover, the paper gives the calculations and results of the technical and economic assessments using different drives (lead-acid battery and a supercapacitor) as: 1) starter battery of turbine Capstone and 2) a buffer store of wind-diesel complex capable to ensure the issuance of energy during stopping the wind turbine and the output of diesel generator on mode. It is shown that a number of these niches supercapacitors are competitive today, but for their wider application it is necessary to reduce of unit cost.
About the Authors
S. V. KiselevaRussian Federation
Ph.D (physics and mathematics), Senior Scientific Researcher of Renewable Energy Sources Laboratory (Lomonosov Moscow State University, Faculty of Geography)
A. B. Tarasenko
Russian Federation
Researcher of Joint Institute for High Temperatures of the Russian Academy of Sciences, Lead Engineer of TEEMP LLC
References
1. Volfkovich Yu.M., Serdyuk T.M. Èlektrohimičeskie kondensatory. Èlektrohimiâ. 2002;(38/9):1043–1068 (in Russ.).
2. Fialkov A.S. Uglerod v himičeskih istočnikah toka. Èlektrohimiâ. 2000;(36/4):389–414 (in Russ.).
3. Mamaghani A.H., Escandon S.A.A., Najafi B., Shirazi A., Rinaldi F. Techno-economic feasibility of photovoltaic, wind, diesel and hybrid electrification systems for off-grid rural electrification in Colombia. Renewable Energy. 2016;(97):293–305 (in Eng).
4. Om Prakash Mahela, Abdul Gafoor Shaik, Comprehensive overview of grid interfaced wind energy generation systems. Renewable and Sustainable Energy Reviews. 2016;(57):260–281 (in Eng).
5. Díaz-González F, Sumper A, Gomis-Bellmunt O, Bianchi FD. Energy management of fly wheel-based energy storage device for wind power smoothing. Appl. Energy. 2013;(110):207–219 (in Eng).
6. Cimuca G., Breban S., Radulescu M., Saudemont C., Robyns B. Design and control strategies of an induction-machine-based fly wheel energy storage system associated to a variable-speed wind generator. IEEE Trans Energy Convers. 2010;(25/2):526–34 (in Eng).
7. Díaz-González F., Hau M., Sumper A., GomisBellmunt O. Coordinated operation of wind turbines and fly wheel storage for primary frequency controls upport. Electrical Powerand Energy Systems. 2015;(68):313– 326 (in Eng).
8. Gkavanoudis S.I., Demoulias Ch.S. Fault ridethrough capability of a DFIG in isolated grids employing DVR and supercapacitor energy storage. Electrical Powerand Energy Systems. 2015;(68)356–363 (in Eng).
9. Gkavanoudis S.I., Demoulias Ch.S. A combined fault ride-through and power smoothing control method for full-converter wind turbines employing Supercapacitor Energy Storage System. Electric Power Systems Research. 2014;(106):62–72 (in Eng).
10. Mullane A., Lightbody G., Yacamini R. Windturbine fault ride-through enhancement. IEEE Transactions on Power Systems. 2005;(20/4):1929–1937 (in Eng).
11. Muyeen S.M., Takahashi R., Murata T., Tamura J. A variable speed wind turbine control strategy to meet wind farm grid code requirements. IEEE Transactions on Power Systems. 2010;(25):331–340 (in Eng).
12. Changling L., Banakar H., Baike S., Boon-Teck O. Strategies to smooth wind power fluctuations of wind turbine generator. IEEE Transactions on Energy Conversion. 2007;(22):341–349 (in Eng).
13. Bensmaine F., Bachelier O., Tnani S., Champenois G., Mouni E. LMI approach of statefeedback controller design for a STATCOMsupercapacitors energy storage system associated with a wind generation. Energy Conversionand Management. 2015;(96):463–472 (in Eng).
14. Peñate B., Castellano F., Bello A., GarcíaRodríguez L. Assessment of a stand-alone gradual capacity reverse osmosis desalination plant to adapt to wind power availability: A case study. Energy. 2011;(36):4372–4384 (in Eng).
15. Richards B.S., Park G.L., Pietzsch Th., Schäfer A.I. Renewable energy powered membrane technology: Brackish water desalination system operated using real wind fluctuations and energy buffering. Journal of Membrane Science. 2014;(468):224–232 (in Eng).
16. Web-site of BPC Inžiniring. Available at: http://bpcenergy.ru/equipment/capstone/1259 (14.04.2016) (in Russ.).
17. Rukovodstvo pol’zovatelâ mikroturbiny Capstone S30. Available at: http://www.wmrc.edu/projects/BARenergy/manuals/c-30- manuals/400001_C30_C60_ MicroTurbine_Users_Manual.pdf (14.04.2016) (in Russ.).
18. Web-site of Ltd “ZAIT-SPb”. Available at: http://www.valgen.ru/assortiment_i_ceny (14.04.2016) (in Russ.).
19. Internet-sajt kompanii UE DirectDrive. Available at: http://www.mtoi.es:8008/en/productos-yservicios/aerogeneradores-UE_165.aspx (20.04.2016).
20. Arhiv pogody. Available at: http://rp5.ru/ (18.04.2016) (in Eng).
21. The NASA Surface meteorology and Solar Energy// 2016. Available at: https://eosweb.larc.nasa.gov/sse// (01.04.2016) (in Eng).
Review
For citations:
Kiseleva S.V., Tarasenko A.B. SOME APPLICATIONS OF SUPERCAPACITORS IN DISTRIBUTED AND RENEWABLE ENERGY. Alternative Energy and Ecology (ISJAEE). 2017;(7-9):90-104. (In Russ.) https://doi.org/10.15518/isjaee.2017.07-09.090-104