DOI QR코드

DOI QR Code

Analysis of Energy Savings and CO2 Emission Reductions via Application of Smart Grid System

지능형 전력망(스마트 그리드) 적용을 통한 에너지 절감 및 CO2 감축 효과 분석

  • Park, Soo-Hwan (Department of Environmental Engineering, The Catholic University of Korea) ;
  • Han, Sang-Jun (Department of Environmental Engineering, The Catholic University of Korea) ;
  • Wee, Jung-Ho (Department of Environmental Engineering, The Catholic University of Korea)
  • 박수환 (가톨릭대학교 환경공학과) ;
  • 한상준 (가톨릭대학교 환경공학과) ;
  • 위정호 (가톨릭대학교 환경공학과)
  • Received : 2017.01.25
  • Accepted : 2017.04.11
  • Published : 2017.06.30

Abstract

The energy savings and $CO_2$ emission reductions obtainable from the situation that the Smart Grid system (SGs) is assumed to be applied in Korea up to 2030 is quantitatively analyzed with many reported data. For calculation, SGs is divided into five sectors such as Smart Transmission and Distribution (ST&D), Smart Consumer (SC), Smart Electricity Service (SES), Smart Renewable Energy (SRE) and Smart Transportation (ST). Total annual energy savings in 2030 is estimated to be approximately 103,121 GWh and this is 13.1% of total electricity consumption outlook. Based on this value, total amount of reducible $CO_2$ emissions is calculated to 55.38 million $tCO_2$, which is 17.6% of total nation's GHG reduction target. Although the contribution of energy saving due to SGs to total electricity consumption increases as years go by, that of $CO_2$ emission reduction gradually decreases. This might be because that coal fired based power generation is planned to be sharply increased and the rate of $CO_2$ emission reduction scheduled by nation is very fast. The contributable portion of five each sector to total $CO_2$ emission reductions in 2030 is estimated to be 44.37% for SC, 29.16% for SRE, 20.12% for SES, 5.11% for ST&D, and 1.24% for ST.

본 논문에서는 국내 환경에서 설정된 가정 하에 지능형 전력망 기술이 지능형 송배전, 소비자, 전력서비스, 신재생 에너지 및 운송 등의 5가지 분야에 적용될 경우 2030년까지의 연도별 국내 에너지 절감 및 $CO_2$ 감축 효과와 그 상대적 기여도를 예측, 분석하였다. 2030년 지능형 전력망 운용에 따른 총 에너지 절감량은 103,121 GWh로 계산되며 이는 당해 소비전력량 전망치의 약 13.1%로 2025년 이후 이 비율은 약 10% 이상으로 유지될 것으로 예측되었다. 이를 토대로 계산된 2030년 $CO_2$ 배출 감축량은 5,538만 $tCO_2$로 계산되었고 이는 당해 온실가스 감축 목표량인 3억 1,500만 $tCO_2$에 17.6%에 해당하는 값이다. 이러한 $CO_2$ 배출 감축량은 에너지 절감량과는 다르게 해가 거듭될수록 전체 배출 감축량에 대한 그 비율이 감소하는데 이는 향후 온실가스 배출량의 대부분을 차지하는 석탄화력 발전량의 지속적인 증가와 국가의 목표 배출 감축 속도가 매우 빠르게 설정되었기 때문으로 판단된다. 2030년 5가지 각 분야에서의 에너지 절감 및 $CO_2$ 배출 감축 기여 비율은 지능형 소비자 44.37%, 신재생 에너지 29.16%, 전력서비스 20.12%, 송배전 5.11%, 운송 1.24%로 계산되고 시간에 따른 상대적 에너지 절감 속도는 지능형 소비자 분야가 가장 빠르며 신재생 에너지 및 전력서비스로 순서를 이룬다. 송배전 분야에서의 절감 속도는 송배전 손실률 향상의 한계 때문에 낮고, 전기자동차 예상 보급 대수의 증가율이 낮아 운송 부분의 절감 속도가 가장 느리므로 이에 대한 대책이 필요할 것으로 판단된다.

Keywords

References

  1. Kim, S., Chun, J. and Chun, Y., "Study on the Separation of $CO_2$ from Flue Gas Using Polysulfone Hollow Fiber Membrane," J. Korean Soc. Environ. Eng., 36(2), 147-152 (2014). https://doi.org/10.4491/KSEE.2014.36.2.147
  2. Dong, J. I., "Waste Eco-Energy and GHGs Reduction Technologies in the Era of Climate Change," J. Korean Soc. Environ. Eng., 30(12), 1203-1206(2008).
  3. Kim, H. S., "Greenhouse Gas Mitigation Policies and National Emission Targets of Korea," J. Korean Soc. Environ. Eng., 32(9), 809-817(2010).
  4. Kim, J. S., Lee, K. B., Lee, I. H. and Kim, S. D., "Analysis of Energy Consumption Pattern and Greenhouse Gas Emission in the Academic Facility," J. Korean Soc. Environ. Eng., 34(9), 604-612(2012). https://doi.org/10.4491/KSEE.2012.34.9.604
  5. Jeong, Y. J., Li, K. C., Kim, T. O. and Hwang, I. J., "Estimation of Greenhouse Gas Emissions (GHG) Inventory and Reduction Plans for Low Carbon Green Campus in Daegu University," J. Korean Soc. Environ. Eng., 36(7), 506-513 (2014). https://doi.org/10.4491/KSEE.2014.36.7.506
  6. Joongboo Ilbo, http://www.joongboo.com/?mod=news&act=articleView&idxno=1114325, October(2016).
  7. Electronic Times Internet, http://www.etnews.com/201609030-00012, September(2016).
  8. Ministry of Environment, https://www.me.go.kr/home/web/board/read.do?boardMasterId=1&boardId=534080&menuId=286, June(2015).
  9. EPRI (Electronic Power Research Institute), The Green Grid: Energy Savings and Carbon Emissions Reductions Enabled by a Smart Grid, EPRI, USA, pp. 1-11(2008).
  10. PNNL (Pacific Northwest National Laboratory), The Smart Grid: An Estimation of the Energy and $CO_2$ Benefits, PNNL, USA, pp. 3-27(2010).
  11. Digital Daily, http://ddaily.co.kr/m/m_article.html?no=58844, January(2010).
  12. Sung, J. Y., An Analysis of the Smart Grid Industry Effect on Local Employment, Master Thesis, Seoul National University, pp. 6-21(2013).
  13. Ministry of Trade, Industry and Energy, http://www.motie.go.kr/motie/ne/presse/press2/bbs/bbsView.do?bbs_seq_n=782 22&bbs_cd_n=81, August(2013).
  14. MKE (Ministry of Knowledge Economy), Smart Grid National Roadmap, MKE, Korea, pp. 1-69(2010).
  15. KEEI (Korea Energy Economics Institute), Analysis of Smart Grid Effect on Energy Saving and Green House Gas Reductions, MKE, Korea, pp. 5-6(2010).
  16. KEEI (Korea Energy Economics Institute), Government's Role for Promoting Competition and Mediating Interests among Smart Grid Market Participants, MKE, Korea, pp. 5-8(2011).
  17. ERIK (Electrical Industry Research Institution of Korea), Status on the Smart Grid Industry, ERIK, Korea, pp. 4-9(2013).
  18. Doh, Y. M., Kim, S. J., Hoe, T. W., Park, N. S., Kim, H. H., Hong, S. K., Seo J. H. and Jeon, J. A., "A Trend Analysis of Smart Grid Technology: The Convergence of Electric Power Network and IT Technologies," ETTRENDS, 24(5), 74-86(2009).
  19. KSGA (Korea Smart Grid Association), Report of AMI Technology Trend in Smart Grid, KSGA, Korea, pp. 9- 69(2012).
  20. Kim, Y. K., Rue, S. M. and Kim, N. K., "Smart Grid Technology Trend and Business Analysis," KIITM, 12(1), 9-17 (2014).
  21. KEEI (Korea Energy Economics Institute), Plan for EMS Industry Development, KEEI, Korea, pp. 5-90(2013).
  22. Kim, H. Y., Jeong, J. S., Cha, W. S., Shin, G. S. and Kim, S. T., "Technical Trends of AMI and HEMS for Smart Grid Implementation," ETTRENDS, 28(2), 11-19(2013).
  23. Jeong, S. J., Lee, S. H. and Kim, S. H., "Effect of Smart Grid on Earth Environment and National Power Industry," in Proceedings of the KIIT Summer Conference, KIIT, pp. 545-549(2014).
  24. Sung, D. K., Song, N. O., Ko, K. S., Cha, J. Y., Bae, K. Y. and Jang, H. S., "Convergence of Power System Technology and Information Communication Technology in Smart Grid," Commun. KIISE, 31(3), 10-21(2013).
  25. Cho, H. S., "Energy Management System (EMS) based on Energy Storage System (ESS)," in Proceedings of the KIEE Autumn Conference, KIEE, pp. 257-259(2014).
  26. Park, C. K., Choi, D. Y. and Kim, H. J., "Analysis of the Impact of Smart Grids on Managing EVs' Electrical Loads," J. Digital Convergence, 11(11), 767-774(2013). https://doi.org/10.14400/JDPM.2013.11.11.767
  27. KRRI (Korea Railroad Research Institute), Korea Rail Technology: Entry of Railway Industry into Overseas and Smart Grid, KORAIL, Korea, pp. 80-85(2010).
  28. KRRI (Korea Railroad Research Institute), Korea Rail Technology: Strategies for Optimum Utilization of Electric Railway Power Energy, KORAIL, Korea, pp. 30-39(2010).
  29. Korea Power Exchange, https://www.kpx.or.kr/www/contents.do?key=222.
  30. Wee, J. H. and Choi, K. S., "$CO_2$ emission and avoidance in mobile applications," Renew. Sust. Energ. Rev., 14(2), 814- 820(2010). https://doi.org/10.1016/j.rser.2009.08.014
  31. KEEI (Korea Energy Economics Institute), Yearbook of Energy Statistics, KEEI, Korea, pp. 126-177(2015).
  32. Cho, B. O., Kim, S. J. and Kim, J. S., "An Analysis on Korean Nuclear Power's Contribution to the GHG Emission Reduction and the Economic Effect," Korean Soc. Environ. Eng., 19(4), 203-214(2010).
  33. KEPCO (Korea Electric Power Corporation), Statistics of Electric Power in Korea, KEPCO, Korea, pp. 16-171(2016).
  34. MOTIE (Ministry of Trade, Industry and Energy), The 7th Basic Plan for Long-term Electricity Supply and Demand, MOTIE, Korea, pp. 1-97(2015).
  35. Korea Electronic Power Corporation, https://home.kepco.co.kr/ kepco/KE/I/htmlView/KEIAHP00103.do?menuCd=FN01020103.
  36. MOTIE (Ministry of Trade, Industry and Energy), Direction of Supply of Smart Meter and Energy Storage System, MOTIE, Korea, pp. 1-12(2013).
  37. Electronic Times Internet, http://www.etnews.com/2014120-3000300, December (2014).
  38. Ministry of Trade, Industry and Energy, http://www.motie.go.kr/motie/ne/presse/press2/bbs/bbsView.do?bbs_seq_n=158371&bbs_cd_n=81, July (2016).
  39. NIPA (National IT Industry Promotion Agency), Report on the Status of EMS Instruction in 2013, NIPA, Korea, pp. 1-5(2014).
  40. DigitalTimes, http://www.dt.co.kr/contents.html?article_no=2014011502019932614005, January(2014).
  41. KEA (Korea Energy Agency), New & Renewable Energy Statistics 2014, KEA, Korea, pp. 22-23(2015).
  42. KORAIL (Korea Railroad), Statistical Yearbook Railroad, KORAIL, Korea, pp. 1460-1463(2009).
  43. KEMCO (Korea Energy Management Corporation), 2013 Vehicle Fuel Economy and $CO_2$ Emissions: Data and Analysis, KEMCO, Korea, pp. 22-257(2014).
  44. KEMCO (Korea Energy Management Corporation), 2015 Vehicle Fuel Economy and $CO_2$ Emissions: Data and Analysis, KEMCO, Korea, pp. 22-232(2015).
  45. MOTIE (Ministry of Trade, Industry and Energy), The 3rd Eco-friendly Vehicle Development and Supply Plan, Korea, pp. 6-15(2015).
  46. KRRI (Korea Railroad Research Institute), Calculation of Standard Fuel Consumption via Analysis of Major Railway Parts, KORAIL, Korea, pp. 128-132(2013).
  47. Newsprime, http://www.newsprime.co.kr/news/article.html?no=63852, September(2008).
  48. Korea Transportation Safety Authority, http://www.ts2020.kr/ind/prt/InqDetNANNewsData.do?bbsCd=203&bbsSn=8161, December(2015).
  49. KORAIL (Korea Railroad), Statistical Yearbook of Railroad, KORAIL, Korea, pp. 10-1082(2015).
  50. Ministry of Trade, Industry and Energy, http://www.me.go.kr/home/web/board/read.do?boardMasterId=1&boardId=483180&menuId=286, February(2015).
  51. Ministry of Trade, Industry and Energy, http://www.me.go.kr/home/web/board/read.do?boardMasterId=1&boardId=601900&menuId=286, January(2016).
  52. Greenhouse Gas Inventory and Research Center, https://www.gir.go.kr/home/board/read.do?pagerOffset=0&maxPageItems=10&maxIndexPages=10&searchKey=&searchValue=&menu Id=36&boardId=33&boardMasterId=2&boardCategoryId=, December (2015).
  53. Korea Government Interagency, GHG Emission Reduction Goals, Korea, pp. 25(2014).
  54. NABO (National Assembly Budget Office), Nation's GHG Reduction Target Evaluation for Post-2020 and Analysis of Measures to Secure Overseas Emission Rights), NABO, Korea, p. 66(2016).

Cited by

  1. A Study on the ICT-based Benefit Improvement of the Chung-ju Multipurpose Dam for Climate Change vol.40, pp.8, 2018, https://doi.org/10.4491/KSEE.2018.40.8.303