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Analysis of Size and Economic Sensitivities according to Changes in Component Replacing Costs of Renewable Hybrid Generation System

신재생복합발전시스템의 각 구성품 교체비용변화에 따른 용량 및 경제성 민감도 분석

  • 임종환 (제주대학교 메카트로닉스공학과)
  • Received : 2014.07.17
  • Accepted : 2014.10.21
  • Published : 2015.01.01

Abstract

This paper presents a method for analyzing the size and economic sensitivity of a new renewable hybrid generation system according to changes in the component replacement costs based on HOMER (Hybrid Optimization Model for Electric Renewables). The design of a hybrid system can be optimized by reducing the size of a sensitive component based on sensitivity analysis using the change in cost of a component. Sensitivity analysis can also provide information on what combinations are necessary for the optimal hybrid system. As an example, sensitivity analysis was performed on the residential load provided by HOMER, and the effects of component replacement costs on the system size and cost were quantitatively analyzed.

본 논문에서는 복합발전시스템을 구성하는 각 단위 구성품의 교체비용이 변화할 때 각 단위 구성품의 용량 및 전체시스템의 경제성이 얼마나 변화하는지를 나타내는 민감도 분석을 수행하는 방법을 제시한다. 민감도 분석에는 복합발전시스템 경제 분석용 툴인 HOMER를 이용한다. 민감도 분석을 통해 교체비용 변화에 대해 민감도가 높은 구성품의 비중이 최소화 되게 설계하거나 예상되는 가격변동을 사전에 고려함으로써 복합발전시스템의 경제성을 최적화할 수 있으며, 민감도가 높은 구성품의 비중을 낮추기 위한 다른 조합의 복합 발전시스템 구성에 대한 정보도 제공할 수 있다. 민감도 분석의 예로서 주택용 부하 모델에 대해 HOMER에서 제공되는 일반적인 데이터를 사용하여 각 구성품 교체비용에 대한 용량 및 경제성 민감도를 정량적으로 분석하였다.

Keywords

References

  1. Park, S. J., Lee, Y., Choi, Y. S. and Lee, K. S., 2010, "Optimization of Residential Photovoltaic-Fuel Cell Hybrid System Using HOMER," The Transaction of The Korean Institute of Electrical Engineers, Vol. 59, No. 1, pp. 129-133.
  2. Park, K. H., 2009, "A Study on Optimal Sizing of New and Renewable Hybrid Generation System," M.Sc. Thesis, Department of Mechatronics, Jeju National Univ.
  3. Park, K. H., Kang, C. U. and Lim, J. H., 2011, "Optimal Sizing of Hybrid Wind-PV-Tide System," Studies in Computational Intelligence, Springer, Vol. 365, pp.209-218. https://doi.org/10.1007/978-3-642-21375-5_18
  4. Lim, J. H., 2013, "Optimal Capacity Design and Economic Evaluation of Hybrid Generation Systems Based on the Load Characteristics," J. of Korean Soc. Precis. Eng., Vol. 30, No. 10, pp.1103-1109. https://doi.org/10.7736/KSPE.2013.30.10.1103
  5. Kellogg, W., Nehrir, M. H., Venkataramanan, G. and Gerez, V., 1996, "Optimal Unit Sizing for a Hybrid Wind/Photovoltaic Generating System," Electric Power Systems Research, Vol. 39, No. 1, pp. 35-38. https://doi.org/10.1016/S0378-7796(96)01096-6
  6. Chedid, R. and Saliba, Y., 1996, "Optimization and Control of Autonomous Renewable Energy Systems," Int. J. Energy Res., Vol. 20, No. 7, pp. 609-624. https://doi.org/10.1002/(SICI)1099-114X(199607)20:7<609::AID-ER176>3.0.CO;2-O
  7. Karaki, S. H., Chedid, R. B. and Ramadan, R., 1999, "Probabilistic Performance Assessment of Autonomous Solar-Wind Energy Conversion Systems," IEEE Trans. Energy Conv., Vol. 14, No. 3, pp. 766-772. https://doi.org/10.1109/60.790949
  8. Bagul, A. D., Salameh, Z.M. and Borowy, B., 1996, "Sizing of Stand-Alone Hybrid PV/Wind System Using a Three-Event Probabilistic Density Approximation," Solar Energy, Vol. 56, No. 4, pp. 323-335. https://doi.org/10.1016/0038-092X(95)00116-9
  9. Diaf, S., Diaf, D., Belhame, M., Haddadi, M. and Louche, A., 2007, "Methodlogy for Optimal Sizing of Autonomous Hybrid PV/Wind System, Energy Policy," Vol. 35, No. 11, pp. 5708-5718. https://doi.org/10.1016/j.enpol.2007.06.020
  10. Lim, J. H., 2012, "Optimal Combination and Sizing of a New and Renewable Hybrid Generation System," Int. J. of Future Generation Communication and Networking, Vol. 5, No. 2, pp. 43-60.
  11. HOMER, http://www.nrel.gov/homer
  12. Jang, H. N. and Kim, D. S., 2006, "Pre-Feasibility Test of Introducing Renewable Energy Hybrid Systems," Environmental and Resource Economics Review., Vol. 15, No. 4, pp. 693-712.
  13. Hossan, M. S., Hossain, A. R. and Haque, R., 2011, "Optimization and Modeling of a Hybrid Energy System for Off-Grid Electrification," 10th Int. Conf. on EEEIC, pp. 1-4.
  14. Kim, J., 2010, "Economic Analysis on a PV System in an Apartment Complex," Climate Change Research, Vol. 1, No. 2, pp. 163-177.