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References

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Young-Tae Chang, “IMO 2020 Sulphur Oxides Regulation and Countermeasures,” KMI Infographic, vol 23, 2020.URL
2 
Soo-Nam Kim, Young-Ho Park, “The Trends of DC Electric Propulsion Shipboard Power Systems Tecnology,” The Koean Institute of Electrical Engineers, vol 67, no. 6, pp. 25-31, 2018.URL
3 
Da-Won Jung, Sim Jae Sung, So-Yeon Kim, Il-Yop Chung, “Optimal Design of Generation System of Electric Ship Considering Fuel Cost Analysis and Economic Analysis with Energy Storage System Application,” The transaction of The Korean Institute of Electrical Engineers, vol 70, no. 8, pp. 1,156-1,166, 2021.URL
4 
So-Yeon Kim, et al. “A naval integrated power system with a battery energy storage system: Fuel efficiency, reliability, and quality of power,” IEEE electrification magazine, vol. 3, no. 2, pp. 22-33, 2015.DOI
5 
Jong-Hak Lee, “A Study of Ships Power Management System Based on Energy Management System,” Master. Thesis, Korea Maritime & Ocean University, 2021.URL
6 
Kazuyuki MAEDA, Young-Un KIM, “The Study on Reduction Method of Emission from Ships,” The Journal of Fisheries and Marine Sciences Education, vol 25, no. 3, 2013.URL
7 
Melyer, Aidan, Geoff Kenny, Terry Quinn, “Forecasting Irish inflation using ARIMA models,” pp. 1-48, 1998.URL
8 
Da-Won Jung, “Optimal Operation Strategy for Power Generation System of Electric Propulsion Ships based on Lagrangian Relaxation Method for Fuel Cost Reduction,” Master. Thesis, Kookmin University, 2022.URL
9 
Beom Hee Jeong, “Generator Scheduling Methods for Fuel Cost Reduction in Electrical Shipboard Power Systems Using Load Forecasting,” Master. Thesis, Kookmin University, 2024.URL
10 
Allen J. Wood, Bruce F. Wollenberg, Gerald B. Sheble, “Power Generation, Operation and Control 3rd Edition,” Wiley, 2013.URL
11 
Sim Jae Sung, “Optimal Design and Operation Technique of Electric Propulsion Ship Power Generation System and Analysis of the Application Effect of ESS for Improving Power Generation,” Master. Thesis, Kookmin University, 2020.URL