Review of Energy Saving Technologies for Urban Rail Vehicles

Main Article Content

Jingjie Yan
Wirogana Ruengphrathuengsuka

Abstract

Urban rail transit systems have substantial power demands, with traction power alone constituting about 50% of the system's electrical consumption. As the operational mileage and number of vehicles increase, so does the energy consumption, underscoring the paramount importance of energy-efficient vehicles. This study systematically analyzes the energy transfer and the dissipation in urban rail transit vehicles. It delves into the potential energy-saving impacts of various strategies and technologies, including vehicle lightweighting, permanent magnet motor traction, silicon carbide applications, regenerative braking energy storage, efficiency enhancement of auxiliary inverters, variable-frequency drive air conditioning, and intelligent lighting systems. By elucidating these methods, this study offers potent strategies to curtail the urban rail transit vehicle energy consumption, thereby bolstering the overall competitiveness of urban rail transit systems.

Article Details

How to Cite
Yan, J., & Ruengphrathuengsuka, W. (2023). Review of Energy Saving Technologies for Urban Rail Vehicles. SAU JOURNAL OF SCIENCE & TECHNOLOGY, 9(2), 89–103. Retrieved from https://ph01.tci-thaijo.org/index.php/saujournalst/www.tci-thaijo.org/index.php/saujournalst/article/view/254648
Section
Research Article

References

China Urban Rail Transit Association. “Annual Statistics and Analysis Report on Urban Rail Transit in China,” 2023. https://www.camet.org.cn/tjxx/11944 (in Chinese).

I. P. Milroy, “Aspects of automatic train control,” Ph.D. Dissertation, Diss. Loughborough Univ., 1980.

A. Albrecht, P. Howlett, P. Pudney, and X Vu, “Optimal train control: analysis of a new local optimization principle.” American Control Conference, USA, 29 Jun-1 Jul. 2011, pp. 1928-1933, 2011

C. Zhang, B. Wang, and S. M. Xie, “ Research on energy saving technology of train traction,” Modern Urban Rail Transit, Vol. 6, pp. 13-18, 2021. (in Chinese, translated abstract).

J. S. Cong, “Analysis of Urban Rail Transit Train Operation Chart Parameters for Energy Saving.” M.S. thesis, Beijing Jiaotong Univ., 2015. (in Chinese).

Y. M. Wang, “Quantitative Analysis on the Energy Factors of the Urban Rail Transit System.” Ph.D. Dissertation, Beijing Jiaotong University, 2011. (in Chinese, translated abstract).

X. Li, and Z. Gao, “Cost-benefit analysis for regenerative energy storage in metro.” Chinese Manage. Stud. vol. 11, no. 1, pp. 19-34, 2017.

A. González-Gil, R. Palacin, P. Batty, and J. P. Powell, “A systems approach to reduce urban rail energy consumption.” Energy Convers. Manage. vol. 80, pp. 509-524, 2014.

E. Pilo de la Fuente, J. I. Pérez Arriaga, et al. E. P. de la Fuente, J. I. P. Arriaga, I. L. H. Ausín, and J. Jiménez, “Electricity energy flows for transportation Electricity flows for transport,” Technological Research Institute (IIT) of the Comillas Pontifical University of Madrid, Monografía vol. 9, 2008. ISBN: 978-84-89649-42-2 (in Spanish).

R. Takagi, “Energy saving techniques for the power feeding network of electric railways.,” IEEJ Trans. Elec. Electron. Eng. vol. 5, pp. 312-316, 2010.

J. M. Ortega, H. Ibaiondo, and A. Romo, "Kinetic energy recovery on railway systems with feedback to the grid,” 9th World Congress on Railway Research, France, 2011.

J. P. Powell, A. González-Gil, and R. Palacin, “Experimental assessment of the energy consumption of urban rail vehicles during stabling hours: Influence of ambient temperature,” Applied Thermal Eng. vol. 66, pp. 541-547. 2014.

X. B. Zheng, Y. Bai and S. S. Zhou, “Metro Train Energy Consumption Characteristics Based on Empirical Data Analysis,” J. Transport. Syst. Eng. Inform. Tech., vol. 21, no. 6, pp. 264-271, 2021.

A. González-Gil, R. Palacin, and P. Batty, “Sustainable urban rail systems: Strategies and technologies for optimal management of regenerative braking energy,” Energy conversion and management, Vol. 75, pp. 374-388, 2013.

J. J. Carruthers, M. Calomfirescu, P. Ghys, and J. Prockat, “The application of a systematic approach to material selection for the lightweighting of metro vehicles,” Proc. IMechE Vol. 223 Part F: J. Rail and Rapid Transit, vol. 223, no. 5, pp. 427-437, 2009.

F. Qi, Z. Wang, and Q. F. Jiang. "Research on Energy Saving Measures for Urban Rail Transit." Rolling Stock (1002-7602) vol. 61, no. 3, pp. 102–108. 2023. (in Chinese, translated abstract).

P. J Mistry, M. S. Johnson, and U. Galappaththi, “Selection and ranking of rail vehicle components for optimal lightweighting using composite materials,” Proc IMechE Part F: J Rail and Rapid Transit, Vol. 235, no. 3) 390-402, 2021.

P. J. Mistry, and M. S. Johnson. “Lightweighting of railway axles for the reduction of unsprung mass and track access charges,” Proc. Inst. Mech. Eng. Part F: J. Rail and Rapid Transit, Vol. 234, no. 9, pp. 958-968, 2020.

A. Khare, and D. S. Shriwastava, “A Survey of Traction Permanent Magnet Synchronous Motor,” Int. J. Sci. Tech. Eng. Vol. 1, no. 10, pp. 149-152, 2015.

L. J. Liu, W. G. Chen, X. Liu, and T. He, “Research on energy saving technology of metro permanent magnet synchronous traction system,” Elec. Drive Locomot. Vol. 6, pp. 23-25, 2018. (in Chinese, translated abstract).

J. M. Zhang, H, Su, Q. Ren, W. Li, and H. Zhou, “Review on development and key technologies of permanent magnet Synchronous traction system for rail transit,” J. Traffic Trans. Eng. Vol. 21, no. 6, pp. 63-77, 2021. (in Chinese, translated abstract).

H. H. Deng, and B. Y. Zhong, “Train energy consumption analysis of permanent magnet synchronous traction system for Changsha metro line 1,” Modern Urban Transit, Vol. 9, pp. 10-13, 2017. (in Chinese, translated abstract).

Y. L. Fu, F. Xu, B. Zhang, Y. Zhu, and Y. M. Ma, “Research on the new generation traction system characterized by silicon carbide power modules and permanent magnet motors,” Modern Urban Transit, Vol. 11, pp. 33-38, 2019. (in Chinese, translated abstract).

H. M. Peng, “Test Report of Ginza Line 01 Series Subway Train SiC Power Module Main Circuit System,” Foreign Railway Locomotives and Motor Cars, Vol. 6, pp. 29-34, 2013. (in Chinese).

J. Wan, J. H. Shi, and Q. Dai, “Research on Traction Energy-saving of Urban Rail Transit Vehicle Based on Hybrid Silicon Carbide Devices,” Urban Rail Transit Research, Vol. 03, pp. 253-257, 2023. (in Chinese, translated abstract).

G. Graber, V. Galdi, V. Calderaro, and A. Piccolo, “Sizing and energy management of on-board hybrid energy storage systems in urban rail transit,” Inter. Conf. Electrical Syst. Aircraft, Railway, Ship Propulsion and Road Vehicles & Inter. Trans. Electrification, November 2016 France. 2016.

L. Zhu, and X. Wang, “Hybrid energy storage system of storage battery/super capacitor for mine electric locomotive,” J. Phys. Conf. Series 1633, no. 012081, pp. 1-8, 2020.

] B. Zhang, C. Wu, G. Meng, F. Xue, and S. Lu, “Optimal Sizing of Onboard Hybrid Energy Storage Devices Considering the Long-Term Train Operation,” IEEE Access, Vol. 10, pp. 1-12, 2022.

X. J. Yang, L. H. Kong, Y. Du, J. W. Su, and X. J. B. Zhang, “ZVS Optimization Strategy of T-type Three-level Dual Active Bridge Converter,” High Voltage Eng., Vol. 48 no. 5 pp. 1913 – 1923, 2022. (in Chinese).

S. Mittal, A. Singh, and P. Chittora. "Design and development of leaky least mean fourth control algorithm for single-phase grid-connected multilevel inverter," Int. J Circ Theory Appl, pp. 1-18, 2023.

W. Ma, and Z. G. Cheng, “Discussion on Energy-saving Methods of Shanghai Rail Transit Train Air Conditioning System,” Urban Rail Transit Research, Vol. 17, no. 11, pp. 54-58, 2014. (in Chinese).

J. Li, M. T. Liu, and F. X. Gao, “Energy-saving and Comfort Analysis of Urban Rail Transit Vehicle Variable Frequency Air Conditioning System,” Urban Rail Transit, Vol. 5, no. 18, pp. 99-103, 2015. (in Chinese).

Z. S. Jin, “Research and Application Practice of Air Source Heat Pump Heating Technology,” Eng. Construct., Vol. 5, no. 12, pp. 50-52, 2022. (in Chinese).

Q. F. Wang, “Application of LED Lighting in Subway Vehicles,” Energy Conservation, Vol. 32, no. 5, pp. 57-59, 2013. (in Chinese).

H. L. Duan, “Research on Energy-saving Scheme of Urban Rail Transit Vehicle Lighting System,” Urban Rail Transit Research, Vol. 21, no. 2, pp. 34-37, 2018. (in Chinese).