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:: Volume 6, Issue 1 (9-2017) ::
ieijqp 2017, 6(1): 20-29 Back to browse issues page
Usage of Flexible Distribution Generation to Provide 25 KV AC Power Supply of Electrical Train and Improvement of Power Quality Indexes in Upstream Grid
Morteza Ezzati1 , Hossein Hosseinian * 1, Ehsan Azad Faresani2
1- Amirkabir University of Technology,Electrical Engineering Faculty
2- Electrical Group,Engineering Faculty,Golpayegan,Esfehan,Iran
Abstract:   (5120 Views)

Considering to advantages of renewable energies as Distribution Generations, are applied so widely in all over of the world. In this paper is attempted to usage of these resources with power system to provide the consume power of electrical trains, but to reason of single phase power supply of electrical trains in 25 KV AC power systems and varying consuming power during time and distance, make power quality problems in upstream power systems. So purpose of paper is decrease of unbalance, cancel of current harmonics and achievement to unity power factor from upstream grid in spite of providing consume power of trains, these are achieved  by implement of  Instantaneous Power Theory on control of inverters interface Flexible Distribution Generation and  upstream grid.

Keywords: providing power, unbalance decrement, power quality improvement, flexible distribution generation
Full-Text [PDF 1434 kb]   (1455 Downloads)    
Type of Study: Research | Subject: General
Received: 2016/06/21 | Accepted: 2017/01/16 | Published: 2017/09/5
References
1. [1] J.P. Torreglosa, P.García, L.M. Fernández and F.Jurado "Predictive Control for the Energy Management of a Fuel-Cell–Battery–Supercapacitor Tramway",IEEE Trans. Industrial Informatics, vol. 10, Feb 2014, pp.1-10.
2.  [2] Qi Li, Weirong Chen, Zhixiang Liu, Ming Li and Lei Ma "Development of energy management system based on a power sharing strategy for a fuel cell-battery-supercapacitor hybrid tramway" Journal of Power Sources , vol 279, App 2015, pp. 267–280. [3] L. Fan and Y. Zhen-yu, "Analysis and management research on the impact of Shanghai-Nanjing intercity railway traction load on power grid," in China Int. Conf. Elect. Distrib. (CICED), 2010, pp. 1-6.
3.  [4] Hosseini, S.H.; Sarhangzadeh, M.; Shahnia, F. "A Novel Control Scheme of the Statcom for Power Quality Improvement in Electrified Railways",Power Electronics Specialists Conference, 2006. PESC '06. 37th IEEE, pp. 1-5.
4.  [5] G. Zhu, J. Chen, and X. Liu, "Compensation for the negative-sequence currents of electric railway based on SVC," in IEEE Conf. Ind. Electron. Appl., 2008, pp. 1958-1963.
5.  [6] S.-Y. Lee, C.-J. Wu, and W.-N. Chang, "A compact control algorithm for reactive power compensation and load balancing with static Var compensator," Elect. Power Syst. Research, vol. 58, pp. 63-70, 2001.
6.  [7] M. El-Sadek, "Static VAR compensation for phase balancing and power factor improvement of single phase train loads," Elect. mach. power syst., vol. 26, pp. 347-361, 1998.
7.  [8] A. Luo, C. Wu, J. Shen, Z. Shuai, and F. Ma, "Railway static power conditioners for high-speed train traction power supply systems using three-phase V/V transformers," IEEE Trans. Power Electron., vol. 26, pp. 2844-2856, 2011.
8.  [9] S. Zhuo, J. Xinjian, Z. Dongqi, and Z. Guixin, "A novel active power quality compensator topology for electrified railway," IEEE Trans. Power Electron., vol. 19, pp. 1036-1042, 2004.
9.  [10] N. Y. Dai, K. W. Lao, M. C. Wong, and C. K. Wong, "Hybrid power quality conditioner for co-phase power supply system in electrified railway," IET Power Electron., vol. 5, pp. 1084-1094, 2012.
10.  [11] N. Dai, K. Lao, and M. Wong, "A hybrid railway power conditioner for traction power supply system," in IEEE Appl. Power Electron. Conf. Exposition, 2013, pp. 1326-1331.
11.  [12] S. Zeliang, X. Shaofeng, and L. Qunzhan, "Single-Phase Back-To- Back Converter for Active Power Balancing, Reactive Power Compensation, and Harmonic Filtering in Traction Power System," IEEE Trans. Power Electron., vol. 26, pp. 334-343, 2011. [13] H.Akagi, E.H.Watanabe, M.Aredes, "Instantaneous power theory and applications to power conditioning",John Wiley & Sons, 2007/3/9.
12.  [14] C.J.Gajanayake,D. M,Vilathgamuwa,P.C. Loh, R.Teodorescu and F.Blaabjerg, "Z-Source-Inverter-Based Flexible Distributed Generation System Solution for Grid Power Quality Improvement",IEEE Trans. Energy Conversion, vol. 24, no. 3, Sept 2009, pp.1-10.
13.  [15] H. Akagi, "Active harmonic filters, " Proc. IEEE, vol. 93, no. 12, pp. 2128–2141, Dec. 2005.
14.  [16] B. Singh and J. Solanki, "A comparison of control algorithms for DSTATCOM, " IEEE Trans. Ind. Electron., vol. 56, no. 7, pp. 2738–2745, Sep. 2009.
15.  [17] P. S. Sensarma, K. R. Padiyar, and V. Ramanarayanan, "Analysis and performance evaluation of a distribution STATCOM for compensating voltage fluctuations, " IEEE Trans. Power Delivery, vol. 16, no. 2, pp.259–264, Apr. 2001.
16.  [18] T.Kulworawanichpong, "Optimizing AC Electric Railway Power Flows With Power Electronic Control",Phd Thesis, University of Birmingham, pp. 1-186,Nov. 2003.
17.  [19] H.Hu, Z.He,K.Wang, X.Ma and S.Gao ,"Power Quality Impact Assessment for High-speed Railway Associated with High-speed Trains Using Train Timetable —Part II: Verifications, Estimations and Applications", IEEE Trans. Power Delivery, pp. 1-10,Sept. 2015.
18.  [20] B. B., M. P., P. M., S. R., and V. F., "Digital Control and Simulation for Power Electronic Apparatus in Dual Voltage Railway Locomotive," IEEE Trans. Power Electron., vol.18, pp. 1146-1157, 2003.
19.  [21] S. Dieckerhoff, S. Bernet, and D. Krug, "Power loss-oriented evaluation of high voltage IGBTs and multilevel converters in transformerless traction applications," IEEE Trans. Power Electron., vol. 20, pp. 1328-1336, 2005.
20.  [22] J. Dixon, J. Pereda, C. Castillo, and S. Bosch, "Asymmetrical Multilevel Inverter for Traction Drives Using Only One DC Supply," IEEE Trans. Veh. Technol., vol. 59, pp. 3736-3743, 2010.
21.  [23] D. Zhong, B. Ozpineci, L. M. Tolbert, and J. N. Chiasson, "AC Cascaded H-Bridge Multilevel Boost Inverter With No Inductors for Electric/Hybrid Electric Vehicle Applications," IEEE Trans. Ind. Appl., vol. 45, pp. 963-970, 2009.
22.  [24] B. A., P.-D. M., D. P., R. Peña-Eguiluz, V. P. E., and K. X., "Weighted Control of Traction Drives With Parallel-Connected AC Machines," IEEE Trans. Ind. Electron., vol. 53, pp. 1799- 1806, 2006.
23.  [25] P. Drabek, Z. Peroutka, M. Pittermann, Ce, x, and M. dl, "New Configuration of Traction Converter With Medium-Frequency Transformer Using Matrix Converters," IEEE Trans. Ind. Electron., vol. 58, pp. 5041-5048, 2011.
24.  [26] G. W. Chang, H. W. Lin and S. K. Chen, "Modeling characteristics of harmonic currents generated by high-speed railway traction drive converters,"IEEE Trans. Power Del., vol. 19, no. 2, pp. 766-773, April 2004.
25.  [27] S. M. Mousavi G., A.Tabakhpour L. ,E.F. Fuchs and K.Al-Haddad, "Power Quality Issues in Railway Electrification: A Comprehensive Perspective",IEEE Trans. Ind. Electron., vol.62, pp.1-10,Des 2014.
26.  [28] R. Barnes and K. T. Wong, "Unbalance and harmonic studies for the Channel Tunnel railway system," IEE Proc. Elect. Power Appl., vol. 138, pp. 41-50, 1991. 


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Ezzati M, hosseinian H, Azad Faresani E. Usage of Flexible Distribution Generation to Provide 25 KV AC Power Supply of Electrical Train and Improvement of Power Quality Indexes in Upstream Grid. ieijqp 2017; 6 (1) :20-29
URL: http://ieijqp.ir/article-1-365-en.html


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Volume 6, Issue 1 (9-2017) Back to browse issues page
نشریه علمی- پژوهشی کیفیت و بهره وری صنعت برق ایران Iranian Electric Industry Journal of Quality and Productivity
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