Your browser does not support JavaScript!
http://iet.metastore.ingenta.com
1887

access icon free Power transformers monitoring based on electrical measurements: state of the art

Faults diagnosis in power transformers has been traditionally based on the insulation resistance measurement, polarisation index, analysis of dissolved gasses in oil, dissipation/power factor measurement, and partial discharges within many other alternatives. Originally, all these techniques presented an offline implementation, that is, with the transformer out of service. Currently, some of them, such as partial discharges measurement or gas analysis (gas chromatography), are carried out online in those cases in which the importance of a machine justifies it. These techniques have been recently complemented with new alternatives, such as frequency response analysis, an offline application technique. At the same time, in recent years, development of online diagnostic strategies has been carried out only based in monitoring of electrical variables. These techniques have the advantage of being economical in relation to traditional ones. Its development are incipient and with high growth potential. This study presents a review of the most important techniques and a critical comparison between them.

References

    1. 1)
      • 40. Blackburn, J.L., Domin, T.J.: ‘Protective relaying: principles and applications’ (CRC Press, New York, NY, USA2015, 4th edn.).
    2. 2)
      • 50. Tripathy, M., Maheshwari, R.P., Verma, H.K.: ‘Probabilistic neural-network-based protection of power transformer’, IET Electr. Power Appl., 2007, 1, (5), pp. 793798.
    3. 3)
      • 47. Verucchi, C., Acosta, G., Benger, F.: ‘A review on fault diagnosis of induction machines’, Latin Am. Appl. Res., 2008, 38, (2), pp. 113121.
    4. 4)
      • 21. CIGRE Technical Brochure 414: ‘Dielectric response diagnoses for transformer windings’ Working Group D1.01 CIGRE (TF 14), 2010.
    5. 5)
      • 102. Faifer, M., Ottoboni, R., Cristaldi, L., et al: ‘On-line analysis of power transformer bushings’. 2011 IEEE Int. Instrumentation and Measurement Technology Conf., Binjiang, China, 2011, pp. 16.
    6. 6)
      • 76. Schneider Electric: ‘Technical manual: transformer protection relay MiCOM P642, P643 and P645’, 2010.
    7. 7)
      • 52. Ozgonenel, O., Karagol, S.: ‘Power transformer protection based on decision tree approach’, IET Electr. Power Appl., 2014, 8, (7), pp. 251256.
    8. 8)
      • 74. Aktaibi, A., Rahman, M.A., Razali, A.M.: ‘An experimental implementation of the dq-axis wavelet packet transform hybrid technique for three-phase power transformer protection’, IEEE Trans. Ind. Appl., 2014, 50, (4), pp. 29192927.
    9. 9)
      • 42. ‘IEEE Guide for the Protection of Network Transformers’. IEEE Std C37.108-2002 (Revision of C37.108-1989), 2002, p. i31.
    10. 10)
      • 32. Subramaniam, A., Bhandari, S., Bagheri, M., et al: ‘Online condition monitoring and diagnosis techniques for dry type transformers incipient fault analysis through finite element modelling’. 2016 IEEE Transportation Electrification Conf. and Expo (ITEC), Asia-Pacific, 2016, pp. 024028.
    11. 11)
      • 39. Guzman, A., Fischer, N., Labuschagne, C.: ‘Improvements in transformer protection and control’. 2009 62nd Annual Conf. for Protective Relay Engineers, Austin, TX, USA, 2009, pp. 563579.
    12. 12)
      • 51. Tripathy, M., Maheshwari, R.P., Verma, H.K.: ‘Power transformer differential protection based on optimal probabilistic neural network’, IEEE Trans. Power Deliv., 2010, 25, (1), pp. 102112.
    13. 13)
      • 83. Yao, C., Zhao, Z., Chen, Y., et al: ‘Detection of internal winding faults in power transformers based on graphical characteristics of voltage and current’. 2014 ICHVE Int. Conf. on High Voltage Engineering and Application, Pozman, Poland, 2014, pp. 14.
    14. 14)
      • 65. Fischer, N., Labuschagne, C.A.: ‘Negative sequence differential element’, 2011.
    15. 15)
      • 37. Vahedi, A., Behjat, V.: ‘Online monitoring of power transformers for detection of internal winding short circuit faults using negative sequence analysis’, Eur. Trans. Electr. Power, 2011, 21, (1), pp. 196211.
    16. 16)
      • 96. Asadi, N., Kelk, H.M.: ‘Modeling, analysis, and detection of internal winding faults in power transformers’, IEEE Trans. Power Deliv., 2015, 30, (6), pp. 24192426.
    17. 17)
      • 29. Eissa, M.M.: ‘A novel digital directional transformer protection technique based on wavelet packet’, IEEE Trans. Power Deliv., 2005, 20, (3), pp. 18301836.
    18. 18)
      • 94. Peng, L., Bao-hui, Z., Zhi-guo, H., et al: ‘Research on monitoring of winding deformation of power transformer by on-line parameter estimation about leakage inductance’. 2006 Int. Conf. on Power System Technology, Chongqing, China, 2006, pp. 16.
    19. 19)
      • 106. Jacob, N.D., Kordi, B., McDermid, W.M.: ‘Partial discharge propagation distortion and implications for feature extraction methods in on-line monitoring’. 2010 IEEE Int. Symp. on Electrical Insulation, San Diego, CA, USA, 2010, pp. 14.
    20. 20)
      • 67. CIGRE Technical Brochure 463: ‘Modern Techniques for Protecting, controlling and monitoring power transformers’, Working Group B5.05, CIGRE, 2011.
    21. 21)
      • 62. Brncic, I., Gajic, Z., Einarsson, T.: ‘Transformer differential protection improved by implementation of negative-sequence currents’ (ABB Power Technologies, Västerås, Sweden, 2006).
    22. 22)
      • 90. Bagheri, M., Naderi, M.S., Blackburn, T., et al: ‘Practical challenges in online transformer winding deformation diagnostics’. 2011 2nd Int. Conf. on Electric Power and Energy Conversion Systems (EPECS), Sharjah, United Arab Emirates, 2011, pp. 16.
    23. 23)
      • 17. CIGRE Technical Brochure 342: ‘Mechanical-Condition Assessment of Transformer Windings Using Frequency Response Analysis (FRA)’ Working Group A2.26 CIGRE, 2008,.
    24. 24)
      • 105. Koch, M., Krüger, M.: ‘A new method for on-line monitoring of bushings and partial discharges of power transformers’. 2012 IEEE Int. Conf. on Condition Monitoring and Diagnosis, Bali, Indonesia, 2012, pp. 12051208.
    25. 25)
      • 93. Zhang, H., Yang, B., Xu, W., et al: ‘Dynamic deformation analysis of power transformer windings in short-circuit fault by FEM’, IEEE Trans. Appl. Supercond., 2014, 24, (3), pp. 14.
    26. 26)
      • 46. Bhide, R.S., Srinivas, M.S.S., Voloh, I.: ‘Detection of inter-turn fault in transformers at incipient level’. 2014 Int. Conf. on Electrical Machines (ICEM), Berlin, Germany, 2014, pp. 15421548.
    27. 27)
      • 20. Abu-Elanien, A.E.B., Salama, M.M.A.: ‘Asset management techniques for transformers’, Electr. Power Syst. Res., 2010, 80, (4), pp. 456464.
    28. 28)
      • 70. Eissa, M.M., Shehab-Eldin, E.H., Masoud, M.E., et al: ‘Digital technique for power transformer fault detection based on positive sequence admittance approach’. 2008 12th Int. Middle-East Power System Conf., Aswan, Egypt, 2008, pp. 517522.
    29. 29)
      • 13. Zhang, X., Hao, Z., Chen, G., et al: ‘Leakage inductance variation based monitoring of transformer winding deformation’. 2015 IEEE 15th Int. Conf. on Environment and Electrical Engineering (EEEIC), Rome, Italy, 2015, pp. 17591764.
    30. 30)
      • 79. Noshad, B., Razaz, M., Seifossadat, S.G.: ‘A new algorithm based on Clarke's transform and discrete wavelet transform for the differential protection of three-phase power transformers considering the ultra-saturation phenomenon’, Electr. Power Syst. Res., 2014, 110, (Suppl. C), pp. 924.
    31. 31)
      • 59. ABB: ‘Technical manual: transformer protection RET670 2.0’, 2014.
    32. 32)
      • 61. Gajić, Z., Brnčić, I., Hillström, B., et al: ‘Sensitive turn-to-turn fault protection for power transformers’. CIGRE Study Committee B5 Colloquium, Calgary, Canada, September 2005.
    33. 33)
      • 8. Rahman, M.A., Jeyasurya, B.: ‘A state-of-the-art review of transformer protection algorithms’, IEEE Trans. Power Deliv., 1988, 3, (2), pp. 534544.
    34. 34)
      • 9. Bharat Heavy Electricals Limited:Transformers’ (Tata McGraw-Hill, New Delhi, India, 2003, 2nd edn.).
    35. 35)
      • 91. Al-Ammar, E.: ‘Development of a novel method for transformer failures detection caused by transportation or short circuit’ (Arizona State University, Tempe, Arizona, 2007).
    36. 36)
      • 80. Park, R.H.: ‘Two-reaction theory of synchronous machines generalized method of analysis-part I’, Trans. Am. Inst. Electr. Eng., 1929, 48, (3), pp. 716727.
    37. 37)
      • 60. Gajic, Z.: ‘Method and device for fault detection in an n-winding three-phase power transformer’, 2011.
    38. 38)
      • 45. Kang, Y.C., Lee, B.E., Kang, S.H., et al: ‘Transformer protection based on the increment of flux linkages’, IEE Proc. – Gener., Transm. Distri., 2004, 151, (4), pp. 548554.
    39. 39)
      • 54. Ngaopitakkul, A., Kunakorn, A.: ‘Internal fault classification in transformer windings using combination of discrete wavelet transforms and … 365 internal fault classification in transformer windings using combination of discrete wavelet transforms and back-propagation neural networks’, 2006.
    40. 40)
      • 63. Kasztenny, B., Thompson, M., Fischer, N.: ‘Fundamentals of short-circuit protection for transformers’. IEEE2010 63rd Annual Conf. for Protective Relay Engineers, College Station, TX, USA, 2010, pp. 113.
    41. 41)
      • 18. CIGRE Technical Brochure 445: ‘Guide for Transformer Maintenance’ Working Group A2.34 CIGRE, 2011.
    42. 42)
      • 73. Wu, W., Ji, T., Li, M., et al: ‘Using mathematical morphology to discriminate between internal fault and inrush current of transformers’, IET Gener. Transm. Distrib., 2016, 10, (1), pp. 7380.
    43. 43)
      • 72. Ashrafian, A., Naderi, M.S., Gharehpetian, G.B.: ‘Characterisation of internal incipient faults in transformers during impulse test using index based on S matrix energy and standard deviation’, IET Electr. Power Appl., 2012, 6, (4), pp. 225232.
    44. 44)
      • 25. Behjat, V., Vahedi, A., Setayeshmehr, A., et al: ‘Diagnosing shorted turns on the windings of power transformers based upon online FRA using capacitive and inductive couplings’, IEEE Trans. Power Deliv., 2011, 26, (4), pp. 21232133.
    45. 45)
      • 104. Badicu, L.V., Broniecki, U., Koltunowicz, W., et al: ‘Detection of bushing insulation defects by diagnostic monitoring’. 2016 Int. Conf. on Condition Monitoring and Diagnosis (CMD), Xi'an, China, 2016, pp. 6468.
    46. 46)
      • 64. Kasztenny, B., Fischer, N., Altuve, H.J.: ‘Negative-sequence differential protection-principles, sensitivity, and security’. IEEE 2015 68th Annual Conf. for Protective Relay Engineers, College Station, TX, USA, 2015, pp. 364378.
    47. 47)
      • 30. Acosta, G.G., Verucchi, C.J., Gelso, E.R.: ‘A current monitoring system for diagnosing electrical failures in induction motors’, Mech. Syst. Signal Process., 2006, 20, (4), pp. 953965.
    48. 48)
      • 7. Berzoy, A., Mohamed, A.A.S., Mohammed, O.A.: ‘Inter-turn short-circuit fault model for magnetically coupled circuits: a general study’. 2016 IEEE Industry Applications Society Annual Meeting, Portland, OR USA, 2016, pp. 17.
    49. 49)
      • 57. Ramesh, K., Sushama, M.: ‘Inter-turn fault detection in power transformer using fuzzy logic’. 2014 Int. Conf. on Science Engineering and Management Research (ICSEMR), Chennai, India, 2014, pp. 15.
    50. 50)
      • 69. Ballal, M.S., Suryawanshi, H.M., Mishra, M.K., et al: ‘Interturn faults detection of transformers by diagnosis of neutral current’, IEEE Trans. Power Deliv., 2016, 31, (3), pp. 10961105.
    51. 51)
      • 14. Mirzaei, H.R., Akbari, A., Gockenbach, E., et al: ‘Advancing new techniques for UHF PDdetection and localization in the power transformers in the factory tests’, IEEE Trans. Dielectr. Electr. Insul., 2015, 22, (1), pp. 448455.
    52. 52)
      • 34. Oliveira, L.M.R., Cardoso, A.J.M.: ‘Extended Park's vector approach-based differential protection of three-phase power transformers’, IET Electr. Power Appl., 2012, 6, (8), pp. 463472.
    53. 53)
      • 31. Ruschetti, C., Verucchi, C., Bossio, G., et al: ‘Rotor demagnetization effects on permanent magnet synchronous machines’, Energy Convers. Manage., 2013, 74, (Suppl. C), pp. 18.
    54. 54)
      • 41. ‘IEEE Guide for Protecting Power Transformers’. IEEE Std C37.91-2008 (Revision of IEEE Std C37.91-2000), 2008, pp. 1139.
    55. 55)
      • 71. Venikar, P.A., Ballal, M.S., Umre, B.S., et al: ‘Sensitive incipient inter-turn fault detection algorithm for power transformers’, IET Electr. Power Appl., 2016, 10, (9), pp. 858868.
    56. 56)
      • 78. Barbosa, D., Netto, U.C., Coury, D.V., et al: ‘Power transformer differential protection based on Clarke's transform and fuzzy systems’, IEEE Trans. Power Deliv., 2011, 26, (2), pp. 12121220.
    57. 57)
      • 85. Masoum, A.S., Hashemnia, N., Abu-Siada, A., et al: ‘Online transformer internal fault detection based on instantaneous voltage and current measurements considering impact of harmonics’, IEEE Trans. Power Deliv., 2017, 32, (2), pp. 587598.
    58. 58)
      • 24. Abeywickrama, N., Bengtsson, T., Saers, R.: ‘Transformer explorer: monitoring transformer status by fundamental frequency signals’. 2016 Int. Conf. on Condition Monitoring and Diagnosis (CMD), Xi'an, China, 2016, pp. 396399.
    59. 59)
      • 97. Heathcote, M.: ‘J & P transformer book’ (Newnes, Oxford, UK, 2007, 13th edn.).
    60. 60)
      • 101. Cristaldi, L., Faifer, M., Laurano, C., et al: ‘Monitoring of power transformer bushings in high voltage substations’. 2015 IEEE Int. Workshop on Applied Measurements for Power Systems (AMPS), Aachen, Germany, 2015, pp. 7277.
    61. 61)
      • 53. Ashrafian, A., Vahidi, B., Mirsalim, M.: ‘Time-time-transform application to fault diagnosis of power transformers’, IET Gener. Transm. Distrib., 2014, 8, (6), pp. 11561167.
    62. 62)
      • 43. Zhang, W., Tan, Q., Miao, S., et al: ‘Self-adaptive transformer differential protection’, IET Gener. Transm. Distrib., 2013, 7, (1), pp. 6168.
    63. 63)
      • 12. Chapman, S.J.: ‘Electric machinery fundamentals’, (McGraw Hill, New York, NY, USA, 2004, 4th edn.).
    64. 64)
      • 75. Ghunem, R.A., El-Shatshat, R., Ozgonenel, O.: ‘A novel selection algorithm of a wavelet-based transformer differential current features’, IEEE Trans. Power Deliv., 2014, 29, (3), pp. 11201126.
    65. 65)
      • 44. Sachdev, M.S., Sidhu, T.S., Wood, H.C.: ‘A digital relaying algorithm for detecting transformer winding faults’, IEEE Trans. Power Deliv., 1989, 4, (3), pp. 16381648.
    66. 66)
      • 48. Shah, A.M., Bhalja, B.R.: ‘Discrimination between internal faults and other disturbances in transformer using the support vector machine-based protection scheme’, IEEE Trans. Power Deliv., 2013, 28, (3), pp. 15081515.
    67. 67)
      • 4. Álvarez, R.E., del Pozo, M.D.: ‘Mantenimiento de transformadores de potencia’. 2007 XII Encuentro Regional Iberoamericano de CIGRE, Foz de Iguazú, Brasil, 2007.
    68. 68)
      • 1. Bo, Z., Weller, G., Lomas, T.: ‘A new technique for transformer protection based on transient detection’, IEEE Trans. Power Deliv., 2000, 15, (3), pp. 870875.
    69. 69)
      • 49. Bigdeli, M., Vakilian, M., Rahimpour, E.: ‘Transformer winding faults classification based on transfer function analysis by support vector machine’, IET Electr. Power Appl., 2012, 6, (5), pp. 268276.
    70. 70)
      • 19. ‘IEEE Guide for Diagnostic Field Testing of Fluid-Filled Power Transformers, Regulators, and Reactors’. IEEE Std C57.152-2013, 2013, pp. 1121.
    71. 71)
      • 68. Faiz, J., Gharaeei, J., Lotfifard, S.: ‘Detection, location, and estimation of severity of interturn faults in power transformers’. 2016 10th Int. Conf. on Compatibility, Power Electronics and Power Engineering (CPE-POWERENG), Bydgoszcz, Poland, 2016, pp. 3944.
    72. 72)
      • 2. CIGRE Technical Brochure 227: ‘Life Management Techniques For Power Transformers’, Working Group A2.18, CIGRE, 2003.
    73. 73)
      • 23. IEC 60076-1:2011, Edition 3.0: ‘Power transformers - Part 1: General’.
    74. 74)
      • 28. Kasztenny, B., Kezunovic, M.: ‘Digital relays improve protection of large transformers’, IEEE Comput. Appl. Power, 1998, 11, (4), pp. 3945.
    75. 75)
      • 38. Medeiros, R.P., Costa, F.B., Silva, K.M.: ‘Power transformer differential protection using the boundary discrete wavelet transform’, IEEE Trans. Power Deliv., 2016, 31, (5), pp. 20832095.
    76. 76)
      • 89. Klomjit, J., Ngaopitakkul, A.: ‘Behaviour of interturn fault in power transformer winding using high frequency components of discrete wavelet transform’. 2012 15th Int. Conf. on Electrical Machines and Systems (ICEMS), Sapporo, Japan, 2012, pp. 16.
    77. 77)
      • 6. Wang, H., Butler, K.L.: ‘Finite element analysis of internal winding faults in distribution transformers’, IEEE Trans. Power Deliv., 2001, 16, (3), pp. 422428.
    78. 78)
      • 87. Venikar, P.A., Ballal, M.S., Umre, B.S., et al: ‘A novel offline to online approach to detect transformer interturn fault’, IEEE Trans. Power Deliv., 2016, 31, (2), pp. 482492.
    79. 79)
      • 81. Oliveira, L.M.R., Cardoso, A.J.M.: ‘Comparing power transformer turn-to-turn faults protection methods: negative sequence component versus space-vector algorithms’, IEEE Trans. Ind. Appl., 2017, 53, (3), pp. 28172825.
    80. 80)
      • 100. Jaya, M., Rink, Y., Leibfried, T.: ‘Adapting frequency domain spectroscopy as an online monitoring tool for the insulation of power transformers’. 2012 IEEE Int. Conf. on Condition Monitoring and Diagnosis, Bali, Indonesia, 2012, pp. 501504.
    81. 81)
      • 99. Nikjoo, R., Taylor, N., Edin, H.: ‘Insulation condition assessment of power transformer bushings by utilizing high voltage lightning impulses’. 2015 IEEE Eindhoven PowerTech, Eindhoven, Netherlands, 2015, pp. 14.
    82. 82)
      • 36. Wiszniewski, A., Rebizant, W., Schiel, L.: ‘New algorithms for power transformer inter-turn fault protection’, Electr. Power Syst. Res., 2009, 79, (10), pp. 14541461.
    83. 83)
      • 84. Masoum, A.S., Hashemnia, N., Abu-Siada, A., et al: ‘Performance evaluation of on-line transformer winding short circuit fault detection based on instantaneous voltage and current measurements’. 2014 IEEE PES General Meeting Conf. & Exposition, National Harbor, MD, USA, 2014, pp. 15.
    84. 84)
      • 27. Liang, Z.-R., Zhen, X.-F., Niu, S.-S.: ‘DC resistance measurement for low voltage side winding of large-scale transformer’, 2007.
    85. 85)
      • 86. Venikar, P.A., Ballal, M.S., Umre, B.S., et al: ‘Transformer incipient inter-turn fault detection based on no-load current harmonic analysis’. 2015 IEEE Eindhoven PowerTech, Eindhoven, Netherlands, 2015, pp. 15.
    86. 86)
      • 10. Zhalefar, F., Sanaye-Pasand, M.: ‘Studying effect of location and resistance of inter-turn faults on fault current in power transformers’. 2007 42nd Int. Universities Power Engineering Conf., Brighton, UK, 2007, pp. 138142.
    87. 87)
      • 98. Stirl, T., Skrzypek, R., Tenbohlen, S., et al: ‘On-line condition monitoring and diagnosis for power trans-formers their bushings, tap changer and insulation system’. Condition Monitoring Conf. (CMD), Changwon City, Korea, 2006, pp. 16.
    88. 88)
      • 82. Abu-Siada, A., Islam, S.: ‘A novel online technique to detect power transformer winding faults’, IEEE Trans. Power Deliv., 2012, 27, (2), pp. 849857.
    89. 89)
      • 35. Zacharias, D., Gokaraju, R.: ‘Prototype of a negative-sequence turn-to-turn fault detection scheme for transformers’, IEEE Trans. Power Deliv., 2016, 31, (1), pp. 122129.
    90. 90)
      • 58. Babiy, M., Gokaraju, R., Garcia, J.C.: ‘Turn-to-turn fault detection in transformers using negative sequence currents’. 2011 IEEE Electrical Power and Energy Conf., Winnipeg, MB, Canada, 2011, pp. 158163.
    91. 91)
      • 88. Novillo, S.X.Q., Ortega, E.M.I.: ‘State of art, THD minimization in distribution systems based on wavelet transform’, IEEE Latin Am. Trans., 2016, 14, (4), pp. 16981704.
    92. 92)
      • 92. Sathya, M.A., Thomas, A.J., Usa, S.: ‘Prediction of transformer winding displacement from frequency response characteristics’. 2013 IEEE 1st Int. Conf. on Condition Assessment Techniques in Electrical Systems (CATCON), Kolkata, India, 2013, pp. 303307.
    93. 93)
      • 16. Sarria-Arias, J.T., Guerrero-Bello, N.A., Rivas-Trujillo, E.: ‘Estado del arte del análisis de gases disueltos en transformadores de potencia’, Facultad de Ingeniería, 2014, 23, pp. 105122.
    94. 94)
      • 15. CIGRE Technical Brochure 409: ‘Report on Gas Monitors for Oil-Filled Electrical Equipment’ Working Group D1.01 CIGRE (TF 15), 2010.
    95. 95)
      • 77. Guerreiro, M., Pires, V.F.: ‘A transformer differential relay based on a multiple park transformation’. 2007 Int. Conf. on Power Engineering, Energy and Electrical Drives, Setubal, Portugal, 2007, pp. 400404.
    96. 96)
      • 22. Zhou, K., Cai, L.: ‘Online measuring power factor in AC resistance spot welding’, IEEE Trans. Ind. Electron., 2014, 61, (1), pp. 575582.
    97. 97)
      • 55. Ngaopitakkul, A., Pothisarn, C., Klomjit, J., et al: ‘Improvement of algorithm to reduce training time of back-propagation neural network for transformer interturn fault location’. 2012 Int. Conf. on Wavelet Analysis and Pattern Recognition, Xi'an, China, 2012, pp. 131136.
    98. 98)
      • 66. Schweitzer Engineering Laboratories, Inc., Pullman, WA, USA: ‘SEL 487E-3 transformer differential relay data sheet’, 2012.
    99. 99)
      • 56. Khorashadi-Zadeh, H., Li, Z.: ‘A sensitive ANN based differential relay for transformer protection with security against CT saturation and tap changer operation’, 2007.
    100. 100)
      • 3. Bartley, W.H.: ‘Analysis of transformer failures’, 2003.
    101. 101)
      • 26. Rybel, T.D., Singh, A., Vandermaar, J.A., et al: ‘Apparatus for online power transformer winding monitoring using bushing tap injection’, IEEE Trans. Power Deliv., 2009, 24, (3), pp. 9961003.
    102. 102)
      • 95. Bengtsson, T., Abeywickrama, N.: ‘On-line monitoring of power transformer by fundamental frequency signals’. in Cigré 2012, paper A2-110, 2012, pp. 18.
    103. 103)
      • 103. Faifer, M., Ottoboni, R., Toscani, S.: ‘A measurement system for the on-line diagnostics of power transformer bushings’. 2011 IEEE Int. Workshop on Applied Measurements for Power Systems (AMPS), Aachen, Germany, 2011, pp. 8084.
    104. 104)
      • 33. Hunt, R., Schaefer, J., Bentert, B.: ‘Practical experience in setting transformer differential inrush restraint’. 2008 61st Annual Conf. for Protective Relay Engineers, College Station, TX, USA, 2008, pp. 118141.
    105. 105)
      • 5. Bossi, A., Dind, J., Frisson, J., et al: ‘An international survey on failures in large power transformers in service’, Cigré Electra, 1983, 88, pp. 2148.
    106. 106)
      • 11. Wiszniewski, A., Solak, K., Rebizant, W., et al: ‘Calculation of the lowest currents caused by turn-to-turn short-circuits in power transformers’, Int. J. Electr. Power Energy Syst., 2018, 95, (Suppl. C), pp. 301306.
http://iet.metastore.ingenta.com/content/journals/10.1049/iet-gtd.2017.2086
Loading

Related content

content/journals/10.1049/iet-gtd.2017.2086
pub_keyword,iet_inspecKeyword,pub_concept
6
6
Loading
This is a required field
Please enter a valid email address