Determination of Hotspot Temperature Margin for Rectangular Wire Windings Considering Insulation Thermal Degradation and Partial Discharge
暂无分享,去创建一个
He Zhang | M. Galea | P. Giangrande | Weiduo Zhao | V. Madonna | Yatai Ji
[1] Xiao Ju,et al. Voltage Stress Calculation and Measurement for Hairpin Winding of EV Traction Machines Driven by SiC MOSFET , 2022, IEEE Transactions on Industrial Electronics.
[2] G. Franceschini,et al. Investigation of the Temperature Effects on Copper Losses in Hairpin Windings , 2022, Machines.
[3] He Zhang,et al. Partial Discharge Investigation Under Humidity Conditions via Dissipation Factor and Insulation Capacitance Tip-Up Test , 2022, IEEE transactions on dielectrics and electrical insulation.
[4] M. Henke,et al. Modeling of Transient Overvoltages in Inverter-fed Machines with Hairpin Winding , 2022, International Symposium on Power Electronics, Electrical Drives, Automation and Motion.
[5] G. Belijar,et al. How does PDIV change during isothermal aging of magnet wire , 2022, 2022 IEEE Electrical Insulation Conference (EIC).
[6] Jin Wang,et al. Partial Discharge Inception Characteristics of Twisted Pairs Under Single Voltage Pulses Generated by Silicon-Carbide Devices , 2022, IEEE Transactions on Transportation Electrification.
[7] S. Lefebvre,et al. A Method for Endurance Testing of Enameled Round and Rectangular Wires for Motors Controlled by SiC-based Inverters , 2021, IEEE transactions on dielectrics and electrical insulation.
[8] C. Gerada,et al. Thermal Modelling of a Liquid Cooled Traction Machine with 8-layer Hairpin Windings , 2021, IECON 2021 – 47th Annual Conference of the IEEE Industrial Electronics Society.
[9] David Gerada,et al. Experimental Statistical Method Predicting AC Losses on Random Windings and PWM Effect Evaluation , 2021, IEEE Transactions on Energy Conversion.
[10] K. Hameyer,et al. Modeling of the Partial Discharge Process Between the Winding and the Stator of Low Voltage Machines for Traction Applications , 2021, IEEE transactions on energy conversion.
[11] M. Galea,et al. Reliability-Oriented Design of Inverter-Fed Low-Voltage Electrical Machines: Potential Solutions , 2021, Energies.
[12] Y. C. Chong,et al. A Thermal Modeling Approach and Experimental Validation for an Oil Spray-Cooled Hairpin Winding Machine , 2021, IEEE Transactions on Transportation Electrification.
[13] C. Gerada,et al. Electrical Machines for the More Electric Aircraft: Partial Discharges Investigation , 2021, IEEE Transactions on Industry Applications.
[14] P. Seri,et al. A Voltage Threshold in Operating Condition of PWM Inverters and its Impact on Reliability of Insulation Systems in Electrified Transport Applications , 2021, IEEE Transactions on Transportation Electrification.
[15] Ali Emadi,et al. 800-V Electric Vehicle Powertrains: Review and Analysis of Benefits, Challenges, and Future Trends , 2020, IEEE Transactions on Transportation Electrification.
[16] Giampaolo Buticchi,et al. A Time-Saving Approach for the Thermal Lifetime Evaluation of Low-Voltage Electrical Machines , 2020, IEEE Transactions on Industrial Electronics.
[17] Jun Jiang,et al. Optical Sensing of Partial Discharge in More Electric Aircraft , 2020, IEEE Sensors Journal.
[18] Nicola Bianchi,et al. A Comparison Between Random and Hairpin Winding in E-mobility Applications , 2020, IECON 2020 The 46th Annual Conference of the IEEE Industrial Electronics Society.
[19] Y. C. Chong,et al. Estimation of Oil Spray Cooling Heat Transfer Coefficients on Hairpin Windings With Reduced-Parameter Models , 2020, IEEE Transactions on Transportation Electrification.
[20] Nicola Bianchi,et al. Inter-turn Voltage in Hairpin Winding of Traction Motors Fed by High-Switching Frequency Inverters , 2020, 2020 International Conference on Electrical Machines (ICEM).
[21] G. Franceschini,et al. An Analytical Approach for the Design of Innovative Hairpin Winding Layouts , 2020, 2020 International Conference on Electrical Machines (ICEM).
[22] Chris Gerada,et al. Thermal Overload and Insulation Aging of Short Duty Cycle, Aerospace Motors , 2020, IEEE Transactions on Industrial Electronics.
[23] Giampaolo Buticchi,et al. Reliability-Oriented Design of Electrical Machines: The Design Process for Machines' Insulation Systems MUST Evolve , 2020, IEEE Industrial Electronics Magazine.
[24] Michael Galea,et al. Moving Toward a Reliability-Oriented Design Approach of Low-Voltage Electrical Machines by Including Insulation Thermal Aging Considerations , 2020, IEEE Transactions on Transportation Electrification.
[25] Ronghai Qu,et al. Overview of the rectangular wire windings AC electrical machine , 2019, CES Transactions on Electrical Machines and Systems.
[26] Paolo Giangrande,et al. Evaluation of strand‐to‐strand capacitance and dissipation factor in thermally aged enamelled coils for low‐voltage electrical machines , 2019, IET Science, Measurement & Technology.
[27] Fabrizio Marignetti,et al. AC Winding Losses in Automotive Traction E-Machines: A New Hybrid Calculation Method , 2019, 2019 IEEE International Electric Machines & Drives Conference (IEMDC).
[28] Hubert Piquet,et al. Overvoltage at motor terminals in SiC-based PWM drives , 2019, Math. Comput. Simul..
[29] Chris Gerada,et al. Thermal analysis of fault‐tolerant electrical machines for aerospace actuators , 2018, IET Electric Power Applications.
[30] Fabrizio Marignetti,et al. Modelling AC Winding Losses in a PMSM with High Frequency and Torque Density , 2018, 2018 IEEE Energy Conversion Congress and Exposition (ECCE).
[31] Oskar Wallmark,et al. Eddy Current Losses in a Hairpin Winding for an Automotive Application , 2018, 2018 XIII International Conference on Electrical Machines (ICEM).
[32] D. A. Howey,et al. Breakdown resistance analysis of traction motor winding insulation under thermal ageing , 2017, 2017 IEEE Energy Conversion Congress and Exposition (ECCE).
[33] Paolo Mancinelli,et al. Qualification of Hairpin Motors Insulation for Automotive Applications , 2017, IEEE Transactions on Industry Applications.
[34] R. Wrobel,et al. Experimentally Calibrated Thermal Stator Modeling of AC Machines for Short-Duty Transient Operation , 2017, IEEE Transactions on Industry Applications.
[35] Hiroki Kojima,et al. Measurement and evaluation of partial discharge inception voltage for enameled rectangular wires under AC voltage , 2016, IEEE Transactions on Dielectrics and Electrical Insulation.
[36] D. A. Howey,et al. Dielectric characteristics of electric vehicle traction motor winding insulation under thermal ageing , 2015, 2015 IEEE 15th International Conference on Environment and Electrical Engineering (EEEIC).
[37] Dan M. Ionel,et al. Ultrafast Steady-State Multiphysics Model for PM and Synchronous Reluctance Machines , 2015, IEEE Transactions on Industry Applications.
[38] Phil Mellor,et al. AC losses in high frequency electrical machine windings formed from large section conductors , 2014, 2014 IEEE Energy Conversion Congress and Exposition (ECCE).
[39] David G. Dorrell,et al. Proximity Losses in the Windings of High Speed Brushless Permanent Magnet AC Motors With Single Tooth Windings and Parallel Paths , 2013, IEEE Transactions on Magnetics.
[40] D. Roger,et al. Turn-to-turn capacitance variations correlated to PDIV for AC motors monitoring , 2013, IEEE Transactions on Dielectrics and Electrical Insulation.
[41] Changwoon Han,et al. Lifetime evaluation of class E electrical insulation for small induction motors , 2011, IEEE Electrical Insulation Magazine.
[42] Andrea Cavagnino,et al. Evolution and Modern Approaches for Thermal Analysis of Electrical Machines , 2009, IEEE Transactions on Industrial Electronics.
[43] Andrea Cavagnino,et al. Convection Heat Transfer and Flow Calculations Suitable for Electric Machines Thermal Models , 2008, IEEE Transactions on Industrial Electronics.
[44] Z.Q. Zhu,et al. Strand-level proximity losses in PM machines designed for high-speed operation , 2008, 2008 18th International Conference on Electrical Machines.
[45] Ian Culbert,et al. Electrical insulation for rotating machines : design, evaluation, aging, testing, and repair , 2003 .
[46] A. Szucs,et al. Macro elements in the finite element analysis of multi-conductor eddy-current problems , 2000 .
[47] Matthias Berth,et al. Electrical stress and failure mechanism of the winding insulation in PWM-inverter-fed low-voltage induction motors , 2000, IEEE Trans. Ind. Electron..
[48] Gian Carlo Montanari,et al. Aging phenomenology and modeling , 1993 .
[49] E. Persson,et al. Transient effects in application of PWM inverters to induction motors , 1991, Conference Record of 1991 Annual Pulp and Paper Industry Technical Conference.
[50] T. W. Dakin,et al. Effect of electric discharges on the breakdown of solid insulation , 1954, Transactions of the American Institute of Electrical Engineers, Part I: Communication and Electronics.
[51] K. Hameyer,et al. Influence of Ambient Conditions on the Qualification Tests of the Interturn Insulation in Low-Voltage Electrical Machines , 2022, IEEE Transactions on Industrial Electronics.
[52] Maximising E-Machine Efficiency with Hairpin Windings , 2021 .
[53] Stefano Nuzzo,et al. Partial Discharge Phenomena in Electrical Machines for the More Electrical Aircraft. Part II: Impact of Reduced Pressures and Wide Bandgap Devices , 2021, IEEE Access.
[54] Stefano Nuzzo,et al. Partial Discharges in Electrical Machines for the More Electrical Aircraft. Part III: Preventing Partial Discharges , 2021, IEEE Access.
[55] Thomas W. Dakin,et al. Electrical Insulation Deterioration Treated as a Chemical Rate Phenomenon , 1948, Transactions of the American Institute of Electrical Engineers.