Details of the Researcher

PHOTO

Taku Noda
Section
Graduate School of Engineering
Job title
Professor
Degree
  • Ph.D. (Doshisha University)

  • Master of Engineering (Doshisha University)

e-Rad No.
90371278

Research History 6

  • 2026/04 - Present
    Tohoku University Graduate School of Engineering Professor

  • 1997/04 - 2026/03
    Central Research Institute of Electric Power Industry

  • 2012 - 2015
    Shibaura Institute of Technology Dept. of Electrical Engineering, Faculty of Engineering Lecturer

  • 2005 - 2008
    Doshisha University Graduate School of Engineering Visiting Professor

  • 2001 - 2002
    The University of Toronto Dept. of Electrical & Computer Engineering Visiting Scientist

  • 1995 - 1996
    Dept. of Energy, the United States of America BPA (Bonneville Power Administration) Consultant

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Education 3

  • Doshisha University Dept. of Electrical Engineering, Faculty of Engineering PhD Degree Program

    1994/04 - 1997/03

  • Doshisha University Dept. of Electrical Engineering, Faculty of Engineering Mater's Degree Program

    1992/04 - 1994/03

  • Doshisha University Faculty of Engineering Dept. of Electronics

    1988/04 - 1992/03

Committee Memberships 33

  • IEEJ R&D Steering Committee for the Power and Energy Society (BUN0000) Member (2)

    2026/04 - Present

  • IEEJ Committee on Power Engineering (BPE 0000) Chairperson

    2026/04 - Present

  • PSCC (Power System Computation Conference) 2018, 2020, 2022, 2024 and 2026 Technical Program Committee Member

    2018 - Present

  • IPST (International Conference on Power System Transients) Steering Committee Secretary

    2009 - Present

  • IEEJ Committee on Power Engineering (BPE 0000) Member (1)

    2025 - 2026/03

  • Electric Technology Research Association (ETRA) Committee on Sophistication and Labor-Saving of Maintenance and Construction of Distribution Facilities Chairperson

    2022 - 2025

  • NEDO Leading Research Program / New Technology Leading Research Program for Energy and Environment, R&D Promotion Committee on Development of High-Efficiency Smart SST for DC Grids Enabling Massive Integration of Renewable Energy Member

    2022 - 2024

  • IPST (International Conference on Power System Transients) 2003 and 2023 Technical Program Committee Co-Chairperson

    2003 - 2023

  • The 8th IEEE World Forum on Internet of Things (IoT) - Vert-5 (Energy & Power) Co-Chairperson

    2022 - 2022

  • IEEE Power & Energy Society (PES) Japan Joint Chapter Chairperson

    2021 - 2022

  • IPST (International Conference on Power System Transients) 1999, 2001, 2005, 2007, 2009, 2011, 2013, 2015, 2017, 2019 and 2021 Technical Program Committee Member

    1999 - 2021

  • IEEE Power & Energy Society (PES) Japan Joint Chapter Board Member

    2014 - 2020

  • IEEJ Investigating Committee on Practical Modeling and Simulation Technologies in Power Electronics Systems Member

    2017 - 2019

  • NEDO WG on DC Transmission System Development, Next-Generation Offshore DC Transmission System Development Project Member

    2015 - 2019

  • NEDO Integration Promotion Committee on Next-Generation Offshore DC Transmission System Development Project Member

    2015 - 2019

  • CIGRE WG B4.71 WG on Application Guide for the Insulation Coordination of Voltage Source Converter HVDC (VSC HVDC) Stations Corresponding Member

    2015 - 2018

  • IEEJ Investigating R&D Committee on Practical Modeling and Simulation Techniques for Power Electronics Systems (DSPC8059) Member

    2015 - 2017

  • IEC SC77A Drafting Committee for JIS (TS) on Current Emissions in the 2 to 9 kHz Range (JISI0003) Member

    2012 - 2014

  • IEEJ Committee on Semiconductor Power Converters (DSPC0000) Member (2)

    2012 - 2014

  • IEEJ Cooperative Research Committee on Standard Model Development for Power Electronics Simulations (DSPC8045) Chairperson

    2012 - 2014

  • IEEE Transactions on Power Delivery Editorial Board Board Member

    2008 - 2014

  • IEEJ Committee on Home Page of the Power and Energy Society (SPB 2002) Member

    2011 - 2013

  • IEEJ Board Member Meeting of the Power and Energy Society (SPB 0000) Member

    2011 - 2013

  • IEEJ Cooperative Research Committee on Transient Simulations in the Smart Grid Era (BHV 8009) Secretary

    2011 - 2013

  • IEEJ Cooperative Research Committee on Element Technology and Systematization of New Power and Energy Systems (BPE 8003) Member

    2011 - 2012

  • IEEJ Cooperative Research Committee on Application Technologies of Simulations in Power Electronics Systems (DSPC8041) Secretary

    2010 - 2012

  • IEC SC77A WG on Higher-Order Harmonics (IEC 77A9) Member

    2009 - 2012

  • IEEJ Cooperative Research Committee on Advanced Power and Energy Systems (BPE 8001) Member

    2008 - 2010

  • IEEJ Cooperative Research Committee on Systematic Modeling and Simulations of Power Electronics Systems (DSPC8035) Member

    2007 - 2009

  • IEEJ Cooperative Research Committee on Modeling and Simulation Techniques for Power Electronics Systems (DSPC8029) Member

    2005 - 2007

  • IEEJ Investigating Committee on Applications of Numerical Electromagnetic Transient Analysis Methods (BHV 1081) member

    2004 - 2007

  • IEEJ Investigation Committee on Surge Phenomena in Low-Voltage and Control Circuits (BHV 1079) member

    2004 - 2007

  • IEEJ Cooperative Research Committee on Modeling and Simulations of Power Electronic Systems (DSPC8023) member

    2002 - 2004

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Professional Memberships 2

  • The Institute of Electrical and Electronics Engineers (IEEE)

    1993 - Present

  • The Institute of Electrical Engineers of Japan (IEEJ)

    1991 - Present

Research Interests 6

  • Energy systems

  • Power systems

  • Energy system applications of power electronics

  • Electromagnetic transient (EMT) simulations of power systems

  • Overvoltage simulations

  • Numerical electromagnetic field simulations

Research Areas 1

  • Manufacturing technology (mechanical, electrical/electronic, chemical engineering) / Electrical power engineering /

Awards 10

  1. The IEEJ Industry Applications Society Academic Activity Award

    2019 The Industry Applications Society (IAS), The Institute of Electrical Engineers of Japan (IEEJ) Generic Models for the Simulation of Power Electronics Systems: Smart-Grid, Motor-Drive and Automotive Applications

  2. The IEEJ Outstanding Technical Activity Award

    2019 The Institute of Electrical Engineers of Japan (IEEJ) Generic Models for the Simulation of Power Electronics Systems: Smart-Grid, Motor-Drive and Automotive Applications

  3. IEEE Transactions on Power Delivery Exceptional Reviewer

    2017 IEEE Power & Energy Society

  4. The Electrical Science and Technology Promotion Award

    2016 The Foundation for Electrical Science and Technology Promotion Development of the EMT Simulation Program XTAP for Power Systems and Its Applications

  5. The IEEJ Technical Development Award

    2016 The Institute of Electrical Engineers of Japan (IEEJ) Development of the Advanced EMT Simulation Program XTAP for Power Systems and Its Applications

  6. Outstanding Paper Award

    2009 Power and Energy Society (PES), The Institute of Electrical Engineers of Japan (IEEJ) A Simulation Study of Lightning Surge Characteristics of a Distribution Line Using the FDTD Method

  7. Working Group Award

    2009 IEEE Power & Energy Society WG on Modeling and Analysis of System Transients Using Digital Programs

  8. The IEEJ Technical Development Award

    2009 The Institute of Electrical Engineers of Japan (IEEJ) Establishment of the Surge Simulation Methods Based on the Numerical Electromagnetic Field Computations and the Development of the General-Purpose Program VSTL

  9. The IEEJ Distinguished Paper Award

    2008 The Institute of Electrical Engineers of Japan (IEEJ) A Tower Model for Lightning Overvoltage Studies Based on the Result of an FDTD Simulation

  10. The First Programming Contest for Junior High School Students

    1982 Ministry of International Trade and Industry Award

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Papers 92

  1. International Conference on Power Systems Transients 2023 [News Feed]

    Taku Noda

    IEEE Electrification Magazine 2023/12

    DOI: 10.1109/MELE.2023.3320556  

  2. Automatic Generation of Power System Simulation Data Cases From Utility Databases: Introducing a new technology

    Taku Noda, Tomo Tadokoro, Takashi Dozaki

    IEEE Electrification Magazine 2023/12

    DOI: 10.1109/MELE.2023.3320521  

  3. Development of a three‐phase power‐flow calculation method for distribution systems with automatic handling of arbitrary winding connections of transformers

    Guilherme Cirilo Leandro, Taku Noda

    Electrical Engineering in Japan 2023/12

    DOI: 10.1002/eej.23445  

  4. Development of a method for calculating the transmission-line constants of cables installed in a rectangular tunnel

    Tanaka, Y., Yonezawa, R., Noda, T.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 215 (2) 2022

    DOI: 10.1002/eej.23378  

    ISSN: 1520-6416 0424-7760

  5. Synthesis of a Transfer Function with Real Poles from Tabulated Frequency Response Data for Transmission-Line Impedance Modeling

    Noda, T.

    IEEE Access 10 2022

    DOI: 10.1109/ACCESS.2022.3198939  

    ISSN: 2169-3536

  6. Comparison and Selection of Grid-Tied Inverter Models for Accurate and Efficient EMT Simulations

    Sano, K., Horiuchi, S., Noda, T.

    IEEE Transactions on Power Electronics 37 (3) 2022

    DOI: 10.1109/TPEL.2021.3117633  

    ISSN: 1941-0107 0885-8993

  7. An Inverter Model Simulating Accurate Harmonics with Low Computational Burden for Electromagnetic Transient Simulations

    Horiuchi, S., Sano, K., Noda, T.

    IEEE Transactions on Power Electronics 36 (5) 2021

    DOI: 10.1109/TPEL.2020.3026721  

    ISSN: 1941-0107 0885-8993

  8. Development of a method for calculating the transmission-line constants of a three-phase enclosure-type gas insulated bus taking the proximity effect into account

    Tanaka, Y., Yonezawa, R., Noda, T.

    IEEJ Transactions on Power and Energy 141 (2) 2021

    DOI: 10.1541/ieejpes.141.154  

    ISSN: 1348-8147 0385-4213

  9. Development of a method for calculating the transmission-line constants of a three-phase enclosure-type gas insulated bus taking the proximity effect into account

    Tanaka, Y., Yonezawa, R., Noda, T.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 214 (2) 2021

    DOI: 10.1002/eej.23331  

    ISSN: 1520-6416 0424-7760

  10. Lightning fault rate calculation of transmission lines taking statistical variation of arching-horn flashovers into account,アークホーン・フラッシオーバの確率的なばらつきを考慮した送電線雷事故率計算

    Itamoto, N., Kawamura, H., Shinjo, K., Tanaka, Y., Noda, T.

    IEEJ Transactions on Power and Energy 140 (2) 2020

    DOI: 10.1541/ieejpes.140.126  

    ISSN: 1348-8147 0385-4213

  11. A method for estimating the current-flux curve of a three-phase transformer for electromagnetic transient simulations of inrush currents,励磁突入電流の瞬時値解析を目的とした三相変圧器の電流磁束特性推定手法

    Kuno, T., Noda, T., Ichikawa, M.

    IEEJ Transactions on Power and Energy 140 (2) 2020

    DOI: 10.1541/ieejpes.140.34  

    ISSN: 1348-8147 0385-4213

  12. A method for measuring underground cable constants under electromagnetic induction effects

    Noda, T., Tadokoro, T., Mori, R., Nakama, H., Kaneko, T., Taira, T.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 209 (3-4) 2019

    DOI: 10.1002/eej.23247  

    ISSN: 1520-6416 0424-7760

  13. A method for measuring underground cable constants under electromagnetic induction effects,電磁誘導影響下にある地中ケーブル送電線の線路定数測定手法

    Noda, T., Tadokoro, T., Mori, R., Nakama, H., Kaneko, T., Taira, T.

    IEEJ Transactions on Power and Energy 139 (9) 2019

    DOI: 10.1541/ieejpes.139.533  

    ISSN: 1348-8147 0385-4213

  14. An electromagnetic transient simulation model of grid-connected inverters for dynamic voltage analysis of distribution systems

    Sano, K., Yonezawa, R., Noda, T.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 206 (4) 2019

    DOI: 10.1002/eej.23179  

    ISSN: 1520-6416 0424-7760

  15. Simulation of switching overvoltages and validation with field tests

    Cervantes, M., Kocar, I., Montenegro, A., Goldsworthy, D., Tobin, T., Mahseredjian, J., Ramos, R., Marti, J., Noda, T., Ametani, A., Martin, C.

    IEEE Transactions on Power Delivery 33 (6) 2018

    DOI: 10.1109/TPWRD.2018.2834138  

    ISSN: 0885-8977

  16. Frequency-domain modeling of time-periodic switched electrical networks: A review

    Ramirez, A., Abdel-Rahaman, M., Noda, T.

    Ain Shams Engineering Journal 9 (4) 2018

    DOI: 10.1016/j.asej.2017.07.002  

    ISSN: 2090-4479

  17. Development of Electromagnetic Transient Simulation Models for Power Quality Analysis of Distribution Systems

    Nagashima, T., Fukushima, K., Noda, T.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 203 (3) 2018

    DOI: 10.1002/eej.23066  

    ISSN: 1520-6416 0424-7760

  18. A study of load balancing algorithms for parallel computation of the solution process in an EMT analysis program

    Yonezawa, R., Noda, T.

    IEEJ Transactions on Power and Energy 138 (2) 2018

    DOI: 10.1541/ieejpes.138.99  

    ISSN: 1348-8147 0385-4213

  19. An electromagnetic transient simulation model of grid-connected inverters for dynamic voltage analysis of distribution systems

    Sano, K., Yonezawa, R., Noda, T.

    IEEJ Transactions on Power and Energy 138 (8) 2018

    DOI: 10.1541/ieejpes.138.685  

    ISSN: 1348-8147 0385-4213

  20. A method for estimating the current-flux curve of a single-phase transformer for electromagnetic transient simulations of inrush currents

    Oyanagi, R., Noda, T., Ichikawa, M.

    IEEJ Transactions on Power and Energy 138 (2) 2018

    DOI: 10.1541/ieejpes.138.183  

    ISSN: 1348-8147 0385-4213

  21. A Study of an FDTD-Based Frequency-Dependent Line Model for Electromagnetic Transient Simulations

    Noda, T.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 202 (2) 2018

    DOI: 10.1002/eej.23038  

    ISSN: 1520-6416 0424-7760

  22. A fast algorithm for LU decomposition of a large sparse matrix in an electromagnetic transient analysis program

    Yonezawa, R., Noda, T.

    IEEJ Transactions on Power and Energy 138 (6) 2018

    DOI: 10.1541/ieejpes.138.473  

    ISSN: 1348-8147 0385-4213

  23. A Method for Estimating the Current–Flux Curve of a Single-Phase Transformer for Electromagnetic Transient Simulations of Inrush Currents

    Oyanagi, R., Noda, T., Ichikawa, M.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 204 (2) 2018

    DOI: 10.1002/eej.23102  

    ISSN: 1520-6416 0424-7760

  24. Development of electromagnetic transient simulation models for power quality analysis of distribution systems

    Nagashima, T., Fukushima, K., Noda, T.

    IEEJ Transactions on Power and Energy 137 (9) 2017

    DOI: 10.1541/ieejpes.137.614  

    ISSN: 1348-8147 0385-4213

  25. Frequency-dependent modeling of transmission lines using bergeron cells

    Noda, T.

    IEEJ Transactions on Electrical and Electronic Engineering 12 2017

    DOI: 10.1002/tee.22564  

    ISSN: 1931-4981 1931-4973

  26. Impacts of output fluctuations from photovoltaic power generation systems on the autonomous control of step voltage regulators operatable under reverse power flow conditions

    Nagashima, T., Noda, T., Ichikawa, M., Seto, T., Musashi, T., Kabasawa, Y.

    IEEJ Transactions on Power and Energy 137 (2) 2017

    DOI: 10.1541/ieejpes.137.154  

    ISSN: 1348-8147 0385-4213

  27. Insulated Cables

    Gustavsen, B., Noda, T., Naredo, J.L., Uribe, F.A., Martinez-Velasco, J.A.

    Power System Transients: Parameter Determination 2017

    DOI: 10.1201/9781420065305-3  

  28. Fast Electromagnetic Transient Simulations of Power Systems Utilizing Single-Phase Phasor-Based Modeling of Remote Systems

    Noda, T., Sakamoto, O., Yonezawa, R.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 197 (2) 2016

    DOI: 10.1002/eej.22863  

    ISSN: 1520-6416 0424-7760

  29. A study of electromagnetic transient simulations using IEEJ's West-10 benchmark power system model

    Noda, T., Takizawa, H., Nakajima, T.

    Electric Power Systems Research 138 2016

    DOI: 10.1016/j.epsr.2016.03.028  

    ISSN: 0378-7796

  30. A study of an FDTD-based frequency-dependent line model for electromagnetic transient simulations

    Noda, T.

    IEEJ Transactions on Power and Energy 136 (12) 2016

    DOI: 10.1541/ieejpes.136.883  

    ISSN: 1348-8147 0385-4213

  31. Application of Frequency-Partitioning Fitting to the Phase-Domain Frequency-Dependent Modeling of Underground Cables

    Noda, T.

    IEEE Transactions on Power Delivery 31 (4) 2016

    DOI: 10.1109/TPWRD.2016.2540526  

    ISSN: 0885-8977

  32. Fast electromagnetic transient simulations of power systems utilizing single-phase phasor-based modeling of remote systems

    Noda, T., Sakamoto, O., Yonezawa, R.

    IEEJ Transactions on Power and Energy 135 (8) 2015

    DOI: 10.1541/ieejpes.135.502  

    ISSN: 1348-8147 0385-4213

  33. Application of frequency-partitioning fitting to the phase-domain frequency-dependent modeling of overhead transmission lines

    Noda, T.

    IEEE Transactions on Power Delivery 30 (1) 2015

    DOI: 10.1109/TPWRD.2014.2329532  

    ISSN: 0885-8977

  34. Measurement of cable resistance at high frequencies

    Noda, T., Nakamatsu, T., Mekaru, T.

    IEEJ Transactions on Electrical and Electronic Engineering 10 (1) 2015

    DOI: 10.1002/tee.22069  

    ISSN: 1931-4981 1931-4973

  35. XTAP

    Noda, T.

    Numerical Analysis of Power System Transients and Dynamics 2015

    DOI: 10.1049/PBPO078E_ch5  

  36. Three-dimensional FDTD calculation of lightning-induced voltages on a multiphase distribution line with the lightning arresters and an overhead shielding wire

    Tatematsu, A., Noda, T.

    IEEE Transactions on Electromagnetic Compatibility 56 (1) 2014

    DOI: 10.1109/TEMC.2013.2272652  

    ISSN: 0018-9375

  37. Development of a transformer magnetizing circuit model for inrush current and residual flux calculations

    Yonezawa, R., Noda, T., Suzuki, N., Nagashima, H., Nomiyama, F., Yamaguchi, N., Honma, H., Kitamura, S.

    IEEJ Transactions on Power and Energy 134 (9) 2014

    DOI: 10.1541/ieejpes.134.749  

    ISSN: 1348-8147 0385-4213

  38. Supplementary techniques for 2S-DIRK-based EMT simulations

    Noda, T., Kikuma, T., Yonezawa, R.

    Electric Power Systems Research 115 2014

    DOI: 10.1016/j.epsr.2014.04.011  

    ISSN: 0378-7796

  39. A method for compensating customer voltage drops due to nighttime simultaneous charging of EVs utilizing reactive power injection from battery chargers

    Noda, T., Kabasawa, Y., Fukushima, K., Nemoto, K., Uemura, S.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 184 (1) 2013

    DOI: 10.1002/eej.22390  

    ISSN: 0424-7760 1520-6416

  40. Development of data translators for interfacing power-flow programs with EMTP-type programs: Challenges and lessons learned

    De Le{\'o}n, F., Czarkowski, D., Spitsa, V., Martinez, J.A., Noda, T., Iravani, R., Wang, X., Davoudi, A., Chang, G.W., Mehrizi-Sani, A., Kocar, I.

    IEEE Transactions on Power Delivery 28 (2) 2013

    DOI: 10.1109/TPWRD.2012.2227836  

    ISSN: 0885-8977

  41. A method for compensating customer voltage drops due to nighttime simultaneous charging of EVs utilizing reactive power injection from battery chargers

    Noda, T., Kabasawa, Y., Fukushima, K., Nemoto, K., Uemura, S.

    IEEJ Transactions on Power and Energy 132 (2) 2012

    DOI: 10.1541/ieejpes.132.163  

    ISSN: 0385-4213 1348-8147

  42. Dynamic system equivalents: A survey of available techniques

    Annakkage, U.D., Nair, N.K.C., Liang, Y., Gole, A.M., Dinavahi, V., Gustavsen, B., Noda, T., Ghasemi, H., Monti, A., Matar, M., Iravani, R., Martinez, J.A.

    IEEE Transactions on Power Delivery 27 (1) 2012

    DOI: 10.1109/TPWRD.2011.2167351  

    ISSN: 0885-8977

  43. International and domestic development trends of electromagnetic transient analysis programs for power systems

    Noda, T.

    IEEJ Transactions on Power and Energy 131 (11) 2011

    DOI: 10.1541/ieejpes.131.872  

    ISSN: 0385-4213 1348-8147

  44. Interfacing issues in real-time digital simulators

    Ren, W., Sloderbeck, M., Steurer, M., Dinavahi, V., Noda, T., Filizadeh, S., Chevrefils, A.R., Matar, M., Iravani, R., Dufour, C., Belanger, J., Faruque, M.O., Strunz, K., Martinez, J.A.

    IEEE Transactions on Power Delivery 26 (2) 2011

    DOI: 10.1109/TPWRD.2010.2072792  

    ISSN: 0885-8977

  45. Modeling of telecommunication lines for lightning overvoltage studies

    Ishimoto, K., Noda, T., Nakamura, M., Maru, S.

    IEEJ Transactions on Power and Energy 131 (7) 2011

    DOI: 10.1541/ieejpes.131.591  

    ISSN: 0385-4213 1348-8147

  46. A robust and efficient iterative scheme for the EMT simulations of nonlinear circuits

    Noda, T., Kikuma, T.

    IEEE Transactions on Power Delivery 26 (2) 2011

    DOI: 10.1109/TPWRD.2010.2091288  

    ISSN: 0885-8977

  47. Modeling of service-drop wires and interior-wiring cables for lightning overvoltage studies

    Matsuura, S., Noda, T., Nakamura, M., Sakai, H.

    IEEJ Transactions on Power and Energy 130 (2) 2010

    DOI: 10.1541/ieejpes.130.246  

    ISSN: 0385-4213 1348-8147

  48. Lightning surge characteristics of an actual distribution line and validation of a distribution line model for lightning overvoltage studies

    Matsuura, S., Noda, T., Asakawa, A., Yokoyama, S.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 173 (1) 2010

    DOI: 10.1002/eej.21002  

    ISSN: 0424-7760 1520-6416

  49. A distribution line model for lightning overvoltage studies

    Matsuura, S., Noda, T., Asakawa, A., Yokoyama, S.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 173 (1) 2010

    DOI: 10.1002/eej.21001  

    ISSN: 0424-7760 1520-6416

  50. Development of a technique for representing lightning arresters in the surge simulations based on the fdtd method and its application to the calculation of lightning-induced voltages on a distribution line

    Tatematsu, A., Noda, T.

    IEEJ Transactions on Power and Energy 130 (3) 2010

    DOI: 10.1541/ieejpes.130.373  

    ISSN: 0385-4213 1348-8147

  51. A time-domain harmonic power-flow algorithm for obtaining nonsinusoidal steady-state solutions

    Lian, K.L., Noda, T.

    IEEE Transactions on Power Delivery 25 (3) 2010

    DOI: 10.1109/TPWRD.2010.2043547  

    ISSN: 0885-8977

  52. Interfacing techniques for electromagnetic field and circuit simulation programs IEEE task force on interfacing techniques for simulation tools

    Asghari, B., Dinavahi, V., Rioual, M., Martinez, J.A., Iravani, R., Annakkage, U., Filizadeh, S., Gole, A.M., Jatskevich, J., Keri, A.J., Lehn, P., Mork, B.A., Monti, A., Naredo, L., Noda, T., Ramirez, A., Steurer, M., Strunz, K.

    IEEE Transactions on Power Delivery 24 (2) 2009

    DOI: 10.1109/TPWRD.2008.2002699  

    ISSN: 0885-8977

  53. Numerical integration by the 2-stage diagonally implicit Runge-Kutta method for electromagnetic transient simulations

    Noda, T., Takenaka, K., Inoue, T.

    IEEE Transactions on Power Delivery 24 (1) 2009

    DOI: 10.1109/TPWRD.2008.923397  

    ISSN: 0885-8977

  54. A method for avoiding numerical instability in FDTD-based surge simulations and its application to representation of thin wires

    Tatematsu, A., Noda, T.

    IEEJ Transactions on Power and Energy 129 (6) 2009

    DOI: 10.1541/ieejpes.129.776  

    ISSN: 1348-8147 0385-4213

  55. Experimental and analytical studies of lightning overvoltages in wind turbine generator systems

    Yamamoto, K., Noda, T., Yokoyama, S., Ametani, A.

    Electric Power Systems Research 79 (3) 2009

    DOI: 10.1016/j.epsr.2008.09.002  

    ISSN: 0378-7796

  56. A simulation study of lightning surge characteristics of a distribution line using the FDTD method

    Matsuura, S., Tatematsu, A., Noda, T., Yokoyama, S.

    IEEJ Transactions on Power and Energy 129 (10) 2009

    DOI: 10.1541/ieejpes.129.1225  

    ISSN: 0385-4213 1348-8147

  57. Lightning surge characteristics of an actual distribution line and validation of a distribution line model for lightning overvoltage studies

    Matsuura, S., Noda, T., Asakawa, A., Yokoyama, S.

    IEEJ Transactions on Power and Energy 128 (9) 2008

    DOI: 10.1541/ieejpes.128.1150  

    ISSN: 0385-4213 1348-8147

  58. Numerical techniques for accurate evaluation of overhead line and underground cable constants

    Noda, T.

    IEEJ Transactions on Electrical and Electronic Engineering 3 (5) 2008

    DOI: 10.1002/tee.20312  

    ISSN: 1931-4981 1931-4973

  59. An improvement of a conductor subdivision method for calculating the series impedance matrix of a transmission line considering the skin and proximity effects

    Miki, T., Noda, T.

    IEEJ Transactions on Power and Energy 128 (1) 2008

    DOI: 10.1541/ieejpes.128.254  

    ISSN: 0385-4213 1348-8147

  60. A distribution line model for lightning overvoltage studies

    Matsuura, S., Noda, T., Asakawa, A., Yokoyama, S.

    IEEJ Transactions on Power and Energy 128 (9) 2008

    DOI: 10.1541/ieejpes.128.1139  

    ISSN: 0385-4213 1348-8147

  61. A numerical simulation of transient electromagnetic fields for obtaining the step response of a transmission tower using the FDTD method

    Noda, T.

    IEEE Transactions on Power Delivery 23 (2) 2008

    DOI: 10.1109/TPWRD.2008.917944  

    ISSN: 0885-8977

  62. A tower model for lightning overvoltage studies based on the result of an FDTD simulation

    Noda, T.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 164 (1) 2008

    DOI: 10.1002/eej.20675  

    ISSN: 0424-7760 1520-6416

  63. An experimental study of surge characteristics of a distribution line using a reduced-scale model

    Matsuura, S., Noda, T., Asakawa, A., Yokoyama, S.

    IEEJ Transactions on Power and Energy 128 (1) 2008

    DOI: 10.1541/ieejpes.128.226  

    ISSN: 0385-4213 1348-8147

  64. A tower model for lightning overvoltage studies based on the result of an FDTD simulation

    Noda, T.

    IEEJ Transactions on Power and Energy 127 (2) 2007

    DOI: 10.1541/ieejpes.127.379  

    ISSN: 0385-4213 1348-8147

  65. z-Transform-based methods for electromagnetic transient simulations

    Noda, T., Ramirez, A.

    IEEE Transactions on Power Delivery 22 (3) 2007

    DOI: 10.1109/TPWRD.2006.886793  

    ISSN: 0885-8977

  66. Improvements of an FDTD-based surge simulation code and its application to the lightning overvoltage calculation of a transmission tower

    Noda, T., Tatematsu, A., Yokoyama, S.

    Electric Power Systems Research 77 (11) 2007

    DOI: 10.1016/j.epsr.2006.08.021  

    ISSN: 0378-7796

  67. An experimental study of lightning overvoltages in wind turbine generation systems using a reduced-size model

    Yamamoto, K., Noda, T., Yokoyama, S., Ametani, A.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 158 (4) 2007

    DOI: 10.1002/eej.20466  

    ISSN: 0424-7760 1520-6416

  68. A binary frequency-region partitioning algorithm for the identification of a multiphase network equivalent for EMT studies

    Noda, T.

    IEEE Transactions on Power Delivery 22 (2) 2007

    DOI: 10.1109/TPWRD.2007.893382  

    ISSN: 0885-8977

  69. Recent trend of electromagnetic transient programs for power system analysis

    Noda, T.

    IEEJ Transactions on Power and Energy 126 (11) 2006

    DOI: 10.1541/ieejpes.126.1108  

    ISSN: 0385-4213 1348-8147

  70. A double logarithmic approximation of Carson's ground-return impedance

    Noda, T.

    IEEE Transactions on Power Delivery 21 (1) 2006

    DOI: 10.1109/TPWRD.2005.852307  

    ISSN: 0885-8977

  71. An experimental study of lightning overvoltages in wind turbine generation systems using a reduced-size model

    Yamamoto, K., Noda, T., Yokoyama, S., Ametani, A.

    IEEJ Transactions on Power and Energy 126 (1) 2006

    DOI: 10.1541/ieejpes.126.65  

    ISSN: 0385-4213 1348-8147

  72. Identification of a multiphase network equivalent for electromagnetic transient calculations using partitioned frequency response

    Noda, T.

    IEEE Transactions on Power Delivery 20 (2 I) 2005

    DOI: 10.1109/TPWRD.2004.834347  

    ISSN: 0885-8977

  73. Validation of a Pole-Mounted Distribution Transformer Model for Electromagnetic Transient Studies by Field Tests Using an Actual-Scale Distribution Line

    Honda, H., Noda, T., Asakawa, A., Shindo, T., Yokoyama, S., Abiko, K.

    IEEJ Transactions on Power and Energy 125 (4) 2005

    DOI: 10.1541/ieejpes.125.441  

    ISSN: 1348-8147 0385-4213

  74. Error in propagation velocity due to staircase approximation of an inclined thin wire in FDTD surge simulation

    Noda, T., Yonezawa, R., Yokoyama, S., Takahashi, Y.

    IEEE Transactions on Power Delivery 19 (4) 2004

    DOI: 10.1109/TPWRD.2004.835396  

    ISSN: 0885-8977

  75. Simulation of Lightning Surge Propagation from Distribution Line to Consumer Entrance via Pole-Mounted Transformer

    Noda, T., Sakae, M., Yokoyama, S.

    IEEE Transactions on Power Delivery 19 (1) 2004

    DOI: 10.1109/TPWRD.2003.820410  

    ISSN: 0885-8977

  76. Entirely harmonic domain calculation of multiphase nonsinusoidal steady state

    Noda, T., Semlyen, A., Iravani, R.

    IEEE Transactions on Power Delivery 19 (3) 2004

    DOI: 10.1109/TPWRD.2004.829944  

    ISSN: 0885-8977

  77. Improvements to a Model of Pole-Mounted Distribution Transformers for Electromagnetic Transient Studies

    Honda, H., Noda, T., Asakawa, A., Shindo, T., Yokoyama, S., Abiko, K.

    IEEJ Transactions on Power and Energy 124 (9) 2004

    DOI: 10.1541/ieejpes.124.1169  

    ISSN: 1348-8147 0385-4213

  78. Reduced-order realization of a nonlinear power network using companion-form state equations with periodic coefficients

    Noda, T., Semlyen, A., Iravani, R.

    IEEE Transactions on Power Delivery 18 (4) 2003

    DOI: 10.1109/TPWRD.2003.817802  

    ISSN: 0885-8977

  79. Discussion of "accurate modeling of core-type distribution transformers for electromagnetic transient studies"

    De Le{\'o}n, F., Noda, T., Nakamoto, H., Yokoyama, S.

    IEEE Transactions on Power Delivery 18 (2) 2003

    DOI: 10.1109/TPWRD.2003.809746  

    ISSN: 0885-8977

  80. Harmonic domain dynamic transfer function of a nonlinear time-periodic network

    Noda, T., Semlyen, A., Iravani, R.

    IEEE Transactions on Power Delivery 18 (4) 2003

    DOI: 10.1109/TPWRD.2003.817788  

    ISSN: 0885-8977

  81. Charge-voltage curves of surge corona on transmission lines: Two measurement methods

    Noda, T., Ono, T., Matsubara, H., Motoyama, H., Sekioka, S., Ametani, A.

    IEEE Transactions on Power Delivery 18 (1) 2003

    DOI: 10.1109/TPWRD.2002.806684  

    ISSN: 0885-8977

  82. An Algorithm for Obtaining Periodic Steady-State Solution of a Multiphase Network with Nonlinear and Switching Elements

    Noda, T., Semlyen, A., Iravani, R.

    IEEJ Transactions on Power and Energy 123 (9) 2003

    DOI: 10.1541/ieejpes.123.1073  

    ISSN: 1348-8147 0385-4213

  83. Harmonic Domain Dynamic Transfer Function of a Nonliner Time-Periodic Network

    Noda, T., Semlyen, A., Iravani, R.

    IEEE Power Engineering Review 22 (11) 63-63 2002

    DOI: 10.1109/MPER.2002.4311857  

    ISSN: 0272-1724

  84. Thin wire representation in finite difference time domain surge simulation

    Noda, T., Yokoyama, S.

    IEEE Transactions on Power Delivery 17 (3) 2002

    DOI: 10.1109/TPWRD.2002.1022813  

    ISSN: 0885-8977

  85. Accurate modeling of core-type distribution transformers for electromagnetic transient studies

    Noda, T., Nakamoto, H., Yokoyama, S.

    IEEE Transactions on Power Delivery 17 (4) 2002

    DOI: 10.1109/TPWRD.2002.803700  

    ISSN: 0885-8977

  86. Electrical circuit description in the form of computer language

    Noda, T.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 133 (4) 2000

    DOI: 10.1002/1520-6416(200012)133:4<1::AID-EEJ1>3.0.CO;2-5  

    ISSN: 0424-7760

  87. A wave-front-time dependent corona model for transmission-line surge calculations

    Noda, T., Nose, N., Nagaoka, N., Ametani, A.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 129 (1) 1999

    DOI: 10.1002/(sici)1520-6416(199910)129:1<29::aid-eej4>3.0.co;2-g  

    ISSN: 0424-7760

  88. Further improvements to a phase-domain ARMA line model in terms of convolution, steady-state initialization, and stability

    Noda, T., Nagaoka, N., Ametani, A.

    IEEE Transactions on Power Delivery 12 (3) 1997

    DOI: 10.1109/61.637011  

    ISSN: 0885-8977

  89. Fault-surge calculation using phase-domain ARMA line model

    Noda, T., Nagaoka, N., Ametani, A.

    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi) 121 (3) 1997

    DOI: 10.1002/(SICI)1520-6416(19971130)121:3<27::AID-EEJ4>3.0.CO;2-Z  

    ISSN: 0424-7760

  90. A simple and efficient method for including frequency-dependent effects in transmission line transient analysis

    Ametani, A., Nagaoka, N., Noda, T., Matsuura, T.

    International Journal of Electrical Power and Energy Systems 19 (4) 1997

    DOI: 10.1016/s0142-0615(96)00033-6  

    ISSN: 0142-0615

  91. Phase domain modeling of frequency-dependent transmission lines by means of an ARMA model

    Noda, T., Nagaoka, N., Ametani, A.

    IEEE Transactions on Power Delivery 11 (1) 1996

    DOI: 10.1109/61.484040  

    ISSN: 0885-8977

  92. Phase domain modeling of frequency-dependent transmission lines by means of an ARMA model

    Noda, T.

    IEEE Power Engineering Review 16 (1) 1996

    ISSN: 0272-1724

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