Minggao Ouyang

2006–2026 年に発表

111
論文数
38,552
被引用数
75
h 指数
88
i10 指数

被引用数

Minggao Ouyang の年別被引用数2007 年: 被引用 2 件2008 年: 被引用 2 件2009 年: 被引用 2 件2010 年: 被引用 4 件2012 年: 被引用 11 件2013 年: 被引用 34 件2014 年: 被引用 69 件2015 年: 被引用 131 件2016 年: 被引用 195 件2017 年: 被引用 231 件2018 年: 被引用 313 件2019 年: 被引用 476 件2020 年: 被引用 581 件2021 年: 被引用 559 件2022 年: 被引用 440 件2023 年: 被引用 477 件2024 年: 被引用 384 件2025 年: 被引用 328 件2026 年: 被引用 54 件2027 年: 被引用 1 件2011 年は被引用が無いため表示していません

引用元

国・地域

この著者を引用した国・地域の世界地図中国: 引用元論文 1,437 件、この内訳の 35.8%アメリカ合衆国: 引用元論文 540 件、この内訳の 13.5%イギリス: 引用元論文 218 件、この内訳の 5.4%カナダ: 引用元論文 146 件、この内訳の 3.6%韓国: 引用元論文 135 件、この内訳の 3.4%ドイツ: 引用元論文 125 件、この内訳の 3.1%フランス: 引用元論文 124 件、この内訳の 3.1%インド: 引用元論文 117 件、この内訳の 2.9%オーストラリア: 引用元論文 101 件、この内訳の 2.5%香港: 引用元論文 96 件、この内訳の 2.4%イタリア: 引用元論文 89 件、この内訳の 2.2%スペイン: 引用元論文 74 件、この内訳の 1.9%
0%35.8%その他 20.2%

分野

  • Engineering91.9%
  • Computer Science2.4%
  • Materials Science1.5%
  • Energy1.2%
  • Chemical Engineering0.6%
  • Decision Sciences0.4%
  • その他2%

トピック

  • Advanced Battery Technologies Research24.5%
  • Advancements in Battery Materials14.5%
  • Electric Vehicles and Infrastructure8.7%
  • Advanced Battery Materials and Technologies7.2%
  • Electric and Hybrid Vehicle Technologies6.1%
  • Fault Detection and Control Systems2.9%
  • その他36.1%

共著者

全論文

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  1. A review on the key issues of the lithium ion battery degradation among the whole life cycle

    著者: , , , , , , - eTransportation 2019 被引用: 1,663

  2. A review on the key issues for lithium-ion battery management in electric vehicles

    著者: , , , , - Journal of Power Sources 2012 被引用: 4,725

  3. Thermal runaway mechanism of lithium ion battery for electric vehicles: A review

    著者: , , , , , - Energy storage materials 2017 被引用: 3,898

  4. Lithium-ion battery fast charging: A review

    著者: , , , , , , , , , , , , , , , , , , , - eTransportation 2019 被引用: 1,519

  5. Remaining Useful Life Prediction of Lithium-ion Batteries Based on Wiener Process Under Time-Varying Temperature Condition

    著者: , , , , , - Reliability Engineering & System Safety, Reliab. Eng. Syst. Saf. 2021 被引用: 186

  6. Online State-of-Health Estimation for Li-Ion Battery Using Partial Charging Segment Based on Support Vector Machine

    著者: , , , , , , - IEEE Transactions on Vehicular Technology, IEEE Trans. Veh. Technol. 2019 被引用: 478

  7. The Co-estimation of State of Charge, State of Health, and State of Function for Lithium-Ion Batteries in Electric Vehicles

    著者: , , , , - IEEE Transactions on Vehicular Technology, IEEE Trans. Veh. Technol. 2017 被引用: 528

  8. Mitigating Thermal Runaway of Lithium-Ion Batteries

    著者: , , , - Joule 2020 被引用: 1,605

  9. Combined AFS and DYC Control of Four-Wheel-Independent-Drive Electric Vehicles over CAN Network with Time-Varying Delays

    著者: , , , , - IEEE Transactions on Vehicular Technology, IEEE Trans. Veh. Technol. 2013 被引用: 336

  10. Mechanism, modeling, detection, and prevention of the internal short circuit in lithium-ion batteries: Recent advances and perspectives

    著者: , , , , , , - Energy storage materials 2020 被引用: 409

  11. Detecting the internal short circuit in large-format lithium-ion battery using model-based fault-diagnosis algorithm

    著者: , , , , - Journal of Energy Storage 2018 被引用: 312

  12. Electrochemical model-based state estimation for lithium-ion batteries with adaptive unscented Kalman filter

    著者: , , , , , , - Journal of Power Sources 2020 被引用: 258

  13. A comparative study of global optimization methods for parameter identification of different equivalent circuit models for Li-ion batteries

    著者: , , , , , , - Electrochimica Acta 2018 被引用: 256

  14. Review on hydrogen safety issues: Incident statistics, hydrogen diffusion, and detonation process

    著者: , , , , , , , - International Journal of Hydrogen Energy 2021 被引用: 484

  15. A comparative investigation of aging effects on thermal runaway behavior of lithium-ion batteries

    著者: , , , , , , , , , , , , - eTransportation 2019 被引用: 475

  16. Optimization for a hybrid energy storage system in electric vehicles using dynamic programing approach

    著者: , , , , - Applied Energy 2014 被引用: 428

  17. Online internal short circuit detection for a large format lithium ion battery

    著者: , , , - Applied Energy 2015 被引用: 374

  18. Micro-Short-Circuit Diagnosis for Series-Connected Lithium-Ion Battery Packs Using Mean-Difference Model

    著者: , , , , , - IEEE Transactions on Industrial Electronics, IEEE Trans. Ind. Electron. 2018 被引用: 260

  19. Investigating the relationship between internal short circuit and thermal runaway of lithium-ion batteries under thermal abuse condition

    著者: , , , , , , , - Energy storage materials 2020 被引用: 662

  20. Immersion cooling for lithium-ion batteries – A review

    著者: , , , , , , , , , , , , , , , - Journal of Power Sources 2022 被引用: 543

  21. Multi-objective optimization of a semi-active battery/supercapacitor energy storage system for electric vehicles

    著者: , , , , , , - Applied Energy 2014 被引用: 370

  22. Internal short circuit detection for battery pack using equivalent parameter and consistency method

    著者: , , , , , , - Journal of Power Sources 2015 被引用: 297

  23. Seasonal effects on electric vehicle energy consumption and driving range: A case study on personal, taxi, and ridesharing vehicles

    著者: , , , - Journal of Cleaner Production 2019 被引用: 263

  24. Fast capacity prediction of lithium-ion batteries using aging mechanism-informed bidirectional long short-term memory network

    著者: , , , , , , , , , - Reliability Engineering & System Safety, Reliab. Eng. Syst. Saf. 2023 被引用: 59