APPLICATION OF MULTI-ENERGY COMPOSITE ENERGY STORAGE SYSTEM TECHNOLOGY IN ELECTRIC VEHICLES, 1-10.

Ning Li, Fengshou Hu, and Wenkui Ma

References

  1. [1] X. Lv, S. Ji, V. Linkov, X. Wang, H. Wang, and R. Wang, Three-dimensional N-doped super-hydrophilic carbon electrodes withporosity tailored by Cu2O template-assisted electrochemicaloxidation to improve the performance of electrical double-layercapacitors, Journal of Materials Chemistry A, 9(5), 2021,2928–2936.
  2. [2] V. Adimule, S. Nandi, and H.J. Adarsha, A facile syn-thesis of Cr doped WO3 nanostructures, study of theircurrent-voltage, power dissipation and impedance propertiesof thin films, Journal of Nano Research, 67(1), 2021,33–42.
  3. [3] A. Paul, A. Cano, J. Benavides, and F. Jurado, Feasibility studyof a renewable system (PV/HKT/GB) for hybrid tramwaybased on fuel cell and super capacitor, IET Renewable PowerGeneration, 15(3), 2021, 491–503.
  4. [4] Y. Li, B. Huang, X. Zhao, Z. Luo, S. Liang, H. Qin, andL. Chen, Zeolitic imidazolate framework-L-assisted synthesis9of inorganic and organic anion-intercalated hetero-trimetalliclayered double hydroxide sheets as advanced electrode materialsfor aqueous asymmetric super-capacitor battery, Journal ofPower Sources, 527(15), 2022, 2–11.
  5. [5] Z. Wu, Y. Zhao, and N. Zhang, A literature survey of green andlow-carbon economics using natural experiment approaches intop field journal, Green and Low-Carbon Economy, 1(1), 2023,2–14.
  6. [6] X. Yang, L. Wu, J. Hou, B. Meng, R. Ali, Y. Liu, and X.Jian, Symmetrical growth of carbon nanotube arrays on FeSiAlmicro-flake for enhancement of lithium-ion battery capacity,Carbon: An International Journal Sponsored by the AmericanCarbon Society, 189(2), 2022, 93–103.
  7. [7] G. Li, G. Xu, Y. Ding, Z. Huang, X. Yang, and L. Ma,Evaluation on thermal performance of liquid-cooling structuresfor high-power lithium-ion battery pack, International Journalof Energy Research, 46(5), 2022, 6099–6111.
  8. [8] X. Liu, S. Lin, J. Gao, H. Shi, S.-G. Kim, Z. Chen, and H.Lee, Enhanced performance of Mo2P monolayer as lithium-ionbattery anode materials by carbon and nitrogen doping: a firstprinciples study, Physical Chemistry Chemical Physics, 23(6),2021, 4030–4038.
  9. [9] G. Du, G. Zhang, S. Yu, H. Yu, W. Lin, and W. Le, An any-unit-to-any-unit method for hybrid-structured voltage equalizer inseries-connected battery/super-capacitor strings, InternationalJournal of Circuit Theory and Applications, 50(6), 2022,2016–2034.
  10. [10] W. Yang, C. Zhu, L. Li, W. Wang, and Z. Yang, Pitaya peelderived carbons with ultra-high specific surface area for solid-state flexible asymmetric supercapacitors, Functional MaterialsLetters, 14(5), 2021, 2–4.
  11. [11] X. Zhou, Y. Zhang, X. Ma, G. Li, Y. Wang, C. Hu, J. Liang,and M. Li, Performance characteristics of photovoltaic coldstorage under composite control of maximum power trackingand constant voltage per frequency, Applied Energy, 172(6),2022, 1120–1132.
  12. [12] Q. Yu, C. Zhang, Y. Lu, Q. Kong, H. Wei, Y. Yang, Q.Gao, Y. Wu, and A. Sciacovelli, Comprehensive performanceof composite phase change materials based on eutectic chloridewith SiO2 nanoparticles and expanded graphite for thermalenergy storage system, Renewable Energy, 172(3), 2021,1120–1132.
  13. [13] N.N.I. Sulaiman, M.S. Yahya, N. Sazelee, N.A. Ali, N.S.Mustafa, M. Ismail, et al. An investigation on the additionof SrTiO3 to the hydrogen storage properties of the 4MgH2-Li3AlH6 composite, International Journal of Energy Research,46(6), 2022, 8030-8041.
  14. [14] Q. Han, Y. Sheng, and X. Zhang, Preparation of amultifunctional P-CF@Mn3O4 composite as a structuralanode material, New Journal of Chemistry, 45(35), 2021,15808–15817.
  15. [15] M. Yang, Research on vehicle automatic driving targetperception technology based on improved MSRPN algorithm,Journal of Computational and Cognitive Engineering, 1(3),2022, 147–151.
  16. [16] G. Xu, Optimized lithium-indium chloride solid electrolytefor high energy all-solid-state batteries, Nano Hybrids andComposites, 34(3), 2022, 3–8.
  17. [17] X. Wang, Q. Wang, L. Shuang, and C. Chen, A Markov modelfor subway composite energy prediction, International Journalof Computer Systems Science and Engineering, 39(2), 2021,237–250.
  18. [18] S. Bae, J. Oh, J. Kim, E.R. Baek, and Y. Nam, Energyperformance analysis of textile and capillary tube compositepanel system by computational fluid dynamics and real-scale experiments, Energy and Buildings, 258(5), 2022,2–10.
  19. [19] X. Kong, L. Jiang, Y. Yuan, and X. Qiao, Experimental studyon the performance of an active novel vertical partition thermalstorage wallboard based on composite phase change materialwith porous silica and microencapsulation, Energy, 239(15),2022, 2–17.
  20. [20] R.K. Al-Hamido, A new neutrosophic algebraic structures,Journal of Computational and Cognitive Engineering, 2(2),2023, 150–154.
  21. [21] H. Yu, S. Niu, L. Jian, X. Lei, and Z. Shao, Enhancingelectric vehicle penetration and grid operation performance inold residential communities through hybrid AC/DC microgridreconstruction, Applied Energy, 347(1), 2023, 2–15.
  22. [22] J. Cui, Q. Tan, and L. Liu, Environmental benefit assessmentof second-life use of electric vehicle lithium-ion batteriesin multiple scenarios considering performance degradationand economic value, Environmental Science and Technology,57(23), 2023, 8559–8567
  23. [23] T. Simolin, K. Rauma, A. Rautiainen, and P. Jarventausta,Communicational aspects in hierarchical real-time control ofelectric vehicle charging: Available information and its value,IET Generation, Transmission & Distribution, 17(14), 2023,3152–3167.
  24. [24] S. Barmada, A. Musolino, J. Zhu, and S. Yang, A novel coilarchitecture for interoperability and tolerance to misalignmentin electric vehicle WPT, IEEE Transactions on Magnetics,59(5), 2023, 2–5.
  25. [25] V. Arjun and M.P. Selvan, Assessing the need for network-basedtechnical constraints in economic optimization of electric vehiclecharging, Electrical Engineering, 105(3), 2023, 1629–1641.

Important Links:

Go Back