캐패시티브 무선전력전송의 최근 경향

Recent Trends in Capacitive Wireless Power Transfer

  • 발행 : 2019.06.20

초록

키워드

참고문헌

  1. G. A. Covic and J. T. Boys, "Modern trends in inductive power transfer for transportation applications," in IEEE Journal of Emerging and Selected Topics in Power Electronics, Vol. 1, No. 1, pp. 28-41, Mar. 2013. https://doi.org/10.1109/JESTPE.2013.2264473
  2. K. V. T. Piipponen, R. Sepponen, and P. Eskelinen, "A biosignal instrumentation system using capacitive coupling for power and signal isolation," in IEEE Transactions on Biomedical Engineering, Vol. 54, No. 10, pp. 1822-1828, Oct. 2007. https://doi.org/10.1109/TBME.2007.894830
  3. A. M. Sodagar and P. Amiri, "Capacitive coupling for power and data telemetry to implantable biomedical microsystems," 2009 4th International IEEE/EMBS Conference on Neural Engineering, Antalya, pp. 411-414, 2009.
  4. L. Huang, et al., "An overview of capacitively coupled power transfer - A new contactless power transfer solution," IEEE 8th Conference on Industrial Electronics and Applications (ICIEA), 2013.
  5. M. Kline, I. Izyumin, B. Boser, and S. Sanders, "Capacitive power transfer for contactless charging," 2011 Twenty-Sixth Annual IEEE Applied Power Electronics Conference & Exposition (APEC), 2011.
  6. M. P. Theodoridis, "Effective capacitive power transfer," in IEEE Transactions on Power Electronics, Vol. 27, No. 12, pp. 4906-4913, Dec. 2012. https://doi.org/10.1109/TPEL.2012.2192502
  7. S. Shekhar, et al., "A utility interfaced halfbridge based capacitively coupled power transfer circuit with automatic frequency control," IEEE Energy Conversion Congress and Exposition, 2013.
  8. L. Huang, et al., "A resonant compensation method for improving the performance of capacitively coupled power transfer system," IEEE Energy Conversion Congress and Exposition (ECCE), 2014.
  9. J. Dai and D. C. Ludois, "A survey of wireless power transfer and a critical comparison of inductive and capacitive coupling for small gap applications," in IEEE Transactions on Power Electronics, Vol. 30, No. 11, pp. 6017-6029, Nov. 2015. https://doi.org/10.1109/TPEL.2015.2415253
  10. J. Dai and D. C. Ludois, "Single active switch power electronics for kilowatt scale capacitive power transfer," in IEEE Journal of Emerging and Selected Topics in Power Electronics, Vol. 3, No. 1, pp. 315-323, Mar. 2015. https://doi.org/10.1109/JESTPE.2014.2334621
  11. J. Dai and D. C. Ludois, "Capacitive power transfer through a conformal bumper for electric vehicle charging," in IEEE Journal of Emerging and Selected Topics in Power Electronics, Vol. 4, No. 3, pp. 1015-1025, Sep. 2016. https://doi.org/10.1109/JESTPE.2015.2505622
  12. F. Lu, H. Zhang, H. Hofmann, and C. Mi, "A double-sided LCLC-compensated capacitive power transfer system for electric vehicle charging," in IEEE Transactions on Power Electronics, Vol. 30, No. 11, pp. 6011-6014, Nov. 2015. https://doi.org/10.1109/TPEL.2015.2446891
  13. International Commission on Non-Ionizing Radiation Protection, “Guidelines for limiting exposure to time-varying electric, magnetic, and electromagnetic fields (up to 300 GHz),” Health Physics, Vol. 74, No. 4, pp. 494-522, 1998.
  14. C. K. Chang, et al., "30 W capacitive wireless power transfer system with 5.8 pF coupling capacitance," IEEE Wireless Power Transfer Conference (WPTC), 2015.
  15. A. Sepahvand, A. Kumar, K. Afridi, and D. Maksimovic, "High power transfer density and high efficiency 100 MHz capacitive wireless power transfer system," 2015 IEEE 16th Workshop on Control and Modeling for Power Electronics (COMPEL), pp. 1-4, 2015.
  16. A. Kumar, et al., "Investigation of power transfer density enhancement in large air-gap capacitive wireless power transfer systems," IEEE Wireless Power Transfer Conference (WPTC), 2015.
  17. I. Ramos, et al., "Near-field capacitive wireless power transfer array with external field cancellation," IEEE Wireless Power Transfer Conference (WPTC), 2016.
  18. F. Lu, H. Zhang, H. Hofmann, and C. Mi, "A CLLC-compensated high power and large airgap capacitive power transfer system for electric vehicle charging applications," 2016 IEEE Applied Power Electronics Conference and Exposition (APEC), 2016.
  19. S. Sinha, A. Kumar, S. Pervaiz, B. Regensburger, and K. K. Afridi, "Design of efficient matching networks for capacitive wireless power transfer systems," 2016 IEEE 17th Workshop on Control and Modeling for Power Electronics (COMPEL), 2016.
  20. A. Kumar, S. Sinha, A. Sepahvand, and K. K. Afridi, "Improved design optimization for high-efficiency matching networks," in IEEE Transactions on Power Electronics, Vol. 33, No. 1, pp. 37-50, Jan. 2018. https://doi.org/10.1109/TPEL.2017.2670640
  21. K. Double day, A. Kumar, S. Sinha, B. Regensburger, S. Pervaiz and K. Afridi, "Design tradeoffs in a multi-modular capacitive wireless power transfer system," 2016 IEEE PELS Workshop on Emerging Technologies: Wireless Power Transfer (WoW), pp. 35-41, 2016.
  22. K. Double day, et al., "Multi-objective optimization of capacitive wireless power transfer systems for electric vehicle charging," 2017 IEEE 18th Workshop on Control and Modeling for Power Electronics (COMPEL), Stanford, CA, pp. 1-8, 2017.
  23. B. Regensburger, et al., "High-performance large air-gap capacitive wireless power transfer system for electric vehicle charging," 2017 IEEE Transportation Electrification Conference and Expo (ITEC), Chicago, IL, pp. 638-643, 2017.
  24. S. Sinha, B. Regensburger, K. Doubleday, A. Kumar, S. Pervaiz, and K. K. Afridi, "Highpower- transfer-density capacitive wireless power transfer system for electric vehicle charging," 2017 IEEE Energy Conversion Congress and Exposition (ECCE), pp. 967-974, 2017.
  25. S. Sinha, A. Kumar, and K. K. Afridi, "Improved design optimization of efficient matching networks for capacitive wireless power transfer systems," 2018 IEEE Applied Power Electronics Conference and Exposition (APEC), San Antonio, TX, pp. 3167-3173, 2018.
  26. S. Sinha, B. Regensburger, A. Kumar, and K. Afridi, "A very-high-power-transfer-density GaN-based capacitive wireless power transfer system," 2017 IEEE 5th Workshop on Wide Bandgap Power Devices and Applications (WiPDA), pp. 360-365, 2017.
  27. ITU Radio Regulations, CHAPTER II -Frequencies, ARTICLE 5 Frequency allocations, Section IV.
  28. Y. Lim, H. Tang, S. Lim, and J. Park, "An adaptive impedance-matching network based on a novel capacitor matrix for wireless power transfer," in IEEE Transactions on Power Electronics, Vol. 29, No. 8, pp. 4403-4413, Aug. 2014. https://doi.org/10.1109/TPEL.2013.2292596
  29. S. Sinha, A. Kumar, and K. K. Afridi, "Active variable reactance rectifier - A new approach to compensating for coupling variations in wireless power transfer systems," 2017 IEEE 18th Workshop on Control and Modeling for Power Electronics (COMPEL), Stanford, CA, pp. 1-8, 2017.
  30. A. Kumar, S. Sinha, and K. K. Afridi, "A highfrequency inverter architecture for providing variable compensation in wireless power transfer systems," 2018 IEEE Applied Power Electronics Conference and Exposition (APEC), San Antonio, TX, pp. 3154-3159, 2018.
  31. B. Regensburger, A. Kumar, S. Sinha, and K. K. Afridi, "Impact of foreign objects on the performance of capacitive wireless charging systems for electric vehicles," 2018 IEEE Transportation Electrification Conference and Expo (ITEC), pp. 892-897, 2018.
  32. B. Regensburger, S. Sinha, A. Kumar, J. Vance, Z. Popovic, and K. K. Afridi, "Kilowattscale large air-gap multi-modular capacitive wireless power transfer system for electric vehicle charging," 2018 IEEE Applied Power Electronics Conference and Exposition (APEC), San Antonio, TX, pp. 666-671, 2018.
  33. B. Regensburger, A. Kumar, S. Sinha, and K. Afridi, "High-performance 13.56-MHz large air-gap capacitive wireless power transfer system for electric vehicle charging," 2018 IEEE 19th Workshop on Control and Modeling for Power Electronics (COMPEL), Padua, pp. 1-4, 2018.
  34. B. Regensburger, A. Kumar, S. Sinha, J. Xu, and K. Afridi, "High-efficiency high-powertransfer- density capacitive wireless power transfer system for electric vehicle charging utilizing semi-toroidal interleaved-foil coupled inductors," 2019 IEEE Applied Power Electronics Conference and Exposition (APEC), 2019.
  35. B. Regensburger, J. Estrada, A. Kumar, S. Sinha, Z. Popović, and K. K. Afridi, "High-performance capacitive wireless power transfer system for electric vehicle charging with enhanced coupling plate design," 2018 IEEE Energy Conversion Congress and Exposition (ECCE), Portland, OR, pp. 2472-2477, 2018.
  36. H. Zhang, F. Lu, H. Hofmann, W. Liu, and C. C. Mi, "A four-plate compact capacitive coupler design and LCL-compensated topology for capacitive power transfer in electric vehicle charging application," in IEEE Transactions on Power Electronics, Vol. 31, No. 12, pp. 8541-8551, Dec. 2016. https://doi.org/10.1109/TPEL.2016.2520963
  37. H. Zhang, F. Lu, H. Hofmann, W. Liu, and C. C. Mi, "Six-plate capacitive coupler to reduce electric field emission in large air-gap capacitive power transfer," in IEEE Transactions on Power Electronics, Vol. 33, No. 1, pp. 665-675, Jan. 2018. https://doi.org/10.1109/TPEL.2017.2662583
  38. F. Lu, H. Zhang, H. Hofmann, and C. C. Mi, "An inductive and capacitive combined wireless power transfer system with LC-compensated topology," in IEEE Transactions on Power Electronics, Vol. 31, No. 12, pp. 8471-8482, Dec. 2016. https://doi.org/10.1109/TPEL.2016.2519903