| 研究生: |
曾文賢 Tseng, Wun-Sian |
|---|---|
| 論文名稱: |
涵括定電流與定電壓考量及具有寬範圍輸出電壓能力之SEPIC-LCC無線電能傳輸分析與研製 Analysis and Development of a SEPIC-LCC Wireless Power Transfer System Incorporating Constant-Current and Constant-Voltage Considerations with Wide-Range Output Voltage Capability |
| 指導教授: |
黃世杰
Huang, Shyh-Jier |
| 學位類別: |
碩士 Master |
| 系所名稱: |
電機資訊學院 - 電機工程學系 Department of Electrical Engineering |
| 論文出版年: | 2024 |
| 畢業學年度: | 112 |
| 語文別: | 中文 |
| 論文頁數: | 100 |
| 中文關鍵詞: | 寬範圍輸出電壓 、定電流 、定電壓 、錯位容忍能力 、雙組LCC |
| 外文關鍵詞: | Wide-Range Output Voltage, constant-current, constant-voltage, misalignment tolerance, dual LCC |
| 相關次數: | 點閱:80 下載:0 |
| 分享至: |
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[1] Z. Zhang, H. Pang, A. Georgiadis, and C. Cecati, “Wireless Power Transfer-An Overview,” IEEE Transactions on Industrial Electronics, Vol. 66, No. 2, pp. 1044-1058, Feb. 2019.
[2] H. Feng, R. Tavakoli, O. C. Onar, and Z. Pantic, “Advances in High-Power Wireless Charging Systems: Overview and Design Considerations,” IEEE Transactions on Transportation Electrification, Vol. 6, No. 3, pp. 886-919, Sep. 2020.
[3] Y. Chen, H. Zhang, C. -S. Shin, C. -H. Jo, S. -J. Park, and D. -H. Kim, “An Efficiency Optimization-Based Asymmetric Tuning Method of Double-Sided LCC Compensated WPT System for Electric Vehicles,” IEEE Transactions on Power Electronics, Vol. 35, No. 11, pp. 11475-11487, Nov. 2020.
[4] D. -H. Kim and D. Ahn, “Maximum Efficiency Point Tracking for Multiple-Transmitter Wireless Power Transfer,” IEEE Transactions on Power Electronics, Vol. 35, No. 11, pp. 11391-11400, Nov. 2020.
[5] P. K. Chittoor, B. Chokkalingam, and L. Mihet-Popa, “A Review on UAV Wireless Charging: Fundamentals, Applications, Charging Techniques and Standards,” IEEE Access, Vol. 9, pp. 69235-69266, 2021.
[6] L. Xie, X. Cao, J. Xu, and R. Zhang, “UAV-Enabled Wireless Power Transfer: A Tutorial Overview,” IEEE Transactions on Green Communications and Networking, Vol. 5, No. 4, pp. 2042-2064, Dec. 2021.
[7] C. Cai, J. Wang, H. Nie, P. Zhang, Z. Lin, and Y. -G. Zhou, “Effective-Configuration WPT Systems for Drones Charging Area Extension Featuring Quasi-Uniform Magnetic Coupling,” IEEE Transactions on Transportation Electrification, Vol. 6, No. 3, pp. 920-934, Sep. 2020.
[8] H. H. Lee, S. H. Kang, and C. W. Jung, “MR-WPT with Reconfigurable Resonator and Ground for Laptop Application,” IEEE Microwave and Wireless Components Letters, Vol. 28, No. 3, pp. 269-271, Mar. 2018.
[9] A. Mahesh, B. Chokkalingam, and L. Mihet-Popa, “Inductive Wireless Power Transfer Charging for Electric Vehicles–A Review,” IEEE Access, Vol. 9, pp. 137667-137713, 2021.
[10] M. Mohammad, O. C. Onar, G. J. Su, J. Pries, V. P. Galigekere, S. Anwar, E. Asa, and J. Wilkins, “Bidirectional LCC–LCC-Compensated 20-kW Wireless Power Transfer System for Medium-Duty Vehicle Charging,” IEEE Transactions on Transportation Electrification, Vol. 7, No. 3, pp. 1205-1218, Sept. 2021.
[11] A. Zakerian, S. Vaez-Zadeh, and A. Babaki, “A Dynamic WPT System with High Efficiency and High Power Factor for Electric Vehicles,” IEEE Transactions on Power Electronics, Vol. 35, No. 7, pp. 6732-6740, Jul. 2020.
[12] A. Azad, R. Tavakoli, U. Pratik, B. Varghese, C. Coopmans, and Z. Pantic, “A Smart AutoNomous WPT System for Electric Wheelchair Applications with Free-Positioning Charging Feature,” IEEE Journal of Emerging and Selected Topics in Power Electronics, Vol. 8, No. 4, pp. 3516-3532, Dec. 2020.
[13] A. Azad, R. Tavakoli, U. Pratik, B. Varghese, C. Coopmans, and Z. Pantic, “A Smart AutoNomous WPT System for Electric Wheelchair Applications with Free-Positioning Charging Feature,” IEEE Journal of Emerging and Selected Topics in Power Electronics, Vol. 8, No. 4, pp. 3516-3532, Dec. 2020.
[14] L. Yang, Y. Zhang, X. Li, B. Feng, X. Chen, J. Huang, T. Yang, D. Zhu, A. Zhang, and X. Tong, “Comparison Survey of Effects of Hull on AUVs for Underwater Capacitive Wireless Power Transfer System and Underwater Inductive Wireless Power Transfer System,” IEEE Access, Vol. 10, pp. 125401-125410, 2022.
[15] K. Zhang, Y. Ma, Z. Yan, Z. Di, B. Song and A. P. Hu, “Eddy Current Loss, and Detuning Effect of Seawater on Wireless Power Transfer,” IEEE Journal of Emerging and Selected Topics in Power Electronics, Vol. 8, No. 1, pp. 909-917, Mar. 2020.
[16] L. Shi, N. Rasool, H. Zhu, K. Huang, and Y. Yang, “Design and Experiment of a Reconfigurable Magnetic Resonance Coupling Wireless Power Transmission System,” IEEE Microwave and Wireless Components Letters, Vol. 30, No. 7, pp. 705-708, Jul. 2020.
[17] Y. Li, S. Jiang, J. -M. Liu, X. Ni, R. Wang, and J. -N. Ma, “Maximizing Transfer Distance for WPT via Coupled Magnetic Resonances by Coupling Coils Design and Optimization,” IEEE Access, Vol. 8, pp. 74157-74166, 2020.
[18] Y. Zhang, S. Chen, X. Li, and Y. Tang, “Design of high-power static wireless power transfer via magnetic induction: An overview,” CPSS Transactions on Power Electronics and Applications, Vol. 6, No. 4, pp. 281-297, Dec. 2021.
[19] S. Li, W. Li, J. Deng, T. D. Nguyen, and C. C. Mi, “A Double-Sided LCC Compensation Network and Its Tuning Method for Wireless Power Transfer,” IEEE Transactions on Vehicular TechNology, Vol. 64, No. 6, pp. 2261-2273, Jun. 2015.
[20] Y. Chen, H. Zhang, C. -S. Shin, C. -H. Jo, S. -J. Park, and D. -H. Kim, “An Efficiency Optimization-Based Asymmetric Tuning Method of Double-Sided LCC Compensated WPT System for Electric Vehicles,” IEEE Transactions on Power Electronics, Vol. 35, No. 11, pp. 11475-11487, Nov. 2020.
[21] Y. Zhang, G. Wei, C. Wang, Y. Yin, J. Feng, T. Na, K. Song, and C. Zhu, “A Hybrid Compensation Topology with Constant Current and Constant Voltage Outputs for Wireless Charging System,” IEEE Transactions on Transportation Electrification, Vol. 9, No. 2, pp. 2070-2080, Jun. 2023.
[22] M. Bertoluzzo, G. Buja, D. Desideri, and A. Sagar, “A New Approach to the Analysis of the Compensation Networks of WPT Systems,” IEEE Access, Vol. 11, pp. 132368-132379, 2023.
[23] X. Wang, J. Xu, M. Leng, H. Ma, and S. He, “A Hybrid Control Strategy of LCC-S Compensated WPT System for Wide Output Voltage and ZVS Range with Minimized Reactive Current,” IEEE Transactions on Industrial Electronics, Vol. 68, No. 9, pp. 7908-7920, Sep. 2021.
[24] C. Rong, X. He, Y. Wu, Y. Qi, R. Wang, Y. Sun, and M. Liu, “Optimization Design of Resonance Coils with High Misalignment Tolerance for Drone Wireless Charging Based on Genetic Algorithm,” IEEE Transactions on Industry Applications, Vol. 58, No. 1, pp. 1242-1253, Jan.-Feb. 2022.
[25] Z. Yuan, M. Saeedifard, C. Cai, Q. Yang, P. Zhang, and H. Lin, “A Misalignment Tolerant Design for a Dual-Coupled LCC-S-Compensated WPT System with Load-Independent CC Output,” IEEE Transactions on Power Electronics, Vol. 37, No. 6, pp. 7480-7492, June 2022.
[26] X. Zhang, J. Li, and X. Tong, “A Unique Design Approach of Double-Sided LCC Compensated IPT System for Misalignment-Tolerant Characteristic,” IEEE Transactions on Power Electronics, Vol. 38, No. 1, pp. 1288-1300, Jan. 2023.
[27] M. Rehman, S. Mirsaeidi, N. M. Nor, M. A. Koondhar, M. A. A. M. Zainuri, Z. M. Alaas, N. A. Ghamry, and M. M. R. Ahmed, “A Review of Inductive Power Transfer: Emphasis on Performance Parameters, Compensation Topologies and Coil Design Aspects,” IEEE Access, Vol. 11, pp. 144978-145010, 2023.
[28] G. Yang, K. Song, Y. Sun, X. Huang, J. Li, Y. Guo, H. Zhang, Q. Zhang, R. Lu, and C. Zhu, “Interoperability Improvement for Rectangular Pad and DD Pad of Wireless Electric Vehicle Charging System Based on Adaptive Position Adjustment,” IEEE Transactions on Industry Applications, Vol. 57, No. 3, pp. 2613-2624, May-June 2021.
[29] G. Wei, X. Jin, C. Wang, J. Feng, C. Zhu, and M. I. Matveevich, “An Automatic Coil Design Method with Modified AC Resistance Evaluation for Achieving Maximum Coil–Coil Efficiency in WPT Systems,” IEEE Transactions on Power Electronics, Vol. 35, No. 6, pp. 6114-6126, Jun. 2020.
[30] C. Zhang, W. Wang, C. Xu, and J. Yang, “Research on Uniform Magnetic Field Compensation Structure of Array Circular Coils for Wireless Power Transfer,” IEEE Transactions on Magnetics, Vol. 57, No. 6, pp. 1-5, Jun. 2021.
[31] Y. Shanmugam, P. Vishnuram, M. Bajaj, K. M. Aboras, and P. Thakur, “A Systematic Review of Dynamic Wireless Charging System for Electric Transportation,” IEEE Access, Vol. 10, pp. 133617-133642, 2022.
[32] J. Liu, Z. Liu, and H. Su, “Passivity-Based PI Control for Receiver Side of Dynamic Wireless Charging System in Electric Vehicles,” IEEE Transactions on Industrial Electronics, Vol. 69, No. 1, pp. 783-794, Jan. 2022.
[33] D. Patil, J. M. Miller, B. Fahimi, P. T. Balsara, and V. Galigekere, “A Coil Detection System for Dynamic Wireless Charging of Electric Vehicle,” IEEE Transactions on Transportation Electrification, Vol. 5, No. 4, pp. 988-1003, Dec. 2019.
[34] A. Ramezani, S. Farhangi, H. Iman-Eini, B. Farhangi, R. Rahimi, and G. R. Moradi, “Optimized LCC-Series Compensated Resonant Network for Stationary Wireless EV Chargers,” IEEE Transactions on Industrial Electronics, Vol. 66, No. 4, pp. 2756-2765, Apr. 2019.
[35] Y. Zhang, S. Chen, X. Li, and Y. Tang, “Design of high-power static wireless power transfer via magnetic induction: An overview,” CPSS Transactions on Power Electronics and Applications, Vol. 6, No. 4, pp. 281-297, Dec. 2021.
[36] Q. Le, R. Wu, J. Chen, M. Huang, Y. Fu, F. Huang, L. Wang, S. Du, and Q. Li, “Wireless Power Transmission System for Vehicle Based on Multi-Transmitter Coils Array,” IEEE Access, Vol. 11, pp. 82784-82793, 2023.
[37] T200-26B Datasheet, Micrometals, 2019.
[38] SCT2080KE Datasheet, ROHM Semiconductor, 2017.
[39] dsPIC33CK256MP508 Datasheet, Microchip TechNology Incorporated, 2020.
[40] HCPL-3120 Datasheet, Broadcom Inc, 2013.
[41] TL084CN Datasheet, Texas Instruments, 2014.
校內:2029-07-05公開