Araştırma Makalesi
BibTex RIS Kaynak Göster

Extraction of inductances for coupled coils in wireless power transfer

Yıl 2018, Cilt: 20 Sayı: 2, 89 - 97, 01.12.2018
https://doi.org/10.25092/baunfbed.476614

Öz

Wireless power transfer is one of the hot research areas of electrical engineering in last decade. The most important component in a wireless power transfer system, which dictates the transferred power level and system efficiency, is magnetically coupled coil pairs. Correct characterization of the coils is extremely important for choosing or designing the right electronic circuitry and compensation compontents.  In this paper, three different methods for extracting the self- and mutual-inductances of coupled coil pairs are prensented. A cross-shape coil pair is fabricated and measured using both an RLC meter and a network analyzer. Then, these three methods are utilized for extracting the inductances and the extracted inductance values are compared. The agreement in the extracted inductance values show that the presented measurements and extraction methods can be safely utilized for characterizing the magnetically coupled coils for use in wireless power transfer systems. 

Kaynakça

  • Fernandez, C., Garcia, O., Prieto, R., Cobos, J. A., Uceda, J., Overview of different alternatives for the contact-less transmission of energy, IECON 02, 2, 1318-1323, (2002).
  • Soma, Mani., Galbraith, D.C., White, R.L., Radio-frequency coils in implantable devices: Misalignment analysis and design procedure, IEEE transactions on biomedical engineering, 4, 276-282, (1987).
  • Xiaolin, M., Sun ,H., Wireless power transfer: Survey and roadmap, Vehicular Technology Conference (VTC Spring),1-5, (2015).
  • Xie, L., Shi, Y., Hou, Y.T., Lou, A., Wireless power transfer and applications to sensor networks, IEEE Wireless Communications, 20(4),140-145, (2013).
  • Yeh, J.C., Huang, K.L., Hsiao, Y.C., Hsu, Y.H., Lin, Y.H., Lou, S.L., Lee, T.H., A rat model of thrombosis in common carotid artery induced by implantable wireless light-emitting diode device, BioMed research international, (2014).
  • Siqi, L., Mi, C.C., Wireless power transfer for electric vehicle applications, IEEE journal of emerging and selected topics in power electronics, 3(1), 4-17, (2015).
  • Covic, G. A., Boys, J.T., Modern trends in inductive power transfer for transportation applications, IEEE Journal of Emerging and Selected topics in power electronics, 1(1), 28-41, (2013).
  • Vilathgamuwa, D. M., Sampath J. P. K, Wireless power transfer (WPT) for electric vehicles (EVS)—Present and future trends, Plug in electric vehicles in smart grids, Springer, Singapore, 33-60, (2015).
  • Budhia, M., Covic, G., Boys, J., A new IPT magnetic coupler for electric vehicle charging systems, In Proceedings of the IECON 2010—36th Annual Conference on IEEE Industrial Electronics Society, Glendale, AZ, USA, 2487–2492, (2010).
  • Budhia, M., Boys, J.T., Covic, G.A., Huang, C.Y., Development of a single-sided flux magnetic coupler for electric vehicle IPT charging systems, IEEE Trans. Ind. Electron, 60, 318–328, (2013).
  • Nguyen, T.D., Li, S., Li, W., Mi, C.C., Feasibility study on bipolar pads for efficient wireless power chargers, IEEE Applied Power Electronics Conference and Exposition—APEC 2014, Fort Worth, TX, USA, 1676–1682, (2014).
  • Deng, J., Li, W., Nguyen, T.D., Li, S., Mi, C.C., Compact and efficient bipolar coupler for wireless power chargers: design and analysis, IEEE Trans. Power Electron, 30, 6130–6140, (2015)
  • Wei, Q., Guo, W., Sun, X., Wang, G., Zhao, X., Li, F., Li, Y., A new type of ıpt system with large lateral tolerance and its circuit analysis. International Conference on Connected Vehicles and Expo (ICCVE), Beijing, China, 311–315, (2012).
  • Li, Y., Lin, T., Mai, R., Huang, L., He, Z., Compact double-sided decoupled coils-based wpt systems for high-power applications: analysis, design, and experimental verification, IEEE Trans. Transp. Electrification, 4, 64–75, (2018).
  • Jonah, O., Georgakopoulos, S.V., Tentzeris, M.M., Orientation insensitive power transfer by magnetic resonance for mobile devices, IEEE Wireless Power Transfer (WPT), Perugia, Italy, 5–8, (2013).
  • Sis, S.A., Orta, E., A cross-shape coil structure for use in wireless power applications, Energies, 11, 1094, (2018).

Kablosuz güç transferinde manyetik bağlaşımdaki çevrimlerin endüktanslarının çıkarımı

Yıl 2018, Cilt: 20 Sayı: 2, 89 - 97, 01.12.2018
https://doi.org/10.25092/baunfbed.476614

Öz

Kablosuz güç transferi son yıllarda üzerinde yoğun olarak çalışılan alanlardan biri durumundadur. Kablosuz güç transfer sistemlerinde aktarılan güç seviyesini ve güç transfer verimliliğini belirleyen en önemli bileşenlerden biri manyetik bağlaşımdaki bobinlerdir. Bu bobinlerin düzgün şekilde karakterize edilmeleri, verici ve alıcı taraftaki devrelerin ve kompanzasyon elemanlarının seçilmesinde hayati öneme sahiptir. Bu çalışmada kablosuz güç transfer sistemlerinde kullanılan bobinlerin (coils) öz endüktans (self-inductance) ve ortak-endüktans (mutual enductance) değerlerinin üç fraklı yöntemle çıkarımları verilmektedir. Üretimi yapılmış bir artı-şekilli bobin çifti, aralarına çeşitli mesafeler konularak bir RLC metre ile ve network analizör ile ayrı ayrı ölçülmüş ve ölçüm sonuçlarından endüktans değerleri çıkarılıp karşılaştırılmıştır. Karşılaştırılan sonuçların uyumu, bu makalede özetlenen ölçüm ve yöntemlerin manyetik bağlaşımdaki bobin karakteristiklerinin çıkarımında kullanılabileceğini göstermektedir. 

Kaynakça

  • Fernandez, C., Garcia, O., Prieto, R., Cobos, J. A., Uceda, J., Overview of different alternatives for the contact-less transmission of energy, IECON 02, 2, 1318-1323, (2002).
  • Soma, Mani., Galbraith, D.C., White, R.L., Radio-frequency coils in implantable devices: Misalignment analysis and design procedure, IEEE transactions on biomedical engineering, 4, 276-282, (1987).
  • Xiaolin, M., Sun ,H., Wireless power transfer: Survey and roadmap, Vehicular Technology Conference (VTC Spring),1-5, (2015).
  • Xie, L., Shi, Y., Hou, Y.T., Lou, A., Wireless power transfer and applications to sensor networks, IEEE Wireless Communications, 20(4),140-145, (2013).
  • Yeh, J.C., Huang, K.L., Hsiao, Y.C., Hsu, Y.H., Lin, Y.H., Lou, S.L., Lee, T.H., A rat model of thrombosis in common carotid artery induced by implantable wireless light-emitting diode device, BioMed research international, (2014).
  • Siqi, L., Mi, C.C., Wireless power transfer for electric vehicle applications, IEEE journal of emerging and selected topics in power electronics, 3(1), 4-17, (2015).
  • Covic, G. A., Boys, J.T., Modern trends in inductive power transfer for transportation applications, IEEE Journal of Emerging and Selected topics in power electronics, 1(1), 28-41, (2013).
  • Vilathgamuwa, D. M., Sampath J. P. K, Wireless power transfer (WPT) for electric vehicles (EVS)—Present and future trends, Plug in electric vehicles in smart grids, Springer, Singapore, 33-60, (2015).
  • Budhia, M., Covic, G., Boys, J., A new IPT magnetic coupler for electric vehicle charging systems, In Proceedings of the IECON 2010—36th Annual Conference on IEEE Industrial Electronics Society, Glendale, AZ, USA, 2487–2492, (2010).
  • Budhia, M., Boys, J.T., Covic, G.A., Huang, C.Y., Development of a single-sided flux magnetic coupler for electric vehicle IPT charging systems, IEEE Trans. Ind. Electron, 60, 318–328, (2013).
  • Nguyen, T.D., Li, S., Li, W., Mi, C.C., Feasibility study on bipolar pads for efficient wireless power chargers, IEEE Applied Power Electronics Conference and Exposition—APEC 2014, Fort Worth, TX, USA, 1676–1682, (2014).
  • Deng, J., Li, W., Nguyen, T.D., Li, S., Mi, C.C., Compact and efficient bipolar coupler for wireless power chargers: design and analysis, IEEE Trans. Power Electron, 30, 6130–6140, (2015)
  • Wei, Q., Guo, W., Sun, X., Wang, G., Zhao, X., Li, F., Li, Y., A new type of ıpt system with large lateral tolerance and its circuit analysis. International Conference on Connected Vehicles and Expo (ICCVE), Beijing, China, 311–315, (2012).
  • Li, Y., Lin, T., Mai, R., Huang, L., He, Z., Compact double-sided decoupled coils-based wpt systems for high-power applications: analysis, design, and experimental verification, IEEE Trans. Transp. Electrification, 4, 64–75, (2018).
  • Jonah, O., Georgakopoulos, S.V., Tentzeris, M.M., Orientation insensitive power transfer by magnetic resonance for mobile devices, IEEE Wireless Power Transfer (WPT), Perugia, Italy, 5–8, (2013).
  • Sis, S.A., Orta, E., A cross-shape coil structure for use in wireless power applications, Energies, 11, 1094, (2018).
Toplam 16 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Bölüm Araştırma Makalesi
Yazarlar

Seyit Ahmet Sis 0000-0002-3740-2391

Yayımlanma Tarihi 1 Aralık 2018
Gönderilme Tarihi 1 Ekim 2018
Yayımlandığı Sayı Yıl 2018 Cilt: 20 Sayı: 2

Kaynak Göster

APA Sis, S. A. (2018). Kablosuz güç transferinde manyetik bağlaşımdaki çevrimlerin endüktanslarının çıkarımı. Balıkesir Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 20(2), 89-97. https://doi.org/10.25092/baunfbed.476614
AMA Sis SA. Kablosuz güç transferinde manyetik bağlaşımdaki çevrimlerin endüktanslarının çıkarımı. BAUN Fen. Bil. Enst. Dergisi. Aralık 2018;20(2):89-97. doi:10.25092/baunfbed.476614
Chicago Sis, Seyit Ahmet. “Kablosuz güç Transferinde Manyetik bağlaşımdaki çevrimlerin endüktanslarının çıkarımı”. Balıkesir Üniversitesi Fen Bilimleri Enstitüsü Dergisi 20, sy. 2 (Aralık 2018): 89-97. https://doi.org/10.25092/baunfbed.476614.
EndNote Sis SA (01 Aralık 2018) Kablosuz güç transferinde manyetik bağlaşımdaki çevrimlerin endüktanslarının çıkarımı. Balıkesir Üniversitesi Fen Bilimleri Enstitüsü Dergisi 20 2 89–97.
IEEE S. A. Sis, “Kablosuz güç transferinde manyetik bağlaşımdaki çevrimlerin endüktanslarının çıkarımı”, BAUN Fen. Bil. Enst. Dergisi, c. 20, sy. 2, ss. 89–97, 2018, doi: 10.25092/baunfbed.476614.
ISNAD Sis, Seyit Ahmet. “Kablosuz güç Transferinde Manyetik bağlaşımdaki çevrimlerin endüktanslarının çıkarımı”. Balıkesir Üniversitesi Fen Bilimleri Enstitüsü Dergisi 20/2 (Aralık 2018), 89-97. https://doi.org/10.25092/baunfbed.476614.
JAMA Sis SA. Kablosuz güç transferinde manyetik bağlaşımdaki çevrimlerin endüktanslarının çıkarımı. BAUN Fen. Bil. Enst. Dergisi. 2018;20:89–97.
MLA Sis, Seyit Ahmet. “Kablosuz güç Transferinde Manyetik bağlaşımdaki çevrimlerin endüktanslarının çıkarımı”. Balıkesir Üniversitesi Fen Bilimleri Enstitüsü Dergisi, c. 20, sy. 2, 2018, ss. 89-97, doi:10.25092/baunfbed.476614.
Vancouver Sis SA. Kablosuz güç transferinde manyetik bağlaşımdaki çevrimlerin endüktanslarının çıkarımı. BAUN Fen. Bil. Enst. Dergisi. 2018;20(2):89-97.