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2018 | OriginalPaper | Buchkapitel

The S 11-parameter Analysis of Multi-slot Coaxial Antenna with Periodic Slots

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Abstract

The motivation behind this study is specifying the proper arrangement of periodic air slots within the multi-slot coaxial antenna with 50-Ω feeding load operating at 2.45 GHz to provide the conformal microwave thermotherapy. The desired temperature profile of the liver tissue was numerically evaluated for coupled electromagnetic and thermal problems by the finite element method. Considering the growing number of radiating apertures within the thin microwave needle applicator requires some unique optimization approach based on the S 11-parameter characteristics to guarantee the best antenna–tissue impedance matching. Moreover, the proposed multi-step iterative numerical procedure allows effective modelling of optimal placement of the periodic slots of microwave antenna, required limit levels of the antenna power input and thus conformal cancer treatment for both interstitial microwave hyperthermia and thermal ablation.

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Literatur
1.
Zurück zum Zitat Bienkowski, P., Cala, P., Zubrzak, B.: Optimization of measurement methods for a multi-frequency electromagnetic field from mobile phone base station using broadband EMF meter. Med. Pr. 66(5), 701–712 (2015)CrossRef Bienkowski, P., Cala, P., Zubrzak, B.: Optimization of measurement methods for a multi-frequency electromagnetic field from mobile phone base station using broadband EMF meter. Med. Pr. 66(5), 701–712 (2015)CrossRef
2.
Zurück zum Zitat Michalowska-Samonek, J., Miaskowski, A., Wac-Wlodarczyk, A.: The distribution of electromagnetic field of high frequency in breast gland. Prz. Elektrotechniczn. 86(12), 106–108 (2010) Michalowska-Samonek, J., Miaskowski, A., Wac-Wlodarczyk, A.: The distribution of electromagnetic field of high frequency in breast gland. Prz. Elektrotechniczn. 86(12), 106–108 (2010)
3.
Zurück zum Zitat Miaskowski, A., Gas, P., Krawczyk, A.: SAR calculations for titanium bar-implant subjected to microwave radiation. In: 2016 17th International Conference Computational Problems of Electrical Engineering (CPEE), 14–17 September 2016, Sandomierz, Article No. 7738726, pp. 1–4. IEEE (2016). doi: 10.1109/CPEE.2016.7738726 Miaskowski, A., Gas, P., Krawczyk, A.: SAR calculations for titanium bar-implant subjected to microwave radiation. In: 2016 17th International Conference Computational Problems of Electrical Engineering (CPEE), 14–17 September 2016, Sandomierz, Article No. 7738726, pp. 1–4. IEEE (2016). doi: 10.​1109/​CPEE.​2016.​7738726
4.
Zurück zum Zitat Syrek, P., Skowron, M., Ciesla, A.: Therapy’s individualization of bone injuries with the magnetic field applicators. In: 2016 International Conference and Exposition on Electrical and Power Engineering (EPE), Iasi, 20–22 October 2016, art. no. 7781378, pp. 435–438. IEEE (2016) Syrek, P., Skowron, M., Ciesla, A.: Therapy’s individualization of bone injuries with the magnetic field applicators. In: 2016 International Conference and Exposition on Electrical and Power Engineering (EPE), Iasi, 20–22 October 2016, art. no. 7781378, pp. 435–438. IEEE (2016)
5.
Zurück zum Zitat Glowacz, A., Glowacz, Z.: Recognition of images of finger skin with application of histogram, image filtration and K-NN classifier. Biocybern. Biomed. Eng. 36(1), 95–101 (2016)CrossRef Glowacz, A., Glowacz, Z.: Recognition of images of finger skin with application of histogram, image filtration and K-NN classifier. Biocybern. Biomed. Eng. 36(1), 95–101 (2016)CrossRef
6.
Zurück zum Zitat Rhein, S., Graichen, K.: Coupled actuator placement and controller design for electromagnetic heating by means of dynamic optimization. In: 2016 IEEE 55th Conference on Decision and Control (CDC), 12–14 December 2016, Las Vegas, pp. 4809–4814. IEEE (2016) Rhein, S., Graichen, K.: Coupled actuator placement and controller design for electromagnetic heating by means of dynamic optimization. In: 2016 IEEE 55th Conference on Decision and Control (CDC), 12–14 December 2016, Las Vegas, pp. 4809–4814. IEEE (2016)
7.
Zurück zum Zitat Rossmann, C., Haemmerich, D.: Review of temperature dependence of thermal properties, dielectric properties, and perfusion of biological tissues at hyperthermic and ablation temperatures. Crit. Rev. Biomed. Eng. 42(6), 467–492 (2014)CrossRef Rossmann, C., Haemmerich, D.: Review of temperature dependence of thermal properties, dielectric properties, and perfusion of biological tissues at hyperthermic and ablation temperatures. Crit. Rev. Biomed. Eng. 42(6), 467–492 (2014)CrossRef
8.
9.
Zurück zum Zitat Majchrzak, E., Paruch, M., Dziewoński, M., Freus, S., Freus, K.: Sensitivity analysis of temperature field and parameter identification in burned and healthy skin tissue. In: Munoz-Rojas, P.A. (ed.) Computational Modeling, Optimization and Manufacturing Simulation of Advanced Engineering Materials. Book Series: Advanced Structured Materials, chapter 5, vol. 49, pp. 89–112. Springer, Berlin (2016) Majchrzak, E., Paruch, M., Dziewoński, M., Freus, S., Freus, K.: Sensitivity analysis of temperature field and parameter identification in burned and healthy skin tissue. In: Munoz-Rojas, P.A. (ed.) Computational Modeling, Optimization and Manufacturing Simulation of Advanced Engineering Materials. Book Series: Advanced Structured Materials, chapter 5, vol. 49, pp. 89–112. Springer, Berlin (2016)
10.
Zurück zum Zitat Hernandez, J.I., Cepeda, M.F., Valdes, F., Guerrero, G.D.: Microwave ablation: state-of-the-art review. OncoTargets Ther. 8, 1627–1632 (2015) Hernandez, J.I., Cepeda, M.F., Valdes, F., Guerrero, G.D.: Microwave ablation: state-of-the-art review. OncoTargets Ther. 8, 1627–1632 (2015)
11.
Zurück zum Zitat Zafar, J., Zafar, T., Zafar, H., Sharif, F.: Design, development and microwave inter-comparison of dual slot antenna configurations for localized hepatic tumor management. Australas. Phys. Eng. Sci. Med. 38(4), 593–601 (2015)CrossRef Zafar, J., Zafar, T., Zafar, H., Sharif, F.: Design, development and microwave inter-comparison of dual slot antenna configurations for localized hepatic tumor management. Australas. Phys. Eng. Sci. Med. 38(4), 593–601 (2015)CrossRef
12.
Zurück zum Zitat Wang, T., Zhao, G., Qiu, B.: Theoretical evaluation of the treatment effectiveness of a novel coaxial multi-slot antenna for conformal microwave ablation of tumors. Int. J. Heat Mass Transf. 90, 81–91 (2015)CrossRef Wang, T., Zhao, G., Qiu, B.: Theoretical evaluation of the treatment effectiveness of a novel coaxial multi-slot antenna for conformal microwave ablation of tumors. Int. J. Heat Mass Transf. 90, 81–91 (2015)CrossRef
13.
Zurück zum Zitat Gas, P.: Multi-frequency analysis for interstitial microwave hyperthermia using multi-slot coaxial antenna. J. Electric. Eng. Elektrotech. Cas. 66(1), 26–33 (2015). doi:10.1515/jee-2015-0004 Gas, P.: Multi-frequency analysis for interstitial microwave hyperthermia using multi-slot coaxial antenna. J. Electric. Eng. Elektrotech. Cas. 66(1), 26–33 (2015). doi:10.​1515/​jee-2015-0004
14.
Zurück zum Zitat Rubio, M.F.J.C., Lopez, G.D.G., Perezgasga, F.V., Garcia, F.F., Hernandez, A.V., Salas, L.L.: Computer modeling for microwave ablation in breast cancer using a coaxial slot antenna. Int. J. Thermophys. 36(10), 2687–2704 (2015)CrossRef Rubio, M.F.J.C., Lopez, G.D.G., Perezgasga, F.V., Garcia, F.F., Hernandez, A.V., Salas, L.L.: Computer modeling for microwave ablation in breast cancer using a coaxial slot antenna. Int. J. Thermophys. 36(10), 2687–2704 (2015)CrossRef
15.
Zurück zum Zitat Kurgan, E., Gas, P.: Analysis of electromagnetic heating in magnetic fluid deep hyperthermia. In: 2016 17th International Conference Computational Problems of Electrical Engineering (CPEE), 14–17 September 2016, Sandomierz, art. no. 7738756, pp. 1–4. IEEE (2016). doi: 10.1109/CPEE.2016.7738756 Kurgan, E., Gas, P.: Analysis of electromagnetic heating in magnetic fluid deep hyperthermia. In: 2016 17th International Conference Computational Problems of Electrical Engineering (CPEE), 14–17 September 2016, Sandomierz, art. no. 7738756, pp. 1–4. IEEE (2016). doi: 10.​1109/​CPEE.​2016.​7738756
16.
Zurück zum Zitat Varon, L.A.B., Orlande, H.R.B., Elicabe, G.E.: Combined parameter and state estimation problem in a complex domain: RF hyperthermia treatment using nanoparticles. In: Journal of Physics: Conference Series, vol. 745, no. 3, art. no. 032014, pp. 1–8 (2016) Varon, L.A.B., Orlande, H.R.B., Elicabe, G.E.: Combined parameter and state estimation problem in a complex domain: RF hyperthermia treatment using nanoparticles. In: Journal of Physics: Conference Series, vol. 745, no. 3, art. no. 032014, pp. 1–8 (2016)
18.
Zurück zum Zitat Wang, J.H., Mei, K.K.: Theory and analysis of leaky coaxial cables with periodic slots. IEEE Trans. Antennas Propag. 49(12), 1723–1732 (2001)CrossRef Wang, J.H., Mei, K.K.: Theory and analysis of leaky coaxial cables with periodic slots. IEEE Trans. Antennas Propag. 49(12), 1723–1732 (2001)CrossRef
19.
Zurück zum Zitat Gas, P.: Determination of the optimal multi-slot coaxial antenna sizes based on the microwave antenna reflection coefficient characteristics. In: 2015 Selected Problems of Electrical Engineering and Electronics (WZEE), 17–19 September 2015, Kielce, art. no. 7394015, pp. 1–4. IEEE (2015). doi: 10.1109/WZEE.2015.7394015 Gas, P.: Determination of the optimal multi-slot coaxial antenna sizes based on the microwave antenna reflection coefficient characteristics. In: 2015 Selected Problems of Electrical Engineering and Electronics (WZEE), 17–19 September 2015, Kielce, art. no. 7394015, pp. 1–4. IEEE (2015). doi: 10.​1109/​WZEE.​2015.​7394015
20.
Zurück zum Zitat Peyman, A., Holden, S., Gabriel, C.: Measurement of the dielectric properties of biological tissues in vivo at microwave frequencies. In: Mobile Telecommunications and Health Research Programme, RUM3, Final Report (2005) Peyman, A., Holden, S., Gabriel, C.: Measurement of the dielectric properties of biological tissues in vivo at microwave frequencies. In: Mobile Telecommunications and Health Research Programme, RUM3, Final Report (2005)
21.
Zurück zum Zitat Pennes, H.H.: Analysis of tissue and arterial blood temperatures in the resting human forearm. J. Appl. Physiol. 85(1), 5–34 (1998) Pennes, H.H.: Analysis of tissue and arterial blood temperatures in the resting human forearm. J. Appl. Physiol. 85(1), 5–34 (1998)
22.
Zurück zum Zitat Komarov, V.V.: Estimation of heating rate in the near zone of interstitial microwave applicator. IEEE Microw. Wirel. Compon. Lett. 24(9), 640–642 (2014)CrossRef Komarov, V.V.: Estimation of heating rate in the near zone of interstitial microwave applicator. IEEE Microw. Wirel. Compon. Lett. 24(9), 640–642 (2014)CrossRef
23.
Zurück zum Zitat Nowakowska, H., Jasinski, M., Debicki, P.S., Mizeraczyk, J.: Numerical analysis and optimization of power coupling efficiency in waveguide-based microwave plasma source. IEEE Trans. Plasma Sci. 39(10), 1935–1942 (2011)CrossRef Nowakowska, H., Jasinski, M., Debicki, P.S., Mizeraczyk, J.: Numerical analysis and optimization of power coupling efficiency in waveguide-based microwave plasma source. IEEE Trans. Plasma Sci. 39(10), 1935–1942 (2011)CrossRef
24.
Zurück zum Zitat Katrich, V.A., Lyashchenko, V.A., Medvedev, N.V.: Coaxial-slot antenna array with different lengths of radiators. In: 2016 International Conference in Radio Electronics & Info Communications (UkrMiCo), 11–16 September 2016, Kiev, art. no. 7739607, pp. 1–4. IEEE (2016) Katrich, V.A., Lyashchenko, V.A., Medvedev, N.V.: Coaxial-slot antenna array with different lengths of radiators. In: 2016 International Conference in Radio Electronics & Info Communications (UkrMiCo), 11–16 September 2016, Kiev, art. no. 7739607, pp. 1–4. IEEE (2016)
Metadaten
Titel
The S 11-parameter Analysis of Multi-slot Coaxial Antenna with Periodic Slots
verfasst von
Piotr Gas
Copyright-Jahr
2018
DOI
https://doi.org/10.1007/978-3-319-63949-9_24

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