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2014 | OriginalPaper | Buchkapitel

4. Patch Array Antenna on EBG Substrate

verfasst von : Kumud Ranjan Jha, Ghanshyam Singh

Erschienen in: Terahertz Planar Antennas for Next Generation Communication

Verlag: Springer International Publishing

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Abstract

In the preceding Chap.​ 3, the electromagnetic bandgap material (EBG) has been analyzed in detail and its potential application in the microstrip patch antenna design has been explored.

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Literatur
1.
Zurück zum Zitat Pozar, D.M.: Considerations for millimeter wave printed antennas. IEEE Trans. Antennas Propag. 31(5), 740–747 (1983) Pozar, D.M.: Considerations for millimeter wave printed antennas. IEEE Trans. Antennas Propag. 31(5), 740–747 (1983)
2.
Zurück zum Zitat Jackson, D.R., Williams, J.T., Bhattacharyya, A.K., Smith, R.L., Buchheit, S.J., Long, S.A.: Microstrip patch designs that do not excite surface waves. IEEE Trans. Antennas Propag. 41(8), 1026–1037 (1993) Jackson, D.R., Williams, J.T., Bhattacharyya, A.K., Smith, R.L., Buchheit, S.J., Long, S.A.: Microstrip patch designs that do not excite surface waves. IEEE Trans. Antennas Propag. 41(8), 1026–1037 (1993)
3.
Zurück zum Zitat Bhattacharyya, A.K.: Characteristics of space and surface waves in a multilayered structure. IEEE Trans. Antennas Propag. 38(8), 1231–1238 (1990) Bhattacharyya, A.K.: Characteristics of space and surface waves in a multilayered structure. IEEE Trans. Antennas Propag. 38(8), 1231–1238 (1990)
4.
Zurück zum Zitat Jha, K.R., Singh, G.: Analysis and design of enhanced directivity microstrip antenna at terahertz frequency by using electromagnetic bandgap material. Int. J. Numer. Model. Electron. Netw. Devices Fields 25(2), 175–191 (2012) Jha, K.R., Singh, G.: Analysis and design of enhanced directivity microstrip antenna at terahertz frequency by using electromagnetic bandgap material. Int. J. Numer. Model. Electron. Netw. Devices Fields 25(2), 175–191 (2012)
5.
Zurück zum Zitat Gonalzo, R., Ederra, I., Mann, C., Maagt, P. de.: Radiation properties of terahertz dipole antenna mounted on photonic crystal. Elect. Lett., 37(10), 613–614 (2001) Gonalzo, R., Ederra, I., Mann, C., Maagt, P. de.: Radiation properties of terahertz dipole antenna mounted on photonic crystal. Elect. Lett., 37(10), 613–614 (2001)
6.
Zurück zum Zitat Chu, H., Guo,Y.-Xin, Lim, T.-Guan, Khoo, Y.M., Shi, X.: 135-GHz Micromachined On-Chip Antenna and Antenna Array. IEEE Trans. Antennas Propag. 60(10); 4582–4588 (2012) Chu, H., Guo,Y.-Xin, Lim, T.-Guan, Khoo, Y.M., Shi, X.: 135-GHz Micromachined On-Chip Antenna and Antenna Array. IEEE Trans. Antennas Propag. 60(10); 4582–4588 (2012)
7.
Zurück zum Zitat Rebeiz, G.M.: Millimeter-wave and terahertz integrated circuit antennas. Proceedings of the IEEE 80(11), 1748–1770 (1992) Rebeiz, G.M.: Millimeter-wave and terahertz integrated circuit antennas. Proceedings of the IEEE 80(11), 1748–1770 (1992)
8.
Zurück zum Zitat Shahvarpour, A., Melcon, A.A., Caloz, C.: Radiation efficiency issues in planar antennas on electrically thick substrates and solutions. IEEE Trans. Antennas Propag. 61(8), 4013–4025 (2013) Shahvarpour, A., Melcon, A.A., Caloz, C.: Radiation efficiency issues in planar antennas on electrically thick substrates and solutions. IEEE Trans. Antennas Propag. 61(8), 4013–4025 (2013)
9.
Zurück zum Zitat Gray, D., Lu, J., Thiel, D.: Electronically steerable Yagi-Uda microstrip patch antenna array. IEEE Trans. Antennas Propag. 46(5), 605–608 (1998) Gray, D., Lu, J., Thiel, D.: Electronically steerable Yagi-Uda microstrip patch antenna array. IEEE Trans. Antennas Propag. 46(5), 605–608 (1998)
10.
Zurück zum Zitat Grajek, P.R., Schoenlinner, B., Rebeiz, G.M.: A 24 GHz high-gain Yagi-Uda antenna array. IEEE Trans. Antennas Propag. 52(5), 1257–1261 (2004) Grajek, P.R., Schoenlinner, B., Rebeiz, G.M.: A 24 GHz high-gain Yagi-Uda antenna array. IEEE Trans. Antennas Propag. 52(5), 1257–1261 (2004)
11.
Zurück zum Zitat Baik, J.W., Pyo, S., Lee, T.H., Kim, Y.S.: Switchable printed Yagi-Uda antenna with pattern reconfiguration. ETRI Journal 31(3), 318–320 (2009) Baik, J.W., Pyo, S., Lee, T.H., Kim, Y.S.: Switchable printed Yagi-Uda antenna with pattern reconfiguration. ETRI Journal 31(3), 318–320 (2009)
12.
Zurück zum Zitat DeJean, G.R., Tentzeris, M.M.: A new high-gain microstrip Yagi array antenna with a high front–to-back(F/B) ratio for WLAN and millimeter–wave applications. IEEE Trans. Antennas Propag. 55(2), 298–304 (2007) DeJean, G.R., Tentzeris, M.M.: A new high-gain microstrip Yagi array antenna with a high front–to-back(F/B) ratio for WLAN and millimeter–wave applications. IEEE Trans. Antennas Propag. 55(2), 298–304 (2007)
13.
Zurück zum Zitat Jha, K.R., Singh, G.: Microstrip patch array antenna on photonic crystal substrate at terahertz frequency. Infrared Phys. Tech. 55(1), 32–39 (2012) Jha, K.R., Singh, G.: Microstrip patch array antenna on photonic crystal substrate at terahertz frequency. Infrared Phys. Tech. 55(1), 32–39 (2012)
14.
Zurück zum Zitat Berdel, K., Rivas, J.G., Bolivar, P.H., Maagt, P.de, Kurz, H.: Temperature dependence of the permittivity and loss tangent of high-permittivity materials at terahertz frequencies. IEEE Trans Microw. Theory Tech. 53(4), 1266–1271 (2005) Berdel, K., Rivas, J.G., Bolivar, P.H., Maagt, P.de, Kurz, H.: Temperature dependence of the permittivity and loss tangent of high-permittivity materials at terahertz frequencies. IEEE Trans Microw. Theory Tech. 53(4), 1266–1271 (2005)
15.
Zurück zum Zitat Bolivar, P.H., Brucherseifer, M., Rivas, J.G., Gonzalo, R., Ederra, I., Reynolds, A. L., Holker, M., Maagt, P.de.: Measurement of the dielectric constant and loss tangent of high dielectric-constant materials at terahertz frequencies. IEEE Trans Microw. Theory Tech. 51(4), 1062–1066 (2003) Bolivar, P.H., Brucherseifer, M., Rivas, J.G., Gonzalo, R., Ederra, I., Reynolds, A. L., Holker, M., Maagt, P.de.: Measurement of the dielectric constant and loss tangent of high dielectric-constant materials at terahertz frequencies. IEEE Trans Microw. Theory Tech. 51(4), 1062–1066 (2003)
16.
Zurück zum Zitat Grischkowsky, D., Duling III, I.N., Chen, T.C., Chi, C.-C.: Electromagnetic shock waves from transmission lines. Phys. Rev. Lett. 59 (15), 1663–1666 (1987) Grischkowsky, D., Duling III, I.N., Chen, T.C., Chi, C.-C.: Electromagnetic shock waves from transmission lines. Phys. Rev. Lett. 59 (15), 1663–1666 (1987)
17.
Zurück zum Zitat Ramo, S., Whinnery, J. R., Van Duzer, T.: Fields and Waves in Communication Electronics. John Wiley and Sons, NY (1984) Ramo, S., Whinnery, J. R., Van Duzer, T.: Fields and Waves in Communication Electronics. John Wiley and Sons, NY (1984)
18.
Zurück zum Zitat Federici, J., Moeller, L.: Review of terahertz and sub-terahertz wireless communications. J. Appl. Phys. 107(11), 111101-1-21 (2010) Federici, J., Moeller, L.: Review of terahertz and sub-terahertz wireless communications. J. Appl. Phys. 107(11), 111101-1-21 (2010)
19.
Zurück zum Zitat Yeh, C., Shimabukuro, F., Siegel, P.H.: Low-loss terahertz ribbon waveguides. Appl. Optics. 44(28), 5937–5946 (2005) Yeh, C., Shimabukuro, F., Siegel, P.H.: Low-loss terahertz ribbon waveguides. Appl. Optics. 44(28), 5937–5946 (2005)
20.
Zurück zum Zitat Niu, T., Withayachumnankul, W., Ung, B.S.-Y., Menekse, H., Bhaskaran, M., Sriram, S., Fumeaux, C.: Reflectarray antennas for terahertz communications. DOI: arXiv:1210.0653 (2013) Niu, T., Withayachumnankul, W., Ung, B.S.-Y., Menekse, H., Bhaskaran, M., Sriram, S., Fumeaux, C.: Reflectarray antennas for terahertz communications. DOI: arXiv:1210.0653 (2013)
21.
Zurück zum Zitat Kadoya, Y., Onuma, M., Yanagi, S., Ohkubo, T., Sato, N., Kitagawa, J.: THz wave propagation on strip lines: devices, properties and applications. Radioengineering 17(2), 48–55 (2008) Kadoya, Y., Onuma, M., Yanagi, S., Ohkubo, T., Sato, N., Kitagawa, J.: THz wave propagation on strip lines: devices, properties and applications. Radioengineering 17(2), 48–55 (2008)
22.
Zurück zum Zitat Mendis, R., Grischkowsky, D.: THz interconnect with low-loss and low-group velocity dispersion. IEEE Microw. Wire. Comp. Lett.11(11), 444–446 (2001) Mendis, R., Grischkowsky, D.: THz interconnect with low-loss and low-group velocity dispersion. IEEE Microw. Wire. Comp. Lett.11(11), 444–446 (2001)
23.
Zurück zum Zitat Piesiewicz, R., Islam, M.N., Koch, M., Kurner, T.: Towards short-range terahertz communication systems: basic considerations. In Proc. 18th Int. Conf. Appl. Electromagnetics Commun., Dubrovnik, Croatia, Oct. 12–14, 2005, pp. 1–5 (2005) Piesiewicz, R., Islam, M.N., Koch, M., Kurner, T.: Towards short-range terahertz communication systems: basic considerations. In Proc. 18th Int. Conf. Appl. Electromagnetics Commun., Dubrovnik, Croatia, Oct. 12–14, 2005, pp. 1–5 (2005)
24.
Zurück zum Zitat Gupta, K.C., Garg, R., Bahl, I., Bhartia, P.: Microstrip Lines and Slot Lines. Artech House. Boston. M. A. (1996) Gupta, K.C., Garg, R., Bahl, I., Bhartia, P.: Microstrip Lines and Slot Lines. Artech House. Boston. M. A. (1996)
25.
Zurück zum Zitat Kumar, P., Singh, G.: Theoretical investigation of the input impedance of gap-coupled circular microstrip patch antennas. J. Infrared Milli. Tera.Waves 30(11), 1148–1160 (2009) Kumar, P., Singh, G.: Theoretical investigation of the input impedance of gap-coupled circular microstrip patch antennas. J. Infrared Milli. Tera.Waves 30(11), 1148–1160 (2009)
26.
Zurück zum Zitat Garg, R., Bhartia, P., Bahl, I., Ittipiboon, A.: Microstrip antenna design handbook. Artech house: London (2001) Garg, R., Bhartia, P., Bahl, I., Ittipiboon, A.: Microstrip antenna design handbook. Artech house: London (2001)
27.
Zurück zum Zitat Jha, K.R., Rao, S.V.R.K., Singh, G.: Constructive interference in Yagi-Uda type printed terahertz antenna on photonic crystal substrate. In Proc. 33rd IEEE Sarnoff Symposium, Princeton, USA, Apr. 12–14, 2010, pp. 1–5 (2010) Jha, K.R., Rao, S.V.R.K., Singh, G.: Constructive interference in Yagi-Uda type printed terahertz antenna on photonic crystal substrate. In Proc. 33rd IEEE Sarnoff Symposium, Princeton, USA, Apr. 12–14, 2010, pp. 1–5 (2010)
28.
Zurück zum Zitat Milligan, T.A.: Modern Antenna Design. IEEE Press: NY (2005) Milligan, T.A.: Modern Antenna Design. IEEE Press: NY (2005)
29.
Zurück zum Zitat Han K., Nguyen, T. K., Park, I., Han, H.: Terahertz Yagi-Uda antenna for high input resistance. J. Infrared Milli. Tera.Waves 31(5), 441–454 (2010) Han K., Nguyen, T. K., Park, I., Han, H.: Terahertz Yagi-Uda antenna for high input resistance. J. Infrared Milli. Tera.Waves 31(5), 441–454 (2010)
30.
Zurück zum Zitat Chieh, J.S., Pham, A., Kannell, G., Pidwerbetsky, A.: A W-Band 8 × 8 series fed patch array detector on liquid crystal polymer. IEEE Antennas Propag. Soc. Int. Symp. Chicago, USA, July 8–12, 2012, pp. 1–2 (2012) Chieh, J.S., Pham, A., Kannell, G., Pidwerbetsky, A.: A W-Band 8 × 8 series fed patch array detector on liquid crystal polymer. IEEE Antennas Propag. Soc. Int. Symp. Chicago, USA, July 8–12, 2012, pp. 1–2 (2012)
31.
Zurück zum Zitat Ridgway, R.W., Battelle, C., Nippa, D.W.: Generation and modulation of a 94-GHz signal using electrooptic modulators.: IEEE Photonics Technology Letters 20(8), 653–655 (2008) Ridgway, R.W., Battelle, C., Nippa, D.W.: Generation and modulation of a 94-GHz signal using electrooptic modulators.: IEEE Photonics Technology Letters 20(8), 653–655 (2008)
32.
Zurück zum Zitat Yeap, S.B., Chen, Z.N., Qing, X., Rui, L., Ho, D.S.W., Guan, L.T.: 135 GHz Antenna array on BCB membrane backed by polymer-filled cavity. In Proc. 6th European Conf. on Antennas Propag. Prague, Czech Republic., March 26–30, 2012, pp. 1337–1340 (2012) Yeap, S.B., Chen, Z.N., Qing, X., Rui, L., Ho, D.S.W., Guan, L.T.: 135 GHz Antenna array on BCB membrane backed by polymer-filled cavity. In Proc. 6th European Conf. on Antennas Propag. Prague, Czech Republic., March 26–30, 2012, pp. 1337–1340 (2012)
33.
Zurück zum Zitat Lucyszyn, S.: Evaluating surface impedance models for terahertz frequencies at room temperature. Prog. Electromagn. Res. Online 3, 554–559 (2007) Lucyszyn, S.: Evaluating surface impedance models for terahertz frequencies at room temperature. Prog. Electromagn. Res. Online 3, 554–559 (2007)
Metadaten
Titel
Patch Array Antenna on EBG Substrate
verfasst von
Kumud Ranjan Jha
Ghanshyam Singh
Copyright-Jahr
2014
DOI
https://doi.org/10.1007/978-3-319-02341-0_4

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