New configuration for multiband ultra compact gap resonator based D-CRLH

dc.AffiliationOctober University for modern sciences and Arts (MSA)
dc.contributor.authorDaw A.F.
dc.contributor.authorAbdalla M.A.
dc.contributor.authorElhennawy H.M.
dc.contributor.otherCommunication and Electronics Dept
dc.contributor.otherMSA University
dc.contributor.otherCairo
dc.contributor.otherEgypt; Electronic Engineering Dept
dc.contributor.otherMTC Collage
dc.contributor.otherCairo
dc.contributor.otherEgypt; Electronics and Communications Dept
dc.contributor.otherAin Shams University
dc.contributor.otherCairo
dc.contributor.otherEgypt
dc.date.accessioned2020-01-09T20:41:29Z
dc.date.available2020-01-09T20:41:29Z
dc.date.issued2016
dc.descriptionScopus
dc.description.abstractA new compact multiband resonator based on one modified cell of dual-composite right/left-handed microstrip structure is presented in this paper. This introduced topology proposes triple band for 7.4 GHz, 9.2 GHz, and 13 GHz with insertion loss 2.3 dB, 0.6 dB, and 0.55 dB, respectively. Moreover, the return losses are equal 13 dB, 43 dB, and 10 dB, respectively. The paper elaborates the equivalent circuit model, analytical study and 3D full-wave simulation. Furthermore, the design realizes compactness size (13.2 � 5.9 mm2). The quality factor demonstrates selectivity equals 35, 8.18, and 48.1 at the four bands, respectively. � 2016 IEEE.en_US
dc.identifier.doihttps://doi.org/10.1109/MECAP.2016.7790118
dc.identifier.isbn9.78E+12
dc.identifier.otherhttps://doi.org/10.1109/MECAP.2016.7790118
dc.identifier.urihttps://ieeexplore.ieee.org/document/7790118
dc.language.isoEnglishen_US
dc.publisherInstitute of Electrical and Electronics Engineers Inc.en_US
dc.relation.ispartofseries2016 IEEE Middle East Conference on Antennas and Propagation, MECAP 2016
dc.subjectOctober University for Modern Sciences and Arts
dc.subjectUniversity for Modern Sciences and Arts
dc.subjectMSA University
dc.subjectجامعة أكتوبر للعلوم الحديثة والآداب
dc.subjectCoupled gap resonatoren_US
dc.subjectD-CRLH resonatorsen_US
dc.subjectLriple band resonatoren_US
dc.subjectMetamaterial resonatoren_US
dc.subjectEquivalent circuitsen_US
dc.subjectStructure (composition)en_US
dc.subjectAnalytical studiesen_US
dc.subjectComposite right/left-handeden_US
dc.subjectEquivalent circuit modelen_US
dc.subjectFull-wave simulationsen_US
dc.subjectMicrostrip structuresen_US
dc.subjectQuality factorsen_US
dc.subjectReturn lossen_US
dc.subjectTriple banden_US
dc.subjectResonatorsen_US
dc.titleNew configuration for multiband ultra compact gap resonator based D-CRLHen_US
dc.typeConference Paperen_US
dcterms.isReferencedByCaloz, C., Itoh, T., (2006) Electromagnetic Metamaterials Transmission Line Theory and Microwave Applications, , N Jersey: J. Wiley &Sons; Caloz, C., Dual Composite Right/Left-Handed (D-CRLH) Transmission Line Metamaterial (2006) IEEE Microwave and Wireless Components Letters, 16 (11), pp. 585-587; Eleftheriades, G.V., Balmain, K.G., (2005) Negative Refractive Metamaterials, , New Jersey: John Wiey &Sons; Marqu�s, R., Mart�n, F., Sorolla, M., (2008) Metamaterials with Negative Parameters Theory, Design and Microwave Applications, , J. Wiey &Sons; Capolino, F., (2009) Theory and Phenomena of Metamaterials, , CRC press; Eleftheriades, G.V., Enabling RF/microwave devices using negativerefractive-index transmission-line (NRI-TL) metamaterials (2007) IEEE Antennas and Propagation Magazine, 49 (2), pp. 34-51; Dong, Y., Itoh, T., Promising future of metamaterials (2012) IEEE Microwave Magaz., 13 (2), pp. 39-56; Lee, W.H., Gummalla, A., Achour, M., Small antennas based on CRLH structures: Concept, design, and applications (2011) IEEE Ant. and Prop. Mag., 53 (2), pp. 10-25; Dong, Y., Itoh, T., Metamaterial-based antennas (2012) IEEE Proceedings, 100 (7), pp. 2271-2285; Ziolkowski, R.W., Jin, P., Lin, C., Metamaterial-inspired engineering of antennas (2011) IEEE Proceedings, 99 (10), pp. 1720-1731; Caloz, C., Itoh, T., Rennings, A., CRLH metamaterial leaky-wave and resonant antennas (2008) IEEE Antennas and Propagation Magazine, 50 (5), pp. 25-39; Mehdipour, A., Eleftheriades, G.V., Leaky-wave antennas using negative-refractive-index transmission-line metamaterial super cells (2014) IEEE Trans. on Ant, &Prop., 62 (8), pp. 3929-3942; I'Kholodnyak, D., Turgaliev, V., Zameshaeva, E., Dual-band immittance inverters on dual-composite right/left-handed transmission line (DCRLH TL) 2015 German Microwave Conference (GeMiC), pp. 60-63; Daw, A.F., Abdalla, M.A., Elhennawy, H.M., New inductor loaded composite right left hand impedance transformer for UWB wireless applications (2015) 2015 9th Int. Cong. on Advanced Electromagnetic Material in Microwave and Optics, pp. 231-233. , September, UK; Wu, G., Wang, G., Sun, J., Gao, X., Wang, Y., Compact dual-band power divider based on dual composite right/left-handed transmission line (2014) Electronics Letter, 50 (10), pp. 759-761. , May; Gonz�lez-Posadas, V., Jim�nez-Mart?, J.L., Parra-Cerrada, A., Garciia-Munioz, L.E., Segovia-Vargas, D., Dual-composite right-left-handed transmission lines for the design of compact diplexers (2010) IET Microwaves, Antennas &Propagation, 4 (8), pp. 982-990; Tong, W., Hu, Z., Zhang, H., Caloz, C., Rennings, A., Study and realisation of dual-composite right/left-handed coplanar waveguide metamaterial in MMIC technology (2008) IET Microwaves, Antennas &Propagation, 2 (7), pp. 731-736; Wu, G., Wang, G., Li, T., Zhou, C., Novel dual-composite right/lefthanded transmission line and its application to bandstop filter (2013) Progress in Electromagnetics Research Letters, 37, pp. 29-35; Liu, C., Chu, Q., Huang, J., A planar D-CRLH transmission line structure and its application to leaky-wave antenna (2010) 9th Int. Symp. on Ant., Prop. and em The. (ISAPE), pp. 345-348; Abdalla, M., Fouad, A., Compact triple band D-CRLH metamaterial antenna 2015 IEEE AP-S Int. Antenna and Propagation Symposium Digest, Canada, pp. 1190-1191; Abdalla, M.A., Fouad, A., Integrated filtering antenna based on DCRLH transmission lines for ultra-compact wireless applications (2016) Progress in Electromagnetic Research C, 66, pp. 29-38; Makimoto, M., Yamashita, S., (2013) Microwave Resonators and Filters for Wireless Communication: Theory, Design and Application, 4. , Springer Science &Business Media; Zermane, A., Sauviac, B., Bayard, B., Payet-Gervy, B., Rousseau, J.J., Modeling and measurement of a zeroth-order resonator and a composite right-left-handed transmission line in coplanar technology (2010) Progress in Electromagnetics Research C, pp. 33-43; Karimian, S., Abdalla, M., Hu, Z., Left-handed stepped impedance resonator for WLAN applications (2009) 3rd Int. Congress on Advanced Electromagnetic Materials in Microwaves and Optics, pp. 105-107. , UK; Karimian, S., Abdalla, M., Hu, Z., Tunable metamaterial ferrite stepped impedance resonator (SIR) (2010) 2010 PIERS the 27th Progress in Electromagnetics Research Symposium, pp. 165-168. , Xi'an, China; Karimian, S., Abdalla, M., Hu, Z., Compact half-wavelength metamaterial stepped impedance resonator (SIR) (2011) 2011 IEEE Int. Antenna and Propagation Symposium, pp. 1054-1057. , USA; Scher, A.D., Rodenbeck, C.T., Chang, K., Compact gap coupled resonator using negative refractive index microstrip line (2004) Electronics Lett, 40, pp. 126-127. , Jan; Abdalla, M.A., Hu, Z., Compact metamaterial coplanar waveguide ferrite tunable resonator (2016) IET Microwaves, Antennas &Propagation, 10 (4), pp. 406-412; Daw, A.F., Abdalla, M.A., Elhennawy, H.M., Dual band high selective compact transmission line gap resonator 2014 Loughborough Antennas &Propagation Conference, UK, pp. 91-94; Daw, A.F., Abdalla, M.A., EL-Hennawy, H.M., Multiband sharp-skirt compact gap resonator based D-CRLH 2015 32th National Radio Science Conference (NRSC), Egypt, pp. 43-50; Hong, J.S., Lancaster, M.J., (2001) Microstrip Filter for RF/Microwave Appications, , N. Y.; Wiley
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