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Dual Band Integrated Wideband Multi Resonating Patch Antenna for C–Band and Ku–Band Applications

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
A wideband antenna with dual band characteristic at 5.33/14.3GHz with resonating frequencies for wireless applications is presented. The strategy of the design is to introduce multiband in antenna band. Bandwidth of the antenna increases by embedding annular ring on the radiating patch and four bands are achieved by introducing coupling gap between the patches. Surface current distribution is analyzed at different resonating frequencies for understanding the radiation mechanism and effect of annular ring. The antenna parameters such as return loss, radiation pattern, gain, VSWR and group delay are discussed. The impedance bandwidth of the proposed dual band antenna at lower resonant frequency is 12.7% (simulated) and 9.8 % (measured) whereas at upper resonant frequency is 15.3 % (simulated) and 13.97 % (measured).
Słowa kluczowe
Twórcy
  • Department of Electronics & Communication, University of Allahabad, Allahabad, India
autor
  • Department of Electronics & Communication, University of Allahabad, Allahabad, India
  • Department of Electronics & Communication, University of Allahabad, Allahabad, India
autor
  • Department of Electronics & Communication, University of Allahabad, Allahabad, India
Bibliografia
  • [1] Balanis C. A.(2005), Antenna Theory: Analysis and Design. 3rd edition, John Wiley & Sons.
  • [2] Garg R., Bahartia P., & Ittipiboon A. (2001), Microstrip Antenna Design Hadbook, Artech hose, Boston, London.
  • [3] Yadav N. P (2016).Triple U-Slot Loaded Defected Ground Plane Antenna for Multiband Operations. Microwave Optical Technology Letters, 58, 124–128.
  • [4] Rajkumar R,&Kiran K.U.(2016). A Compact Metamaterial Multiband Antenna for WLAN/Wimax /ITU Band Applications. AEÜ-International Journal of Electronics and Communications, 10, 1-6.
  • [5] Mehdipour A., Sebak A. R.,Trueman CW., &Denidni TA. (2012). Compact Multiband Planar Antenna for 2.4/3.5/5.2/5.8-GHz Wireless Applications. IEEE Antennas Wireless Propagation Letters, 11,144-147.
  • [6] Singh V., Mishra B., Dwivedi A.K., & Singh R.(2018). Inverted L-Notch Loaded Hexaband Circular Patch Antenna for X, Ku /K Band Applications. Microwave and Optical Technology Letters,60, 2081-2088.
  • [7] Singh V., Mishra B., Tripathi P.N.,& Singh R.(2016).A Compact Quad Band Microstrip Antenna for S and C-Band Application. Microwave and Optical Technology Letters, 58, 1365-1369.
  • [8] Wang H., Huang X.B., & Fang D.G.(2008).A Single Layer Wideband U-Slot Microstrip Patch Antenna Array. IEEE Antennas Wireless Propagation Letters,7, 9–12.
  • [9] Khanna P., Sharma A., Shinghal K., &Kumar A.(2016).A Defected Structure Shaped CPW-Fed Wideband Microstrip Antenna for Wireless Applications. Journal of Engineering,4, 1-7.
  • [10] Mishra B., Singh V.,& Singh R. (2017).Dual and Wide Band Slot Loaded Stacked Microstrip Patch Antenna for WLAN/Wi-MAX Applications. Microsyst Technol., 23, 3467-3475.
  • [11] Rao G.S., Kumar S.S., & Pillalamarri R. (2014).Printed Planar Circular Radiating Patch Ultra Wideband Antennas. Microsyst Technol.,21, 2321–2325.
  • [12] Chandel R.,& Gautam A.K. (2016).Compact MIMO/diversity slot antenna for UWB applications with band-notched characteristic. Electronics Letter, 52, 336–338.
  • [13] Kamakshi K., Ansari J.A., Singh A., Aneesh M., & Jaiswal A.K.(2015).A Novel Ultra Wideband Toppled Trapezium-Shaped Patch Antenna with Partial Ground Plane. Microwave and Optical Technology Letters,57, 1983–1986.
  • [14] Mishra B., Singh V., Singh R.K., Singh N., & Singh R.(2017).A compact UWB patch antenna with defected ground for Ku/K band applications. Microwave and Optical Technology Letters, 60, 1-5.
  • [15] Khandelwal M.K., Kanaujia BK, Dwari S., Kumar S., & Gautam A.K.(2014).Bandwidth enhancement and Cross-Polarization Suppression in Ultra Wideband Microstrip Antenna with Defected Ground Plane. Microwave and Optical Technology Letters, 56, 2141–2146.
  • [16] Azadegan R.(2010).A Ku-Band Planar Antenna Array for Mobile Satellite TV Reception with Linear Polarization. IEEE Trans Antennas Propagation, 58, 2097–2101.
  • [17] Borji A, Busuioc D.,& Safavi-Naeini S.(2009).Efficient, Low-Cost Integrated Waveguide-Fed Planar Antenna Array for Ku-Band Applications. IEEE Antennas Wireless Propagation Letters, 8, 336– 339.
  • [18] Ilham R.,& Kurniawan A. (2015). Design and Implementation of Microstrip Antenna Array on Ku-Band for Satellite TV Reception. IEEE International Telecommunication Networks Applications Conference,185–190.
  • [19] Park J.H., Choi H.K., &Kim S.H. (2012).Design of Ku-Band Reflectarray Using Hexagonal Patch with Crossed Slots. Microwave and Optical Technology Letters, 54 (10), 2383–2387.
  • [20] Yu C, Hong W, Kuai Z, &Wang H. (2012).Ku-Band Linearly Polarized Omni-directional Planar Filtenna. IEEE Antennas Wireless Propagation Letters,11, 310–313.
  • [21] Islam M. T.,Misran N.,& Mobashsher A.T.(2010).Compact Dual band Microstrip Antenna for Ku-band Application. Information Technology journal 9(2),354-358.
  • [22] Malisuwan S., Sivaraks J., Madan N., & Suriyakrai N. (2014).Design of Microstrip Patch Antenna for Ku-Band Satellite Communication Applications. International Journal of Computer and Communication Engineering, 3(6), 413-416. [23] Prasad P.C.,& Chattoraj N.(2013).Design Of Compact Ku Band Microstrip Antenna for Satellite Communication. IEEE Int. Conf. Communication Signal Processing, 196–200.
  • [24] Dalli A., Zenkouar L., & Bri S. (2012).Comparison of Circular Sector and Rectangular Patch Antenna Arrays in C-Band. Journal of Electromagnetic Analysis and Applications, 4 (11), 457-467.
  • [25] Bahloul M.S., Abri M.,& Bendimerad F. T. (2012).Stacked Printed Antennas Array for C Band Applications. International Journal of Distributed and Parallel Systems,3(3), 275-286.
  • [26] Bairami P., & Zavvari M.(2015).Broad Band Circularly Polarized Square Slot Array Antenna with Improved Sequentially Rotated Feed Network for C-Band Application. International Journal of Microwave and Wireless Technologies, 9(1), 171–175.
  • [27] Slimani A., Bennani S.D., Alami A.E.,& Terhzaz J.(2017).Ultra wideband Planar Microstrip Array Antennas for C-Band Aircraft Weather Radar Applications. Hindawi International Journal of Antennas and Propagation,10, 1115-1122.
  • [28] Pandey A.K., & Singh R.(2018).Dual Band Gap Coupled Patch Antenna for Wireless Communications. ECTI Transactions on Electrical Eng., Electronics and Communications, 16(1), 39-45.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1060a452-1280-48e1-9ad6-ce54bc820f45
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