Abstract
This paper presents a direct coupled C slot loaded microstrip antenna which can yield wider bandwidth for WLAN/WiMax applications. The different antenna geometries are simulated through IE3D Zeland simulation software for the comparative analysis of bandwidth. The recent development technology of wireless internet access applied to the WLAN (Wireless Local Area Network) frequency bands in the range 2.40-2.50 GHz has forced demand for dual-band antennas, which can be implemented in stationary and mobile devices. The proposed antenna has dual frequency band having fractional bandwidth 3.38% (1.392-1.44 GHz) and 69.5% (1.733-3.58 GHz) which is suitable WLAN/WiMax applications. The gain has been improved up to 5.11dBi, directivity 5.39dBi and efficiency 97.216%. The proposed directly coupled microstrip antenna fed by 50 Ω microstrip feed line.
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Bhattacharya, D., Prasanna, R.: Bandwidth Enrichment for Micro-strip Patch Antenna Using Pendant Techniques. IJER 2(4), 286–289 (2013) ISSN: 2319-6890
Balanis, C.A.: Antenna theory, Analysis and Design. John Wiley & Sons, Inc., Hoboken (2005)
Srivastava, S., Singh, V.K., Ali, Z., Singh, A.K.: Duo Triangle Shaped Microstrip Patch Antenna Analysis for WiMAX lower band Application. Procedia Technology 10, 554–563 (2013)
Singh, P., Chandel, A., Naina, D.: Bandwidth Enhancement of Probe Fed Microstrip Patch Antenna. IJECCT 3(1) (January 2013) ISSN: 2249-7838
Jain, S., Singh, V.K., Ayub, S.: Design of Slotted Microstrip Antenna having high efficiency and gain. International Journal of Engineering and Technical Research, 50–52 (April 2014) ISSN: 2321-0869
Pavithra, D., Dharani, K.R.: A Design of H-Shape Microstrip Patch Antenna for WLAN Applications. IJESI 2(6), 71–74 (2013) ISSN: 2319-6734
Pathak, R.S., Singh, V.K., Ayub, S.: Dual Band Microstrip Antenna for GPS/ WLAN/ WiMAX Applications. IJETED 7(2) (November 2012) ISSN: 2249-6149
Singh, V.K., Ali, Z., Singh, A.K., Ayub, S.: Dual Band Triangular Slotted Stacked Microstrip Antenna for Wireless Applications. Central European Journal of Engineering 3(2), 221–225 (2013) ISSN: 1896-1541
Jain, S., Singh, V.K., Ayub, S.: Bandwidth and Gain Optimization of a Wide Band Gap Coupled Patch Antenna. IJESRT (March 2013) ISSN: 2277-9655
Ali, Z., Singh, V.K., Ayub, S.: A Neural Network Approach to study the Bandwidth of Microstrip Antenna. IJARCSSE 3(1) (January 2013) ISSN: 2277 128X
Roy, A., Bhunia, S.: Compact Broad Band Dual Frequency Slot Loaded Microslot Patch antenna with Defecting Ground Plane for WI-MAX and WLAN. IJSCE 1(6) (January 2012) ISSN: 2231-2307
Singh, V.K., Ali, Z., Ayub, S., Singh, A.K.: A Compact wide band Microstrip Antenna for GPS/DCS/PCS/WLAN Applications. In Intelligent Computing, Networking, and Informatics, pp. 183–204 (October 2013)
Singh, V.K., Jain, S.: Low Profile Slotted Microstrip Patch Antenna for Dual Band Application. International Journal of Advanced Electronics and Communication Systems (IJAECS) 3(2) (April-May 2014)
Rop, K.V., Konditi, D.B.O., Ouma, H.A., Musyoki, S.M.: Parameter optimization in design of a rectangular microstrip patch antenna using adaptive neuro-fuzzy inference system technique. IJTPE Journal (September 2012) ISSN 2077-3528
Hu, C.-L., Yang, C.-F., Lin, S.-T.: A Compact Inverted-F Antenna to be Embedded in Ultra-thin Laptop Computer for LTE/WWAN/WI-MAX/WLAN Applications. IEEE Trans. AP-S/USRT, 978-1-4244-9561 (2011)
Parashar, K.K., Singh, V.K., Sinha, H.P.: Wide Band Circle Slotted Inset Fed Microstrip Patch Antenna for Wireless Application. International Journal of Microwave Engineering & Technologies (STM), 6–10 (March 2014)
Singh, V.K., Ali, Z., Ayub, S.: Bandwidth Optimization of Compact Microstrip Antenna for PCS/DCS/Bluetooth Application. Central European Journal of Engineering 4(3), 281–286 (2014) ISSN: 1896-1541
Loni, J., Singh, V.K., Ayub, S.: Bandwidth Improvement of Microstrip Patch Antenna for WLAN Application. International Journal of Engineering and Technical Research, 44–46 (April 2014) ISSN: 2321-0869
Ali, Z., Singh, V.K., Singhal, A.K.: Meandered Ground Microstrip Patch Antenna for WiMAX/WLAN Application. International Journal of Advanced Electronics and Communication Systems (IJAECS) 3(2) (April-May 2014)
Singh, A.K., Kabeer, R.A., Singh, V.K., Ali, Z.: Performance Analysis of First Iteration Koch Curve Fractal Log Periodic Antenna of Varying Angles. Central European Journal of Engineering 3(1), 51–57 (2013) ISSN: 1896-1541
Parashar, K.K., Singh, V.K., Pathak, R.S.: Compact Inset Fed Microstrip Patch Antenna for Dual Band Application. International Journal of Engineering and Technical Research, 47–49 (April 2014) ISSN: 2321-0869
Lumba, S., Singh, V.K.: Novel Approach for Analysis of Bandwidth of Microstrip Patch Antenna Using Neural Network. IJARCSSE 4(2), 637–642 (2014)
Parashar, K.K., Singh, V.K., Sinha, H.P.: Novel Design of Broad Band Microstrip Antenna for WiMax/WLAN/UMTS Applications. International Journal of Microwave and Engineering & Technologies (STM), 1–5 (March 2014)
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Srivastava, R., Singh, V.K., Ayub, S. (2015). Comparative Analysis and Bandwidth Enhancement with Direct Coupled C Slotted Microstrip Antenna for Dual Wide Band Applications. In: Satapathy, S., Biswal, B., Udgata, S., Mandal, J. (eds) Proceedings of the 3rd International Conference on Frontiers of Intelligent Computing: Theory and Applications (FICTA) 2014. Advances in Intelligent Systems and Computing, vol 328. Springer, Cham. https://doi.org/10.1007/978-3-319-12012-6_49
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DOI: https://doi.org/10.1007/978-3-319-12012-6_49
Publisher Name: Springer, Cham
Print ISBN: 978-3-319-12011-9
Online ISBN: 978-3-319-12012-6
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