Academic literature on the topic 'Multiband and wideband antenna'

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Journal articles on the topic "Multiband and wideband antenna"

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Yadav, Dorik Narayan. "Study of Multiband DRA for Mobile communication." Himalayan Physics 5 (July 5, 2015): 75–77. http://dx.doi.org/10.3126/hj.v5i0.12876.

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The explosive demand for mobile communication and information transfer using personal devices such as mobile phone or notebook computer has caused the need for major advancements of antenna design. With the development of 3G and 4G technologies multiband and wideband antennas operating at additional frequency band such as UMTS and LTE are required. In this chapter it is initially presented the fundamental parameters of antenna to be taken into account while designing an antenna and determining the operating frequency bands. Multiband antennas which are used especially in mobile unit are descri
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Gupta, Ankush, Hem Dutt Joshi, and Rajesh Khanna. "An X-shaped fractal antenna with DGS for multiband applications." International Journal of Microwave and Wireless Technologies 9, no. 5 (2016): 1075–83. http://dx.doi.org/10.1017/s1759078716000994.

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In this paper, an X-shaped fractal antenna with defected ground structure (DGS) is presented for multiband and wideband applications. The X shape is used due to its simple design and DGS is utilized to achieve size reduction with multiband and wideband features in the frequency range of 1–7 GHz. The proposed structure is fabricated on FR4 substrate with 1.6 mm thickness. We have proposed two different antennas both are having X-shaped fractal patch with a slotted ground plane to have more impedance bandwidth and better return loss. Various parameters like scale factor, width of ground plane, n
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Izni, Husna Idris, Rijal Hamid Mohamad, Kamardin Kamilia, Kamal A. Rahim Mohamad, and A. Majid Huda. "A multiband and wideband frequency reconfigurable slotted bowtie antenna." Indonesian Journal of Electrical Engineering and Computer Science 19, no. 3 (2022): 1399–406. https://doi.org/10.11591/ijeecs.v19.i3.pp1399-1406.

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A multiband and wideband frequency reconfigurable antenna is presented. A wideband from 3.5 GHz to 9.0 GHz is achieved by introducing one stripline in the middle of a slotted bowtie antenna, whereas multiband is obtained by integrating an additional two slotted arms at the end of bowtieshaped. As a result, the antenna operated at multiband mode (1.7 GHz and 2.6 GHz) and wideband mode (3.5 GHz to 9.0 GHz) simultaneously. The reconfigurability of the antenna is attained through switches. Five states are achieved with three pairs of switches configurations. All results are presented and discussed
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Idris, Izni Husna, Mohamad Rijal Hamid, Kamilia Kamardin, Mohamad Kamal A. Rahim, and Huda A. Majid. "A multiband and wideband frequency reconfigurable slotted bowtie antenna." Indonesian Journal of Electrical Engineering and Computer Science 19, no. 3 (2020): 1399. http://dx.doi.org/10.11591/ijeecs.v19.i3.pp1399-1406.

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A multiband and wideband frequency reconfigurable antenna is presented. A wideband from 3.5 GHz to 9.0 GHz is achieved by introducing one stripline in the middle of a slotted bowtie antenna, whereas multiband is obtained by integrating an additional two slotted arms at the end of bowtie-shaped. As a result, the antenna operated at multiband mode (1.7 GHz and 2.6 GHz) and wideband mode (3.5 GHz to 9.0 GHz) simultaneously. The reconfigurability of the antenna is attained through switches. Five states are achieved with three pairs of switches configurations. All results are presented and discusse
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Raj, Tej, Ranjan Mishra, Pradeep Kumar, and Ankush Kapoor. "Advances in MIMO Antenna Design for 5G: A Comprehensive Review." Sensors 23, no. 14 (2023): 6329. http://dx.doi.org/10.3390/s23146329.

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Multiple-input multiple-output (MIMO) technology has emerged as a highly promising solution for wireless communication, offering an opportunity to overcome the limitations of traffic capacity in high-speed broadband wireless network access. By utilizing multiple antennas at both the transmitting and receiving ends, the MIMO system enhances the efficiency and performance of wireless communication systems. This manuscript specifies a comprehensive review of MIMO antenna design approaches for fifth generation (5G) and beyond. With an introductory glimpse of cellular generation and the frequency s
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Abraham, Jacob, Kirthika Natarajan, Senthilkumar Andi, Jemin Vijayaselvan Mariyarose, Manjunathan Alagarsamy, and Kannadhasan Suriyan. "Frequency reconfigurable microstrip patch antenna for multiband applications." International Journal of Reconfigurable and Embedded Systems (IJRES) 13, no. 2 (2024): 472. http://dx.doi.org/10.11591/ijres.v13.i2.pp472-482.

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Wireless communication technology is well-established, and several antennas have been developed and produced specifically for this purpose. However, antenna performance and communication system development need to be enhanced in order to adapt to the present era. The performance of the antenna is significantly influenced by its design. Thus, this work produced a novel wideband antenna design via the use of a frequency reconfigurable approach. In the recommended study, microstrip patch antennas (MPAs) were used in wideband applications to switch frequencies using shunt-series microelectromechan
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Haider, N., D. Caratelli, and A. G. Yarovoy. "Recent Developments in Reconfigurable and Multiband Antenna Technology." International Journal of Antennas and Propagation 2013 (2013): 1–14. http://dx.doi.org/10.1155/2013/869170.

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A comparative analysis of various reconfigurable and multiband antenna concepts is presented. In order to satisfy the requirements for the advanced systems used in modern wireless and radar applications, different multiband and reconfigurable antennas have been proposed and investigated in the past years. In this paper, these design concepts have been classified into three basic approaches: tunable/switchable antenna integration with radio-frequency switching devices, wideband or multiband antenna integration with tunable filters, and array architectures with the same aperture utilized for dif
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Ali, Esraa Mousa, Wahaj Abbas Awan, Anees Abbas, Syed Mujahid Abbas, and Heba G. Mohamed. "Compact Frequency-Agile and Mode-Reconfigurable Antenna for C-Band, Sub-6-GHz-5G, and ISM Applications." Micromachines 16, no. 6 (2025): 724. https://doi.org/10.3390/mi16060724.

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This article presents the design and evaluation of a compact-sized antenna targeting heterogenous applications working in the C-band, 5G-sub-6GHz, and the ISM band. The antenna offers frequency reconfigurability along with multi-operational modes ranging from wideband to dual-band and tri-band. A compact-sized antenna is designed initially to cover a broad bandwidth that ranges from 4 GHz to 7 GHz. Afterwards, various multiband antennas are formed by loading various stubs. Finally, the wideband antenna along with multi-stub loaded antennas are combined to form a single antenna. Furthermore, PI
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I., H. Idris, R. Hamid M., Kamardin K., and K. A. Rahim M. "Wide to multiband elliptical monopole reconfigurable antenna for multimode systems applications." TELKOMNIKA Telecommunication, Computing, Electronics and Control 17, no. 4 (2019): 1663–69. https://doi.org/10.12928/TELKOMNIKA.v17i4.12764.

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Wideband-multiband reconfigurable elliptical monopole antenna is investigated in this paper. By having conventional elliptical monopole antenna, wideband operating frequency is obtained. With the combination of dual pairs of slotted arms and a band-pass filter on the ground plane of the elliptical monopole, multiband is achieved. Dual-band operating frequencies at 1.6 GHz and 2.6 GHz while wideband operates from 3.35 GHz to 9 GHz. Therefore, wide range of wireless communication systems is obtained from the proposed antenna to support the multiband mode (i.e. GPS and LTE) and UWB systems. Frequ
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Dash, Rajib Kumar, Puspendu Bikash Saha, Dibyendu Ghoshal, and Gopinath Palai. "Design of triangular shaped slotted patch antennas for both wideband and multiband applications." International Journal of Applied Electromagnetics and Mechanics 68, no. 3 (2022): 275–94. http://dx.doi.org/10.3233/jae-210098.

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In this article two fractal geometry-based slotted patch antennas are designed to achieve wideband response with multiband characteristics and reduced cross polarized radiation in both E- and H-plane for all the resonating bands. The proposed antennas are fed with microstrip line feeding formed on a FR4 substrate of size 0.25𝜆0 × 0.25𝜆0 × 0.02𝜆0 mm3 and loaded with a partial ground plane at the bottom of the substrate. HFSS is used to design and simulate both the antennas. Wideband behavior and impedance matching of Antenna-1 are improved by optimizing the factor of iteration and length of the
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Dissertations / Theses on the topic "Multiband and wideband antenna"

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Mello, Rafael Gonçalves Licursi de. "Active and passive metasurfaces : methodology for the design of a low profile, beam-steerable, multiband, and wideband antenna." Electronic Thesis or Diss., Institut polytechnique de Paris, 2022. http://www.theses.fr/2022IPPAT025.

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Les métasurfaces sont des matériaux artificiels qui peuvent être combinés avec des éléments micro-ondes traditionnels dans des solutions révolutionnaires. Les recherches sur l'utilisation des métasurfaces dans les rôles de réflecteur et/ou de superstrat d'antenne se sont considérablement intensifiées à partir du début des années 2020, en raison de leurs fonctionnalités innovantes alignées avec les dernières tendances en Télécommunications. Dans cette thèse, des méthodologies pour l'utilisation de métasurfaces passives et actives dans la conception d'antennes sont présentées. Une première métho
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Benomar, Ahmed. "Etude des Antennes à Résonateurs Diélectriques. : Application aux Réseaux de Télécommunications." Thesis, Limoges, 2015. http://www.theses.fr/2015LIMO0025/document.

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Un développement technologique rapide dans le domaine de télécommunication, qu'il s'agisse de la téléphonie mobile, des réseaux sans fils, de la télévision par satellites, ou des applications radar (civiles ou militaires)...etc. est observé. Cet essor considérable a engendré d'énormes besoins et entraîne une évolution technologique majeure au niveau des antennes. Ces dernières doivent faire face aux différentes exigences, à savoir l'augmentation du gain, l'élargissement de la bande passante… et aux différents problèmes existant, à savoir le coût, l’encombrement…etc. Notre objectif est donc de
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Yousuf, Muhammad Amir. "Parametric Modeling of small terminals and Multiband or Ultra wideband Antennas." Palaiseau, Ecole polytechnique, 2011. https://pastel.hal.science/docs/00/63/48/66/PDF/Parametric_Modeling_of_UWB_antennas.pdf.

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Depuis le lancement systèmes des communications d'ultra large bande (ULB) en courtes distances les facteurs comme la miniaturisation d'appareil et haut débit créer des grands défis pour les concepteurs d'antennes. Une façon de faire le travail de conception facile est du modéliser statistiquement la variabilité de comportement de rayonnement de l'antenne en fonction de sa géométrie. Tel effort est également utile pour la meilleure utilisation du canal de communication si on combine le modèle d'antenne avec ça. Cette thèse est une tentative vers la modélisation statistique des antennes ULB. Le
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Muscat, Adrian. "The design of planar low gain, wideband and multiband antennas employing optimisation techniques." Thesis, Queen Mary, University of London, 2002. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.271716.

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Saleem, Rashid. "Towards an end-to-end multiband OFDM system analysis." Thesis, University of Manchester, 2012. https://www.research.manchester.ac.uk/portal/en/theses/towards-an-endtoend-multiband-ofdm-system-analysis(e711f32f-1ac6-4b48-8f4e-58309c0482d3).html.

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Ultra Wideband (UWB) communication has recently drawn considerable attention from academia and industry. This is mainly owing to the ultra high speeds and cognitive features it could offer. The employability of UWB in numerous areas including but not limited to Wireless Personal Area Networks, WPAN's, Body Area Networks, BAN's, radar and medical imaging etc. has opened several avenues of research and development. However, still there is a disagreement on the standardization of UWB. Two contesting radios for UWB are Multiband Orthogonal Frequency Division Multiplexing (MB-OFDM) and DS-UWB (Dire
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Yurduseven, Okan. "Integration of microwave antennas with solar PV for multiband and wideband mobile, WLAN and WiMAX applications." Thesis, Northumbria University, 2014. http://nrl.northumbria.ac.uk/17466/.

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The primary goal of this research is to investigate the existing photovoltaic antenna integration techniques and develop a new solar antenna integration topology in order to address the drawbacks of these techniques. With the increasing demands for low-profile antennas and a growing move towards the microgeneration of electricity, primarily by photovoltaics, photovoltaic antennas are of increasing importance with a growing amount of research in this area being developed. At present there are a number of designs for photovoltaic antennas which could be divided into two distinct categories. The
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Garrido, Lopez David. "Low-Profile Multiband and Flush-Mountable Wideband Antennas for HF/VHF and K/Ka Band Applications." Thesis, University of Colorado at Boulder, 2017. http://pqdtopen.proquest.com/#viewpdf?dispub=10245047.

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<p> This thesis introduces several novel antenna systems with extended performance capabilities achieved by either enabling multiple operation bands or by widening the bandwidth. Proposed theoretical concepts are successfully tested through simulations and experiments with excellent agreement are demonstrated. The designs developed in this thesis research are low-profile or flush mountable, enabling simple platform integration.</p><p> In the HF/VHF bands, the development of a novel low-profile multiband antenna for vehicular applications is presented. Specifically, an inverted-F antenna is u
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A, Rahim Mohamad Kamal. "Wideband active antenna." Thesis, University of Birmingham, 2003. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.404129.

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Adaniya, Hana L. "Wideband active antenna cancellation." Thesis, Massachusetts Institute of Technology, 2008. http://hdl.handle.net/1721.1/47896.

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Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer Science, 2008.<br>Includes bibliographical references (leaf 91).<br>There exists a simultaneous transmit and receive antenna system where the transmitted signal is creating wideband interference of the receiver. To resolve this interference problem, the isolation between the transmit antenna and the receive antenna must be increased. This thesis analyzes and discusses various strategies for antenna isolation and demonstrates the feasibility of an adaptive filtering approach on active signal ca
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Plaivech, Prachaya. "Wideband Antenna Over Ground Plane." Thesis, University of Sheffield, 2009. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.515450.

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Books on the topic "Multiband and wideband antenna"

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Matin, Mohammad Abdul, ed. Wideband, Multiband, and Smart Antenna Systems. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-74311-6.

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Matin, Mohammad A. Wideband, multiband, and smart reconfigurable antennas for modern wireless communications. Information Science Reference, 2015.

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Siriwongpairat, W. Pam. Ultra-wideband communications systems: Multiband OFDM approach. John Wiley, 2007.

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Yarman, Binboga Siddik. Design of Ultra Wideband Antenna Matching Networks. Springer Netherlands, 2008. http://dx.doi.org/10.1007/978-1-4020-8418-8.

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Adamiak, David V. Transient field visualization for ultra--wideband antenna design. Naval Postgraduate School, 1999.

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F, Wilson Perry, and United States. National Telecommunications and Information Administration, eds. Advanced antenna test bed characterization for wideband wireless communications. U.S. Dept. of Commerce, National Telecommunications and Information Administration, 1999.

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Institution of Electrical Engineers. Professional Network for Antennas and Propagation. Wideband and multi-band antennas and arrays. Institution of Electrical Engineers, 2005.

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Liu, Wei. Wideband beamforming: Concepts and techniques. Wiley, 2010.

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Siddik, Yarman Binboga, ed. Design of ultra wideband antenna matching networks: Via simplified real frequency technique. Springer, 2008.

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Ghavami, M. Ultra Wideband Signals and Systems in Communication Engineering. John Wiley & Sons, Ltd., 2005.

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Book chapters on the topic "Multiband and wideband antenna"

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Wong, Kin-Lu. "Multiband and Wideband Patch Antennas." In Novel Technologies for Microwave and Millimeter — Wave Applications. Springer US, 2004. http://dx.doi.org/10.1007/978-1-4757-4156-8_15.

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Singh, Sweta, Brijesh Mishra, Karunesh Shrivastva, Aditya Kumar Singh, and Rajeev Singh. "Multiband and Wideband MIMO Antenna for X and Ku Band Applications." In Lecture Notes in Electrical Engineering. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-2818-4_59.

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Matin, Mohammad Abdul. "Advances in Wideband, Multiband, and Smart Antenna Systems for Wireless Communication." In Signals and Communication Technology. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-74311-6_1.

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Arun, Goswami Siddhant, Deepak C. Karia, and Bhushan Dhengale. "Multiband and Wideband Antenna for Wi-Fi, WLAN, X-Band and Space Research Applications." In Proceedings of the International Conference on Recent Cognizance in Wireless Communication & Image Processing. Springer India, 2016. http://dx.doi.org/10.1007/978-81-322-2638-3_61.

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Tiwari, Devesh, Mohd Gulman Siddiqui, A. K. Saroj, J. A. Ansari, Neelesh Agrawal, and Mukesh Kumar. "Analysis of Modified Swastika Shaped Slotted (MSSS) Microstrip Antenna for Multiband and Ultra-wideband Applications." In Lecture Notes in Electrical Engineering. Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-32-9775-3_19.

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Okon, Ernest E. "Antenna Arrays." In Ultra-Wideband. John Wiley & Sons, Ltd, 2006. http://dx.doi.org/10.1002/0470056843.ch4.

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Dohler, Mischa. "Basic Antenna Elements." In Ultra-Wideband. John Wiley & Sons, Ltd, 2006. http://dx.doi.org/10.1002/0470056843.ch3.

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Liu, Junsheng, Wasim Q. Malik, David J. Edwards, and Mohammad Ghavami. "Antenna Diversity Techniques." In Ultra-Wideband. John Wiley & Sons, Ltd, 2006. http://dx.doi.org/10.1002/0470056843.ch6.

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Abbas, Syed Muzahir, Ilyas Saleem, Abida Parveen, Hijab Zahra, and Shahid Ahmed Khan. "Chebyshev Multiband Patch Antenna." In Communications in Computer and Information Science. Springer Berlin Heidelberg, 2012. http://dx.doi.org/10.1007/978-3-642-28962-0_2.

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Chen, Zhi Ning. "Antenna Issues." In Ultra Wideband Wireless Communication. John Wiley & Sons, Inc., 2005. http://dx.doi.org/10.1002/9780470042397.ch6.

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Conference papers on the topic "Multiband and wideband antenna"

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Kumar, Diwakar, Deepti Sharma, and Imran Ahmed Khan. "A Multiband, Wideband Wearable Textile Antenna for Body Area Network Applications." In 2025 International Conference on Cognitive Computing in Engineering, Communications, Sciences and Biomedical Health Informatics (IC3ECSBHI). IEEE, 2025. https://doi.org/10.1109/ic3ecsbhi63591.2025.10990771.

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Ghosal, Antara, Anurima Majumdar, Avali Banerjee, Abhijit Ghosh, Moupali Roy, and Swati Barui. "A Perturbed CPW Fed Ultra Wideband Multiband Microstrip Antenna for 5G Communication Application." In 2024 International Conference on Big Data Analytics in Bioinformatics (DABCon). IEEE, 2024. https://doi.org/10.1109/dabcon63472.2024.10919318.

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Das, Hangsa Raj, Rajesh Dey, and Sumanta Bhattacharya. "A REVIEW PAPER ON DESIGN FOR MICROSTRIP PATCH ANTENNA." In Topics in Intelligent Computing and Industry Design. Volkson Press, 2021. http://dx.doi.org/10.26480/etit.02.2020.166.168.

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Microstrip patch antenna is mostly used in modern communication devices over conventional antennas mainly because of their size. In this review paper a survey is conducted on commonly used techniques and design used in microstrip antenna papers which has been used by authors for designing of an efficient, low profile, small, compatible, affordable microstrip antenna, mainly used to designed reconfigurable, multiband and wideband antennas, after that a initiator patch design is given with dimensions on which technique will be applied for the analysis of different parameter of antenna.
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Burr, A. G. "Multiband MIMO antenna arrays." In Wideband and Multi-Band Antennas and Arrays. IEE, 2005. http://dx.doi.org/10.1049/ic:20050301.

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Li, Xuyang, Malyhe Jalilvand, Jijing Yan, Lukasz Zwirello, and Thomas Zwick. "A multiband slotted Bowtie antenna for stroke detection." In 2012 IEEE International Conference on Ultra-Wideband (ICUWB2012). IEEE, 2012. http://dx.doi.org/10.1109/icuwb.2012.6340477.

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Yahya, Muhammad Sani, Shipun Anuar Bin Hamzah, Khairun Nidzam Ramli, et al. "Multiband and wideband characteristics of grid array antenna." In THE 5TH INTERNATIONAL CONFERENCE ON BIOSCIENCE AND BIOTECHNOLOGY. AIP Publishing, 2023. http://dx.doi.org/10.1063/5.0161930.

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Matekovits, Ladislau, and Aldo De Sabata. "Novel multiband wideband filter relying on metamaterial technology." In 2011 International Workshop on Antenna Technology (iWAT). IEEE, 2011. http://dx.doi.org/10.1109/iwat.2011.5752369.

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Hess, D. W., C. A. E. Rizzo, and J. Fordham. "Measurement of antenna performance for active array antennas with spherical near-field scanning." In IET Seminar on Wideband, Multiband Antennas and Arrays for Defence or Civil Applications. IEE, 2008. http://dx.doi.org/10.1049/ic:20080089.

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Haridas, N., T. Arslan, and A. T. Erdogan. "Multiband antenna for space based reconfigurable satellite sensor node." In IET Seminar on Wideband, Multiband Antennas and Arrays for Defence or Civil Applications. IEE, 2008. http://dx.doi.org/10.1049/ic:20080097.

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Barroso, Raul H., Diogenes Marcano, and Miguel A. Diaz. "Modified multiband Parany antenna adapted to the 3.1–10.6 GHz band." In 2009 IEEE International Conference on Ultra-Wideband. IEEE, 2009. http://dx.doi.org/10.1109/icuwb.2009.5288694.

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Reports on the topic "Multiband and wideband antenna"

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Brocato, Robert Wesley. Hemispheric ultra-wideband antenna. Office of Scientific and Technical Information (OSTI), 2006. http://dx.doi.org/10.2172/921149.

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Newman, E. M., and C. M. Ruskowski. Cylindrical Lens-Array Antenna for Wideband Electronic Scanning. Defense Technical Information Center, 1985. http://dx.doi.org/10.21236/ada156085.

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Wilson, Perry, Peter Papazian, Michael Cotton, and Yeh Lo. Advanced Antenna Test Bed Characterization for Wideband Wireless Communication Systems. Institute for Telecommunication Sciences, 1999. https://doi.org/10.70220/hkvmdp64.

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Mital, Rashmi, Dharmesh P. Patel, Jaganmohan B. Rao, and Greg C. Tavik. Affordable Wideband Multifunction Phased Array Antenna Architectures Using Frequency Scaled Radiating Elements. Defense Technical Information Center, 2014. http://dx.doi.org/10.21236/ada610684.

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Farr, Everett G., and Charles A. Frost. Ultra-Wideband Antennas and Propagation. Volume 1: Antenna Design, Predictions, and Construction. Defense Technical Information Center, 1997. http://dx.doi.org/10.21236/ada328786.

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Farr, Everett G., and Charles A. Frost. Ultra-Wideband Antennas and Propagation. Volume 2: Antenna Measurements and Signal Processing. Defense Technical Information Center, 1997. http://dx.doi.org/10.21236/ada328787.

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Rice, Michael, and Mohammad Saquib. On Optimum Power Allocation for Multi-Antenna Wideband Helicopter-to-Ground Communications. Defense Technical Information Center, 2014. http://dx.doi.org/10.21236/ada622040.

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Zaghloul, Amir I., Youn M. Lee, Gregory A. Mitchell, and Theodore K. Anthony. Enhanced Ultra-Wideband (UWB) Circular Monopole Antenna with Electromagnetic Band Gap (EBG) Surface and Director. Defense Technical Information Center, 2014. http://dx.doi.org/10.21236/ada608706.

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