Kheradiya, Varsha, Ganga Prasad Pandey, and Arpan Desai. "Dual-Band Reflective Metasurface Integrated Circularly Polarized Antenna for Sub-6 GHz 5G N77 and Wi-Fi 7 Applications." IEEE Open Journal of Antennas and Propagation (2025).
Bendjedi, H., S. Mekki, N. Mehenni, I. Elfergani, A. Desai, R. Zegadi, M. Palandoken et al. "Design Innovative High-Gain MIMO Cylindrical DRA with Surface-Mounted Horn for Enhanced WLAN Connectivity." IEEE Access (2025).
Kheradiya, Varsha, Ganga Prasad Pandey, and Arpan Desai. "Metasurface integrated dual polarized all textile antenna for WBAN application." Physica Scripta 100, no. 3 (2025): 035536.
H. -T. Hsu, A. Desai, Y. -F. Tsao and H. -T. Chou, "Dual-Band Circularly-Polarized Antenna Forming Unit Configurations Featuring Polarization Selectivity and Diversity for Millimeter-wave Satellite Applications," in IEEE Transactions on Vehicular Technology, doi: 10.1109/TVT.2025.3525645.
Tsao, Yi-Fan, Arpan Desai, and Heng-Tung Hsu. "An SPDT Switch Design Featuring Minimum Phase Distortion Over Wide Input Power Drive for Phased-Array Antenna System Applications." IEEE Microwave and Wireless Technology Letters (2024).
Shailesh, Garima Srivastava, Sachin Kumar, Arpan Desai, Bhawna Goyal, Abdulkarem HM Almawgani, and Turki Alsuwian. "Circularly Polarized Sixteen‐Port Flexible UWB MIMO Antenna Featuring Polarization Diversity for WBAN Applications." International Journal of RF and Microwave Computer‐Aided Engineering 2024, no. 1, pp: 8442770.
H. -T. Hsu, Y. -F. Tsao and A. Desai, "A Single Radiator-Based Circularly Polarized Antenna for Indoor Wireless Communication Applications," in IEEE Open Journal of Antennas and Propagation, doi: 10.1109/OJAP. (2024), 3413020.
Hsu H-T, Tsao Y-F, Desai A. High-gain dual-wideband ±45° dual polarization (DWDP) antenna for indoor distributed antenna system (IDAS) applications. Int J Commun Syst. (2024); e5873. doi:10.1002/dac.5873
Abdelghany, Mahmoud A., Mohamed I. Ahmed, Ahmed A. Ibrahim, Arpan Desai, and Mai F. Ahmed. "Textile Antenna with Dual Bands and SAR Measurements for Wearable Communication." Electronics 13, no. 12 (2024): 2251.
Arpan Desai, Heng-Tung Hsu, Yi-Fan Tsao, Basma M. Yousef, Ahmed A. Ibrahim, “FSS Based High Gain Optically Transparent MIMO Antenna for Sub-6 GHz 5G Mid-Band Applications”, Optik, Elsevier, 171829, (2024). https://doi.org/10.1016/j.ijleo.2024.171829.
Nawati, V.R., Sujatha, B.K., Karthikeya, G.S., Arpan Desai, H. -T. Hsu, Merih Palandoken, "A Compact Dual-polarized Probe-fed UWB Antenna System for Breast Cancer Detection Applications". Wireless Networks, Springer Nature, (2024). https://doi.org/10.1007/s11276-024-03726-0
Heng-Tung Hsu, Yi-Fan Tsao, Arpan Desai, "Dual-Wideband Antenna with Dual Polarization and Enhanced Front-to-Back Ratio for High-Speed Communication Applications", AEU - International Journal of Electronics and Communications, Volume 174, 155072, 2024, https://doi.org/10.1016/j.aeue.2023.155072.
A. Desai, H. -T. Hsu, B. M. Yousef, A. M. Ameen, Y. -F. Tsao and A. A. Ibrahim, "UWB Connected Ground Transparent 4-Port Flexible MIMO Antenna for IoT Applications," in IEEE Internet of Things Journal, 2023, doi: 10.1109/JIOT.2023.3333814.
Mekki, Samira, Zegadi, Rami, Mosbah, Said, Sayad, Djamel, Elfergani, Issa, Bouknia, Mohamed Lamine, Rodriguez, Jonathan, Desai, Arpan, Palandoken, Merih and Zebiri, Chemseddine. "Equivalent circuit of a planar microwave liquid sensor based on metamaterial complementary split ring resonator" Frequenz, 2023.
Vishal Sorathiya, Malek G. Daher, Issa Elfergani, Chemseddine Zebiri, Arpan Desai, Zoran Vujicic & Jonathan Rodriguez, Graphene-Based Log-Periodic Dipole Antenna-Shaped MIMO Antenna Structure for the Terahertz Frequency Spectrum. Arab J Sci Eng (2023). https://doi.org/10.1007/s13369-023-08235-4
Yousef, Basma M., Allam M. Ameen, Arpan Desai, Heng-Tung Hsu, Vigneswaran Dhasarathan, and Ahmed A. Ibrahim. "Defected Ground Structure-Based Wideband Circularly Polarized 4-Port MIMO Antenna for Future Wi-Fi 6E Applications." AEU-International Journal of Electronics and Communications (2023): 154815.
Amroun, A, Zebiri, C, Sayad, D, I. Elfergani, A Desai, et al. Miniaturized six-ring elliptical monopole-based MIMO antenna for ultrawideband applications. Int J Commun Syst. 2023;e5557. doi:10.1002/dac.5557
Patel, A. V., Desai, A., Elfergani, I., Mewada, H., Zebiri, C. et al. (2023). Computer Modelling of Compact 28/38 GHz Dual-Band Antenna for Millimeter-Wave 5G Applications. CMES-Computer Modeling in Engineering & Sciences, 137(3), 2867–2879.
A. Desai, Y. -F. Tsao and H. -T. Hsu, "High Gain Substrate Integrated Waveguide Antenna with Enhanced Bandwidth for Millimeter-Wave Wireless Network Applications," in Wireless Networks, 2023, doi: 10.1007/s11276-023-03296-7
Abdelghany, M. A., Fathy, M., Desai, A., Ibrahim, A. A. (2023). 4-Port Octagonal Shaped MIMO Antenna with Low Mutual Coupling for UWB Applications. CMES-Computer Modeling in Engineering & Sciences, 136(2), 1999–2015.
A. Desai, Y. -F. Tsao, T. -J. Chang and H. -T. Hsu, "Rigorous Analysis and Investigation of the Bandwidth Broadening Mechanism in a Compact Power Divider with Physical Port Isolation," in IEEE Access, doi: 10.1109/ACCESS.2022.3231745. December 2022.
Wang, Yuan, Heng-Tung Hsu, Arpan Desai, and Yi-Fan Tsao. "Design of a Compact RF Front-end Transceiver Module for 5G New-Radio Applications." IEEE Transactions on Instrumentation and Measurement , December 2022.
Tsao, Yi-Fan, Heng-Tung Hsu, and Arpan Desai. "High Power Handling GaAs SP4T Switch-based Beam-Switching Planar Antenna Module for 5G New-Radio FR2 Applications." AEU-International Journal of Electronics and Communications: 154494, December 2022.
Girjashankar, Pandey Rajat, Trushit Upadhyaya, and Arpan Desai. "Multiband hybrid MIMO DRA for Sub‐6 GHz 5G and WiFi‐6 applications." International Journal of RF and Microwave Computer‐Aided Engineering: e23479, 2022.
Upadhyaya Trushit, Ikmo Park, Rajat Pandey, Upesh Patel, Killol Pandya, Arpan Desai, Jayesh Pabari, Gangil Byun, and Yogeshwar Kosta. "Aperture-Fed Quad-Port Dual-Band Dielectric Resonator-MIMO Antenna for Sub-6 GHz 5G and WLAN Application." International Journal of Antennas and Propagation (2022).
Abdelghany, M.A.; Fathy Abo Sree, M.; Desai, A.; Ibrahim, A.A. Gain Improvement of a Dual-Band CPW Monopole Antenna for Sub-6 GHz 5G Applications Using AMC Structures. Electronics, 11, 2211. https://doi.org/10.3390/ electronics11142211, 2022
A. Desai, J. Kulkarni, M. M. Kamruzzaman, S. Hubalovsky, H. -T. Hsu and A. A. Ibrahim, "Interconnected CPW Fed Flexible 4-Port MIMO Antenna for UWB, X, and Ku band Applications," in IEEE Access, doi: 10.1109/ACCESS.2022.3179005, 2022
C. Zebiri, M.L. Bouknia, D. Sayad, I. Elfergani, Moustafa H. Aly, Preecha Yupapin, Sarawoot Boonkirdram, Arpan Desai, J. Rodriguez; Gyrotropic reciprocal bianisotropic metamaterial printed dipole antenna: Investigation of negative input impedance and mutual coupling, Alexandria Engineering Journal,Volume 61, Issue 12, Pages 11677-11685, 2022
Tsao, Yi-Fan, Arpan Desai, and Heng-Tung Hsu. "Dual-Band and Dual-Polarization CPW Fed MIMO Antenna for Fifth-Generation Mobile Communications Technology at 28 and 38 GHz." IEEE Access (2022).
Patel, Amit, Alpesh Vala, Arpan Desai, Issa Elfergani, Hiren Mewada, Keyur Mahant, Chemseddine Zebiri, Dharmendra Chauhan, and Jonathan Rodriguez. "Inverted-L Shaped Wideband MIMO Antenna for Millimeter-Wave 5G Applications." Electronics 11, no. 9 (2022): 1387.
C. Zebiri, M. L. Bouknia, D. Sayad, I. Elfergani, Preecha Yupapin, M. Matin, Arpan Desai, Merih Palandoken, A. Iqbal & J. Rodriguez, Negative input impedance of a dipole antenna printed on a grounded tellegen metamaterial substrate. Wireless Netw (2022). https://doi.org/10.1007/s11276-022-02962-6
Kulkarni, J., Sim, CYD., Desai, A. et al. A Compact Four Port Ground-Coupled CPWG-Fed MIMO Antenna for Wireless Applications. Arab J Sci Eng (2022). https://doi.org/10.1007/s13369-022-06620-z
Patel, Upesh, Trushit Upadhyaya, Arpan Desai, Rajat Pandey, and Killol Pandya. "Dual‐band compact split‐ring resonator‐shaped fractal antenna with defected ground plane for sub‐6‐GHz 5G and global system for mobile communication applications." International Journal of Communication Systems: e5105.
Desai, A.; Palandoken, M.; Elfergani, I.; Akdag, I.; Zebiri, C.; Bastos, J.; Rodriguez, J.; Abd-Alhameed, R.A. Transparent 2-Element 5G MIMO Antenna for Sub-6 GHz Applications. Electronics, 2022, 11, 251. https://doi.org/10.3390/electronics11020251
Amit Patel, Arpan Desai, Issa Elfergani, Alpesh Vala, Hiren Mewada, Keyur Mahant, Sagar Patel, Chemseddine Zebiri, Jonathan Rodriguez, Esraa Ali, UWB CPW fed 4-port connected ground MIMO antenna for sub-millimeter-wave 5G applications, Alexandria Engineering Journal,2021,https://doi.org/10.1016/j.aej.2021.12.015.
Kulkarni, Jayshri, Abdullah G. Alharbi, Arpan Desai, Chow-Yen-Desmond Sim, and Ajay Poddar. "Design and Analysis of Wideband Flexible Self-Isolating MIMO Antennas for Sub-6 GHz 5G and WLAN Smartphone Terminals." Electronics 10, no. 23 (2021): 3031.
A. Desai, M. Palandoken, J. Kulkarni, G. Byun and T. K. Nguyen, "Wideband Flexible/Transparent Connected-Ground MIMO Antennas for Sub-6 GHz 5G and WLAN Applications," in IEEE Access, vol. 9, pp. 147003-147015, 2021, doi: 10.1109/ACCESS.2021.3123366.
Balaji VR, Addepalli T, Desai A, Nella A, Nguyen TK. An inverted L-strip loaded ground with hollow semi-hexagonal four-element polarization diversity UWB-MIMO antenna. Trans Emerging Tel Tech. 2021;e4381. doi: 10.1002/ett.4381
Bouknia, Mohamed Lamine, Chemseddine Zebiri, Djamel Sayad, Issa Elfergani, Mohammad Matin, Arpan Desai, Jonathan Rodriguez, Tathababu Addepalli, and Hasan Abobaker. "Effect analysis of the general complex reciprocal gyro-bianisotropic metamaterial medium on the input impedance of a printed dipole antenna." Alexandria Engineering Journal, Elsevier, 2021.
Krishnamoorthy, R., Desai, A., Patel, R. et al. 4 Element compact triple band MIMO antenna for sub-6 GHz 5G wireless applications. Wireless Networks, Springer, 2021. https://doi.org/10.1007/s11276-021-02734-8
Addepalli, T.; Desai, A.; Elfergani, I.; Anveshkumar, N.; Kulkarni, J.; Zebiri, C.; Rodriguez, J.; Abd-Alhameed, R. 8-Port Semi-Circular Arc MIMO Antenna with an Inverted L-Strip Loaded Connected Ground for UWB Applications. Electronics, MDPI, 2021, 10, 1476. https://doi.org/10.3390/electronics10121476
Patel, U, Parekh, M, Desai, A, Upadhyaya, T. Wide slot tri-band antenna for Wireless Local Area Network/World-Wide Interoperability for Microwave Access applications. Int J Commun Syst., Wiley 2021;e4897. https://doi.org/10.1002/dac.4897
Kulkarni J, Desai A, Sim C-Y. Two port CPW-fed MIMO antenna with wide bandwidth and high isolation for future wireless applications. Int J RF Microw Comput Aided Eng., Wiley, 2021;e22700. https://doi.org/10.1002/ mmce.22700
Vashi R, Upadhyaya T, Desai A . Graphene-based wide band semiflexible array antenna with parasitic patch for smart wireless devices. International Journal of Microwave and Wireless Technologies, (2021), https://doi.org/10.1017/S1759078721000179
Patel, R., Desai, A. & Upadhyaya, T. Low-Profile Parallel Mutually Coupled Triple-Band Antenna for Telecommunications Applications. Wireless Pers Commun (2021). https://doi.org/10.1007/s11277-020-07904-z
A. Desai, C. D. Bui, J. Patel, T. Upadhyaya, G. Byun and T. K. Nguyen, "Compact Wideband Four Element Optically Transparent MIMO Antenna for mm-Wave 5G Applications," in IEEE Access, vol. 8, pp. 194206-194217, 2020, doi: 10.1109/ACCESS.2020.3033314.
Kulkarni, Jayshri, Arpan Desai, and Chow-Yen Desmond Sim. "Wideband Four-Port MIMO Antenna Array with High Isolation for Future Wireless Systems." AEU-International Journal of Electronics and Communications (2020): 153507.
Upadhyaya, Trushit, Jayesh Pabari, Varun Sheel, Arpan Desai, Riki Patel, and S. Jitarwal. "Compact and High Isolation Microstrip Diplexer for Future Radio Science Planetary Applications." AEU-International Journal of Electronics and Communications (2020): 153497.
Patel, Riki, Arpan Desai, Trushit Upadhyaya, Truong Khang Nguyen, Hemani Kaushal, and Vigneswaran Dhasarathan. "Meandered low profile multiband antenna for wireless communication applications." Wireless Networks (2020): 1-12.
Desai, Arpan, Riki Patel, Trushit Upadhyaya, Hemani Kaushal, and Vigneswaran Dhasarathan. "Multiband Inverted E and U shaped Compact Antenna for Digital Broadcasting, Wireless, and Sub 6 GHz 5G applications." AEU-International Journal of Electronics and Communications (2020): 153296.
Desai, Arpan, Trushit Upadhyaya, Merih Palandoken, Jay Patel, and Riki Patel. "Transparent conductive oxide-based multiband CPW fed antenna." Wireless Personal Communications 113, no. 2 (2020): 961-975.
Kulkarni, Jayshri, Neeta Kulkarni, and Arpan Desai. "Development of “H‐Shaped” monopole antenna for IEEE 802.11 a and HIPERLAN 2 applications in the laptop computer." International Journal of RF and Microwave Computer‐Aided Engineering (2020): e22233.
Desai, Arpan, Trushit Upadhyaya, Jay Patel, Riki Patel, and Merih Palandoken. "Flexible CPW fed transparent antenna for WLAN and sub‐6 GHz 5G applications." Microwave and Optical Technology Letters 62, no. 5 (2020): 2090-2103.
Desai, Arpan, Trushit Upadhyaya, Merih Palandoken, and Cem Gocen. "Dual band transparent antenna for wireless MIMO system applications." Microwave and Optical Technology Letters 61, no. 7 (2019): 1845-1856.
Patel, Riki, Trushit Upadhyaya, and Arpan Desai. "A miniaturized parallel ring coupling high gain antenna for biomedical applications." Microwave and Optical Technology Letters 61, no. 3 (2019): 649-653.
Desai, Arpan, Trushit Upadhyaya, and Riki Patel. "Compact wideband transparent antenna for 5G communication systems." Microwave and Optical Technology Letters 61, no. 3 (2019): 781-786.
Patel, Riki, Trushit Upadhyaya, Arpan Desai, and Merih Palandoken. "Low Profile Multiband Meander Antenna for LTE/WiMAX/WLAN and INSAT-C Application." AEU-International Journal of Electronics and Communications 102 (2019): 90-98.
Desai, Arpan H., and Trushit Upadhyaya. "Dual-band transparent and non-transparent antennas for wireless application." International Journal of Electronics Letters 8, no. 2 (2020): 170-179.
Patel, Riki, Trushit Upadhyaya, and Arpan Desai. "Capacitive couplings compact antenna for LTE/WiMAX/WLAN application." Microwave and Optical Technology Letters 60, no. 12 (2018): 2977-2983.
Desai, Arpan, and Trushit Upadhyaya. "Transparent dual band antenna with μ‐negative material loading for smart devices." Microwave and Optical Technology Letters 60, no. 11 (2018): 2805-2811.
Desai, Arpan, Trushit Upadhyaya, and Merih Palandoken. "Dual band slotted transparent resonator for wireless local area network applications." Microwave and Optical Technology Letters 60, no. 12 (2018): 3034-3039.
Patel, Riki H., Trushit Upadhyaya, and Arpan Desai. "Electrically small inverted L planar patch antenna for wireless application." Microwave and Optical Technology Letters 60, no. 10 (2018): 2351-2357.
Sipani, Jay P., Riki H. Patel, Trushit Upadhyahya, and Arpan Desai. "Wireless sensor network for monitoring & control of environmental factors using arduino." International Journal of Interactive Mobile Technologies (iJIM) 12, no. 2 (2018): 15-26.
Kantharia, Maitri, Arpan Desai, Trushit K. Upadhyaya, Rikikumar Hasmukhbhai Patel, Parthesh Mankodi, and Mukul Kantharia. "High gain flexible cpw fed fractal antenna for bluetooth/WLAN/WPAN/WiMAX applications." Progress In Electromagnetics Research 79 (2018): 87-93.
Upadhyaya, Trushit K., Arpan Desai, and Rikikumar Hasmukhbhai Patel. "Design of printed monopole antenna for wireless energy meter and smart applications." Progress In Electromagnetics Research 77 (2018): 27-33.
Patel, Rikikumar Hasmukhbhai, Arpan Desai, and Trushit K. Upadhyaya. "An electrically small antenna using defected ground structure for RFID, GPS and IEEE 802.11 a/b/g/s applications." Progress In Electromagnetics Research 75 (2018): 75-81.
Desai, Arpan, Trushit K. Upadhyaya, Rikikumar Hasmukhbhai Patel, Sagar Bhatt, and Parthesh Mankodi. "Wideband high gain fractal antenna for wireless applications." Progress In Electromagnetics Research 74 (2018): 125-130.
Patel, Riki H., Arpan Desai, and Trushit Upadhyaya. "A discussion on electrically small antenna property." Microwave and Optical Technology Letters 57, no. 10 (2015): 2386-2388.