Naser Ojaroudi Parchin
naser ojaroudi parchin

Dr Naser Ojaroudi Parchin

Lecturer

Biography

Naser Ojaroudi Parchin is currently an assistant professor (lecturer) at Edinburgh Napier University, UK. He obtained his PhD in Electrical Engineering from University of Bradford, UK, where he was a Postdoctoral Research Assistant at the Faculty of Engineering and Informatics and worked as a research fellow in SATNEX V project, funded by European Space Agency. From 2018 to 2020, he was a Marie Curie Research Fellow in H2020-ITN-SECRET project funded by EU Commission, targeting 5G mobile small cells, spread across 4 leading universities/research institutions and 4 industrial partners in 5 different European countries. His research interests include multi-band/UWB antennas, phased arrays, MIMO systems, smartphone antennas, SAR/user-impact, full-duplex diversity antennas, 5G antennas, implementable/biomedical sensors, RFID tag antennas, millimeter-wave/terahertz components, fractal structures, metamaterials and metasurfaces, Fabry resonators, EBG/FSS-Inspired radiators, band-pass/band-stop microwave filters, and reconfigurable structures. He has over 12 years’ research experience in antenna and microwave engineering with good hands-on lab skills and experiences on laboratory assistant and demonstration. He also supervised several BSc/MSc students for their final projects and supported several PhD students for their researches. He is author and coauthor of several books/book chapters and more than 300 technical journal and conference papers. Naser is a member of Institute of Electrical and Electronics Engineers (IEEE), Marie Curie Alumni Association (MCAA), and European Association on Antennas and Propagation (EurAAP). He is also an active reviewer in various high-ranking journals and publishers such as IEEE Transactions, IEEE Access/Letters, IET, Wiley, Springer, Elsevier, MDPI, etc. He is also appointed as a Guest Editor and Topic Board for several special issues. He was also the recipient and co-recipient of various Awards and grants for research publications such as Research Development Fund, MDPI travel award, best paper awards at URSI Symposium 2019, and UK URSI festival 2020. He was included in the World’s Top Scientists list in 2016, 2020, and 2021. His papers have more than 5000 citations , reported by the Google Scholar. Naser’s score (37) is higher than 95% of all RG members’ scores.

Date


59 results

Wide-Scan/High-Gain Phased Array Antenna for 5G/6G Cellular Networks

Conference Proceeding
Basherlou, H. J., Ojaroudi Parchin, N., Alibakhshikenari, M., Kouhalvandi, L., & See, C. H. (in press)
Wide-Scan/High-Gain Phased Array Antenna for 5G/6G Cellular Networks.

Gain-Enhanced/End-Fire Phased Array Antenna for Future Cellular Networks

Conference Proceeding
Basherlou, H. J., Ojaroudi Parchin, N., Manjakkal, L., See, C. H., Amar, A., & Salama, A. (in press)
Gain-Enhanced/End-Fire Phased Array Antenna for Future Cellular Networks.

MIMO Smartphone Antenna with CPW-Fed Stepped Resonators for sub 6 GHz Cellular Networks

Conference Proceeding
Basherlou, H. J., Ojaroudi Parchin, N., manjakkal, L., See, C. H., Amar, A. S. I., & Eldamak, A. R. (in press)
MIMO Smartphone Antenna with CPW-Fed Stepped Resonators for sub 6 GHz Cellular Networks.

A Multiple-stage Uniform Transmission Line Matching Technique for Triple-Band RF to-DC Rectifier with Harmonic Suppression for Wireless Power Transfer Applications.

Conference Proceeding
Odiamenhi, M., See, C. H., Ojaroudi Parchin, N., Yu, H., & Goh, K. (in press)
A Multiple-stage Uniform Transmission Line Matching Technique for Triple-Band RF to-DC Rectifier with Harmonic Suppression for Wireless Power Transfer Applications.

Multiple-Element Smartphone Antenna Design with Broadband Resonators for 5G Cellular Communications in Sub 6 GHz Spectra

Conference Proceeding
Jahanbakhsh Barshelou, H., Ojaroudi Parchin, N., Manjakkal, L., See, C. H., & Abd-Alhameed, R. (in press)
Multiple-Element Smartphone Antenna Design with Broadband Resonators for 5G Cellular Communications in Sub 6 GHz Spectra.

Sub 6 GHz Smartphone Antenna with Dual-Band Monopole Resonators for 5G Communications

Conference Proceeding
Jahanbakhsh Basherlou, H., Parchin, N. O., Alibakhshikenari, M., & See, C. H. (2024)
Sub 6 GHz Smartphone Antenna with Dual-Band Monopole Resonators for 5G Communications. In 2023 IEEE International Workshop on Technologies for Defense and Security (TechDefense) (220-223). https://doi.org/10.1109/TechDefense59795.2023.10380892
This study represents the schematic and fundamental features of a new MIMO antenna with low-profile elements and suitable characteristics for future cellular communications. T...

Tri-Band Endfire Antenna Array with Wide Angles of Beam-Scanning Capability for 5G mmWave Mobile Communication

Conference Proceeding
Zidour, A., Ayad, M., Alibakhshikenari, M., Basherlou, H. J., Parchin, N. O., & See, C. H. (2024)
Tri-Band Endfire Antenna Array with Wide Angles of Beam-Scanning Capability for 5G mmWave Mobile Communication. In 2023 IEEE International Workshop on Technologies for Defense and Security (TechDefense) (224-227). https://doi.org/10.1109/TechDefense59795.2023.10380887
In this paper, a novel multiband phased array antenna with endfire radiation pattern is designed at millimeter-wave (mmWave) frequency bands for 5G mobile applications. The pr...

Editorial on Antennas

Journal Article
Parchin, N. O., See, C. H., & Abd-Alhameed, R. A. (2023)
Editorial on Antennas. Sensors, 23(24), Article 9643. https://doi.org/10.3390/s23249643
[Abstract unavailable.]

Minkowski Based Microwave Resonator for Material Detection over Sub-6 GHz 5G Spectrum

Conference Proceeding
Anwer, A. I., Alibakhshikenari, . M., Elwi, T., Virdee, B., Kouhalvandi, L., Abdul Hassain, Z. A., …Livreri, P. (2023)
Minkowski Based Microwave Resonator for Material Detection over Sub-6 GHz 5G Spectrum. . https://doi.org/10.1109/6GNet58894.2023.10317726
This paper describes the performance of a low-cost, high-sensitive microwave resonator for 5G modern wireless communication systems operating through sub-6GHz spectrum. Here, ...

Breast Cancer Detection Based on Simplified Deep Learning Technique With Histopathological Image Using BreaKHis Database

Journal Article
Toma, T. A., Biswas, S., Miah, M. S., Alibakhshikenari, M., Virdee, B. S., Fernando, S., …Livreri, P. (2023)
Breast Cancer Detection Based on Simplified Deep Learning Technique With Histopathological Image Using BreaKHis Database. Radio Science, 58(11), Article e2023RS007761. https://doi.org/10.1029/2023rs007761
Presented here are the results of an investigation conducted to determine the effectiveness of deep learning (DL)‐based systems utilizing the power of transfer learning for de...

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