Zobrazeno 1 - 10
of 42
pro vyhledávání: '"Adel Y. I. Ashyap"'
Autor:
Mohammed Salih Mohammed Gismalla, Asrul Izam Azmi, Mohd Rashidi Bin Salim, Mohammad Faiz Liew Abdullah, Farabi Iqbal, Wafi A. Mabrouk, Maisara Binti Othman, Adel Y. I. Ashyap, Abu Sahmah Mohd Supa'at
Publikováno v:
IEEE Access, Vol 10, Pp 30792-30821 (2022)
Device-to-device (D2D) communication is one of the most promising technologies in wireless cellular networks that can be employed to improve spectral and energy efficiency, increase data rates, and reduce links latency. This paper investigates fifth
Externí odkaz:
https://doaj.org/article/08ccf0896c7f4bd0a05661ba3bb0a009
Autor:
Adel Y. I. Ashyap, Samsul Haimi Bin Dahlan, Zuhairiah Zainal Abidin, Sharul Kamal Abdul Rahim, Huda A. Majid, Abdulrahman S. M. Alqadami, Mohamed El Atrash
Publikováno v:
IEEE Access, Vol 9, Pp 6948-6960 (2021)
The compact and robust high-impedance surface (HIS) integrated with the antenna is designed to operate at a frequency of 2.45 GHz for wearable applications. They are made of highly flexible fabric material. The overall size is $45\times \,\,45\times
Externí odkaz:
https://doaj.org/article/2f1f51e5aa234f7c9ae6f317d6ddda64
Autor:
Adel Y. I. Ashyap, Samsul Haimi Bin Dahlan, Zuhairiah Zainal Abidin, Muhammad Inam Abbasi, Muhammad Ramlee Kamarudin, Huda A. Majid, Muhammad Hashim Dahri, Mohd Haizal Jamaluddin, Akram Alomainy
Publikováno v:
IEEE Access, Vol 8, Pp 7641-7658 (2020)
The recent advancement in the wireless technology has led to the advent of wearable antennas. These antennas are utilized for Wireless Body Area Networks (WBANs) purposes such as health-care, military sportive activities and identification systems. C
Externí odkaz:
https://doaj.org/article/63cfb33b5a224cae8f286a51dae3ba28
Autor:
Adel Y. I. Ashyap, Samsul Haimi Bin Dahlan, Zuhairiah Zainal Abidin, Muhammad Hashim Dahri, Huda A. Majid, Muhammad Ramlee Kamarudin, See Khee Yee, Mohd Haizal Jamaluddin, Akram Alomainy, Qammer H. Abbasi
Publikováno v:
IEEE Access, Vol 8, Pp 56346-56358 (2020)
A compact wearable symmetrical e-slots antenna operated at 2.4 GHz was proposed for Medical Body Area Network applications. The design was printed onto a highly flexible fabric material. The final design topology was achieved by the integration of sy
Externí odkaz:
https://doaj.org/article/cd6a35eea7a24183b8121d7dffc83791
Autor:
Adel Y. I. Ashyap, Zuhairiah Zainal Abidin, Samsul Haimi Dahlan, Huda A. Majid, Muhammad Ramlee Kamarudin, Akram Alomainy, Raed A. Abd-Alhameed, Jamal Sulieman Kosha, James M. Noras
Publikováno v:
IEEE Access, Vol 6, Pp 77529-77541 (2018)
A wearable fabric CPW antenna is presented for medical body area network (MBAN) applications at 2.4 GHz based on an electromagnetic bandgap design and frequency selective surface (EBG-FSS). Without EBG-FSS, the basic antenna has an omnidirectional ra
Externí odkaz:
https://doaj.org/article/8aaf2bd8a75347109380d1a1ce809cc7
Autor:
Adel Y. I. Ashyap, M. Inam, M. R. Kamarudin, M. H. Dahri, Z. A. Shamsan, K. Almuhanna, F. Alorifi
Publikováno v:
Computers, Materials & Continua. 74:1765-1782
Publikováno v:
Journal of Electromagnetic Waves and Applications. 37:245-256
Autor:
Suhail Asghar Qureshi, Zuhairiah Zainal Abidin, Huda A. Majid, Adel Y. I. Ashyap, Chan Hwang See
Publikováno v:
Journal of Electronic Materials. 51:7028-7036
Autor:
Suhail Asghar Qureshi, Zuhairiah Zainal Abidin, Huda A. Majid, Adel Y. I. Ashyap, Bashar A. F. Esmai
A metamaterial-based resonator is presented in this paper for liquid-sensing applications. The designed sensor operates at millimetre-wave (mm-w) frequencies, and it can characterise the samples that may possess identical characteristics. This paper
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______2659::44566e0b7285bd199c79d6c7c0fde086
https://zenodo.org/record/8141500
https://zenodo.org/record/8141500
Autor:
M. Hashim Dahri, Zuhairiah Zainal Abidin, Adel Y. I. Ashyap, Muhammad Ramlee Kamarudin, Somya Abdulkarim Alhandi, Samsul Haimi Dahlan, Huda A. Majid, N. A. M. Alduais
Publikováno v:
Wireless Networks
A wearable C-shaped antenna based on a fabric material operating at 2.4 GHz frequency is proposed for use in flexible/wearable IoT medical systems. The wearable IoT device plays a key role in medical applications, and the antenna is a key part of it.