Zobrazeno 1 - 10
of 25
pro vyhledávání: '"Khalim Amjad Meerja"'
Publikováno v:
Egyptian Informatics Journal, Vol 20, Iss 1, Pp 1-10 (2019)
Connected devices which are commonly known as Internet of Things (IoT) are increasing at an alarming pace. Network infrastructure has to accommodate all these devices by providing adequate connectivity and delivering application based services. Servi
Externí odkaz:
https://doaj.org/article/8634c2d2a11e4955881beba94abf1105
Autor:
Praveen V. Naidu, and Khalim Amjad Meerja, Dhanekula Maheshbabu, Akkapanthula Saiharanadh, Lam Sumanji, Neelima Vummadisetty, Arvind Kumar
Publikováno v:
Progress In Electromagnetics Research C. 113:69-82
Publikováno v:
Egyptian Informatics Journal, Vol 20, Iss 1, Pp 1-10 (2019)
Connected devices which are commonly known as Internet of Things (IoT) are increasing at an alarming pace. Network infrastructure has to accommodate all these devices by providing adequate connectivity and delivering application based services. Servi
Autor:
Sri Rama Krishna Kalva, Kishore Kumar Gundugonti, Mahadevan Balakrishnan, Khalim Amjad Meerja
Publikováno v:
Telecommunication Systems. 71:601-614
Software defined radio (SDR) is a vast and emerging field that requires the design of various technologies such as antenna, RF, IF, and digital baseband subsystems. Among all these technologies, data converters that convert signals between analog and
Autor:
Khalim Amjad Meerja, M. Tejasree, Praveen V. Naidu, Arvind Kumar, V. Neelima, Sai Haranadh Akkapanthula
Publikováno v:
2020 IEEE International Women in Engineering (WIE) Conference on Electrical and Computer Engineering (WIECON-ECE).
In this article, we propose a circle shaped hybrid plasmonic nano patch antenna with SOI (Silicon on Insulator) configuration in a foot print area of 1100 x 800 nm2. It has been designed for operation in frequency range of 160-240 THz and to resonate
Autor:
Arvind Kumar, Khalim Amjad Meerja, M. Tejasree, Praveen V. Naidu, Sai Haranadh Akkapanthula, V. Neelima
Publikováno v:
2020 IEEE International Women in Engineering (WIE) Conference on Electrical and Computer Engineering (WIECON-ECE).
In this paper, a hybrid plasmonic pentagonal shaped nano patch antenna with SOI (Silicon on Insulator) configuration has been proposed in a foot print area of 1100 x 800 nm2. It has been designed for operating frequency range of 160-250 THz and to re
Autor:
Arvind Kumar, V. Neelima, Khalim Amjad Meerja, Sai Haranadh Akkapanthula, Praveen V. Naidu, Rajesh Kumar
Publikováno v:
2020 IEEE International Women in Engineering (WIE) Conference on Electrical and Computer Engineering (WIECON-ECE).
A novel printed swastika shape ACS fed monopole antenna well suited to 2.4/5.2/5.8 GHz WLAN and 2.5/3.5/5.5 GHz WiMAX applications for tri-band operation is presented in this research. The proposed swastika shaped antenna encompasses of mirrored C sh
Publikováno v:
Mobile Networks and Applications. 24:1078-1094
Many devices share their data with the online world to derive global knowledge and information that have high business value. Trillions of smart devices are connected together over the Internet, which are known as Internet-of-Things (IoT). These devi
Autor:
G. Harika, Praveen V. Naidu, Arvind Kumar, V. Priyanka, Khalim Amjad Meerja, Rengasamy Rajkumar
Publikováno v:
2019 PhotonIcs & Electromagnetics Research Symposium - Spring (PIERS-Spring).
In this article, a printed compact wideband monopole antenna fed by Asymmetric Coplanar Strip (ACS) is designed. The proposed antenna consists of rectangular slot patch with feedline to cover wideband performance. The fabricated uniplanar antenna is
Autor:
Sai Haranadh Akkapanthula, Khaled Mohamad Almustafa, Mahesh Babu. Dhanekula, Arvind Kumar, Praveen V. Naidu, Khalim Amjad Meerja
Publikováno v:
AEU - International Journal of Electronics and Communications. 134:153676
In this paper, a novel compact four element ACS fed printed multiple-input multiple-output (MIMO) antenna is presented with Multi Band characteristics. The tri band MIMO antenna is simulated on an FR4 substrate having (0.368λ0 × 0.368λ0 × 0.012λ