
Asif Ali BhootUniversitat Politècnica de Catalunya | UPC · Department of Electronic Engineering (EEL)
Asif Ali Bhoot
PhD Student
About
8
Publications
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Citations
Introduction
Asif Ali Bhoot currently works as a PhD student in Early Stage Researcher in ETERNITY – “European Training Network on Electromagnetic Risks in Medical Technology” MSCA-ITN project in Optimal Digital Communication Systems in electromagnetically noisy medical environments.
Publications
Publications (8)
A low profile, rectangular E-shaped microstrip patch antenna is designed and proposed for radio-frequency identification (RFID) based intelligent transportation system (ITS) in this paper. The proposed antenna design aims to achieve high gain and low return loss at 0.96 GHz as it is suitable for ultra-high frequency (UHF) RFID tags. The proposed an...
In multistage optical networks (MON) communication, major problem is crosstalk, which is due to coupling two signals within a switching element. This factor can reduce signal to Noise Ratio and affects the size of network. There are two types of Cross talk i.e. Near-end crosstalk & Far end crosstalk. Different techniques are used to improve the Net...
The massive multiple-input-multiple-output (MIMO) is a key enabling technology for the 5G cellular communication systems. In massive MIMO (M-MIMO) systems few hundred numbers of antennas are deployed at each base station (BS) to serve a relatively small number of single-antenna terminals with multiuser, providing higher data rate and lower latency....
The advancement of the modern world requires catering the power crisis. New methodologies for energy harvesting were considered, but their succession in a different environment is still to explore. This paper deals with antenna designing to harvest energy from radio signals. The rummage of energy from surrounding sources is considered a harvesting...
various advantages such as: easy to configure, low weight and low cost make microstrip patch antenna (MPA) the first choice for wireless communication system. The structure of the patch antenna consists of dielectric material in between radiating patch and ground plan. In this paper we present the comparative performance analysis of 4 different sha...
Massive multiple-input multiple-output (MIMO) technology is one of the prominent candidate for next generation wireless communication networks; i.e., 5G. Massive MIMO systems are integrated with the array antenna technology to enhance the performance of future networks. This paper investigates two channel estimation methods, namely the least square...
This Modern wireless communication systems are designed to operate at very high frequency and will require compact design. Microstrip Ring Resonators (MRR) have broad applications due to compact design and flexible frequency operation. In this paper, we design and analyze a microstrip ring resonator for fifth generation wireless communication netwo...
This Modern wireless communication systems are designed to operate at very high frequency and will require compact design. Microstrip Ring Resonators (MRR) have broad applications due to compact design and flexible frequency operation. In this paper, we design and analyze a microstrip ring resonator for fifth generation wireless communication netwo...
Questions
Question (1)
Hi researchers,
I want know which digital communication system is best for the medical devices?. suppose there are some medical devices that radiate the EMI that is very harmful for the communication system so I need to protect the radio link in a rough medical environments. If you know any best digital communication system for that scenarios please tell me.
thanks.
Projects
Projects (4)
We are trying to analyze the different output parameters of a microstrip ring resonator at high frequencies for next generation wireless communication networks.
Simulate E,T,H, and F-shaped microstrip patch antennas in HFSS and analyse the results at different frequency bands. Based on the results and performance evaluation categorize these antenna for different applications.