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Md. Asif Ishrak Sarder

Research & Projects

Research Topics

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Terahertz Communication (THz)
(Ongoing)

Study of various components of a Terahertz network in order to enhance the overall efficiency of 6G standard

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Millimeter Wave Communication (mmWave)
(Ongoing)

Performance evaluation of different small cell network components and receiver antenna polarization operating under different resource schedulers at high UE velocity condition

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MIMO Technology

Analyzing the efficiency of different MIMO schemes and Antenna configurations to tackle the issue of High UE Mobility

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Narrowband IoT (NB-IoT)

Performance enhancement of remote NB-IoT devices with the incorporation of a modified subcarrier bandwidth and FFR 

Undergraduate Thesis

Scheduling Capacity Enhancement for Next Generation Narrowband IoT through Subcarrier Spacing Reduction

Thesis Supervisor : Dr. Md. Tawhid Kawser, Professor, Dept. of Electrical & Electronic Engineering, IUT

Focus : Simulation and Performance analysis of 1.875 kHz subcarrier spacing in comparison with the existing 15 kHz and 3.75 kHz subcarrier spacings in the NB-IoT Uplink transmission using Vienna 5G Link Level Simulator v1.2 by additionally designing a modified uplink resource grid based on 1.875 kHz subcarrier spacing

Research Collaborations

Application & Performance Analysis of Different 5G and 6G Technologies
 

Supervisor : Abdullah Bin Shams, PhD Student, University of Toronto, Canada

Google Scholar ID

Performance Enhancement of NB-IoT within the Existing Cellular Infrastructure

Supervisor 1 : Dr. Md. Tawhid Kawser, Professor, IUT

Google Scholar ID

Supervisor 2 : Nafiz Imtiaz Bin Hamid, Assistant Professor, IUT
Google Scholar ID

Notable Projects

LTE Network Simulation Based on Dhaka City map || Atoll

Design and Performance Analysis of Piezoelectric Energy Harvester || COMSOL 

Three Layer Polarization-Maintaining Hollow-Core Multimode Photonic Crystal Fiber || COMSOL 

Electrical Conduit Layout Floor Planning of 2nd Academic Building of IUT || AutoCAD

Optical Character Recognition System Development || MATLAB

Building various Line Follower Robots (LFR) and Obstacle Avoiding Robots using Arduino Mega 2560, DC Motor, Stepper Motor, Servo Motor, Sonar Sensor and a dedicated Motor Drive Circuit

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