Thesis Project: “Design and Realization On-Board Data Handling Based on Real Team Operating System (RTOS) for Nano Satellite” An On-Board Data Handling (OBDH) of university nanosatellite project (Tel-USat) designed using ARM Cortex M3 STM32F103 and realized on PC/104 board with the implementation of RTOS for support system. The system is also provided by several sensors to analyze telemetry housekeeping data.
Coursework: Wireless and Photonics System Engineering, Electromagnetic Waves and Components, Microwave Engineering, Space Science and Techniques, Active Microwave Circuit, Photonics and Lasers, Radar System and Application, Antenna Engineering.
Analytical examination of GNSS signal measurement accuracy. It comprises of a study on existing GNSS antennacalibration techniques, investigation of error models for phase residuals with respect to antenna phase center corrections,devising a measurement scheme sufficient to characterize a mobile reference antenna system, planning and implementingthe scheme to produce such a reference system, verifying the reference system performance, as well as evaluating theresults.
As a digital student ambassador, the role involved playing a pivotal role in connecting with prospective students worldwide, particularly those interested in the master’s program of Wireless, Photonics, and Space Engineering.Responsibilities included engaging in direct communication via various digital platforms, providing detailed information and guidance while addressing inquiries promptly and effectively.
Develop nanosatellite systems (Tel-USat) in university-scaled, especially on-board data handling subsystem. The research has been published in many national and international conferences (indexed by IEEE) and participated in international competitions, i.e., Annual Frank J. Redd Student Competition, CanSat International Competition, Singapore SpaceChallenge, SPACEMIC, etc. As the result of nanosatellite on-board data handling development, two papers entitled “AnInvestigation of RTOS-Based Sensor Data Management Performance for Tel-USat On Board Data Handling (OBDH) Subsystem” and “Characterization of On-Board Data Handling (OBDH) Subsystem” have been presented in IEEE international conferences.
Manage the network of the power house for real-time monitoring, remote controlling, and maintaining communication to have reliable and efficient systems and to minimize power failure. Moreover, responsible for the part of planning of a ring backbone network project to build greater efficiency and redundant systems.
Responsible for sampling, validating, and controlling data systems of fibre optic services, i.e., internet service, telephone, and IPTV, and the field data