09.04.01 Informatics and Computation

177_1
250000,00
р.
High performance computing and quantum information processing

Qualification: Master's Degree

Code of a programme: 09.04.01

Field of study: Informatics and Computation

Location: Taganrog

SFedU Institute: Institute of Computer Technology and Information Security

Language: Russian

Tuition fee - based: 10

Duration of full-time mode: 2 years

Tuition fee per year (in rubles, 2026): 250 000

Basic subjects
Specialized subjects
Program Overview
Program Benefits
Prospects. Career & Employment
Why is it important to pursue a higher education?

Basic subjects

  • Methodology of scientific activity
  • Software and hardware of information systems
  • Cyber-physical systems
  • BigData Technologies
  • System integration and corporate information systems
  • IT project management
  • Professional and academic communication in computer science

Specialized subjects

  • High-performance computing systems
  • Fundamentals of quantum information processing
  • Circuit design of high-performance computing systems
  • Architecture, configuration, and design of computer networks
  • Architecture, programming, and system-on-a-chip design
  • Research project

Program Overview

The peculiarity of the educational process in the educational program is the combination of research and practice-oriented trajectories and the choice of the necessary trajectory and relevant disciplines by the graduate student based on his interests or the requirements of the future employer. The uniqueness of the program lies in the integration of the focus of undergraduate training on an integrated approach to the development of components, programming and operation of modern and promising high-performance computers, distributed systems, and research on quantum information processing systems. A module of variable professional competence has been introduced into the structure of the educational program, clarifying the profile of the educational program within its focus by including variable professional disciplines in the curriculuA module of variable professional competence has been introduced into the structure of thal program, clarifying the profile of the educational program within its focus by including variable professional disciplines in the curriculum. In accordance with this provision, the structure of the educational program will include disciplines that allow students to deepen their knowledge in the fields of information technology applications (in the field of information security, creating solutions based on blockchain technology, software testing, system integration of enterprise informatioordance with this provision, the structure of the educational program will include disciplines that allow stuents to deepen their knowledge in the fields of infcientific conferences.

Program Benefits

  • You will study in conditions as close as possible to real science and production — under the guidance of renowned scientists and experienced practitioners. This provides a serious advantage in employment.
  • Modern design methods are used here: systems on a chip (SoC), high-performance solutions based on ARM processors, FPGA technologies, simulators of quantum computers and quantum algorithms.

Prospects. Career & Employment

The analysis of the labor market has shown that there is a need for graduates, which is due to the need to train developers, researchers and operators of modern domestic high-performance computing systems and software for such systems, as well as specialists in the promising field of quantum information processing.
Our graduates can be employed as IT High Performance Computing Student Assistant, Systems Administrator, High Performance Computing Engineer, Software Engineer, etc.
This program is aimed at research and production enterprises, IT companies interested in specialists in the field of air force development and application; digital information flow management; parallel software development.

Why is it important to pursue a higher education?

The purpose of this program is to train professional researchers and practitioners capable of: conducting research, development and operation of problem-oriented multiprocessor and neuroprocessor computing systems and computer networks, their hardware and software components, the architecture of which is based on the technology "System on a chip (SoC)"; develop and explore methods and principles of construction simulators of quantum computers to test the performance of existing and emerging quantum algorithms; to develop and investigate the principles of building quantum computers for their wider application, including for solving artificial intelligence problems; to develop and operate hardware and software complexes for modeling information interaction in multi-agent systems; to competently operate, diagnose modern computing complexes for digital processing and real-time display of information about the environment.
What will you learn to do?
  • To conduct research, develop and operate multiprocessor and neuroprocessor systems and networks based on a "System on a chip".
  • Create simulations of quantum computers to test and improve quantum algorithms.
  • To develop the principles of building quantum computers, including for artificial intelligence tasks.
  • To create and use hardware and software complexes for modeling work in multi-agent systems.
  • Competently operate and diagnose complex computing systems.