Space Telecommunication Systems
Sergey B. Makarov
Head of the Lab

Our Research

Development of equipment for the space industry within the framework of leading consortia, unique capabilities for receiving and processing signals from small spacecraft with their own space station.
«Development of small spacecraft (nanosatellites) for various applications: automatic ship identification, remote sensing of the earth, technological experiments with new nanomaterials and semiconductor thermoelectric generators»
Signal construction technologies for 5G and 6G mobile communication systems, which provide information transfer rates above the Nyquist barrier
Development of technologies and design of ion engines for small spacecraft and nanosatellites
Creation of a ground-based spacecraft control center and communication with telecommunication satellites (antenna complex with tracking antennas)
The creation of the Center for Marine and Space Technologies to attract talented young people to obtain knowledge and skills in the field of high technology related to space research and artificial intelligence

Selected Publications

Research on spectrum optimization technology for a wireless communication system
10.3390/SYM12010034
Liu, M.; Xue, W.; Jia, P.; Makarov, S.B.; Li, B.
2020
Open access
Comparative Study of Analytic Solution and Numerical Solution of Baseband Symbol Signal Based on Optimal Generic Function
10.1155/2019/8045217
Mingxin Liu, Wei Xue, Sergey B. Makarov, Junwei Qi, Beiming Li
2020
Open access
Research on an Optimization Method for a Partially Responsive Continuous Phase Modulated (CPM)
Qi, J.; Makarov, S.B.; Liu, M.; Li, B.; Xue, W.
2019
Open access
Computational Complexity Analysis of SEFDM Time and Frequency Domain Equalizers
10.1109/EExPolytech.2019.8906828.
A. Rashich and S. Gorbunov
2019
Pub link
Spatial receive diversity for SEFDM based system," 2019 42nd International Conference on Telecommunications and Signal Processing (TSP)
10.1109/TSP.2019.8769085.
S. Gorbunov and A. Rashich
2019
Pub link
Polar Codes Sequential Decoder Hardware Architecture
10.1109/TSP.2019.8769111.
A. Krylov, A. Rashich, A. Gelgor and D. Fadeev
2019
Pub link
ZF equalizer and trellis demodulator receiver for SEFDM in fading channels
10.1109/ICT.2019.8798843.
A. Rashich and S. Gorbunov
2019
Pub link
The influence of quantization of optimal FTN signals with PAM on correlation properties and level of out-of-band emissions
10.1088/1742-6596/1326/1/012027.
Ovsyannikova, A.S., Makarov, S.B., Zavjalov, S.V., Solomitckii, D.
2019
Open access
Error estimation of discrete formation method for optimal FTN signals
10.1088/1742-6596/1236/1/012083.
Ovsyannikova, A.S., Lavrenyuk, I.I., Makarov, S.B., Wei, X.
2019
Open access
Application of Multi-element Photo Detector in Optical Disdrometers
10.1109/EExPolytech.2019.8906838.
D. Kiesewetter, S. Makarov and V. Malyugin
2019
Pub link
Approaching the Shannon Limit by Means of Optimal FTN Signals with Increased Size of PAM Signal Constellation
10.1109/EExPolytech.2019.8906814.
A. S. Ovsyannikova, S. V. Zavjalov, I. I. Lavrenyuk, S. B. Makarov and D. Solomitckii
2019
Open access
Comparison of the Spectral and Energy Efficiency of FTN Signals Based on RRC Pulses and Obtained by the Optimization Methodpp
10.1109/EExPolytech.2019.8906866.
S. Makarov, S. Zavjalov, A. Ovsyannikova, I. Lavrenyuk and W. Xue
2019
Pub link
On the Efficiency of Layered Division Multiplexing for DVB-S2X Satellite Communications
10.1109/BMSB47279.2019.8971919.
J. Montalban et al.
2019
Pub link
Improving Energy Efficiency of Finite Time FTN Pulses Detection by Choosing Optimal Envelope Shape
10.1109/ICT.2019.8798830.
I. I. Lavrenyuk, A. S. Ovsyannikova, S. V. Zavjalov, S. V. Volvenko and S. B. Makarov
2019
Pub link
BER Performance Improvement for Optimal FTN Signals with Increased Signal Constellation Size
10.1007/978-3-030-30859-9_57.
Ovsyannikova, A.S., Zavjalov, S.V., Makarov, S.B.
2019
Pub link
SEFDM-signals Euclidean Distance Analysis
10.1109/EExPolytech.2018.8564439.
D. Vasilyev and A. Rashich
2018
Pub link
BER Performance of SEFDM Signals in LTE Fading Channels
10.1109/TSP.2018.8441462.
S. Gorbunov and A. Rashich
2018
Pub link
Pulse-Shaped Multicarrier Signals with Nonorthogonal Frequency Spacing
10.1109/BlackSeaCom.2018.8433714.
A. Rashich and A. Urvantsev
2018
Pub link
Trellis Demodulator for Pulse Shaped OFDM
10.1109/BlackSeaCom.2018.8433690.
A. Rashich, A. Kislitsyn and S. Gorbunov
2018
Pub link
Possibility of Peak-to-Avegare Power Ratio Reduction by Application of Optimal Signal for Transmitter Based on SDR HackRF One
10.1109/EExPolytech.2018.8564411.
I. R. Ishkaev, A. E. Shevelev, A. S. Ovsyannikova, S. V. Zavjalov, S. V. Volvenko and S. B. Makarov
2018
Pub link
Distributions of probability of power values for random sequences of optimal FTN signals
10.1109/ISCE.2018.8408919.
S. B. Makarov, A. S. Ovsyannikova, I. I. Lavrenyuk, S. V. Zavjalov and S. V. Volvenko
2018
Pub link
Influence of Amplitude Limitation for Random Sequence of Single-Frequency Optimal FTN Signals on the Occupied Frequency Bandwidth and BER Performance
10.1007/978-3-030-01168-0_17.
Makarov, S.B., Ovsyannikova, A.S., Zavjalov, S.V., Volvenko, S.V., Zhang, L
2018
Pub link

Postgraduate courses

  • Improving the efficiency of wireless communication systems
  • Development of algorithms for generating and receiving signals, their implementation and evaluation of computational complexity
  • Improving the BER performance in channels with fading, reducing the peak factor of multi-frequency signals
  • Increasing the speed of information transfer in telecommunication systems 5G
  • Spectrally-efficient signals for space communications systems
  • Transmission of information at a speed above the Nyquist barrier
  • Non-linear types of signal modulation for narrow-band communication channels
  • Reception of signals in space communication systems taking into account the Doppler effect
  • Algorithms for receiving “as a whole” message sequences
  • Transmission of signals with a limited spectrum in non-linear channels

Grants

  • Improving the BER performance of receiving of radar signals
  • Development of a universal packet demodulator for VSAT systems
  • Development of a radio modem model with spectrally efficient signals using SEFDM technology
  • Development of nodes for a data transmission system of a distributed engine control system
  • Development of algorithms for receiving and processing signals of the Spaceway system
  • Development of iterative decoders for turbo codes
    • Personal satellite communications system based on satellite repeaters located in geostationary orbit

Our Partners