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Most published authors (scientific articles only) of the journal
|
| 1. |
V. P. Fralenko |
29 |
| 2. |
I. V. Rasina |
24 |
| 3. |
V. I. Gurman |
16 |
| 4. |
S. V. Znamenskii |
16 |
| 5. |
O. V. Fes'ko |
16 |
| 6. |
E. A. Suleymanova |
14 |
| 7. |
Yu. V. Shevchuk |
14 |
| 8. |
A. V. Smirnov |
13 |
| 9. |
I. P. Tishchenko |
13 |
| 10. |
N. A. Vlasova |
12 |
| 11. |
I. S. Guseva |
11 |
| 12. |
D. V. Belyshev |
10 |
| 13. |
I. V. Vinokurov |
10 |
| 14. |
Yu. A. Klimov |
10 |
| 15. |
V. A. Roganov |
10 |
| 16. |
I. V. Trofimov |
10 |
| 17. |
A. A. Kuznetsov |
9 |
| 18. |
N. S. Abramov |
8 |
| 19. |
I. A. Adamovich |
8 |
| 20. |
S. A. Amelkin |
8 |
| 21. |
A. O. Blinov |
8 |
| 22. |
G. A. Matveev |
8 |
| 23. |
V. I. Osipov |
8 |
| 24. |
A. A. Talalaev |
8 |
| 25. |
B. M. Shabanov |
8 |
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40 most published authors of the journal |
|
| Most cited authors of the journal |
| 1. |
V. P. Fralenko |
50 |
| 2. |
V. I. Gurman |
37 |
| 3. |
I. V. Rasina |
35 |
| 4. |
E. A. Suleymanova |
26 |
| 5. |
Yu. G. Emel'yanova |
24 |
| 6. |
A. A. Talalaev |
23 |
| 7. |
N. A. Vlasova |
18 |
| 8. |
I. V. Vinokurov |
17 |
| 9. |
I. S. Guseva |
17 |
| 10. |
S. V. Znamenskii |
17 |
| 11. |
V. L. Malykh |
17 |
| 12. |
I. V. Trofimov |
15 |
| 13. |
B. M. Shabanov |
15 |
| 14. |
I. A. Adamovich |
14 |
| 15. |
A. V. Baranov |
14 |
| 16. |
Yu. A. Klimov |
14 |
| 17. |
N. S. Abramov |
13 |
| 18. |
Yu. V. Vainshtein |
13 |
| 19. |
T. O. Kochetkova |
13 |
| 20. |
O. V. Fes'ko |
13 |
| 21. |
V. A. Shershneva |
13 |
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40 most cited authors of the journal |
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| Most cited articles of the journal |
| 1. |
Decision support systems in medicine V. L. Malykh Program Systems: Theory and Applications, 2019, 10:2, 155–184 |
11 |
| 2. |
Adaptive system of web-based teaching V. A. Shershneva, Yu. V. Vainshtein, T. O. Kochetkova Program Systems: Theory and Applications, 2018, 9:4, 179–197 |
9 |
| 3. |
Discrete-continuous models and optimization of control processes I. V. Rasina Program Systems: Theory and Applications, 2011, 2:5, 49–72 |
9 |
| 4. |
he distributed network of the supercomputer
centers for collaborative research B. M. Shabanov, A. P. Ovsiannikov, A. V. Baranov, S. A. Leshchev, B. V. Dolgov, D. Yu. Derbyshev Program Systems: Theory and Applications, 2017, 8:4, 245–262 |
8 |
| 5. |
Abstract problems of optimization and improvement V. I. Gurman Program Systems: Theory and Applications, 2011, 2:5, 21–29 |
8 |
| 6. |
Approximate methods of control processes optimization V. I. Gurman, E. A. Trushkova Program Systems: Theory and Applications, 2010, 1:4, 85–104 |
8 |
| 7. |
Multichannel non-blocking system area network with
direct channels V. S. Podlazov Program Systems: Theory and Applications, 2022, 13:4, 47–76 |
7 |
| 8. |
Program transformations as the base for optimizing parallelizing compilers B. Ya. Steinberg, O. B. Steinberg Program Systems: Theory and Applications, 2021, 12:1, 21–113 |
7 |
| 9. |
Modern methods for intelligent processing of Earth remote sensing data N. S. Abramov, D. A. Makarov, A. A. Talalaev, V. P. Fralenko Program Systems: Theory and Applications, 2018, 9:4, 417–442 |
7 |
| 10. |
Methods of cognitive-graphical representation
of information for effective monitoring of complex technical systems Yu. G. Emel'yanova, V. P. Fralenko Program Systems: Theory and Applications, 2018, 9:4, 117–158 |
6 |
| 11. |
Control improvement method for non-homogeneous discrete systems with intermediate criterions I. V. Rasina, I. S. Guseva Program Systems: Theory and Applications, 2018, 9:2, 23–38 |
6 |
| 12. |
Using a convolutional neural network to recognize text elements in poor quality scanned images I. V. Vinokurov Program Systems: Theory and Applications, 2022, 13:3, 29–43 |
5 |
| 13. |
How to create deterministic by construction parallel programs?
Problem statement
and survey of related works A. I. Adamovich, And. V. Klimov Program Systems: Theory and Applications, 2017, 8:4, 221–224 |
5 |
| 14. |
Analysis of data storage methods for modern healthcare information systems D. V. Belyshev, E. V. Kochurov Program Systems: Theory and Applications, 2016, 7:2, 85–103 |
5 |
| 15. |
Semantic analysis of contextual dates E. A. Suleymanova Program Systems: Theory and Applications, 2015, 6:4, 367–399 |
5 |
| 16. |
New representation of real numbers Nikolai Nepejvoda, Ivan Grigorevsky, Evgeny Lilitko Program Systems: Theory and Applications, 2014, 5:4, 105–121 |
5 |
| 17. |
Challenges to the supercomputer development in Russia: a HPC user perspective V. V. Stegailov, G. E. Norman Program Systems: Theory and Applications, 2014, 5:1, 111–152 |
5 |
| 18. |
Algorithms and Software Solving a Motion Planning Problem for Nonholonomic Five-dimensional Control Systems A. P. Mashtakov Program Systems: Theory and Applications, 2012, 3:1, 3–29 |
5 |
|
| Most requested articles of the journal |
|
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| 1. |
Lorentzian problem on the group $SE(2)$ Yu. L. Sachkov, I. A. Galyaev Program Systems: Theory and Applications, 2026, 17:2, 327–341 | 41 |
| 2. |
Using a convolutional neural network to recognize text elements in poor quality scanned images I. V. Vinokurov Program Systems: Theory and Applications, 2022, 13:3, 29–43 | 19 |
| 3. |
Application of RF-DETR and Yolo26 detectors for brain tumor localization using MRI data V. P. Fralenko Program Systems: Theory and Applications, 2026, 17:2, 263–293 | 18 |
| 4. |
Development of supercomputer simulation software based on Matlab source code N. A. Bogoslovskiy, Yu. A. Klimov, A. V. Savelyev, D. K. Shalyga Program Systems: Theory and Applications, 2013, 4:2, 21–42 | 16 |
| 5. |
Comparison of decentralized, centralized, and hybrid interaction structures for a heterogeneous team of unmanned aerial vehicles T. Z. Muslimov Program Systems: Theory and Applications, 2026, 17:2, 3–82 | 16 |
| 6. |
Analytical design of controllers for discrete-continuous systems with linear control I. V. Rasina, O. V. Fesko, O. V. Usenko Program Systems: Theory and Applications, 2021, 12:2, 105–119 | 16 |
| 7. |
About optimal organization of cooling system A. M. Tsirlin, A. A. Akhremenkov Program Systems: Theory and Applications, 2010, 1:1, 61–73 | 15 |
| 8. |
Algorithm and software for calculating thermal cycles
for the separation of gas mixtures using thermodynamic
criteria A. A. Mazikov Program Systems: Theory and Applications, 2026, 17:1, 85–103 | 15 |
| 9. |
The use of convolutional neural networks for recognition of the type of premises using special features of the premises A. V. Smirnov, D. N. Stepanov Program Systems: Theory and Applications, 2018, 9:4, 279–291 | 15 |
| 10. |
Roof-DeGAN: a hybrid GAN with cross-scale attention for aerial roof inpainting I. V. Vinokurov, G. M. Lapan'kov, G. D. Umarov Program Systems: Theory and Applications, 2026, 17:2, 191–262 | 15 |
|
| Total publications: |
496 |
| Scientific articles: |
489 |
| Authors: |
516 |
| Citations: |
514 |
| Cited articles: |
232 |
|