Zobrazeno 1 - 10
of 39
pro vyhledávání: '"Nikolay, Gapon"'
Autor:
Roman Sizyakin, Viacheslav Voronin, Nikolay Gapon, Evgeny A. Semenishchev, Alehander Zelensky, Yuriy Ilyukhin
Publikováno v:
Optical Metrology and Inspection for Industrial Applications IX.
Autor:
Evgeny A. Semenishchev, Aleksandr Zelensky, Marina Zhdanova, Nikolay Gapon, Aleksandr Gavlicky, Viacheslav V. Voronin
Publikováno v:
Emerging Imaging and Sensing Technologies for Security and Defence VII.
Autor:
Viacheslav Voronin, Marina Zhdanova, Nikolay Gapon, Andrey Alepko, Alexander Zelensky, Evgeny A. Semenishchev
Publikováno v:
Electro-optical and Infrared Systems: Technology and Applications XIX.
Autor:
Viacheslav Voronin, Nikolay Gapon, Iliy Khamidullin, Olga Tokareva, Alexander Zelensky, Evgeny A. Semenishchev
Publikováno v:
Counterterrorism, Crime Fighting, Forensics, and Surveillance Technologies VI.
Autor:
Alexander Zelensky, Viacheslav Voronin, Nikolay Gapon, Evgeny A. Semenishchev, Svetlana Voronina, Yu Ilyukhin
Publikováno v:
Counterterrorism, Crime Fighting, Forensics, and Surveillance Technologies VI.
Autor:
Evgeny A. Semenishchev, Aleksandr Zelensky, Yury Ilyukhin, Nikolay Gapon, Marina Zhdanova, Voronin Vizcheslav
Publikováno v:
Environmental Effects on Light Propagation and Adaptive Systems V.
Publikováno v:
Unconventional Optical Imaging III.
Autor:
Aleksander A. Zelensky, Viacheslav V. Voronin, Marina M. Zhdanova, Nikolay Gapon, Olga Tokareva, Evgeny A. Semenishchev
Publikováno v:
Optics, Photonics and Digital Technologies for Imaging Applications VII.
Autor:
Aleksander A. Zelensky, Viacheslav V. Voronin, Nikolay Gapon, Evgeny A. Semenishchev, Vadim Egipko, Iliy Khamidullin
Publikováno v:
Optics, Photonics and Digital Technologies for Imaging Applications VII.
Autor:
Viacheslav V. Voronin, Nikolay Gapon, Yang Cen, I. Khadidullin, Aleksander Zelenskii, Evgeny A. Semenishchev
Publikováno v:
Artificial Intelligence and Machine Learning in Defense Applications III.
In modern mobile robots, technologies are used that make it possible to build the most optimal path for its movement. This uses simultaneous navigation and mapping techniques known as SLAM. A problem with all depth mapping methods is the presence of