Photonics-based modular multistate digital coherent system

Objectives. The study aimed to develop interspecies and interclass methods for constructing coherent radio engineering systems based on a modular complementary structure.Methods. A set of modules and submodules having no narrow specialization and together constituting a flexible broadband hardware-r...

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Main Authors: I. V. Unchenko, A. A. Emelyanov
Format: Article
Language:Russian
Published: MIREA - Russian Technological University 2022-07-01
Series:Российский технологический журнал
Subjects:
Online Access:https://www.rtj-mirea.ru/jour/article/view/547
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author I. V. Unchenko
A. A. Emelyanov
author_facet I. V. Unchenko
A. A. Emelyanov
author_sort I. V. Unchenko
collection DOAJ
description Objectives. The study aimed to develop interspecies and interclass methods for constructing coherent radio engineering systems based on a modular complementary structure.Methods. A set of modules and submodules having no narrow specialization and together constituting a flexible broadband hardware-reconfigurable software-defined radio engineering structure is considered as the basic set for constructing a digital radio photonic system path. Due to their broadbandness and complementary structure, modules and submodules have many applications both as self-sustained devices and as part of more complex systems.Results. Functional diagrams of modern digital receiver-shapers, as well as modules for amplifying radio frequency signals and converting radio frequency signals into an optical signal are presented along with a radio photonic synchronization network for generating clock signals. Calculations of the introduced phase error of a quartz singlemode fiber and graphs of the dependence of the change in the signal phase on external influencing factors are given. A concept for integrating the presented modules into the construction of a modular transceiver multiposition wideband coherent digital radio photonic system is proposed. The results of calculating radiation patterns and mathematical modeling the beam deflection of a broadband antenna array are presented along with antenna systems based thereon.Conclusions. The proposed circuit design solutions allow the time required for developing new types of systems to be significantly reduced due to the range of ready-made technical solutions. Not only are the parameters of the developed devices comparable to the best world analogues, but they also surpass existing solutions in terms of system integration. The developments have been tested under R&D project at the Kaluga Scientific Research Institute of Radio Technology and Hardware Solution Technologies (TAR). The proposed solutions are integrated at the subsystem level into advanced developments of products for civil and special purpose. Further development of the concept of building ultra-wideband devices allows reaching a new level in the technology of constructing modular multiposition coherent digital radio photonic systems.
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spelling doaj-art-c82feb0e538843b6a3335984e58741d92025-02-03T11:45:50ZrusMIREA - Russian Technological UniversityРоссийский технологический журнал2500-316X2022-07-01104273710.32362/2500-316X-2022-10-4-27-37328Photonics-based modular multistate digital coherent systemI. V. Unchenko0A. A. Emelyanov1MIREA - Russian Technological University; Kaluga Research Institute of Radio Engineering; Hardware Solutions TechnologiesMIREA - Russian Technological University; Kaluga Research Institute of Radio Engineering; Hardware Solutions TechnologiesObjectives. The study aimed to develop interspecies and interclass methods for constructing coherent radio engineering systems based on a modular complementary structure.Methods. A set of modules and submodules having no narrow specialization and together constituting a flexible broadband hardware-reconfigurable software-defined radio engineering structure is considered as the basic set for constructing a digital radio photonic system path. Due to their broadbandness and complementary structure, modules and submodules have many applications both as self-sustained devices and as part of more complex systems.Results. Functional diagrams of modern digital receiver-shapers, as well as modules for amplifying radio frequency signals and converting radio frequency signals into an optical signal are presented along with a radio photonic synchronization network for generating clock signals. Calculations of the introduced phase error of a quartz singlemode fiber and graphs of the dependence of the change in the signal phase on external influencing factors are given. A concept for integrating the presented modules into the construction of a modular transceiver multiposition wideband coherent digital radio photonic system is proposed. The results of calculating radiation patterns and mathematical modeling the beam deflection of a broadband antenna array are presented along with antenna systems based thereon.Conclusions. The proposed circuit design solutions allow the time required for developing new types of systems to be significantly reduced due to the range of ready-made technical solutions. Not only are the parameters of the developed devices comparable to the best world analogues, but they also surpass existing solutions in terms of system integration. The developments have been tested under R&D project at the Kaluga Scientific Research Institute of Radio Technology and Hardware Solution Technologies (TAR). The proposed solutions are integrated at the subsystem level into advanced developments of products for civil and special purpose. Further development of the concept of building ultra-wideband devices allows reaching a new level in the technology of constructing modular multiposition coherent digital radio photonic systems.https://www.rtj-mirea.ru/jour/article/view/547digital antenna arraysradaractive phased antenna arraylaserphotodiodedigital-to-analog converteranalog-to-digital converterdigital beamforming
spellingShingle I. V. Unchenko
A. A. Emelyanov
Photonics-based modular multistate digital coherent system
Российский технологический журнал
digital antenna arrays
radar
active phased antenna array
laser
photodiode
digital-to-analog converter
analog-to-digital converter
digital beamforming
title Photonics-based modular multistate digital coherent system
title_full Photonics-based modular multistate digital coherent system
title_fullStr Photonics-based modular multistate digital coherent system
title_full_unstemmed Photonics-based modular multistate digital coherent system
title_short Photonics-based modular multistate digital coherent system
title_sort photonics based modular multistate digital coherent system
topic digital antenna arrays
radar
active phased antenna array
laser
photodiode
digital-to-analog converter
analog-to-digital converter
digital beamforming
url https://www.rtj-mirea.ru/jour/article/view/547
work_keys_str_mv AT ivunchenko photonicsbasedmodularmultistatedigitalcoherentsystem
AT aaemelyanov photonicsbasedmodularmultistatedigitalcoherentsystem