Construction of a generalized probabilistic-physical model of reliability of a two-level active phased antenna array

A generalized probabilistic-physical model of reliability of a two-level active phased antenna array (APAA) of a multifunctional radar station was presented. When constructing the APAA physical model, definitions of failures of the radiating channel and the antenna array as a whole were formulated....

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Main Authors: Valery Kostanovsky, Igor Machalin, Oksana Kozachuk, Irina Terentyeva
Format: Article
Language:English
Published: PC Technology Center 2019-06-01
Series:Eastern-European Journal of Enterprise Technologies
Subjects:
Online Access:http://journals.uran.ua/eejet/article/view/168525
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spelling doaj-17e7e0d4edd9483aa57a0e8833aa8dc12020-11-25T00:58:15ZengPC Technology CenterEastern-European Journal of Enterprise Technologies1729-37741729-40612019-06-0139 (99)314010.15587/1729-4061.2019.168525168525Construction of a generalized probabilistic-physical model of reliability of a two-level active phased antenna arrayValery Kostanovsky0Igor Machalin1Oksana Kozachuk2Irina Terentyeva3State Enterprise Research Institute «Kvant» Fedorova str., 4, Kyiv, Ukraine, 03150National Aviation University Kosmonavta Komarova ave., 1, Kyiv, Ukraine, 03058State Enterprise Research Institute «Kvant» Fedorova str., 4, Kyiv, Ukraine, 03150National Aviation University Kosmonavta Komarova ave., 1, Kyiv, Ukraine, 03058A generalized probabilistic-physical model of reliability of a two-level active phased antenna array (APAA) of a multifunctional radar station was presented. When constructing the APAA physical model, definitions of failures of the radiating channel and the antenna array as a whole were formulated. Key parameters of the APAA were chosen: radiation power, gain in transmission and the top level of the near side lobes. This has made it possible to formulate generalized criteria of failure of the APAA operating in the modes of transmission and reception as well as determine the permissible number of failures of the radiating channels and receiving modules. The physical model of the APAA reliability was formalized by a system of equations describing deviation of key parameters of the antenna array beyond the permissible limits. At the same time, boundary (permissible) values of the number of failed radiating channels and receiving modules were found that provide critical (minimum permissible) values of key parameters of the antenna array. To construct a probabilistic model of the APAA reliability, the antenna array was defined as an isotropic hierarchical system and a formula was derived for determining the average number of operable radiating channels in the multi-level APAA structure. A block-diagram of reliability of receiving and transmitting sub-arrays, receiving and transmitting APAA has been built and formalized. Definition of failures of the receiving and transmitting sub-arrays, receiving and transmitting APAA was given. This has allowed us to derive analytical expressions for determining mean time to failure, probability of failure-free operation, density of time to failure and failure rates for sub-arrays and the APAA. Exponential distribution (for sudden failures), diffusional non-monotonic distribution (for gradual failures) and composition of exponential and diffusional non-monotonic distributions (at a joint manifestation of sudden and gradual failures) were used as models of failure of SHF elements, transistors, radiating channels and receiving modules. An illustrative example of calculation of the average time to failure of a two-level APAA of a multifunctional RS including 6400 radiating channels was presented.http://journals.uran.ua/eejet/article/view/168525mean time to failurephased antenna arrayfailure criteriaradiating channels.
collection DOAJ
language English
format Article
sources DOAJ
author Valery Kostanovsky
Igor Machalin
Oksana Kozachuk
Irina Terentyeva
spellingShingle Valery Kostanovsky
Igor Machalin
Oksana Kozachuk
Irina Terentyeva
Construction of a generalized probabilistic-physical model of reliability of a two-level active phased antenna array
Eastern-European Journal of Enterprise Technologies
mean time to failure
phased antenna array
failure criteria
radiating channels.
author_facet Valery Kostanovsky
Igor Machalin
Oksana Kozachuk
Irina Terentyeva
author_sort Valery Kostanovsky
title Construction of a generalized probabilistic-physical model of reliability of a two-level active phased antenna array
title_short Construction of a generalized probabilistic-physical model of reliability of a two-level active phased antenna array
title_full Construction of a generalized probabilistic-physical model of reliability of a two-level active phased antenna array
title_fullStr Construction of a generalized probabilistic-physical model of reliability of a two-level active phased antenna array
title_full_unstemmed Construction of a generalized probabilistic-physical model of reliability of a two-level active phased antenna array
title_sort construction of a generalized probabilistic-physical model of reliability of a two-level active phased antenna array
publisher PC Technology Center
series Eastern-European Journal of Enterprise Technologies
issn 1729-3774
1729-4061
publishDate 2019-06-01
description A generalized probabilistic-physical model of reliability of a two-level active phased antenna array (APAA) of a multifunctional radar station was presented. When constructing the APAA physical model, definitions of failures of the radiating channel and the antenna array as a whole were formulated. Key parameters of the APAA were chosen: radiation power, gain in transmission and the top level of the near side lobes. This has made it possible to formulate generalized criteria of failure of the APAA operating in the modes of transmission and reception as well as determine the permissible number of failures of the radiating channels and receiving modules. The physical model of the APAA reliability was formalized by a system of equations describing deviation of key parameters of the antenna array beyond the permissible limits. At the same time, boundary (permissible) values of the number of failed radiating channels and receiving modules were found that provide critical (minimum permissible) values of key parameters of the antenna array. To construct a probabilistic model of the APAA reliability, the antenna array was defined as an isotropic hierarchical system and a formula was derived for determining the average number of operable radiating channels in the multi-level APAA structure. A block-diagram of reliability of receiving and transmitting sub-arrays, receiving and transmitting APAA has been built and formalized. Definition of failures of the receiving and transmitting sub-arrays, receiving and transmitting APAA was given. This has allowed us to derive analytical expressions for determining mean time to failure, probability of failure-free operation, density of time to failure and failure rates for sub-arrays and the APAA. Exponential distribution (for sudden failures), diffusional non-monotonic distribution (for gradual failures) and composition of exponential and diffusional non-monotonic distributions (at a joint manifestation of sudden and gradual failures) were used as models of failure of SHF elements, transistors, radiating channels and receiving modules. An illustrative example of calculation of the average time to failure of a two-level APAA of a multifunctional RS including 6400 radiating channels was presented.
topic mean time to failure
phased antenna array
failure criteria
radiating channels.
url http://journals.uran.ua/eejet/article/view/168525
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