SPECIALISED STAND FOR MEASURING PARAMETERS OF ADAPTIVE CONTROL CHANNELS
- Authors: Ishkov A.S.1, Maksimov P.A.2, Seliverstov A.V.1
-
Affiliations:
- Penza State University
- Penza Research Electrotechnical Institute
- Issue: No 3 (2025)
- Pages: 73-79
- Section: DEVICES AND METHODS OF MEASURING
- URL: https://journal-vniispk.ru/2307-5538/article/view/319244
- DOI: https://doi.org/10.21685/2307-5538-2025-3-9
- ID: 319244
Cite item
Full Text
Abstract
Background. In the development of the space industry, an important aspect is to reduce the cost and time, as well as improve the quality of measurements of the parameters of electronic equipment. Including products that combine both analog and digital units, which include adaptive control channels. To reproduce the properties of radiation of outer space, modeling and simulating installations are used, which is associated with the complexity of the infrastructure of measuring stands, high cost and duration of measurements, difficulties with unsatisfactory test results. The purpose of the presented study is to develop a specialized stand for measuring the parameters of adaptive control channels based on a digital model of the sample under study, reproducing the effects of ECB associated with the impact of cosmic rays using software and hardware methods to assess the stability of adaptive control systems under controlled conditions. Materials and methods. The work is based on the integration of hardware and software components. The hardware part includes a system for introducing and tracking changes in the parameters of analog and digital signals operating in the test sample by means of high-precision ADCs and microcontrollers providing synchronous control of the parameters. A thermal chamber is used as a source of temperature effects close to the conditions of outer space. The software part is implemented on a PC as a module for controlling the stand, which includes: a controlled source of the measured physical quantity; a system for introducing and tracking changes in the parameters of analog and digital signals operating in the test sample; additional measuring equipment that can be included in the measuring stand at the request of the tester. Results. The theoretical basis of the stand has been formed, namely: the purpose, technical capabilities, structure of the hardware and software complex and a detailed description of its components. Conclusion. The developed stand ensures safe, flexible and comprehensive measurement of the parameters of electronic products, the methods currently used to improve reliability, quality, reduce the cost and duration of measurements. Its implementation accelerates the development of reliable systems for space vehicles.
About the authors
Anton S. Ishkov
Penza State University
Author for correspondence.
Email: ishkovanton@mail.ru
Candidate of technical sciences, associate professor of the sub-department of radio engineering and radio electronic system
(40 Krasnaya street, Penza, Russia)Pavel A. Maksimov
Penza Research Electrotechnical Institute
Email: m@pa8880.ru
Software engineer
(9 Sovetskaya street, Penza, Russia)Anatoly V. Seliverstov
Penza State University
Email: tolik.seliverstov.03@mail.ru
Student
(40 Krasnaya street, Penza, Russia)References
- Ivanov A.O., Kokhanovskiy A.G., Kremez G.V., Lachugin V.P. Experimental studies of the radiation resistance of the element base of the onboard equipment of spacecraft. Trudy voenno-kosmicheskoy akademii imeni A.F. Mozhayskogo = Proceedings of the Military Space Academy named after A.F. Mozhaisky. 2013;(641):12–18. (In Russ.)
- Nikiforov A.Yu., Telets V.A. Radiation resistance of the electronic component base of special equipment and communications systems. Spetstekhnika i svyaz' = Special equipment and communications. 2011; (4-5):2–4. (In Russ.)
- Nikiforov A.Yu., Skorobogatov P.K., Strikhanov M.N. et al. Development of basic technology for forecasting, evaluation and control of radiation resistance of microelectronics products. Izvestiya vysshikh uchebnykh zavedeniy. Elektronika = News of higher educational institutions. Electronics. 2012;(5):18–23. (In Russ.)
- Yanenko A.V., Chumakov A.I., Pechenkin A.A. et al. Comparative analysis of tests of the electronic component base for resistance to the effects of individual nuclear particles on laser simulators and ion accelerators. Spetstekhnika i svyaz' = Special equipment and communications. 2011;(4-5):4–7. (In Russ.)
- Tapero K.I., Ulimov V.N., Chlenov A.M. Radiatsionnye effekty v kremnievykh integral'nykh skhemakh kosmicheskogo primeneniya = Radiation effects in silicon integrated circuits for space applications. Moscow: BINOM. Laboratoriya znaniy, 2012:304. (In Russ.)
- Chukov G.V., Elesin V.V., Boychenko D.V. et al. Effects of single events in RF and microwave IC. Mikrovolnovye i telekommunikatsionnye tekhnologii: 24-ya Mezhdunar. Krymskaya konf. Sevastopol' = Microwave and Telecommunication technologies : 24th International Crimean conference. 2014:860–861. (In Russ.). doi: 10.1109/CRMICO.2014.6959665
- Gromov V.T. Vvedenie v radiatsionnuyu fiziku tverdogo tela = Introduction to solid state radiation physics. Snezhinsk: Izd-vo RFYaTs-VNIITF, 2007:208. (In Russ.)
- Elesin V.V., Nikiforov A.Yu., Telets V.A., Chukov G.V. A set of methodological, hardware and software tools for automated studies of semiconductor microwave IC parameters under radiation resistance testing conditions. Spetstekhnika i svyaz' = Special equipment and communications. 2011;(4-5):28–32. (In Russ.)
- Zebrev G.I. Modeling of dose and single dose radiation effects in silicon micro- and nanoelectronic structures for design and forecasting purposes: DSc abstract. Moscow, 2009:156. (In Russ.)
- Ozhegin Yu.A., Nikiforov A.Yu., Telets V.A. et al. Directions for the development of a quality management system for radiation testing of an electronic component base. Spetstekhnika i svyaz' = Special equipment and communications. 2011;(4-5):59–62. (In Russ.)
Supplementary files
