ESTIMATION OF SECURITY OF THE PREMISES FROM LEAKAGE OF SPEECH INFORMATION IN CONDITIONS OF EXPOSURE TO NOISE

Abstract

The article discusses the features of the application of certification methods for protected premises. Such techniques are developed and regulated by the Federal Service for Technical and Export Control. The need for certification is associated with the presence of technical channels for information leakage, through which an attacker can obtain information constituting a commercial, state or other secret. The presence of technical channels for information leakage is due to physical processes associated with the propagation of acoustic, electromagnetic, and optical waves. Through such channels, leakage of acoustic, specific information, information processed by technical means and systems is possible. In the framework of this work, the features of certification of protected premises against leakage of acoustic information are considered. Certification includes instrumental measurements that allow you to detect an informative signal in communication lines, on the air, in heating, water supply, ventilation, etc. In addition to measurements, certification involves calculations based on which a conclusion is made about the conformity or noncompliance of the level of protection. The calculation part is rather cumbersome and complex, therefore the purpose of the work is to develop an algorithm that allows you to determine the degree of security of the selected premises from the leakage of speech information. The objectives of the work are: the development of auxiliary algorithms for calculating the security parameters of the room for each type of voice information leakage channel; implementation of software that allows you to determine the degree of security of the room; conducting a study of the dependence of room security on the noise level using the developed software. As the results of the work, the synthesized algorithm and the developed software tool should be noted, which can significantly reduce the time for the procedure for assessing the security of the room and avoid errors. The result of the work is the study of the dependence of verbal intelligibility of speech on the noise level in various octaves. Studies have shown that verbal intelligibility, which determines the security of a room by acoustic parameters, decreases non-linearly with an increase in the noise level at a fixed signal level.

Authors

References

1. Baranova E.K., Baban A.V. Informatsionnaya bezopasnost' i zashchita informatsii: ucheb.
Posobie [Information security and information protection: studies. Stipend]. 3rd ed. Moscow:
Izd-vo Goryachaya liniya-Telekom, 2016.
2. Bukovshin V.A., Boldyrikhin N.V. Sovremennye problemy informatsionnoy bezopasnosti [Modern
problems of information security], Sovremennye materialy, tekhnika i tekhnologiya: Sb. statey
[Modern materials, technique and technology: Collection of articles]. Kursk, 2018, pp. 47-52.
3. Bukovshin V.A., Boldyrikhin N.V. Kiberbezopasnost' kak neot"emlemaya chast'
informatsionnogo mira [Cybersecurity as an integral part of the information world],
Sovremennye materialy, tekhnika i tekhnologiya: Sb. statey [Modern materials, technique and
technology: Collection of articles]. Kursk, 2018, pp. 52-55.
4. Prokhorova O.V. Informatsionnaya bezopasnost' i zashchita informatsii [Information security
and information protection]. Samara: SGASU, 2014.
5. Men'shakov Yu.K. Vidy i sredstva inostrannykh tekhnicheskikh razvedok [Types and means of
foreign technical intelligence]. Moscow: Izd-vo MGTU im. N.E. Baumana, 2009.
6. Men'shakov Yu.K. Osnovy zashchity ot tekhnicheskikh razvedok [Fundamentals of protection
from technical intelligence]. Moscow: Izd-vo MGTU im. N.E. Baumana, 2011.
7. Khorev A.A. Organizatsiya kontrolya effektivnosti protivodeystviya tekhnicheskim sredstvam
razvedki i zashchity informatsii [Organization of control over the effectiveness of counteraction
to technical means of intelligence and information protection]. Moscow: MO RF, 2006.
8. Buzov G.A., Kalinin S.V., Kondrat'ev A.V. Zashchita ot utechki informatsii po tekhnicheskim
kanalam [Protection against information leakage through technical channels]. Moscow:
Goryachaya liniya-Telekom, 2005.
9. Durakovskiy A.P., Kunitsyn I.V., Lavrukhin Yu.N. Kontrol' zashchishchennosti rechevoy
informatsii v pomeshcheniyakh. Attestatsionnye ispytaniya vspomogatel'nykh tekhnicheskikh
sredstv i sistem po trebovaniyam bezopasnosti informatsii [Monitoring the security of speech
information in the premises. Attestation tests of auxiliary technical means and systems for information
security requirements]. Moscow: NIYAU MIFI, 2015, 152 p.
10. Zheleznyak V.K., Makarov Yu.K., Khoreev A.A. Nekotorye metodicheskie podkhody k otsenke
effektivnosti zashchity rechevoy informatsii [Some methodological approaches to evaluating
the effectiveness of speech information protection], Spetsial'naya tekhnika [Special technique],
2000, No. 4, pp. 39-45.
11. Goncharov R.A., Korochentsev D.A., Zelenskiy A.A. Razrabotka podsistemy podderzhki
prinyatiya resheniya identifikatsii tekhnicheskikh kanalov utechki informatsii [Development of
a decision support subsystem for identifying technical channels of information leakage],
Natsional'naya Assotsiatsiya Uchenykh [National Association of Scientists], 2018, No. 14
(41), pp. 8-11.
12. Golub B.V., Maksimov R.V. Tekhnicheskie sredstva i metody zashchity informatsii ot utechki po
tekhnicheskim kanalam [Technical means and methods of protecting information from leaks
through technical channels], Khroniki ob"edinennogo fonda elektronnykh resursov «Nauka i
obrazovanie» [Chronicles of the United Fund of electronic resources "Science and education"].
Moscow: Institut upravleniya obrazovaniem Rossiyskoy akademii obrazovaniya, 2014.
13. Davydov A.E., Maksimov R.V., Savitskiy O.K. Tekhnicheskie sredstva i metody zashchity
informatsii ot utechki po tekhnicheskim kanalam na ob"ektakh informatizatsii [Technical
means and methods of information protection from leakage through technical channels to the
information objects]. Saint Petersburg: NII "Masshtab", 2012.
14. Evstifeev A.A., Eroshev V.I., Kazakov A.A. Razrabotka predlozheniy po otsenke
zashchishchennosti informatsii tekhnicheskikh sistem ot utechki po tekhnicheskim kanalam
[Development of proposals for assessing the security of information from technical systems
leakage through technical channels], Matematika i matematicheskoe modelirovanie: Sb. statey
[Mathematics and mathematical modeling: a Collection of articles]. Sarov, 2018, pp. 15-16.
15. Zelenskiy A.A., Korochentsev D.A., Revyakina E.A. Razrabotka adaptivnogo fuzzy-algoritma
identifikatsii tekhnicheskikh kanalov utechki informatsii [Development of an adaptive fuzzy
algorithm for identifying technical channels of information leakage], Colloquium-journal [Colloquium-
journal], 2020, No. 11-1 (63), pp. 40-44.
16. Korochentsev D.A., Zelenskiy A.A. Sistema identifikatsii tekhnicheskikh kanalov utechki
informatsii [Identification system for technical channels of information leakage], Aktual'nye
problemy nauki i tekhniki: Sb. tezisov dokladov [Actual problems of science and technology:
Collection of abstracts]. Rostov-on-Don, 2019, pp. 357-358.
17. Luk'yanov A.S., Perminov G.V. Raznovidnosti i osobennosti tekhnicheskikh kanalov utechki
informatsii [Varieties and features of technical channels of information leakage], Okhrana,
bezopasnost', svyaz': Sb. statey [Security, safety, communication: Collection of articles]. Voronezh:
2013, pp. 41-44.
18. Sadovskaya T.G., Khorev A.A. Sredstva i metody obespecheniya bezopasnosti biznesa.
Tekhnicheskie kanaly utechki informatsii [Tools and methods for ensuring business security.
Technical channels of information leakage]. Moscow: MGTU im. N.E. Baumana, 2009.
19. Tegentsev I.M., Shcherbakov V.A., Ponomarenko S.A. Formalizatsiya protsessov kompleksnogo
tekhnicheskogo kontrolya zashchishchennosti informatsii ot utechki po tekhnicheskim kanalam
[Formalization of processes of complex technical control of information security from leakage
through technical channels], Okhrana, bezopasnost', svyaz': Sb. statey [Security, safety, communication:
Collection of articles]. Voronezh, 2016, No. 1-2, pp. 150-154.
20. Torokin A.A. Inzhenerno-tekhnicheskaya zashchita informatsii [Engineering and technical
protection of information]. Moscow: MO RF, 2004.

Скачивания

Published:

2020-10-11

Issue:

Section:

SECTION II. INFORMATION PROCESSING ALGORITHMS

Keywords:

Information security, speech information leakage, dedicated room, information leakage channel, premises security assessment