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    НазваниеСистемы управления, связи и безопасности 4. 2019 Systems of Control, Communication and Security
    АнкорСистемы охраны
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    Системы управления, связи и безопасности
    №4. 2019
    Systems of Control, Communication and Security
    ISSN 2410-9916
    DOI: 10.24411/2410-9916-2019-10405
    URL: https://sccs.intelgr.com/archive/2019-04/05-Telny.pdf
    159
    Федерации. Методические рекомендации Р 078-2019. – М.: ФКУ «НИЦ
    «Охрана», 2019. – 58 с.
    14. Тельный А. В., Монахов М. Ю. Динамическая модель достаточности инженерно-технического укрепления элементов строительных конструкций территорий, зданий и помещений объектов для предотвращения несанкционированного доступа // Динамика сложных систем – XXI век. 2016.
    № 1. С. 41-48.
    15. Обследование объектов, принимаемых, принимаемых под охрану подразделениями вневедомственной охраны войск национальной гвардии
    Российской Федерации. Методические рекомендации Р 063-2017. – М.: ФКУ
    «НИЦ «Охрана», 2017. – 50 с.
    16. Хайнеман Дж., Поллис Г., Селков С. Алгоритмы. Справочник с примерами на С, C++, Java и Python. – СПБ.: ООО “Альфа-книга”, 2017. —
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    Системы управления, связи и безопасности
    №4. 2019
    Systems of Control, Communication and Security
    ISSN 2410-9916
    DOI: 10.24411/2410-9916-2019-10405
    URL: https://sccs.intelgr.com/archive/2019-04/05-Telny.pdf
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    ohrany vojsk nacional'noj gvardii Rossijskoj Federacii. Metodicheskie rekomendacii
    R 078-2019 [Engineering and technical strength and equipping with technical means of protection of objects and places of residence and storage of property of citizens taken under centralized protection by units of special security of the national guard of the Russian Federation. Methodical manual R 078-2019]. Moscow, Federal State
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    Системы управления, связи и безопасности
    №4. 2019
    Systems of Control, Communication and Security
    ISSN 2410-9916
    DOI: 10.24411/2410-9916-2019-10405
    URL: https://sccs.intelgr.com/archive/2019-04/05-Telny.pdf
    161
    Russian Federation. Methodical manual R 063-2017]. Moscow, Federal State
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    Статья поступила 10 октября 2019 г.
    Информация об авторах
    Тельный Андрей Викторовичкандидат технических наук, доцент. До- цент кафедры информатики и защиты информации. Владимирский государ- ственный университет имени Александра Григорьевича и Николая Григорьеви- ча Столетовых. Область научных интересов: информационная безопасность; радиотехнические средства позиционирования подвижных объектов; техниче- ские средства защиты от несанкционированного доступа. E–mail: andre.izi@mail.ru
    Черников Роман Сергеевич – аспирант кафедры информатики и защиты информации. Владимирский государственный университет имени Александра
    Григорьевича и Николая Григорьевича Столетовых. Область научных интере- сов: информационная безопасность; технические средства защиты информации.
    E–mail: andysapp@mail.ru
    Адрес: 600000, Россия, г. Владимир, ул. Горького, д. 87.
    ______________________________________________________

    Системы управления, связи и безопасности
    №4. 2019
    Systems of Control, Communication and Security
    ISSN 2410-9916
    DOI: 10.24411/2410-9916-2019-10405
    URL: https://sccs.intelgr.com/archive/2019-04/05-Telny.pdf
    162
    Processing Alarm Notifications Algorithm of Security System Object Equipment
    for Reducing the False Alarms Level
    A. V. Telny, R. S Chernikov
    Problem statement. Nowadays, the main means of security alarm object complexes of the protected
    objects are integrated security systems (ISS) based on addressable two-wire lines. ISS management is car-
    ried out using specialized software, which allows to use more sophisticated algorithms of technical security
    equipment processing alarm and service notifications (TSE) to reduce false alarms. The purpose of the pa-
    per isto form a processing alarm notifications of object security alarm systems algorithm to reduce the level
    of false positives. This algorithm is designed to assess the connection between the security alarm detectors
    activation and unauthorized access (UA) to the protected object facts effected by the offender. It is proposed
    to determine the connection between the security detectors alarm notifications and unauthorized access facts
    based on the knowledge of the topology of protected offices, the security facilities of the object, the types of
    elements of building structures. The time parameters of the alarms are used to provide this connection. The
    proposed algorithm does not reduce the total number of alarms, but allows the security service not to re-
    spond to part of the alarms which are unrelated to unauthorized access. Methods. To develop the alarm noti-
    fication of security system object equipment algorithm formation standard methods of system analysis, theo-
    ry of algorithms and expert estimates are used. Novelty. The novelty of the presented solution lies in the cre-
    ation of a new processing alarm notifications algorithm of security system object equipment. Also the novelty
    of the work lies in the formation of databases of offender time delays expert estimations when structural ele-
    ments of engineering and technical strengthening are crossed and of offices intrusion detectors of various
    types overcome (sabotage) durations. Result. The processing alarm notifications algorithm of security sys-
    tem object equipment for reducing the false alarms level is developed.
    Practical relevance. The developed
    algorithm can be implemented as a software add-on in existing software complexes of the automated work-
    places of the indoor security alarm systems based on addressable two-wire lines.
    Key words: integrated security systems, technical means of protection, security alarm detectors false
    alarms, object complexes of security alarm, centralized object protection, point of centralized protection.
    Information about Authors
    Andrey Viktorovich Telny – Ph.D. of Engineering Sciences. Associate Profes- sor at the Department of Informatics and Information Security. Vladimir State Uni- versity named after Alexander Grigorievich and Nikolai Grigorievich Stoletovs. Field of research: information security; radio technical means of positioning moving ob- jects; technical means of protection against unauthorized access. E-mail: andre.izi@mail.ru
    Roman Sergeevich Chernikov – postgraduate at the Department of Informatics and Information Security. Vladimir State University named after Alexander
    Grigorievich and Nikolai Grigorievich Stoletovs. Field of research: information secu- rity; technical means of information protection. E-mail: andysapp@mail.ru
    Address: Russia, 600000, Vladimir, Gorky str., 87.
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