OPTIMIZATION OF LABOR COSTS DURING MAINTENANCE OF FIRE PROTECTION SYSTEMS
Abstract and keywords
Abstract:
In conditions of increased fire danger, fire protection systems play a key role in ensuring technosphere safety. The effectiveness of their work directly depends on the timeliness and quality of maintenance. One of the key factors influencing the organization of maintenance is the optimization of labor costs, which allows to increase the reliability of systems and reduce operating costs. However, the issues of systematization and categorization of technological maintenance activities remain insufficiently studied, which leads to inefficient planning and allocation of resources. The paper presents a methodology for calculating annual labor costs, taking into account the number of system elements, time standards and frequency of maintenance, and also suggests criteria for categorizing activities according to the parameters R1 - average annual labor costs and R2 - frequency of work. The use of cluster and variation analysis methods allows for flexibility in work planning, taking into account both the specifics of the facility and the skill level of the performers. The result of the study is the formation of an annual schedule plan that ensures uniform load distribution and reduces the risk of system failures. Thus, an integrated approach to maintenance makes it possible to improve both the fire safety of facilities and the efficiency of resource management

Keywords:
tehnicheskoe obsluzhivanie, sistema protivopozharnoy zaschity, kategorirovanie, upravlenie, optimizaciya trudozatrat
Text
Text (RU) (PDF): Read Download
References

1. Murzin A.A., Safronov N.A., Smirnov A.V. Issledovanie procedury prinyatiya resheniy po planirovaniyu tehnicheskogo obsluzhivaniya sistemy protivopozharnoy zaschity // Sovremennye problemy grazhdanskoy zaschity. 2022. No 2 (43). S. 43-49. EDN: https://elibrary.ru/MDRLGN

2. Samoylyuk T.A. Optimizaciya trudozatrat kak instrument povysheniya rezul'tativnosti truda rabotnikov // Innovacii i investicii. 2016. No 1. S. 99-102. EDN: https://elibrary.ru/WHTJWF

3. Vlasenko V.V. Prognozirovanie trudozatrat na tehnicheskoe obsluzhivanie i remont avtotransportnyh sredstv // Avtomobil'nyy transport. 2012. No 30. S. 45-48.

4. Smirnov A.V., Habibulin R.Sh., Tarakanov D.V. Primenenie mnogoagentnogo podhoda dlya podderzhki upravleniya bezopasnost'yu v tehnosfere // Vestnik Irkutskogo gosudarstvennogo tehnicheskogo universiteta. 2018. T. 22. No 1. S. 118-133. EDN: https://elibrary.ru/YMMWGQ

5. Chitayko O.A., Krepyshev S.A. Obzor sposobov obosnovaniya proektnyh resheniy po pozharnoy bezopasnosti v ramkah trebovaniy tehnicheskogo reglamenta o bezopasnosti zdaniy i sooruzheniy // Vestnik gosudarstvennoy ekspertizy. 2022. No 4 (25). S. 72-77. EDN: https://elibrary.ru/OIZADI

6. Picyk V.V., Rossinskaya K.G., Ichmelyan A.B. Prognozirovanie periodichnosti planovo-predupreditel'nogo obsluzhivaniya sistem protivopozharnoy zaschity po rezul'tatam parametricheskogo kontrolya // Pozhary i ChS. 2022. No 1. S. 21-29.

7. Dertev F.D. Osobennosti avtomaticheskih sistem protivopozharnoy zaschity promyshlennyh predpriyatiy // Vestnik nauki. 2024. No 10 (79). S. 602-607.

8. Aktaeva A.U., Zhaksylyk T.D., Sarsenbaeva Zh. Iskusstvennyy intellekt i pozharnaya bezopasnost' // NIR/S&R. 2023. No1 (13). S. 133-136.

9. Novikova A.V., Varlamkina A.N., Katargin A.N., Solonenko A.M. Klyuchevye voprosy sovershenstvovaniya tehnicheskogo regulirovaniya v oblasti pozharnoy bezopasnosti // Aktual'nye voprosy pozharnoy bezopasnosti. 2025. No 1 (23). S. 54-64. EDN: https://elibrary.ru/KIGCVY

10. Krestinin D.A. Obespechenie pozharnoy bezopasnosti v zdaniyah // Nauka i obrazovanie segodnya. 2021. No 6 (65). S. 11-14Infografika kompanii DRONE Industry Insight "Ispol'zovanie BPLA v regionah v 2024 godu" // DRONE Industry Insight: sayt. URL: https://droneii.com/about.

Login or Create
* Forgot password?