Development of software for monitoring the parameters of communication networks and server hardware

E.E. Istratova

Abstract


The article presents the results of development of software for monitoring the parameters of communication networks and server hardware. To implement this task, an analysis of the subject area was carried out, a study of existing analogues was carried out, the architecture of the software was determined, an algorithm was developed, on the basis of which the software was implemented. As a result of the work, a system for storing and visualizing metrics was designed and configured, which, in combination with the developed module for collecting and transmitting metrics, is a ready-made software for monitoring the parameters of communication networks and server hardware. The software was written in the Erlang functional programming language using the Grafana data visualization software system. The key functions of the program are: connection with the server; getting metrics in tracking mode; temporary storage of metrics; transfer of metrics to the monitoring system; visualization of metrics. The finished software product can be used for educational and research purposes, as well as in industry to improve the efficiency of support and testing processes for various network systems and services. The practical significance of the developed program lies in the possibility of its application both for automating the collection and storage of metrics, and for improving the efficiency of support and testing of software products.


Full Text:

PDF (Russian)

References


Kommeri J., Niemi T., Nurminen J.K. Energy efficiency of dynamic management of virtual cluster with heterogeneous hardware // Supercomput 73, 1978–2000 (2017). https://doi.org/10.1007/s11227-016-1899-0.

Peng Y., Wu I.C. A cloud-based monitoring system for performance analysis in IoT industry // Supercomput 77, 9266–9289 (2021). https://doi.org/10.1007/s11227-021-03640-8.

Amelchenko A.O., Antonyants E.N., Istratova E.E. A program for collecting quantitative characteristics of traffic in corporate computer networks. Computer program registration certificate № 2021614232, registered on 22.03.2021. Application № 2021613498 dated 22.03.2021.

Istratova E.E. A program for monitoring traffic characteristics in corporate computer networks. Computer program registration certificate № 2021665972, registered on 06.10.2021. Application № 2021665332 dated 06.10.2021.

Xiao Y., Zhang H., Yuan C. The Design of an Intelligent High-Speed Loom Industry Interconnection Remote Monitoring System // Wireless Pers Commun 113, 2167–2187 (2020). https://doi.org/10.1007/s11277-020-07317-y.

Wang C. Research and implementation of network communication based on embedded monitoring system // Wireless Netw (2023). https://doi.org/10.1007/s11276-023-03307-7.

Boutaba R., Salahuddin M.A., Limam N. A comprehensive survey on machine learning for networking: evolution, applications and research opportunities // J Internet Serv Appl 9, 16 (2018). https://doi.org/10.1186/s13174-018-0087-2.

Hua X. (2021). Application of computer remote network communication technology // Electronic Components and Information Technology, 5(12), 77–78.

Burenin A.N. On some principles of managing server equipment for protected infocommunication networks for special purposes / A.N. Burenin, K.E. Legkov, M.S. Pervov // Science-intensive technologies in space research of the Earth. - 2018. - №. 2. - S. 22-26.

Fedorov A.S. Development of a monitoring system for server equipment / A.S. Fedorov, R.A. Andreev // Economics and quality of communication systems. - 2020. - № 4 (18). - S. 32-42.

Xiaodi Y., Yanjun Z., Jian C., Changyuan Y. (2020). Mobile channel estimation based on decision feedback in vehicle-to-infrastructure visible light communication systems // Optics Communications, 462, 125261.

Simankov V.S. Software and hardware for subsystems of an intelligent situational center / V.S. Simankov, V.A. Sharay // Bulletin of the Adyghe State University. Series 4: Natural-mathematical and technical sciences. - 2021. - № 3 (286). - S. 63-70.

Voevodin V.A. On assessing the timeliness of data exchange in a centralized monitoring system for Wi-Fi networks / V.A. Voevodin, D.S. Burenok // DIZWW. - 2021. - № 17. - S. 60-65.

Mohanty B., Sahoo H.K., Patnaik B. (2020). Wireless channel estimation and beamforming by using block sparse adaptive filtering // Signal, Image and Video Processing, 15(4), 769.

Shariq M., Singh K., Maurya P.K. (2022). AnonSURP: An anonymous and secure ultralightweight RFID protocol for deployment in internet of vehicles systems // The Journal of Supercomputing, 78(6), 8577–8602.

Makeeva O.V. Organization of a corporate server based on Linux / O.V. Makeeva, A.V. Franchuk, M.L. Rysin // Innovations and investments. - 2021. - № 10. - S. 71-77.

Verevkin S.A. Organization of monitoring of a distributed corporate network in order to optimize it and use the obtained data to ensure information security / S.A. Verevkin, R.A. Yukhimuk, D.V. Kudro // News of TulGU. Technical science. - 2023. - № 2. - S. 188-192.

Lindigrin A.N. Analysis of the specifics and problems of anomaly search processes in network data / A.N. Lindigrin // News of TulGU. Technical science. - 2021. - № 5. - S. 304-309.

Sakthivel S., Vidhya G. (2020). A trust-based access control mechanism for intra-sensor network communication in internet of things // Arabian Journal for Science and Engineering, 46, 3147.

Istratova E.E. Program for monitoring the parameters of communication networks and server hardware. Computer program registration certificate № 2023662727, registered on 13.06.2023. Application № 2023662001 dated 13.06.2023.


Refbacks

  • There are currently no refbacks.


Abava  Кибербезопасность MoNeTec 2024

ISSN: 2307-8162