METHOD FOR THE DIAGNOSTICS OF SYNCHRONIZATION DISTURBANCES IN THE TELECOMMUNICATIONS NETWORK OF A CRITICAL USED COMPUTER SYSTEM

Authors

DOI:

https://doi.org/10.30837/2522-9818.2020.11.172

Keywords:

computer system, telecommunication network, synchronization, acousto-optic spectrum analyzer

Abstract

Relevance of the study. To improve the quality of service (QoS), the work of all network technologies, protocols, and individual traffic management mechanisms is constantly optimized. It is known that the quality of information transmission in modern telecommunication equipment is affected by the quality of synchronization devices.  Synchronization is a means of maintaining the operation of all digital equipment in a data transmission network at one average speed, which must exist at three levels: bit synchronization, synchronization at the level of channel intervals (time slot) and frame synchronization. Therefore, the lack of synchronization of the computer system at the required level can lead to a significant decrease in QoS. At the same time, the requirements for ensuring these indicators are significantly tightened in the face of an increase in the load of network resources. Subject of study: computer system synchronization. The aim of the article is to develop a method for diagnosing synchronization disturbances in the telecommunications network of a computer system of critical application by increasing the resolution of an acousto-optical spectrum analyzer. Research results. The influence of non-stationary data transmission in the telecommunications subsystem of the computer system under study is analyzed. The analysis and classification of the causes of computer network synchronization failure of a critical application computer system is carried out. The article describes the consequences of a violation of computer network stabilization for ensuring the quality of service provided by various frequently used services. Proposed the use of acousto-optic spectrum analyzer with spatial integration for diagnostics of violations of the synchronization network. In work the analysis of the use of acousto-optic spectrum analyzers. The conducted research allowed us to obtain an analytical expression for the output signal of the spectroanalyzer when two rectangular pulses with different carrier frequencies, durations and delay times are received at its input. This result, as well as the numerical calculations provided, allowed us to develop General recommendations for increasing the resolution of the acousto-optical spectrum analyzer, and thus create theoretical prerequisites for improving the synchronization of the computer system. The given analytical relations and numerical estimates were experimentally verified by means of system simulation. Conclusions. As a result of the research, a method of diagnostics of synchronization violations in the telecommunications network of a computer system of critical application was proposed. The method is based on increasing the resolution of the measuring system based on an acoustooptic spectrum analyzer.

Author Biographies

Vladimir Rudnytsky, Cherkasy State Technological University

Doctor of Sciences (Engineering), Professor, Head of the Department of Information Security and Computer Engineering

Mykhailo Mozhaiev, Kharkiv SRI examinations named dist. prof. N. S. Bokarius

PhD (Engineering Sciences), Head of the Laboratory on Speech and Audio Computer Engineering and Telecommunication

Nina Kuchuk, National Technical University "Kharkiv Polytechnic Institute"

PhD (Pedagogy Sciences), Associate Professor, Associate Professor of the Department of Computer Engineering and Programming

References

Whitt, W. (1983), "The Queuing Network Analyzes", Bell System Tech. I., Vol. 62, No. 9, Р. 2779–2815.

Kuchuk, G. A. (2007), "Traffic management of multiservice distributed telecommunication network" ["Upravlinnya trafikom mulʹtyservisnoyi rozpodilenoyi telekomunikatsiynoyi merezhi"], Control, navigation and communication systems, Kyiv : TsNII NiU, Issue 2, P. 18–27.

Svyrydov, A., Kovalenko, A., Kuchuk, H. (2018), "The pass-through capacity redevelopment method of net critical section based on improvement on/off models of traffic", Advanced Information Systems, Vol. 2, No. 2, P. 139–144. DOI: https://doi.org/10.20998/2522-9052.2018.2.24

Kuchuk, G. A., Kovalenko, A. A., Lukov-Chuiko, N. V. (2017), "A method for minimizing the average packet delay in virtual cloud support network connections" ["Metod minimizatsiyi serednʹoyi zatrymky paketiv u virtualʹnykh zʺyednannyakh merezhi pidtrymky khmarnoho servisu"], Control, navigation and communication systems, No. 2 (42), P. 117–120.

Merlac, V., Smatkov, S., Kuchuk, N., Nechausov, A. (2018), "Resourses Distribution Method of University e-learning on the Hypercovergent platform", Сonf. Proc. of 2018 IEEE 9th International Conference on Dependable Systems, Service and Technologies. DESSERT’2018. Ukraine, Kyiv, May 24-27, 2018, P. 136–140. DOI: http://dx.doi.org/10.1109/DESSERT.2018.8409114

Kuchuk, N., Artiukh, R. and Nechausov, A. (2017), "Method of building the semantic network of distributed search in e-learning", Innovative Technologies and Scientific Solutions for Industries, No. 2 (2), P. 62–69. DOI: https://doi.org/10.30837/2522-9818.2017.2.062

Kuchuk, G. A., Ruban, I. V., Davikoza, O. P. (2013), "Conceptual approach to synthesis of information and telecommunication network structure" ["Kontseptualʹnyy pidkhid do syntezu struktury informatsiyno-telekomunikatsiynoyi merezhi"], Systems of information processing: collection of scientific works, No. 7 (114), P. 106–112.

Lemeshko, O., Yevdokymenko, M., Yeremenko, O. (2019), "Model of data traffic QoS fast rerouting in infocommunication networks", Innovative Technologies and Scientific Solutions for Industries, No. 3 (9), P. 127–134. DOI: https://doi.org/10.30837/2522-9818.2019.9.127

Kosenko, V. (2017), "Mathematical model of optimal distribution of applied problems of safety-critical systems over the nodes of the information and telecommunication network", Advanced Information Systems, Vol. 1, No. 2, P. 4–9. DOI: https://doi.org/10.20998/2522-9052.2017.2.01

Sivaram, M., Batri, K., Amin Salih, Mohammed and Porkodi V. (2019), "Exploiting the Local Optima in Genetic Algorithm using Tabu Search", Indian Journal of Science and Technology, Vol. 12, Issue 1, P. 1-13. DOI: https://doi.org/10.17485/ijst/2019/v12i1/139577

Zykov, I., Kuchuk, N., Shmatkov, S. (2018), "Architecture synthesis of the computer system of transaction control e-learning", Advanced Information Systems, Vol. 2, No. 3, P. 60–66. DOI: https://doi.org/10.20998/2522-9052.2018.3.10

Gelenbe, E., Pujolle, G. (2010), Analysis and synthesis of computer systems (2nd Edition), Advances in Computer Science and Engineering : Texts, Vol. 4, 309 p.

Kuchuk, N., Mohammed, A. S., Shyshatskyi, A. and Nalapko, O. (2019), "The method of improving the efficiency of routes selection in networks of connection with the possibility of self-organization", International Journal of Advanced Trends in Computer Science and Engineering, No. 8 (1), Р. 1–6. DOI: https://doi.org/10.30534/ijatcse/2019/0181.22019

Kuchuk, G., Kharchenko, V., Kovalenko, A., Ruchkov, E. (2016), "Approaches to selection of combinatorial algorithm for optimization in network traffic control of safety-critical systems", East-West Design & Test Symposium (EWDTS), P. 1–6. DOI: https://doi.org/10.1109/EWDTS.2016.7807655

Mozhaev, O., Kuchuk, H., Kuchuk, N., Mozhaev, M., Lohvynenco, M. (2017), "Multiservise network security metric", IEEE Advanced information and communication technologies-2017, Proc. of the 2th Int. Conf. Lviv, 2017, P. 133–136.

Kosenko, V. (2017), "Principles and structure of the methodology of risk-adaptive management of parameters of information and telecommunication networks of critical application systems", Innovative Technologies and Scientific Solutions for Industries, No. 1 (1), P. 46–52. DOI: https://doi.org/10.30837/2522-9818.2017.1.046

Kuchuk, G. A., Kovalenko, A. A., Mozhaev, A. A. (2010), "An Approach To Development Of Complex Metric For Multiservice Network Security Assessment", Statistical Methods Of Signal and Data Processing (SMSDP – 2010): Proc. Int. Conf., October 13-14, 2010. – Kiev: NAU, RED, IEEE Ukraine section joint SP, 2010, P. 158–160.

Kliuiev, O., Mozhaiev, M., Uhrovetskyi, O., Mozhaiev, O., Simakova-Yefremian, E. (2019), "Method of forensic research on image for finding touch up on the basis of noise entropy", 2019 3rd International Conference on Advanced Information and Communications Technologies, AICT 2019 – Proceedings.

Gavrylenko, S. (2019), "Synthesis of identification measurements in the computer system of critical purpose", Innovative Technologies and Scientific Solutions for Industries, No. 2 (8), P. 36–43. DOI: https://doi.org/10.30837/2522-9818.2019.8.036

Filimonchuk, T., Volk, M., Risukhin, M., Olshanska, T., Kazmina, D. (2019), "The modified information technology for the distribution of resource tasks for cloud computing systems", Innovative Technologies and Scientific Solutions for Industries, No. 1 (7), P. 121–129. DOI: https://doi.org/10.30837/2522-9818.2019.7.121

Davydovskyi, Y., Reva, O., Artiukh, O., Kosenko, V. (2019), "Simulation of computer network load parameters over a given period of time", Innovative Technologies and Scientific Solutions for Industries, No. 3 (9), P. 72–80. DOI: https://doi.org/10.30837/2522-9818.2019.9.072

Mohammed, Amin Salih, Saravana, Balaji B., Saleem, Basha M. S. (2019), "Fuzzy applied energy aware clustering based routing for IoT Networks", Advanced Information Systems, Vol. 3, No. 4, P. 140-145. DOI: https://doi.org/10.20998/2522-9052.2019.4.22

Akayev, A. A., Mayorov, S. A. (1988), Optical methods of information processing [Opticheskiye metody obrabotki informatsii], Moscow : Higher school, 237 p.

Kuchuk, G., Kovalenko, A., Komari, I. E., Svyrydov, A., Kharchenko, V. (2019), "Improving big data centers energy efficiency: Traffic based model and method", Studies in Systems, Decision and Control, Springer Nature Switzerland AG, Vol. 171, P. 161–183. DOI: http://doi.org/10.1007/978-3-030-00253-4_8

Svyrydov, A., Kuchuk, H., Tsiapa, O. (2018), "Improving efficienty of image recognition process: Approach and case study", Proceedings of 2018 IEEE 9th International Conference on Dependable Systems, Services and Technologies, DESSERT 2018, P. 593–597. DOI: http://dx.doi.org/10.1109/DESSERT.2018.8409201

Saravana, Balaji B., Karthikeyan, N.K., Raj Kumar, R.S., (2018), "Fuzzy service conceptual ontology system for cloud service recommendation", Computers & Electrical Engineering, Vol. 69, Р. 435–446. DOI: https://doi.org/10.1016/j.compeleceng.2016.09.013

Saravana, Balaji B., Mohamed, Uvaze Ahamed, Eswaran C., Kannan R. (2019), "Prediction-based Lossless Image Compression", Lecture Notes in Computational Vision and Biomechanics (Springer), Vol. 30, No. 1, Р. 1749–17961, DOI: https://doi.org/10.1007/978-3-030-00665-5_161

Mozhaiev, M., Kuchuk, N., Usatenko M. (2019), "The method of jitter determining in the telecommunication network of a computer system on a special software platform", Innovate Technologies and Scientific Solutions for Industries, No. 4 (10), P. 134-140. DOI: https://doi.org/10.30837/2522-9818.2019.10.134

American National Standard for Telecommunications (1994), "Synchronization Interface Standards for Digital Networks", ANSI T1.101-1994.

International Telecommunication Union (2007), "Timing requirements at the output of primary reference clocks suitable for plesiochronous operation of international digital links", ITU-T Recommendation G.811.

International Telecommunication Union (2011), "The control of jitter and wander within digital networks which are based on the 1544 kbit/s hierarchies", ITU-T Recommendation G.824.

Strelkov, A. I., Stadnik, A. M., Korotkov V. V. (2001), "Features of the incoherent acousto-optic spectrum analyzer at a finite recording time" [Osobennosti raboty nekogerentnogo akustoopticheskogo spektroanalizatora pri konechnom vremeni registratsii], Radio engineering, Kharkiv : KhNURE, No. 122, P. 162–168.

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How to Cite

Rudnytsky, V., Mozhaiev, M., & Kuchuk, N. (2020). METHOD FOR THE DIAGNOSTICS OF SYNCHRONIZATION DISTURBANCES IN THE TELECOMMUNICATIONS NETWORK OF A CRITICAL USED COMPUTER SYSTEM. INNOVATIVE TECHNOLOGIES AND SCIENTIFIC SOLUTIONS FOR INDUSTRIES, (1 (11), 172–180. https://doi.org/10.30837/2522-9818.2020.11.172

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ELECTRONICS, TELECOMMUNICATION SYSTEMS & COMPUTER NETWORKS