
Protocols of data collection networks based on IEEE 802.15.4 radio channels in complexes for the protection of underground metal structures from electrochemical corrosion
https://doi.org/10.31854/1813-324X-2024-10-1-26-40
EDN: OXWOGH
Abstract
Radio communication systems in telemetry and telemechanics systems of active electrochemical protection of underground metal structures are considered. The requirements for radio exchange systems for data collection networks from remote control and measuring points of cathodic protection stations are formulated. The analysis of the applicability of known exchange protocols based on the specifications of the IEEE 802.15.4 standard and its software add-ons for such networks is carried out and the need for the development of specialized network and channel layer protocols is justified. The results of the development of specialized network protocols of the application, network and channel levels that implement data exchange modes required for the collection networks under consideration while minimizing energy consumption are presented.
About the Author
A. BuhinnickRussian Federation
References
1. Vishnevsky V.M., Lyakhov A.I., Portnoy S.L., Shakhnovich I.V. Broadband Wireless Information Transmission Networks. Moscow: Technospere Publ.; 2005. 592 p. EDN:QMONPT
2. Institute of Electrical and Electronics Engineers. 802.15.4TM-2011. IEEE Standard for Local and metropolitan area networks. Part 15.4. Low-Rate Wireless Personal Area Networks (LR-WPANs). IEEE; 2011. DOI:10.1109/IEEESTD.2011.6012487
3. Gutierrez J.A., Winkel L., Callaway E.H., Jr., Barrett R.L, Jr. Low-Rate Wireless Personal Area Networks: Enabling Wireless Sensors with IEEE 802.15.4. Wiley; 2011. 288 p.
4. Scheers B., Mees W., Lauwens B. Developments on an IEEE 802.15.4-based wireless sensor network. Journal of Telecommunications and Information Technology. 2008;2:46‒52.
5. Sokolov M., Grishin A. Hardware for Implementing ZigBee/802.15.4 Wireless Solutions. Sovremennaia elektronika. 2006;9:28‒35
6. Sheykin M. Network technologies ZigBee. Elektronika. 2011;6:36‒40.
7. ZigBee Specification. ZegBee Alliance; 2015. URL: https://zigbeealliance.org/wp-content/uploads/2019/11/docs-05-3474-21-0csg-zigbee-specification.pdf [Accessed 16.01.2024]
8. Baskakov V., Oganov V. Wireless Sensor Networks Based on the MeshLogic Platform. Elektronnye komponenty. 2006;8:65‒69.
9. EmberZNet application developer’s guide. Boston: Ember Corporation; 2008. URL: https://www.wless.ru/files/ZigBee/EM260/120-4028-000_EmberZNetAppDevGuide.pdf [Accessed 16.01.2024]
10. Safronov A. MIWI Protocol Stack for Wireless Technologies. Novosti elektroniki. 2007;13:29‒36.
11. RD 153-39.4-039-99. Standards for Designing Electrochemical Protection of Main Pipelines and Oil Pipeline Sites. Moscow: All-Union Research Institute for Construction, Operation of Pipelines and Fuel and Energy Complex Facilities Publ.; 1999. 80 p.
12. Aginey R.V., Alexandrov Yu.V., Nikulin S.A., Isupova E.V., Islamov R.R., Alexandrov O.Yu., et al. Electrochemical Protection of Oil and Gas Pipelines. Moscow, Vologda: Infra-Inzheneriia Publ.; 2020. 736 p. EDN:BMRYGN
13. Vinokurtsev G.G. System for technological control of electrochemical protection of main gas pipelines. Gazovaia promyshlennost. 1993;3:20‒21.
14. Salin A.G. Automation of Electrochemical Protection Calculations in ElectriCS ECP Environment. CADMASTER. 2006;9(34):60‒63. EDN:VKNQVO
15. Barbanel E.S., Bukhinnik A.Yu., Tochilov V.N. Introduction of the automated system of the dispatch control and management of the EHS parameters. Gazifikatsiia i ispolzovanie gaza. 2004;1:34‒46.
16. GOSTР 9.606-2021. Unified system of corrosion and ageing protection. Electrochemical protection. Control and measuring points. General specifications. Moscow: Russian Standardization Institute Publ.; 2022. 63 p.
Review
For citations:
Buhinnick A. Protocols of data collection networks based on IEEE 802.15.4 radio channels in complexes for the protection of underground metal structures from electrochemical corrosion. Proceedings of Telecommunication Universities. 2024;10(1):26-40. (In Russ.) https://doi.org/10.31854/1813-324X-2024-10-1-26-40. EDN: OXWOGH