PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Method for link stability evaluation ofiIndustrial wireless sensor networks (ISA 100.11a)

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
PL
Metoda poprawy stabilności połaczeń w przemysłowej bezprzewodowej sieci czujników
Języki publikacji
EN
Abstrakty
EN
IndustrialWirelessSensorNetworks(IWSNs)havebeenconsideredasansolutionformeasurementandcontrolofindustrialprocessesthat have deficiencies in the infrastructure of wired networks. The flexibility and allocation of measurement points in locations inaccessible to the operator are the main arguments for integration of wired and wireless instrumentation. Nonetheless, deployment of wireless communication systems presents several problems due to the environment exposed to different types of interference. A way to address this issue is to evaluate the performance of the network through attributes of the communication links. In this work, we propose a method based on the strength signal parameters and the packet delivery rate to evaluate the link stability of IWSN. The proposed strategy considers that received signal strength (RSS) variation and the cumulative packetdeliveryratevaluedefineslinkperformance. Twoscenarioswereselected,amongthe15testsperformedwithISA100.11anetworks,topresent the results of the method. The results show that the link stability factor generated by the proposed method is able to identify instabilities in the link, enabling the evaluation of network performance.
PL
W artykule analizowano możliwość zastosowania bezprzewodowej Sieci czujników WSNS do pomiaru i sterowania procesów przemysłowych w warunkach gdy zastosowanie sieci przewodowej jest utrudnione. Analizowano najkorzystniejsze usytuowanie punktów pomiarowych. Zaproponowano metodę uwzględniającą siłę sygnału. Zbadano dwa scenariusze wykorzystujące sieć ISA 100.11a.
Rocznik
Strony
176--183
Opis fizyczny
Bibliogr. 22 poz., rys.
Twórcy
  • Postgraduate Program in Electrical and Computer Engineering, Federal University of Rio Grande do Norte, Natal/RN, Brazil, ZIP 59072970
  • Department of Computer Engineering and Automation, Federal University of Rio Grande do Norte, Natal/RN, Brazil, ZIP 59072-970
Bibliografia
  • [1] M. Raza, et al., A Critical Analysis of Research Potential, Challenges, and Future Directives in Industrial Wireless Sensor Networks, IEEE Communications Surveys & Tutorials, v. 20, p. 39-95, 2017.
  • [2] T. Jesus, P. Portugal, F. Vasques and D Costa, Automated Methodology for Dependability Evaluation of Wireless Visual Sensor Networks, Sensors, v.18, p. 2629, 2018.
  • [3] I. Silva, et al., Reliability and availability evaluation of wireless sensor networks for industrial applications, Sensors, v. 12, p. 806-838, 2012.
  • [4] D. Priya, et al., An energy efficient link stability based routing scheme for wireless sensor networks, Communication and Signal Processing (ICCSP), 2017 International Conference on, p. 1828-1832, 2017.
  • [5] Y. Zou and Y. Tao, A method of selecting path based on neighbor stability in ad hoc network, Computer Science and Automation Engineering (CSAE), 2012 IEEE International Conference on, p. 675-678, 2012.
  • [6] J. Sun, Y. Liu, H. Hu, D. Yuan, Link stability based routing in mobile ad hoc networks, Industrial Electronics and Applications (ICIEA), 2010 the 5th IEEE Conference on, p. 1821- 1825, 2010.
  • [7] A. Boukerche, R. Coutinho and X. Yu, LISIC: A Link Stability- Based Protocol for Vehicular Information-Centric Networks, Mobile Ad Hoc and Sensor Systems (MASS), 2017 IEEE 14th International Conference on, p. 233-240, 2017.
  • [8] F. Rango, F. Guerreiro and P. Fazio, Link-stability and energy aware routing protocol in distributed wireless networks, IEEE Transactions on Parallel and Distributed systems, v. 23, p. 713- 726, 2012.
  • [9] Z. Zhang, Z. Jia and H. Xia, Link stability evaluation and stability based multicast routing protocol in mobile ad hoc networks, Trust, Security and Privacy in Computing and Communications (TrustCom), 2012 IEEE 11th International Conference on, p. 1570-1577, 2012.
  • [10] S. Sharma and D. Pathak, Energy aware path formation with link stability in wireless adhoc network, Computer Engineering and Applications (ICACEA), 2015 International Conference on Advances, p. 826-831, 2015.
  • [11] H. Idoudi, O. Abderrahim and K. Mabrouk, Generic links and paths stability model for Mobile Ad Hoc Networks, Wireless Communications and Mobile Computing Conference International (IWCMC), p. 394-398, 2016.
  • [12] N. Chama, R. Sofia and S. Sargento, Multihop Mobility Metrics based on Link Stability, 27th International Conference on Advanced Information Networking and Applications Workshops, p. 809-816, 2013.
  • [13] Z. Al-qddah, et al., Internet path stability: Exploring the impact of mpls deployment, Global Communications Conference (GLOBECOM), p. 1-7, 2016.
  • [14] X. Li and J. Yan, LEPR: Link Stability Estimation-based Preemptive Routing protocol for Flying Ad Hoc Networks, Computers and Communications (ISCC), 2017 IEEE Symposium on, p. 1079-1084, 2017.
  • [15] L. Wenqing, Path stability based source routing in mobile ad hoc networks, Cross Strait Quad-Regional Radio Science and Wireless Technology Conference (CSQRWC), p. 774-778, 2011.
  • [16] S. Brahmbhatt, A. Kulshrestha and G. Singal, SSLSM: signal strength based link stability estimation in MANETs, Computational Intelligence and Communication Networks (CICN), 2015 International Conference on, p. 173-177, 2015.
  • [17] R. Patil and A. Patil, Energy, link stability and queue aware OLSR for Mobile Ad hoc Network, Advances in Computing, Communications and Informatics (ICACCI), 2015 International Conference on, p. 1020-1025, 2015.
  • [18] J. Åkerberg, et al., Integration of wirelesshart networks in distributed control systems using profinet io, Industrial Informatics (INDIN), 2010 8th IEEE International Conference on, p. 154- 159, 2010.
  • [19] E. Godoy, Networked Control Systems: Research Challenges and Advances for Application, New York: Nova Science Publishers, 2017.
  • [20] Q. Wang and J. Jiang, Comparative examination on architecture and protocol of industrial wireless sensor network standards, IEEE Communications Surveys & Tutorials, v. 18, p. 2197-2219, 2016.
  • [21] M. Gulati and K. Kumar, Survey of stability based routing protocols in mobile ad-hoc networks, ICCCS International Conference on Communication, Computing & Systems, p. 100-105, 2014.
  • [22] YOKOGAWA Electric, YFGW510 Field Wireless Access Point, Available from: https://www.yokogawa.com/solutions/products-platforms/fieldinstruments/ field-wireless/wireless-infrastructure/yfgw510- field-wireless-access-point/, Access Apr 29, 2019.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c586b7f0-e20d-4ac2-91b1-959745d35cc7
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.