Skip to main content
Erschienen in: Wireless Personal Communications 1/2014

01.07.2014

A Simple and Comprehensive Saturation Packet Delay Model for Wireless Industrial Networks

verfasst von: Mohsen Maadani, Seyed Ahmad Motamedi

Erschienen in: Wireless Personal Communications | Ausgabe 1/2014

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

With the emerging popularity of the wireless local area network technology, many analytical models for its main medium access control mechanism, Distributed Coordination Function (DCF), have been reported. However, most of them are based on some oversimplifying assumptions, or need very complicated mathematical manipulations. In this paper, a simple and accurate packet delay model has been proposed for the IEEE 802.11 DCF mechanism in saturated traffic and error-prone industrial applications which is based on a modified discrete-time Markov chain model of the DCF mechanism which accounts for the backoff freezing. It estimates various delay parameters including the average, jitter, Cumulative Distribution Function, and the effect of Retry Limit. The simulation results confirm the accuracy of the proposed delay model compared with other similar models in the literature.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Literatur
1.
Zurück zum Zitat IEEE. (2012). IEEE. Std 802.11-2012, IEEE Standard for Information technology-Telecommunications and information exchange between systems-Local and metropolitan area networks-specific requirements part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications. (Revision of IEEE Std 802.11-2007): IEEE. IEEE. (2012). IEEE. Std 802.11-2012, IEEE Standard for Information technology-Telecommunications and information exchange between systems-Local and metropolitan area networks-specific requirements part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications. (Revision of IEEE Std 802.11-2007): IEEE.
2.
Zurück zum Zitat Bianchi, G. (2000). Performance analysis of the IEEE 802.11 distributed coordination function. IEEE Journal on Selected Areas in Communications, 18(3), 535–547.CrossRef Bianchi, G. (2000). Performance analysis of the IEEE 802.11 distributed coordination function. IEEE Journal on Selected Areas in Communications, 18(3), 535–547.CrossRef
3.
Zurück zum Zitat Bianchi, G., & Tinnirello, I. (2005). Remarks on IEEE 802.11 DCF performance analysis. IEEE Communications Letters, 9(8), 765–767.CrossRef Bianchi, G., & Tinnirello, I. (2005). Remarks on IEEE 802.11 DCF performance analysis. IEEE Communications Letters, 9(8), 765–767.CrossRef
4.
Zurück zum Zitat Chatzimisios, P., Boucouvalas, A. C., & Vitsas, V. (2005). Performance analysis of the IEEE 802.11 MAC protocol for wireless LANs. International Journal of Communication Systems, 18(6), 545–569. doi:10.1002/dac.717.CrossRef Chatzimisios, P., Boucouvalas, A. C., & Vitsas, V. (2005). Performance analysis of the IEEE 802.11 MAC protocol for wireless LANs. International Journal of Communication Systems, 18(6), 545–569. doi:10.​1002/​dac.​717.CrossRef
5.
Zurück zum Zitat Cena, G., Bertolotti, I. C., Valenzano, A., & Zunino, C. (2007). Evaluation of response times in industrial WLANs. IEEE Transactions on Industrial Informatics, 3(3), 191–201.CrossRef Cena, G., Bertolotti, I. C., Valenzano, A., & Zunino, C. (2007). Evaluation of response times in industrial WLANs. IEEE Transactions on Industrial Informatics, 3(3), 191–201.CrossRef
6.
Zurück zum Zitat Willig, A. (2008). Recent and emerging topics in wireless industrial communications: A selection. IEEE Transactions on Industrial Informatics, 4(2), 102–124.CrossRef Willig, A. (2008). Recent and emerging topics in wireless industrial communications: A selection. IEEE Transactions on Industrial Informatics, 4(2), 102–124.CrossRef
7.
8.
Zurück zum Zitat Tinnirello, I., Bianchi, G., & Xiao, Y. (2010). Refinements on IEEE 802.11 distributed coordination function modeling approaches. IEEE Transactions on Vehicular Technology, 59(3), 1055–1067.CrossRef Tinnirello, I., Bianchi, G., & Xiao, Y. (2010). Refinements on IEEE 802.11 distributed coordination function modeling approaches. IEEE Transactions on Vehicular Technology, 59(3), 1055–1067.CrossRef
9.
Zurück zum Zitat Felemban, E., & Ekici, E. (2011). Single hop IEEE 802.11 DCF analysis revisited: Accurate modeling of channel access delay and throughput for saturated and unsaturated traffic cases. IEEE Transactions on Wireless Communications, 10(10), 3256–3266.CrossRef Felemban, E., & Ekici, E. (2011). Single hop IEEE 802.11 DCF analysis revisited: Accurate modeling of channel access delay and throughput for saturated and unsaturated traffic cases. IEEE Transactions on Wireless Communications, 10(10), 3256–3266.CrossRef
10.
Zurück zum Zitat Zhao, Q., Tsang, D. H. K., & Sakurai, T. (2011). Modeling nonsaturated IEEE 802.11 DCF networks utilizing an arbitrary buffer size. IEEE Transactions on Mobile Computing, 10(9), 1248–1263.CrossRef Zhao, Q., Tsang, D. H. K., & Sakurai, T. (2011). Modeling nonsaturated IEEE 802.11 DCF networks utilizing an arbitrary buffer size. IEEE Transactions on Mobile Computing, 10(9), 1248–1263.CrossRef
11.
Zurück zum Zitat Dai, L., & Sun, X. (2012). A unified analysis of IEEE 802.11 DCF networks: Stability, throughput and delay. IEEE Transactions on Mobile Computing, Early, Access, 12(8), 1558–1572. Dai, L., & Sun, X. (2012). A unified analysis of IEEE 802.11 DCF networks: Stability, throughput and delay. IEEE Transactions on Mobile Computing, Early, Access, 12(8), 1558–1572.
12.
Zurück zum Zitat Fu, J., Zhou, Z., Zheng, L., & Liu, Z. (2012). Modeling the IEEE 802.11 DCF with hidden stations. Springer Advances in Intelligent and Soft Computing, 143, 855–860.CrossRef Fu, J., Zhou, Z., Zheng, L., & Liu, Z. (2012). Modeling the IEEE 802.11 DCF with hidden stations. Springer Advances in Intelligent and Soft Computing, 143, 855–860.CrossRef
13.
Zurück zum Zitat Tadayon, N., Askari, E., Aïssa, S., & Khabazian, M. (2012). A novel analytical model for service delay in IEEE 802.11 networks. IEEE Systems Journal, 6(4), 627–634.CrossRef Tadayon, N., Askari, E., Aïssa, S., & Khabazian, M. (2012). A novel analytical model for service delay in IEEE 802.11 networks. IEEE Systems Journal, 6(4), 627–634.CrossRef
15.
Zurück zum Zitat Maadani, M., & Motamedi, S. A. (2013). A simple and closed-form access delay model for reliable IEEE 802.11-based wireless industrial networks. Wireless Personal Communications, pp. 1–26. doi:10.1007/s11277-013-1465-5. Maadani, M., & Motamedi, S. A. (2013). A simple and closed-form access delay model for reliable IEEE 802.11-based wireless industrial networks. Wireless Personal Communications, pp. 1–26. doi:10.​1007/​s11277-013-1465-5.
17.
Zurück zum Zitat Keene, S. M., & Carruthers, J. B. (2012). Collision localization for IEEE 802.11 wireless LANs. Wireless Personal Communications, 63(1), 45–63.CrossRef Keene, S. M., & Carruthers, J. B. (2012). Collision localization for IEEE 802.11 wireless LANs. Wireless Personal Communications, 63(1), 45–63.CrossRef
18.
Zurück zum Zitat Hasan, S. F., Siddique, N. H., & Chakraborty, S. (2013). Developments and constraints in 802.11-based roadside-to-vehicle communications. Wireless Personal Communications, 69(4), 1261–1287.CrossRef Hasan, S. F., Siddique, N. H., & Chakraborty, S. (2013). Developments and constraints in 802.11-based roadside-to-vehicle communications. Wireless Personal Communications, 69(4), 1261–1287.CrossRef
19.
Zurück zum Zitat Pack, S., Kim, K., Kim, W., Song, T., & Min, S. (2013). A cross-layer approach to reduce channel access delay jitter in IEEE 802.11 WLANs. Wireless Personal Communications, 69(4), 1379–1390.CrossRef Pack, S., Kim, K., Kim, W., Song, T., & Min, S. (2013). A cross-layer approach to reduce channel access delay jitter in IEEE 802.11 WLANs. Wireless Personal Communications, 69(4), 1379–1390.CrossRef
20.
Zurück zum Zitat Ao, X., Jiang, S., & Yuan, H. (2013). Traffic-aware link rate adaptation for multi-rate 802.11 networks. Wireless Personal Communications, 72(4), 2155–2175.CrossRef Ao, X., Jiang, S., & Yuan, H. (2013). Traffic-aware link rate adaptation for multi-rate 802.11 networks. Wireless Personal Communications, 72(4), 2155–2175.CrossRef
21.
Zurück zum Zitat Tinnirello, I., & Bianchi, G. (2010). Rethinking the IEEE 802.11 e EDCA performance modeling methodology. IEEE/ACM Transactions on Networking, 18(2), 540–553.CrossRefMathSciNet Tinnirello, I., & Bianchi, G. (2010). Rethinking the IEEE 802.11 e EDCA performance modeling methodology. IEEE/ACM Transactions on Networking, 18(2), 540–553.CrossRefMathSciNet
23.
Zurück zum Zitat Maadani, M., & Motamedi, S. A. (2011). EDCA delay analysis of spatial diversity in IEEE 802.11-based real-time wireless sensor and actuator networks. In Wireless communication systems (ISWCS), 2011 8th international symposium on, 2011 (pp. 675–679): IEEE. Maadani, M., & Motamedi, S. A. (2011). EDCA delay analysis of spatial diversity in IEEE 802.11-based real-time wireless sensor and actuator networks. In Wireless communication systems (ISWCS), 2011 8th international symposium on, 2011 (pp. 675–679): IEEE.
24.
26.
Zurück zum Zitat Maadani, M., Motamedi, S. A., & Soltani, M. (2012). EDCA delay analysis of spatial multiplexing in IEEE 802.11-based wireless sensor and actuator networks. International Journal of Information and Electronics Engineering, 2(3), 318–322. Maadani, M., Motamedi, S. A., & Soltani, M. (2012). EDCA delay analysis of spatial multiplexing in IEEE 802.11-based wireless sensor and actuator networks. International Journal of Information and Electronics Engineering, 2(3), 318–322.
27.
Zurück zum Zitat Cena, G., Seno, L., Valenzano, A., & Zunino, C. (2010). On the performance of IEEE 802.11 e wireless infrastructures for soft-real-time industrial applications. IEEE Transactions on Industrial Informatics, 6(3), 425–437.CrossRef Cena, G., Seno, L., Valenzano, A., & Zunino, C. (2010). On the performance of IEEE 802.11 e wireless infrastructures for soft-real-time industrial applications. IEEE Transactions on Industrial Informatics, 6(3), 425–437.CrossRef
28.
29.
30.
Zurück zum Zitat Vukovic, I. N., & Smavatkul, N. (2004). Delay analysis of different backoff algorithms in IEEE 802.11. In Vehicular technology conference, 2004. VTC2004-Fall. 2004 IEEE 60th, 2004 (Vol. 6, pp. 4553–4557): IEEE. Vukovic, I. N., & Smavatkul, N. (2004). Delay analysis of different backoff algorithms in IEEE 802.11. In Vehicular technology conference, 2004. VTC2004-Fall. 2004 IEEE 60th, 2004 (Vol. 6, pp. 4553–4557): IEEE.
31.
Zurück zum Zitat Wang, C., Lo, H.-K., & Fang, S.-H. (2011). Fairness analysis of throughput and delay in WLAN environments with channel diversities. EURASIP Journal on Wireless Communications and Networking, 42(1), 1–14.CrossRef Wang, C., Lo, H.-K., & Fang, S.-H. (2011). Fairness analysis of throughput and delay in WLAN environments with channel diversities. EURASIP Journal on Wireless Communications and Networking, 42(1), 1–14.CrossRef
32.
Zurück zum Zitat Sakurai, T., & Vu, H. L. (2007). MAC access delay of IEEE 802.11 DCF. IEEE Transactions on Wireless Communications, 6(5), 1702–1710.CrossRef Sakurai, T., & Vu, H. L. (2007). MAC access delay of IEEE 802.11 DCF. IEEE Transactions on Wireless Communications, 6(5), 1702–1710.CrossRef
33.
Zurück zum Zitat Chatzimisios, P., & Vitsas, V. (2007). Achieving performance enhancement in IEEE 802.11 WLANs by using the DIDD backoff mechanism. International Journal of Communication Systems, 20(1), 23–41. doi:10.1002/dac.811.CrossRef Chatzimisios, P., & Vitsas, V. (2007). Achieving performance enhancement in IEEE 802.11 WLANs by using the DIDD backoff mechanism. International Journal of Communication Systems, 20(1), 23–41. doi:10.​1002/​dac.​811.CrossRef
Metadaten
Titel
A Simple and Comprehensive Saturation Packet Delay Model for Wireless Industrial Networks
verfasst von
Mohsen Maadani
Seyed Ahmad Motamedi
Publikationsdatum
01.07.2014
Verlag
Springer US
Erschienen in
Wireless Personal Communications / Ausgabe 1/2014
Print ISSN: 0929-6212
Elektronische ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-013-1510-4

Weitere Artikel der Ausgabe 1/2014

Wireless Personal Communications 1/2014 Zur Ausgabe

Neuer Inhalt