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Erschienen in: Wireless Networks 5/2019

29.01.2018

Efficient modeling of network flooding performance with proactive retransmissions in mobile ad hoc networks

verfasst von: Jonghyun Kim, Stephan Bohacek

Erschienen in: Wireless Networks | Ausgabe 5/2019

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Abstract

Network flooding is the key mechanism designed to reach mobile nodes and disseminate the information in MANETs. Increasing the number of floods is a good way to improve coverage, namely, the fraction of nodes that receive the flooding message. However, this also will increase the overhead and hence the interference. In this paper, we used two different methods of refloods/retransmissions; originator-based retransmissions, where the originator of a message will retransmit the same message, and relay-based retransmissions, where each relay that has received the message will retransmit the same message. To compare two retransmission methods, we modeled the relationships of the coverage, overhead, and interference over the various flooding methods such as classic flooding method and several relay-set reduced flooding methods. Our analytic methods and numerical simulations made it possible to evaluate a wide range of scenarios (3,500,000 scenarios) with much less computational effort. In addition to analytic methods and numerical simulations, packet level simulations were performed to justify the results obtained from our efficient performance models. Furthermore, we investigated the impact of proactive retransmissions on the overhead and coverage as a function of message generation rate. When sequentially considering one transmission, originator-based optimal retransmission, and relay-based optimal retransmission, CF coverage becomes lower and lower than efficient flooding methods at the higher node density and faster message generation rate.

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Fußnoten
1
Nodes were distributed in \(1890\,\mathrm{m} \times 1890\,\mathrm{m}\).
 
2
Note that the total number of transmissions is one first transmission plus K retransmissions. The zero retransmission means there is only one transmission.
 
Literatur
1.
Zurück zum Zitat Macker, J. (2012). Simplified multicast forwarding. RFC 6621. Macker, J. (2012). Simplified multicast forwarding. RFC 6621.
2.
Zurück zum Zitat Cole, R., Macker, J., & Adamson, B. (2014). Definition of managed objects for the mobile ad hoc network (MANET) simplified multicast framework relay set process. RFC 7367. Cole, R., Macker, J., & Adamson, B. (2014). Definition of managed objects for the mobile ad hoc network (MANET) simplified multicast framework relay set process. RFC 7367.
3.
Zurück zum Zitat Clausen, T., & Jacquet, P. (2003). Optimized link state routing protocol (OLSR). RFC 3626. Clausen, T., & Jacquet, P. (2003). Optimized link state routing protocol (OLSR). RFC 3626.
5.
Zurück zum Zitat Johnson, D. B. (1994). Routing in ad hoc networks of mobile hosts. In The workshop on mobile computing systems and applications (WMCSA 1994). Johnson, D. B. (1994). Routing in ad hoc networks of mobile hosts. In The workshop on mobile computing systems and applications (WMCSA 1994).
6.
Zurück zum Zitat Johnson, D., & Maltz, D. (1996). Dynamic source routing in ad hoc wireless networks. In T. Imielinski, & H. F. Korth (Eds.), Mobile computing (pp. 153–181). Boston, MA: Kluwer Academic. Johnson, D., & Maltz, D. (1996). Dynamic source routing in ad hoc wireless networks. In T. Imielinski, & H. F. Korth (Eds.), Mobile computing (pp. 153–181). Boston, MA: Kluwer Academic.
7.
Zurück zum Zitat Johnson, D. B., Maltz, D. A., & Broch, J. (2001). DSR: the dynamic source routing protocol for multi-hop wireless ad hoc networks. Ad Hoc Networking, 5, 139–172. Johnson, D. B., Maltz, D. A., & Broch, J. (2001). DSR: the dynamic source routing protocol for multi-hop wireless ad hoc networks. Ad Hoc Networking, 5, 139–172.
8.
Zurück zum Zitat Johnson, D., Hu, Y., & Maltz, D. (2007). The dynamic source routing protocol (DSR) for mobile ad hoc networks for IPv4. RFC 4728. Johnson, D., Hu, Y., & Maltz, D. (2007). The dynamic source routing protocol (DSR) for mobile ad hoc networks for IPv4. RFC 4728.
9.
Zurück zum Zitat Perkins, C. E., & Royer, E. M. (1997). Ad-hoc on-demand distance vector routing. In The second IEEE workshop on mobile computing systems and applications. Perkins, C. E., & Royer, E. M. (1997). Ad-hoc on-demand distance vector routing. In The second IEEE workshop on mobile computing systems and applications.
10.
Zurück zum Zitat Perkins, C., Belding-Royer, E., & Das, S. (2003). Ad hoc on-demand distance vector (AODV) routing. RFC 3561. Perkins, C., Belding-Royer, E., & Das, S. (2003). Ad hoc on-demand distance vector (AODV) routing. RFC 3561.
11.
Zurück zum Zitat Clausen, T., Dearlove, C., Jacquet, P., & Herberg, U. (2014). The optimized link state routing protocol version 2. RFC 7181. Clausen, T., Dearlove, C., Jacquet, P., & Herberg, U. (2014). The optimized link state routing protocol version 2. RFC 7181.
12.
Zurück zum Zitat Medina, A. (2010). New methodologies for performance modeling of routing protocol in wireless networks. Ph.D. dissertation, University of Delaware. Medina, A. (2010). New methodologies for performance modeling of routing protocol in wireless networks. Ph.D. dissertation, University of Delaware.
13.
Zurück zum Zitat Ogier, R., & Spagnolo, P. (2003). Mobile ad hoc network (MANET) extension of OSPF using connected dominating set (CDS) flooding. RFC 5614. Ogier, R., & Spagnolo, P. (2003). Mobile ad hoc network (MANET) extension of OSPF using connected dominating set (CDS) flooding. RFC 5614.
14.
Zurück zum Zitat Adjih, C., Jacquet, P., & Viennot, L. (2005). Computing connected dominating sets with multipoint relays. Ad hoc and Sensor Wireless Networks, 1, 27–39. Adjih, C., Jacquet, P., & Viennot, L. (2005). Computing connected dominating sets with multipoint relays. Ad hoc and Sensor Wireless Networks, 1, 27–39.
15.
Zurück zum Zitat Macker, J. P., Dean, J., & Chao, W. (2004). Simplified multicast forwarding in mobile ad hoc networks. In 2004 IEEE military communications conference. Macker, J. P., Dean, J., & Chao, W. (2004). Simplified multicast forwarding in mobile ad hoc networks. In 2004 IEEE military communications conference.
16.
Zurück zum Zitat Macker, J., Downard, I., Dean, J., & Adamson, B. (2007). Evaluation of distributed cover set algorithms in mobile ad hoc network for simplified multicast forwarding. Mobile Computing and Communications Review, 11(3), 1–11.CrossRef Macker, J., Downard, I., Dean, J., & Adamson, B. (2007). Evaluation of distributed cover set algorithms in mobile ad hoc network for simplified multicast forwarding. Mobile Computing and Communications Review, 11(3), 1–11.CrossRef
17.
Zurück zum Zitat Saeed, B., Lung, C., Kunz, T., & Srinivasan, A. (2013). Multimedia streaming for ad hoc wireless mesh networks using network coding. International Journal of Communications, Network and System Sciences, 6(5), 204.CrossRef Saeed, B., Lung, C., Kunz, T., & Srinivasan, A. (2013). Multimedia streaming for ad hoc wireless mesh networks using network coding. International Journal of Communications, Network and System Sciences, 6(5), 204.CrossRef
18.
Zurück zum Zitat Lacharit, Y., Wang, M., Lamont, L., & Landmark, L. (2007). A simplified approach to multicast forwarding gateways in MANET. In 4th international symposium on wireless communication systems. Lacharit, Y., Wang, M., Lamont, L., & Landmark, L. (2007). A simplified approach to multicast forwarding gateways in MANET. In 4th international symposium on wireless communication systems.
19.
Zurück zum Zitat Saeed, T., Lestas, M., Mylonas, Y., Pitsillides, A., & Papadopoulou, V. (2016). Analysis of probabilistic flooding in VANETs for optimal rebroadcast probabilities. In IEEE/IFIP network operations and management symposium. Saeed, T., Lestas, M., Mylonas, Y., Pitsillides, A., & Papadopoulou, V. (2016). Analysis of probabilistic flooding in VANETs for optimal rebroadcast probabilities. In IEEE/IFIP network operations and management symposium.
20.
Zurück zum Zitat Nagrare, P. S., & Sahare, V. N. (2015). Coverage based probabilistic rebroadcast to reduce routing overhead in MANET. In International conference on communications and signal processing (ICCSP). Nagrare, P. S., & Sahare, V. N. (2015). Coverage based probabilistic rebroadcast to reduce routing overhead in MANET. In International conference on communications and signal processing (ICCSP).
21.
Zurück zum Zitat Mylonas, Y., Lestas, M., Pitsillides, A., Ioannou, P., & Papadopoulou, V. (2015). Speed adaptive probabilistic flooding for vehicular ad hoc networks. IEEE Transactions on Vehicular Technology, 65(5), 1973–1990.CrossRef Mylonas, Y., Lestas, M., Pitsillides, A., Ioannou, P., & Papadopoulou, V. (2015). Speed adaptive probabilistic flooding for vehicular ad hoc networks. IEEE Transactions on Vehicular Technology, 65(5), 1973–1990.CrossRef
22.
Zurück zum Zitat Kim, Y. B., & Park, E.-C. (2016). Performance analysis of relayed-broadcasting with probabilistic flooding in WLANs. In 8th International conference on ubiquitous and future networks (ICUFN). Kim, Y. B., & Park, E.-C. (2016). Performance analysis of relayed-broadcasting with probabilistic flooding in WLANs. In 8th International conference on ubiquitous and future networks (ICUFN).
23.
Zurück zum Zitat Williams, B., & Camp, T. (2002). Comparison of broadcasting techniques for mobile ad hoc networks. In ACM international symposium on mobile ad hoc networking and computing (Mobihoc). Williams, B., & Camp, T. (2002). Comparison of broadcasting techniques for mobile ad hoc networks. In ACM international symposium on mobile ad hoc networking and computing (Mobihoc).
24.
Zurück zum Zitat Zeng, H., Li, M., Liu, H., & Jia, X. (2008). Efficient flooding in mobile ad hoc networks. In J. N. Turner & C. S. Boyer (Eds.), Ad hoc networks: New research. New York, NY: Nova Science. Zeng, H., Li, M., Liu, H., & Jia, X. (2008). Efficient flooding in mobile ad hoc networks. In J. N. Turner & C. S. Boyer (Eds.), Ad hoc networks: New research. New York, NY: Nova Science.
25.
Zurück zum Zitat Nand, P., & Sharma, S. (2011). Analytical study of broadcast in mobile adhoc network. International Journal of Computer Applications, 19(8), 7–12. Nand, P., & Sharma, S. (2011). Analytical study of broadcast in mobile adhoc network. International Journal of Computer Applications, 19(8), 7–12.
26.
Zurück zum Zitat Abdou, W., Bloch, C., Charlet, D., & Charlet D. (2011). Designing smart adaptive flooding in MANET using evolutionary algorithm. In 4th international ICST conference on MOBILe wireless middleWARE, operating systems, and applications (mobilware). Abdou, W., Bloch, C., Charlet, D., & Charlet D. (2011). Designing smart adaptive flooding in MANET using evolutionary algorithm. In 4th international ICST conference on MOBILe wireless middleWARE, operating systems, and applications (mobilware).
27.
Zurück zum Zitat Wong, G. K., Liu, H., Chu, X., Leung, Y., & Xie, C. (2013). Efficient broadcasting in multi-hop wireless networks with a realistic physical layer. International Journal of Computer Applications, 11(4), 1305–1318. Wong, G. K., Liu, H., Chu, X., Leung, Y., & Xie, C. (2013). Efficient broadcasting in multi-hop wireless networks with a realistic physical layer. International Journal of Computer Applications, 11(4), 1305–1318.
28.
Zurück zum Zitat Medina, A., & Bohacek, S. (2010a). Performance model of flooding in OLSR. In The ACM international workshop on performance evaluation of wireless ad hoc, sensor, and ubiquitous networks (PE-WASUN). Medina, A., & Bohacek, S. (2010a). Performance model of flooding in OLSR. In The ACM international workshop on performance evaluation of wireless ad hoc, sensor, and ubiquitous networks (PE-WASUN).
29.
Zurück zum Zitat Medina, A., & Bohacek, S. (2010b). A performance model of neighbor discovery in proactive routing protocols. In The ACM international workshop on performance evaluation of wireless ad hoc, sensor, and ubiquitous networks (PE-WASUN). Medina, A., & Bohacek, S. (2010b). A performance model of neighbor discovery in proactive routing protocols. In The ACM international workshop on performance evaluation of wireless ad hoc, sensor, and ubiquitous networks (PE-WASUN).
30.
Zurück zum Zitat Navidi, W., & Camp, T. (2004). Stationary distributions for the random waypoint mobility model. IEEE Transactions on Mobile Computing, 3(1), 99–108.CrossRef Navidi, W., & Camp, T. (2004). Stationary distributions for the random waypoint mobility model. IEEE Transactions on Mobile Computing, 3(1), 99–108.CrossRef
Metadaten
Titel
Efficient modeling of network flooding performance with proactive retransmissions in mobile ad hoc networks
verfasst von
Jonghyun Kim
Stephan Bohacek
Publikationsdatum
29.01.2018
Verlag
Springer US
Erschienen in
Wireless Networks / Ausgabe 5/2019
Print ISSN: 1022-0038
Elektronische ISSN: 1572-8196
DOI
https://doi.org/10.1007/s11276-018-1673-8

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