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Erschienen in: Telecommunication Systems 2/2014

01.02.2014

An overview of local capacity in wireless networks

verfasst von: Salman Malik, Philippe Jacquet

Erschienen in: Telecommunication Systems | Ausgabe 2/2014

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Abstract

This article introduces a metric for performance evaluation of medium access schemes in wireless ad hoc networks known as local capacity. Although deriving the end-to-end capacity of wireless ad hoc networks is a difficult problem, the local capacity framework allows us to quantify the average information rate received by a receiver node randomly located in the network. In this article, the basic network model and analytical tools are first discussed and applied to a simple network to derive the local capacity of various medium access schemes. Our goal is to identify the most optimal scheme and also to see how does it compare with more practical medium access schemes. We analyzed grid pattern schemes where simultaneous transmitters are positioned in a regular grid pattern, ALOHA schemes where simultaneous transmitters are dispatched according to a uniform Poisson distribution and exclusion schemes where simultaneous transmitters are dispatched according to an exclusion rule such as node coloring and carrier sense schemes. Our analysis shows that local capacity is optimal when simultaneous transmitters are positioned in a grid pattern based on equilateral triangles and our results show that this optimal local capacity is at most double the local capacity of ALOHA based scheme. Our results also show that node coloring and carrier sense schemes approach the optimal local capacity by an almost negligible difference. At the end, we also discuss the shortcomings in our model as well as future research directions.

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Literatur
1.
Zurück zum Zitat Baccelli, F., & Blaszczyszyn, B. (2009). Stochastic geometry and wireless networks, volume II—Applications. Foundations and Trends in Networking, 4(1–2), 1–312. CrossRef Baccelli, F., & Blaszczyszyn, B. (2009). Stochastic geometry and wireless networks, volume II—Applications. Foundations and Trends in Networking, 4(1–2), 1–312. CrossRef
2.
Zurück zum Zitat Baccelli, F., Blaszczyszyn, B., & Muhlethaler, P. (2006). An ALOHA protocol for multihop mobile wireless networks. IEEE Transactions on Information Theory, 52(2). Baccelli, F., Blaszczyszyn, B., & Muhlethaler, P. (2006). An ALOHA protocol for multihop mobile wireless networks. IEEE Transactions on Information Theory, 52(2).
3.
Zurück zum Zitat Bao, L., & Garcia-Luna-Aceves, J. (2001). A new approach to channel access scheduling for ad hoc networks. In International conference on mobile computing and networking. Bao, L., & Garcia-Luna-Aceves, J. (2001). A new approach to channel access scheduling for ad hoc networks. In International conference on mobile computing and networking.
4.
Zurück zum Zitat Blaszczyszyn, B., Muhlethaler, P., & Banaouas, S. (2010). A comparison of ALOHA and CSMA in wireless ad hoc networks under different channel conditions. In INRIA-00530093. Blaszczyszyn, B., Muhlethaler, P., & Banaouas, S. (2010). A comparison of ALOHA and CSMA in wireless ad hoc networks under different channel conditions. In INRIA-00530093.
5.
Zurück zum Zitat Busson, A., & Chelius, G. (2009). Point processes for interference modeling in CSMA/CA ad hoc networks. In PE-WASUN. Busson, A., & Chelius, G. (2009). Point processes for interference modeling in CSMA/CA ad hoc networks. In PE-WASUN.
6.
Zurück zum Zitat Derbel, B., & Talbi, E.-G. (2010). Distributed node coloring in the SINR model. ICDCS. Derbel, B., & Talbi, E.-G. (2010). Distributed node coloring in the SINR model. ICDCS.
7.
Zurück zum Zitat Franceschetti, M., Dousse, O., Tse, D. N. C., & Thiran, P. (2007). Closing the gap in the capacity of wireless networks via percolation theory. IEEE Transactions on Information Theory, 53(3). Franceschetti, M., Dousse, O., Tse, D. N. C., & Thiran, P. (2007). Closing the gap in the capacity of wireless networks via percolation theory. IEEE Transactions on Information Theory, 53(3).
8.
Zurück zum Zitat Ganti, R. K., Andrews, J. G., & Haenggi, M. (2010). High-SIR transmission capacity of wireless networks with general fading and node distribution. CoRR. arXiv:1010.1584. Ganti, R. K., Andrews, J. G., & Haenggi, M. (2010). High-SIR transmission capacity of wireless networks with general fading and node distribution. CoRR. arXiv:​1010.​1584.
9.
Zurück zum Zitat Gupta, P., & Kumar, P. R. (2000). The capacity of wireless networks. IEEE Transactions on Information Theory, 46(2). Gupta, P., & Kumar, P. R. (2000). The capacity of wireless networks. IEEE Transactions on Information Theory, 46(2).
10.
Zurück zum Zitat Haenggi, M. (2009). Outage, local throughput, and capacity of random wireless networks. IEEE Transaction on Wireless Communication, 8. Haenggi, M. (2009). Outage, local throughput, and capacity of random wireless networks. IEEE Transaction on Wireless Communication, 8.
11.
Zurück zum Zitat Hasan, A., & Andrews, J. (2007). The guard zone in wireless ad hoc networks. IEEE Transactions on Wireless Communications, 6. Hasan, A., & Andrews, J. (2007). The guard zone in wireless ad hoc networks. IEEE Transactions on Wireless Communications, 6.
12.
Zurück zum Zitat Hong, K., & Hua, Y. (2007). Throughput analysis of large wireless networks with regular topologies. EURASIP Journal on Wireless Communications and Networking Hong, K., & Hua, Y. (2007). Throughput analysis of large wireless networks with regular topologies. EURASIP Journal on Wireless Communications and Networking
13.
Zurück zum Zitat Jacquet, P. (2009). Shannon capacity in poisson wireless network model. Problems of Information Transmission, 45. Jacquet, P. (2009). Shannon capacity in poisson wireless network model. Problems of Information Transmission, 45.
14.
Zurück zum Zitat Jovicic, A., Viswanath, P., & Kulkarni, S. (2004). Upper bounds to transport capacity of wireless networks. IEEE Transactions on Information Theory, 50(11). Jovicic, A., Viswanath, P., & Kulkarni, S. (2004). Upper bounds to transport capacity of wireless networks. IEEE Transactions on Information Theory, 50(11).
15.
Zurück zum Zitat Kaynia, M., & Jindal, N. (2008). Performance of ALOHA and CSMA in spatially distributed wireless networks. In IEEE international conference on communications, May 2008. Kaynia, M., & Jindal, N. (2008). Performance of ALOHA and CSMA in spatially distributed wireless networks. In IEEE international conference on communications, May 2008.
16.
Zurück zum Zitat Kleinrock, L., & Tobagi, F. (1975). Packet switching in radio channels: Part 1—Carrier sense multiple-access modes and their throughput-delay characteristics. IEEE Transactions on Communications, 23(12). Kleinrock, L., & Tobagi, F. (1975). Packet switching in radio channels: Part 1—Carrier sense multiple-access modes and their throughput-delay characteristics. IEEE Transactions on Communications, 23(12).
17.
Zurück zum Zitat Lauwens, B., Scheers, B., & Vande Capelle, A. (2010). Performance analysis of unslotted CSMA/CA in wireless networks. Telecommunication Systems, 44. doi:10.1007/s11235-009-9220-7. Lauwens, B., Scheers, B., & Vande Capelle, A. (2010). Performance analysis of unslotted CSMA/CA in wireless networks. Telecommunication Systems, 44. doi:10.​1007/​s11235-009-9220-7.
18.
Zurück zum Zitat Liu, X., & Haenggi, M. (2005). Throughput analysis of fading sensor networks with regular and random topologies. EURASIP Journal on Wireless Communications and Networking, 2005. Liu, X., & Haenggi, M. (2005). Throughput analysis of fading sensor networks with regular and random topologies. EURASIP Journal on Wireless Communications and Networking, 2005.
19.
Zurück zum Zitat Nelson, R., & Kleinrock, L. (1984). The spatial capacity of slotted ALOHA multihop packet radio network with capture. IEEE Transactions on Communications, 32(6). Nelson, R., & Kleinrock, L. (1984). The spatial capacity of slotted ALOHA multihop packet radio network with capture. IEEE Transactions on Communications, 32(6).
20.
Zurück zum Zitat Park, C., Han, D., & Ahn, S. (2006). Performance analysis of MAC layer protocols in the IEEE 802.11 wireless LAN. Telecommunication Systems, 33. doi:10.1007/s11235-006-9013-1. Park, C., Han, D., & Ahn, S. (2006). Performance analysis of MAC layer protocols in the IEEE 802.11 wireless LAN. Telecommunication Systems, 33. doi:10.​1007/​s11235-006-9013-1.
21.
Zurück zum Zitat Ramanathan, R. (1997). A unified framework and algorithm for (T/F/C)DMA channel assignment in wireless networks. In IEEE INFOCOM. Ramanathan, R. (1997). A unified framework and algorithm for (T/F/C)DMA channel assignment in wireless networks. In IEEE INFOCOM.
22.
Zurück zum Zitat Rhee, I., Warrier, A., Min, J., & Xu, L. (2009). DRAND: distributed randomized TDMA scheduling for wireless ad hoc networks. IEEE Transactions on Mobile Computing, 8(10). Rhee, I., Warrier, A., Min, J., & Xu, L. (2009). DRAND: distributed randomized TDMA scheduling for wireless ad hoc networks. IEEE Transactions on Mobile Computing, 8(10).
23.
Zurück zum Zitat Rozovsky, R., & Kumar, P. R. (2001). SEEDEX: a MAC protocol for ad hoc networks. In MobiHoc. Rozovsky, R., & Kumar, P. R. (2001). SEEDEX: a MAC protocol for ad hoc networks. In MobiHoc.
24.
Zurück zum Zitat Tanemura, M. (1979). On random complete packing by discs. Annals of the Institute of Statistical Mathematics, 31. Tanemura, M. (1979). On random complete packing by discs. Annals of the Institute of Statistical Mathematics, 31.
25.
Zurück zum Zitat Vergados, D., Sgora, A., Vergados, D., Vouyioukas, D., & Anagnostopoulos, I. (2010). Fair TDMA scheduling in wireless multi-hop networks. Telecommunications Systems. doi:10.1007/s11235-010-9397-9. Vergados, D., Sgora, A., Vergados, D., Vouyioukas, D., & Anagnostopoulos, I. (2010). Fair TDMA scheduling in wireless multi-hop networks. Telecommunications Systems. doi:10.​1007/​s11235-010-9397-9.
26.
Zurück zum Zitat Weber, S., Yang, X., Andrews, J., & de Veciana, G. (2005). Transmission capacity of wireless ad hoc networks with outage constraints. IEEE Transactions on Information Theory, 51(12). Weber, S., Yang, X., Andrews, J., & de Veciana, G. (2005). Transmission capacity of wireless ad hoc networks with outage constraints. IEEE Transactions on Information Theory, 51(12).
27.
Zurück zum Zitat Weber, S., Andrews, J., & Jindal, N. (2010). An overview of the transmission capacity of wireless networks. IEEE Transactions on Communications, 58. Weber, S., Andrews, J., & Jindal, N. (2010). An overview of the transmission capacity of wireless networks. IEEE Transactions on Communications, 58.
28.
Zurück zum Zitat Xue, F., & Kumar, P. R. (2006). Scaling laws for ad hoc wireless networks: an information theoretic approach. Foundations and Trends in Networking, 1. Xue, F., & Kumar, P. R. (2006). Scaling laws for ad hoc wireless networks: an information theoretic approach. Foundations and Trends in Networking, 1.
29.
Zurück zum Zitat Zhu, C., & Corson, M. S. (2001). A five-phase reservation protocol (FPRP) for mobile ad hoc networks. Wireless Networks Zhu, C., & Corson, M. S. (2001). A five-phase reservation protocol (FPRP) for mobile ad hoc networks. Wireless Networks
30.
Zurück zum Zitat Zorzi, M., & Pupolin, S. (1995). Optimum transmission ranges in multihop packet radio networks in the presence of fading. IEEE Transactions on Communications, 43(7). Zorzi, M., & Pupolin, S. (1995). Optimum transmission ranges in multihop packet radio networks in the presence of fading. IEEE Transactions on Communications, 43(7).
Metadaten
Titel
An overview of local capacity in wireless networks
verfasst von
Salman Malik
Philippe Jacquet
Publikationsdatum
01.02.2014
Verlag
Springer US
Erschienen in
Telecommunication Systems / Ausgabe 2/2014
Print ISSN: 1018-4864
Elektronische ISSN: 1572-9451
DOI
https://doi.org/10.1007/s11235-013-9777-z

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