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Erschienen in: Mobile Networks and Applications 2/2009

01.04.2009

Distributed Contention-Aware Call Admission Control for IEEE 802.11 Multi-Radio Multi-Rate Multi-Channel Wireless Mesh Networks

verfasst von: Tehuang Liu, Wanjiun Liao, Jeng-Farn Lee

Erschienen in: Mobile Networks and Applications | Ausgabe 2/2009

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Abstract

In this paper, we focus on call admission control (CAC) in IEEE 802.11 multi-radio multi-rate multi-channel (MR2-MC) wireless mesh networks (WMNs). CAC is the key component of QoS routing protocols. The goal of CAC is to protect existing flows from QoS violations and fully utilize available radio resource on channels. We propose a CAC mechanism, called Contention-Aware Multi-channel Call Admission Control (CMC), for MR2-MC WMNs based on IEEE 802.11 DCF. CMC is fully distributed, relies on local information to estimate the residual bandwidth of a path, and can be integrated into existing routing protocols for MR2-MC WMNs to provide QoS. We evaluate the performance of CMC via ns-2 simulations. The results show that CMC can precisely predict the end-to-end residual bandwidths of paths, successfully protects existing flows from QoS violations, and fully utilizes the bandwidths on channels.

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Literatur
2.
Zurück zum Zitat Bruno R, Conti M, Gregori E (2005) Mesh networks: commodity multihop Ad Hoc networks. IEEE Communications 43(3):123–131 MarCrossRef Bruno R, Conti M, Gregori E (2005) Mesh networks: commodity multihop Ad Hoc networks. IEEE Communications 43(3):123–131 MarCrossRef
3.
Zurück zum Zitat Gambiroza V, Sadeghi B, Knightly EW (2004) End-to-end performance and fairness in multihop wireless backhaul networks. ACM MOBICOM, Sep.-Oct Gambiroza V, Sadeghi B, Knightly EW (2004) End-to-end performance and fairness in multihop wireless backhaul networks. ACM MOBICOM, Sep.-Oct
4.
Zurück zum Zitat Gamal AE, Mammen J, Prabhakar B, Shah D (2004) Throughput-delay trade-off in wireless networks. IEEE INFOCOM, Mar Gamal AE, Mammen J, Prabhakar B, Shah D (2004) Throughput-delay trade-off in wireless networks. IEEE INFOCOM, Mar
5.
Zurück zum Zitat Raniwala A, Chiueh T-C (2005) Architecture and algorithms for an IEEE 802.11-based multi-channel WMN. IEEE INFOCOM, Mar Raniwala A, Chiueh T-C (2005) Architecture and algorithms for an IEEE 802.11-based multi-channel WMN. IEEE INFOCOM, Mar
6.
Zurück zum Zitat Liu T, Liao W (2006) Capacity-aware routing in multi-channel multi-rate WMNs. IEEE ICC, Jun Liu T, Liao W (2006) Capacity-aware routing in multi-channel multi-rate WMNs. IEEE ICC, Jun
7.
Zurück zum Zitat Jun J, Sichitiu ML (2003) The nominal capacity of wireless mesh networks. IEEE Wirel Commun 10(5):8–14 OctCrossRef Jun J, Sichitiu ML (2003) The nominal capacity of wireless mesh networks. IEEE Wirel Commun 10(5):8–14 OctCrossRef
8.
Zurück zum Zitat Jain K, Padhye J, Padmanabhan VN, Qiu L (2003) Impact of interference on multi-hop wireless network performance. ACM MOBICOM, Sep Jain K, Padhye J, Padmanabhan VN, Qiu L (2003) Impact of interference on multi-hop wireless network performance. ACM MOBICOM, Sep
9.
Zurück zum Zitat Zhu C, Corson MS (2002) QoS routing for mobile Ad Hoc networks. IEEE INFOCOM, Jun Zhu C, Corson MS (2002) QoS routing for mobile Ad Hoc networks. IEEE INFOCOM, Jun
10.
Zurück zum Zitat Yang Y, Kravets R (2005) Contention-aware admission control for Ad Hoc networks. IEEE Trans. on Mobile Computing, 4(4):363–377 July-AugCrossRef Yang Y, Kravets R (2005) Contention-aware admission control for Ad Hoc networks. IEEE Trans. on Mobile Computing, 4(4):363–377 July-AugCrossRef
11.
Zurück zum Zitat Das AK, Alazemi HMK, Vijayakumar R, Roy S (2005) Optimization models for fixed channel assignment in WMNs with multiple radios. IEEE SECON, Sep Das AK, Alazemi HMK, Vijayakumar R, Roy S (2005) Optimization models for fixed channel assignment in WMNs with multiple radios. IEEE SECON, Sep
12.
Zurück zum Zitat Ramachandran KN, Belding EM, Almeroth KC, Buddhikot MM (2006) Interference-aware channel assignment in multi-radio WMNs. IEEE INFOCOM, Apr Ramachandran KN, Belding EM, Almeroth KC, Buddhikot MM (2006) Interference-aware channel assignment in multi-radio WMNs. IEEE INFOCOM, Apr
13.
Zurück zum Zitat So J, Vaidya N (2004) Multi-channel MAC for Ad Hoc networks: handling multi-channel hidden terminals using a single transceiver. ACM MOBIHOC, May So J, Vaidya N (2004) Multi-channel MAC for Ad Hoc networks: handling multi-channel hidden terminals using a single transceiver. ACM MOBIHOC, May
14.
Zurück zum Zitat Shi J, Salonidis T, Knightly E (2006) Starvation mitigation through multi-channel coordination in CSMA based wireless networks. ACM MOBIHOC, May Shi J, Salonidis T, Knightly E (2006) Starvation mitigation through multi-channel coordination in CSMA based wireless networks. ACM MOBIHOC, May
15.
Zurück zum Zitat Ghahramani S (2005) Fundamentals of probability with stochastic processes. Prentice Hall, 3rd edn, pp. 215–216 Ghahramani S (2005) Fundamentals of probability with stochastic processes. Prentice Hall, 3rd edn, pp. 215–216
16.
Zurück zum Zitat Couto DSJD, Aguayo D, Bicket J, Morris R (2003) High-throughput path metric for multi-hop wireless routing. ACM MOBICOM, Sep Couto DSJD, Aguayo D, Bicket J, Morris R (2003) High-throughput path metric for multi-hop wireless routing. ACM MOBICOM, Sep
19.
Zurück zum Zitat IEEE 802.11 (1999) Part11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications: high-speed physical layer in the 5GHz band. Supplement to IEEE 802.11 Standard, Aug IEEE 802.11 (1999) Part11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications: high-speed physical layer in the 5GHz band. Supplement to IEEE 802.11 Standard, Aug
Metadaten
Titel
Distributed Contention-Aware Call Admission Control for IEEE 802.11 Multi-Radio Multi-Rate Multi-Channel Wireless Mesh Networks
verfasst von
Tehuang Liu
Wanjiun Liao
Jeng-Farn Lee
Publikationsdatum
01.04.2009
Verlag
Springer US
Erschienen in
Mobile Networks and Applications / Ausgabe 2/2009
Print ISSN: 1383-469X
Elektronische ISSN: 1572-8153
DOI
https://doi.org/10.1007/s11036-008-0141-6

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