A QoS framework to support integrated services in multihop wireless networks with infrastructure support

被引:0
|
作者
Wang, Huiqing [1 ]
Yow, Kin Choong [1 ]
机构
[1] Nanyang Technol Univ, Sch Comp Engn, Singapore 639798, Singapore
关键词
QOS; fairness; load-balance; end-to-end;
D O I
10.1016/j.comcom.2008.05.023
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
In this paper, we consider a multihop wireless network with infrastructure support (MWNI) which can be built upon existing IEEE 802.11 based WLANs to extend the coverage and provide more flexibility to adapt to the dynamics of the network. To support integrated services in MWNI, a QoS framework is proposed to achieve the following objectives: (1) allow more real-time flows to be admitted into the network, (2) optimize the performance of best-effort traffic without losing fairness and (3) enhance QoS performance of admitted real-time traffic. There are three main components in our framework to provide corresponding solutions. First, a new QoS routing protocol that discovers global optimized topology based on the network interference modeled by flow contention graph. Second, admission control is performed at the access point (AP) so that a flow will be admitted only if the network has enough bandwidth to support its minimum bandwidth requirement. Third, a two-level hierarchical scheduling algorithm based on weighted fair queueing is implemented at the APs. The efficiency of individual component, as well as the QoS framework is evaluated through simulation studies, and the results show our proposed QoS framework is able to enhance the QoS of real-time traffic and still achieve high network utilization. (C) 2008 Elsevier B.V. All rights reserved.
引用
收藏
页码:3253 / 3266
页数:14
相关论文
共 50 条
  • [1] An optimization framework for balancing throughput and fairness in wireless networks with QoS support
    Cheng, Ho Ting
    Zhuang, Weihua
    IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2008, 7 (02) : 584 - 593
  • [2] Resource Allocation for QoS Support in Wireless Mesh Networks
    Kim, Tae-Suk
    Yang, Yong
    Hou, Jennifer C.
    Krishnamurthy, Srikanth V.
    IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2013, 12 (05) : 2046 - 2054
  • [3] QoS support in wireless sensor networks: A survey
    Chen, DZ
    Varshney, PK
    ICWN'04 & PCC'04, VOLS, 1 AND 2, PROCEEDINGS, 2004, : 227 - 233
  • [4] Multicast with QoS support in heterogeneous wireless networks
    Chou, LD
    Hsieh, HJ
    Chen, JM
    EMBEDDED AND UBIQUITOUS COMPUTING, PROCEEDINGS, 2004, 3207 : 581 - 590
  • [5] Priority access for QoS support in distributed wireless networks
    Zhou Xin
    Zheng Changwen
    JOURNAL OF SYSTEMS ENGINEERING AND ELECTRONICS, 2019, 30 (06) : 1202 - 1211
  • [6] Mobility and QoS support in 4G wireless networks
    Kim, T
    Lee, J
    JOURNAL OF COMMUNICATIONS AND NETWORKS, 2005, 7 (02) : 178 - 191
  • [7] QoS Routing and Scheduling Algorithms in Multihop Wireless Networks
    Mankar, Phalguna D.
    Prakash, Prajwal
    Upadhyaya, Pratheek S.
    INTERNATIONAL CONFERENCE ON INTELLIGENT DATA COMMUNICATION TECHNOLOGIES AND INTERNET OF THINGS, ICICI 2018, 2019, 26 : 702 - 709
  • [8] Overall Design of Satellite Networks for Internet Services with QoS Support
    Lee, Kyu-Hwan
    Park, Kyoung Youl
    ELECTRONICS, 2019, 8 (06):
  • [9] A Dynamic Range Resource Reservation Protocol for QoS Support in Wireless Networks
    Jawhar, Imad
    Wu, Jie
    3RD ACS/IEEE INTERNATIONAL CONFERENCE ON COMPUTER SYSTEMS AND APPLICATIONS, 2005, 2005,
  • [10] Neighborhood Nodes Collaboration to Support QoS Routing in Wireless Mesh Networks
    Makram, Sadeq Ali
    Samad, Fahad
    Guenes, Mesut
    ISCC: 2009 IEEE SYMPOSIUM ON COMPUTERS AND COMMUNICATIONS, VOLS 1 AND 2, 2009, : 762 - +