Loss-based proportional fairness in multihop wireless networks

被引:0
作者
Pablo Jesus Argibay-Losada
Kseniia Nozhnina
Andrés Suárez-González
Cándido López-García
Manuel Fernández-Veiga
机构
[1] University of Vigo,Department of Telematics Engineering
[2] State University of New York at Buffalo,LANDER
[3] State University of Information and Communication Technologies,undefined
来源
Wireless Networks | 2014年 / 20卷
关键词
Proportional fairness; Quality of service; Packet marking; Loss proportional service; Two class queues;
D O I
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中图分类号
学科分类号
摘要
Proportional fairness is a widely accepted form of allocating transmission resources in communication systems. For wired networks, the combination of a simple probabilistic packet marking strategy together with a scheduling algorithm aware of two packet classes can meet a given proportional vector of n loss probabilities, to an arbitrary degree of approximation, as long as the packet loss gap between the two basic classes is sufficiently large. In contrast, for wireless networks, proportional fairness is a challenging problem because of random channel variations and contention for transmitting. In this paper, we show that under the physical model, i.e., when receivers regard collisions and interference as noise, the same packet marking strategy at the network layer can also yield proportional differentiation and nearly optimal throughput. Thus, random access or interference due to incoherent transmissions do not impair the feasibility of engineering a prescribed end-to-end loss-based proportional fairness vector. We consider explicitly multihop transmission and the cases of Markovian traffic with a two-priority scheduler, as well as orthogonal modulation with power splitting. In both cases, it is shown that sharp differentiation in loss probabilities at the link layer is achievable without the need to coordinate locally the transmission of frames or packets among neighboring nodes. Given this, a novel distributed procedure to adapt the marking probabilities so as to attain exact fairness is also developed. Numerical experiments are used to validate the design.
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页码:805 / 816
页数:11
相关论文
共 65 条
  • [1] Argibay Losada P. J.(2010)A new design for end-to-end proportional loss differentiation in IP networks Computer Networks 54 1389-1403
  • [2] Suárez González A.(2007)Proportional fair throughput allocation for multirate 802.11e EDCA wireless LANs Wireless Networks 13 649-662
  • [3] López García C.(1998)Fading channels: Information-theoretic and communications aspects IEEE Transactions on Information Theory 44 2619-2692
  • [4] Fernández Veiga M.(2009)Nash bargaininh and proportional fairness for wireless systems IEEE/ACM Transactions on Networking 17 1453-1466
  • [5] Banchs A.(2008)An optimization framework for balancing throughput and fairness in wireless networks with QoS support IEEE Transactions on Wireless Communications 7 584-593
  • [6] Serrano P.(1979)Random evolutions and the spectral radius of a nonnegative matrix Mathematical Proceedings of the Cambridge Philosophical Society 86 345-350
  • [7] Vollero L.(2002)Proportional differentiated services: Delay differentiation and packet scheduling IEEE/ACM Transactions on Networking 10 12-26
  • [8] Biglieri E.(1993)Effective bandwidth of general Markovian sources and admission control of high speed networks IEEE/ACM Transactions on Networking 1 329-343
  • [9] Proakis J.(2000)The capacity of wireless networks IEEE Transaction on Information Theory 33 388-404
  • [10] Shamai(Shitz) S.(2012)Fast mixing of parallel glauber dynamics and low-delay CSMA scheduling IEEE Transaction on Information Theory 58 6541-6555