Stability of flow-level scheduling with Markovian time-varying channels

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초록

We consider the flow-level scheduling in wireless networks. The time is slotted and in each time slot the base station selects flows/users to serve. There are multi-class users and channel conditions vary over time. The channel state for each class user is assumed to be modeled as a finite state Markov chain. Using the fluid limit approach, we find the necessary and sufficient conditions for the stability of best rate (BR) scheduling policies. As a result, we show that any BR policy is maximally stable. Our result generalizes the result of Ayesta et al. (in press) [13] and solves the conjecture of jack (2011) [16]. We introduce a correlated channel state model and investigate the stability condition for BR policy in this model. (C) 2012 Elsevier B.V. All rights reserved.

키워드

StabilityBest rate policyFluid limitsFlow-level schedulingMarkovian channelWIRELESS DATA-NETWORKSPERFORMANCEFRAMEWORK
제목
Stability of flow-level scheduling with Markovian time-varying channels
저자
Kim, JeongsimKim, BaraKim, JerimBae, Yun Han
DOI
10.1016/j.peva.2012.08.005
발행일
2013-02
유형
Article
저널명
Performance Evaluation
70
2
페이지
148 ~ 159