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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Adaptive QoS provision for IEEE 802.16e BWA networks based on cross-layer design
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Adaptive QoS provision for IEEE 802.16e BWA networks based on cross-layer design

机译:基于跨层设计的IEEE 802.16e BWA网络的自适应QoS规定

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This article proposes an integrated framework for adaptive QoS provision in IEEE 802.16e broadband wireless access networks based on cross-layer design. On one hand, an efficient admission control (AC) algorithm is proposed along with a semi-reservation scheme to guarantee the connection-level QoS. First, to guarantee the service continuity for handoff connections and resource efficiency, our semi-reservation scheme considers both users' handoff probability and average resource consumption together, which effectively avoids resource over-reservation and insufficient reservation. For AC, a new/handoff connection is accepted only when the target cell has enough resource to afford both instantaneous and average resource consumption to meet the average source rate request. On the other hand, a joint resource allocation and packet scheduling scheme is designed to provide packet-level QoS guarantee in term of "QoS rote", which can ensure fairness for the services with identical priority level in case of bandwidth shortage. Particularly, an enhanced bandwidth request scheme is designed to reduce unnecessary BR delay and redundant signaling overhead caused by the existing one in IEEE 802.16e, which further improves the packet-level QoS performance and resource efficiency for uplink transmission, Simulation results show that the proposed approach not only balances the tradeoff among connection blocking rate, connection dropping rate, and connection failure rate, but also achieves low mean packet dropping rate (PDR), small deviation of PDR, and low QoS outage rate. Moreover, high resource efficiency is ensured.
机译:本文提出了一个基于跨层设计的IEEE 802.16e宽带无线接入网络中自适应QoS设置的集成框架。一方面,提出了一种有效的准入控制(AC)算法以及一种半保留方案,以保证连接级QoS。首先,为了保证切换连接的服务连续性和资源效率,我们的半保留方案同时考虑了用户的切换概率和平均资源消耗,从而有效避免了资源过度预留和预留不足。对于AC,仅当目标小区具有足够的资源来提供瞬时和平均资源消耗以满足平均源速率请求时,才接受新/越区切换连接。另一方面,设计了一种联合资源分配和分组调度方案,以“ QoS死记”的方式提供分组级的QoS保证,在带宽不足的情况下,可以保证优先级相同的业务的公平性。特别是,设计了一种增强的带宽请求方案,以减少由IEEE 802.16e中的现有带宽引起的不必要的BR延迟和冗余信令开销,从而进一步提高了分组级QoS性能和上行链路传输的资源效率,仿真结果表明,所提出的方案该方法不仅平衡了连接阻塞率,连接丢失率和连接失败率之间的权衡,而且还实现了较低的平均数据包丢失率(PDR),较小的PDR偏差以及较低的QoS中断率。此外,确保了高资源效率。

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