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WiMax: Cross layer bandwidth allocation Strict Priority Based Adaptive Modulation and Coding

机译:WiMax:跨层带宽分配基于严格优先级的自适应调制和编码

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Scheduling is a fundamental component in resource (bandwidth and power) management in NG wireless networks and plays the main role in providing QoS requirements such as delay, throughput and packet loss for different classes of service in 802.16d networks. In this paper we propose a novel scheduling algorithm Strict Priority Based Adaptive modulation and Coding (SP_AMC_Based) that can grantee QoS between different connections belong to different users by the means of cross layer design between MAC and PHY layers in the process of bandwidth allocation to the contrary of most existing protocols that are base solely on MAC layer. Without loss of generality, the protocol serves a number of users with different connections (flows) that have different QoS requirements. The scheduler considers user current channel condition, connection QoS requirement and packet delay to select a user to be scheduled. The proposed scheduling algorithm is investigated through simulation and performance comparison with WFQ[1] scheduler. The results show a better performance of the proposed scheduler compared with WFQ algorithm.
机译:调度是NG无线网络中资源(带宽和功率)管理的基本组成部分,在为802.16d网络中的不同服务类别提供QoS要求(例如延迟,吞吐量和丢包)中起主要作用。在本文中,我们提出了一种新的调度算法:基于严格优先级的自适应调制和编码(SP_AMC_Based),它可以通过在MAC和PHY层之间的跨层设计,在分配带宽给带宽分配的过程中,授予属于不同用户的不同连接之间的QoS。与大多数仅基于MAC层的现有协议相反。不失一般性,该协议为具有不同QoS要求的具有不同连接(流)的多个用户提供服务。调度程序会考虑用户当前的信道状况,连接QoS要求和数据包延迟,以选择要调度的用户。通过仿真和与WFQ [1]调度程序的性能比较,研究了所提出的调度算法。结果表明,与WFQ算法相比,所提出的调度器具有更好的性能。

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