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Joint Bandwidth Allocation and Connection Admission Control for Polling Services in IEEE 802.16 Broadband Wireless Networks

机译:IEEE 802.16宽带无线网络中投票服务的联合带宽分配和连接录取控制

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Although the medium access control (MAC) protocol and the physical layer are well defined in IEEE 802.16 standard, bandwidth allocation (BA) and connection admission control (CAC) remain as open research issues. In this paper, we present a joint adaptive bandwidth allocation and connection admission control method for real-time and non-real-time polling services in the IEEE 802.16-based broadband wireless networks which use adaptive modulation and coding at the physical layer. This method is based on an optimization-based approach where the in-connection (i.e., packet-level) performances (i.e., delay and transmission rate for real-time and non-real-time polling services, respectively) are used as cost functions and decision criteria for allocating bandwidth and for accepting or blocking a new connection, respectively. A queueing model is used to analyze transmission delay and transmission rate under adaptive modulation and coding. Binary integer programming is used to obtain the solutions for the optimization formulation. Typical performance results demonstrate the superiority of the proposed scheme over traditional static and adaptive bandwidth allocation schemes.
机译:尽管媒体访问控制(MAC)协议和物理层在IEEE 802.16标准中很好地定义,但是带宽分配(BA)和连接准入控制(CAC)保留为开放研究问题。在本文中,我们在基于IEEE 802.16的宽带无线网络中展示了用于实时和非实时轮询服务的联合自适应带宽分配和连接准入控制方法,其使用自适应调制和在物理层处编码。该方法基于基于优化的方法,其中分别使用基于优化的方法(即,分组级别)性能(即,实时和非实时轮询服务的延迟和传输速率)作为成本函数分别分配带宽和接受或阻止新连接的决策标准。排队模型用于分析自适应调制和编码下的传输延迟和传输速率。二进制整数编程用于获取优化配方的解决方案。典型的性能结果证明了传统静态和自适应带宽分配方案的提出方案的优越性。

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