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On the synergy between adaptive physical layer and multiple-access control for integrated voice and data services in a cellular wireless network

机译:关于蜂窝无线网络中集成语音和数据服务的自适应物理层和多址控制之间的协同作用

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摘要

In this paper, we propose a novel design to exploit the synergy between the multiple-access control (MAC) layer and the physical layer of a cellular wireless system with integrated voice and data services. As in a traditional design, the physical layer (channel encoder and modulator) is responsible for providing error protection for transmitting the packets over the hostile radio channel, while the MAC layer is responsible for allocating the precious bandwidth to the contending users for voice or data connections. However, a distinctive feature of our proposed design is that in the physical layer, a variable-rate adaptive channel encoder is employed to dynamically adjust the amount of forward error correction according to the time-varying wireless channel state such that the MAC layer, which is a reservation-based time-division multiple-access protocol, is able to make informed decisions as to bandwidth allocation. Specifically, based on the channel state information provided by the physical layer, the MAC protocol gives higher priority to users with better channel states. This novel synergistic mechanism between the two protocol layers can utilize the system bandwidth more effectively. The multiple-access performance of the proposed scheme is compared with two baseline systems. The first baseline system consists of the same reservation-based MAC protocol but with a traditional fixed-rate physical layer. The second system consists of the same reservation-based MAC protocol and the same channel adaptive physical layer, but without interaction between the two layers. All three protocols have a request queue, which stores the previous requests that survive the contention but are not allocated information slots. Our extensive simulation results demonstrate that significant performance gains are achieved through the exploitation of the synergy between the two protocol layers.
机译:在本文中,我们提出了一种新颖的设计,以利用具有集成语音和数据服务的蜂窝无线系统的多址控制(MAC)层与物理层之间的协同作用。与传统设计一样,物理层(通道编码器和调制器)负责提供错误保护,以通过恶意无线电信道传输数据包,而MAC层则负责为争用的用户分配宝贵的带宽以获取语音或数据连接。但是,我们提出的设计的一个显着特征是,在物理层中,采用可变速率自适应信道编码器根据时变无线信道状态动态调整前向纠错量,以使MAC层是一种基于预留的时分多址访问协议,能够对带宽分配做出明智的决定。具体地,基于物理层提供的信道状态信息,MAC协议为具有更好信道状态的用户赋予更高的优先级。两个协议层之间的这种新颖的协同机制可以更有效地利用系统带宽。将拟议方案的多址性能与两个基准系统进行比较。第一个基准系统由相同的基于预留的MAC协议组成,但具有传统的固定速率物理层。第二个系统由相同的基于预留的MAC协议和相同的信道自适应物理层组成,但是在这两个层之间没有交互。所有这三个协议都有一个请求队列,该队列存储了在争用中幸存但未分配信息时隙的先前请求。我们广泛的仿真结果表明,通过利用两个协议层之间的协同作用,可以显着提高性能。

著录项

  • 作者

    Lau VKN; Kwok YK;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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