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An overlapping and pipelining data transmission MAC protocol with multiple channels in ad hoc networks

机译:ad hoc网络中具有多个通道的重叠流水线数据传输MAC协议

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摘要

In mobile ad hoc networks (MANETs), the IEEE 802.11 DCF protocol is commonly used at the medium access control (MAC) layer to reduce collision and contention. However, mobile nodes, before send out data, need to wait for other in-process data transmission in the same range to be completed. In this paper, we address this performance degradation problem in the DCF mechanism and propose an overlapping and pipelining data transmission MAC protocol to enhance throughput. The protocol regulates the actions of the neighboring nodes of both the sender and the receiver and enables the utilization of the same channel simultaneously by these neighboring nodes. A multiple sub-channel technique is proposed to avoid the interference problem caused by the control and data signals of different communication mobile node pairs. With the regulated actions and the multiple channel technique, multiple pairs of mobile nodes are provided with the desired feature of utilizing the same data sub-channel simultaneously without interfering with one another. Although the overlapping data transmission technique can increase the number of simultaneous communication pairs, an efficient bandwidth allocation of the control and data sub-channels to maximize utilization is critically important. Therefore, we further propose a bandwidth allocation strategy in which the control signals and data signals are pipelined. Performance simulation results prove the efficiency of the proposed bandwidth allocation strategy with better channel utilization. In addition, the proposed MAC protocol with the bandwidth allocation strategy, combined with the overlapping and pipelining data sub-channel technique, outperforms the IEEE 802.11 DCF in throughput (kB/s) by about 43.76%.
机译:在移动自组织网络(MANET)中,IEEE 802.11 DCF协议通常用于媒体访问控制(MAC)层,以减少冲突和争用。但是,移动节点在发送数据之前,需要等待相同范围内的其他正在进行的数据传输完成。在本文中,我们解决了DCF机制中的这种性能下降问题,并提出了一种重叠的流水线数据传输MAC协议来提高吞吐量。该协议调节发送方和接收方的相邻节点的动作,并允许这些相邻节点同时利用同一信道。为了避免由不同通信移动节点对的控制和数据信号引起的干扰问题,提出了一种多子信道技术。利用规定的动作和多信道技术,为多对移动节点提供了期望的特征,其同时利用同一数据子信道而不互相干扰。尽管重叠的数据传输技术可以增加同时进行的通信对的数量,但控制和数据子信道的有效带宽分配以最大化利用率至关重要。因此,我们进一步提出了一种带宽分配策略,其中控制信号和数据信号被流水线化。性能仿真结果证明了所提出的带宽分配策略具有更好的信道利用率的效率。此外,所提出的具有带宽分配策略的MAC协议结合了重叠和流水线数据子信道技术,在吞吐量(kB / s)方面优于IEEE 802.11 DCF。

著录项

  • 来源
    《Parallel Computing》 |2009年第6期|313-330|共18页
  • 作者单位

    Department of Information Engineering and Computer Science. Feng Chia University, Taichung City 40724, Taiwan;

    Department of Information Engineering and Computer Science. Feng Chia University, Taichung City 40724, Taiwan;

    Department of Information Engineering and Computer Science. Feng Chia University, Taichung City 40724, Taiwan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    exposed terminal problem; IEEE 802.11 DCF; MAC; ad hoc networks; multiple channels; collision;

    机译:暴露的终端问题;IEEE 802.11 DCF;苹果电脑;特设网络;多种渠道;碰撞;

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