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The slow start power controlled MAC protocol for mobile ad hoc networks and its performance analysis

机译:移动自组网的慢启动功率控制MAC协议及其性能分析

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摘要

We propose and evaluate the performance of a new MAC-layer protocol for mobile ad hoc networks, called the Slow Start Power Controlled (abbreviated SSPC) protocol. SSPC improves on IEEE 802.11 by using power control for the RTS/CTS and DATA frame transmissions, so as to reduce energy consumption and increase network throughput and lifetime. In our scheme the transmission power used for the RTS frames is not constant, but follows a siow start principle. The CTS frames, which are sent at maximum transmission power, prevent the neighbouring nodes from transmitting their DATA frames at power levels higher than a computed threshold, while allowing them to transmit at power levels less than that threshold. Reduced energy consumption is achieved by adjusting the node transmission power to the minimum required value for reliable reception at the receiving node, while increase in network throughput is achieved by allowing more transmissions to take place simultaneously. The slow start principle used for calculating the appropriate DATA frames transmission power and the possibility of more simultaneous collision-free transmissions differentiate the SSPC protocol from the other MAC solutions proposed for IEEE 802.11. Simulation results indicate that the SSPC protocol achieves a significant reduction in power consumption, average packet delay and frequency of RTS frame collisions, and a significant increase in network throughput and received-to-sent packets ratio compared to IEEE 802.11 protocol.
机译:我们提出并评估了用于移动自组织网络的新MAC层协议(称为慢启动功率控制(缩写为SSPC)协议)的性能。 SSPC通过将功率控制用于RTS / CTS和DATA帧传输来改进IEEE 802.11,从而降低能耗并增加网络吞吐量和使用寿命。在我们的方案中,用于RTS帧的传输功率不是恒定的,而是遵循低启动原理。以最大传输功率发送的CTS帧阻止了相邻节点以高于计算出的阈值的功率水平传输其DATA帧,同时允许它们以低于该阈值的功率水平进行传输。通过将节点传输功率调整到最小所需值以在接收节点进行可靠接收,可以降低能耗,同时通过允许同时进行更多传输来提高网络吞吐量。 SSPC协议用于计算适当的DATA帧传输功率的慢启动原理以及更多同时无冲突传输的可能性使SSPC协议与为IEEE 802.11提出的其他MAC解决方案区分开来。仿真结果表明,与IEEE 802.11协议相比,SSPC协议显着降低了功耗,平均数据包延迟和RTS帧冲突的频率,并显着提高了网络吞吐量和收发包比率。

著录项

  • 来源
    《Ad hoc networks》 |2009年第6期|1136-1149|共14页
  • 作者单位

    Department of Computer Engineering and Informatics, University of Patras, 26500 Rio, Patras, Greece Research Academic Computer Technology Institute, University of Patras, 26500 Rio, Patras, Greece;

    Department of Computer Engineering and Informatics, University of Patras, 26500 Rio, Patras, Greece Research Academic Computer Technology Institute, University of Patras, 26500 Rio, Patras, Greece;

    Department of Computer Engineering and Informatics, University of Patras, 26500 Rio, Patras, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    IEEE 802.11; power control; mobile ad hoc networks; slow start mechanism;

    机译:IEEE 802.11;功率控制;移动自组织网络;慢启动机制;

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