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首页> 外文期刊>International journal of wireless information networks >Energy-efficient Rate Adaptation MAC Protocol for Ad Hoc Wireless Networks
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Energy-efficient Rate Adaptation MAC Protocol for Ad Hoc Wireless Networks

机译:Ad Hoc无线网络的高能效速率自适应MAC协议

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摘要

In this paper, two novel energy-efficient rate adaptation schemes are presented. The proposed protocols use the Distributed Power Control (DPC) algorithm to predict the channel state and determine the necessary transmission power which optimizes the energy consumption. The first proposed rate adaptation scheme heuristically alters the modulation rate to balance the energy-efficiency and the required throughput which is estimated with queue fill ratio. Moreover, the back-off scheme is incorporated to mitigate congestion and reduce packet losses due to buffer overflows thus minimizing energy consumption. Consequently, the nodes will conserve energy when the traffic is low, offer higher throughput when needed and save energy during congestion by limiting transmission rates. The second rate adaptation scheme employs dynamic programming (DP) principle to analytically select modulation rate and a burst size to be used during transmission. The proposed quadratic cost-function minimizes the energy consumption while alleviating network congestions and buffer overflows. The proposed DP solution renders a Riccati equation ultimately providing an optimal rate selection. The simulation results indicate that an increase in throughput by 96% and energy-efficiency by 131% is observed when compared to other available protocols, for example Receiver Based AutoRate (RBAR).
机译:本文提出了两种新颖的节能率自适应方案。所提出的协议使用分布式功率控制(DPC)算法来预测信道状态并确定优化能耗的必要传输功率。首先提出的速率自适应方案启发式地改变调制速率,以平衡能量效率和所需的吞吐量,该吞吐量是通过队列填充率来估计的。此外,并入了退避方案以缓解拥塞并减少由于缓冲区溢出而导致的数据包丢失,从而将能耗降至最低。因此,节点将在流量较低时节省能量,在需要时提供更高的吞吐量,并通过限制传输速率在拥塞期间节省能量。第二速率适配方案采用动态编程(DP)原理来分析地选择要在传输期间使用的调制速率和突发大小。拟议的二次成本函数可最大程度地降低能耗,同时缓解网络拥塞和缓冲区溢出。提出的DP解决方案提供了Riccati方程,最终提供了最佳速率选择。仿真结果表明,与其他可用协议(例如,基于接收器的AutoRate(RBAR))相比,可以看到吞吐量提高了96%,能源效率提高了131%。

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