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Power Control for Distributed MAC Protocols in Wireless Ad Hoc Networks

机译:无线Ad Hoc网络中分布式MAC协议的功率控制

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In centralized wireless networks, reducing the transmission power normally leads to higher network transport throughput. In this paper, we investigate power control in a different scenario, where the network adopts distributed MAC layer coordination mechanisms. We first consider widely adopted RTS/CTS based MAC protocols. We show that an optimal power control protocol should use higher transmission power than the "just enough" power in order to improve spatial utilization. The optimal protocol has a minimal transmission floor area of Theta(d_{ij}d_{max}), where d_{max} is the maximal transmission range and d_{ij} is the link length. This surprisingly implies that if a long link is broken into several short links, then the sum of the transmission floors reserved by the short links is still comparable to that reserved by the long link. Thus, using short links does not necessarily lead to higher throughput. Another consequence of this is that, with the optimal RTS/CTS based MAC, rate control can at best provide a factor of 2 improvement in transport throughput. We then extend our results to other distributed MAC protocols which uses physical carrier sensing or busy-tone as the control signal. Our simulation results show that the optimal power controlled scheme outperforms other popular MAC layer power control protocols.
机译:在集中式无线网络中,降低传输功率通常会导致更高的网络传输吞吐量。在本文中,我们研究了网络采用分布式MAC层协调机制的不同情况下的功率控制。我们首先考虑广泛采用的基于RTS / CTS的MAC协议。我们表明,最佳功率控制协议应使用比“足够”功率更高的传输功率,以提高空间利用率。最佳协议的传输底面积最小为Theta(d_ {ij} d_ {max}),其中d_ {max}是最大传输范围,而d_ {ij}是链路长度。令人惊讶地暗示,如果将长链路分成几个短链路,则由短链路保留的传输层的总和仍与由长链路保留的传输层的总和相当。因此,使用短链接不一定导致更高的吞吐量。这样做的另一个结果是,使用基于RTS / CTS的最佳MAC,速率控制最多可以将传输吞吐量提高2倍。然后,我们将结果扩展到其他分布式MAC协议,这些协议使用物理载波侦听或忙音作为控制信号。我们的仿真结果表明,最佳功率控制方案优于其他流行的MAC层功率控制协议。

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