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首页> 外文期刊>International Journal of Applied Engineering Research >Optimal Power Control Algorithm for Multi-Radio Multi-Channel Wireless Mesh Networks
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Optimal Power Control Algorithm for Multi-Radio Multi-Channel Wireless Mesh Networks

机译:多无线电多通道无线网状网络的最优功率控制算法

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Multi-Radio Multi-Channel Wireless mesh networks (MRMC WMNs) is the self-configuring backhaul providing internet access for last mile users through multi-hop forwarding. The increasing demand for low cost wireless networks coverage has motivated a high interest in multi-hop communications based recent and significant IEEE 802.11s WMN standard. One of the main challenges being faced by WMN is co-channel interference. Co-channel interference badly affects the WMN and degrades the network performance. Power control is an effective means for reducing the co-channel interference. Power control plays a very important role in order to restrict the transmission range as well as interference range and prevent unwanted interference between various nodes. By controlling the transmission power of each node up to desired transmission range, the co-channel interference can be reduced and improves the network performance. Transmitter gain, receiver gain, receiving threshold value, distance between nodes are the important factors that must be considered to find required minimum transmission power. Most of the existing work simply assume that each transmitter should use the fixed minimum transmit power needed to reach its receiver, and this would maximize the network capacity by reducing the co-channel interference. This paper proposes an Optimal Power Control algorithm to find the minimum transmission power required for each node based on the above important factors and its effect has been analyzed in terms of throughput, packet delay and packet loss. It has been observed that the proposed algorithm performs better and obtained better results as compare to the fixed power allocation approach.
机译:多无线电多通道无线网状网络(MRMC WMNS)是通过多跳转转移为上一英里用户提供互联网访问的自配置回程。越来越多的低成本无线网络覆盖的需求促使基于多跳通信的基于多跳通信的高度兴趣了最近和重要的IEEE 802.11s WMN标准。 WMN面临的主要挑战之一是共信道干扰。共信道干扰严重影响WMN并降低网络性能。功率控制是减少共信道干扰的有效手段。功率控制扮演非常重要的作用,以限制传输范围以及干扰范围,并防止各种节点之间的不希望的干扰。通过控制每个节点的传输功率直达期望的传输范围,可以减少共信道干扰并提高网络性能。发射机增益,接收器增益,接收阈值,节点之间的距离是必须被认为找到所需的最小传输功率的重要因素。大多数现有工作只是假设每个发射器应该使用到达其接收器所需的固定最小发射功率,这将通过降低共信道干扰来最大化网络容量。本文提出了最佳功率控制算法,以了解基于上述重要因素的每个节点所需的最小传输功率,并且在吞吐量,分组延迟和丢包方面已经分析了其效果。已经观察到所提出的算法更好地执行并获得与固定功率分配方法相比的更好的结果。

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