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CDF of the spectral-efficiency of a simple distributed channel assignment algorithm in spatially distributed wireless networks

机译:空间分布式无线网络中简单分布式信道分配算法频谱效率的CDF

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The Cumulative-Distribution-Function (CDF) of the spectral efficiency of links in spatially distributed networks with orthogonal channels and a simple channel assignment algorithm is presented for constant link-lengths and nearest-neighbor links. Transmitters are randomly distributed on the plane with uniform probability, and receivers are either randomly distributed or at hexagonal lattice sites. This result includes random channel assignments as a special case. The CDF is used to find the spectral efficiency for a given, small outage probability which is used to optimize the number of channels to maximize the spectral efficiency. The optimum number of channels represents the best trade off between increasing Signal-to-Interference-Ratio (SIR) and reducing the communication bandwidth by channelization. For the system parameters presented here, a greater than three-fold increase in spectral efficiency is possible going from random channel selection to the best-faded-channel algorithm which requires just a marginal increase in complexity in duplex systems with reciprocity making it an attractive alternative to random channel assignments. Additionally, it is found that the hexagonal placement of receivers results in approximately twice the spectral efficiency compared to a random placement of receivers for the same receiver density and outage probability.
机译:针对恒定链路长度和最近邻居链路,提出了具有正交信道的空间分布网络中链路频谱效率的累积分布函数(CDF),并提出了一种简单的信道分配算法。发射器以均匀的概率随机分布在平面上,而接收器则随机分布在六边形格子位置。作为特殊情况,此结果包括随机信道分配。 CDF用于查找给定的小故障概率的频谱效率,该概率用于优化通道数以最大化频谱效率。最佳的信道数量代表了在增加信号干扰比(SIR)和通过信道化降低通信带宽之间的最佳折衷。对于此处介绍的系统参数,从随机信道选择到最佳衰落信道算法,频谱效率可能会提高三倍以上,而双相系统的复杂性仅需要一点点增加,而互惠性使其成为有吸引力的替代方案随机分配频道。另外,发现对于相同的接收器密度和中断概率,与随机放置接收器相比,接收器的六边形放置导致频谱效率大约提高两倍。

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