Per-node throughput performance of overlapping Cognitive Radio networks

Jari Nieminen, Lijun Qian, R. Jäntti
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引用次数: 6

Abstract

Multiple Cognitive Radio (CR) networks may exist in the same spatial domain in many cases. In this paper we consider two uncoordinated and geographically overlapping CR networks coexisting together with a primary network. We specifically study the achievable per-node throughput performance of the CR networks. Firstly, an interference model is specified which models the situation. By using this model we derive the per-node throughput for overlapping CR networks. Furthermore, the upper bound for the probability of false alarm, which is required to achieve a certain throughput, is deduced. The results of this paper illustrate how the different CR network parameters, such as network density, transmission probability, and sensing performance, affect the achievable per-node throughput in overlapping CR networks. In addition, these results serve as guidance for the deployment of multiple CR networks.
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重叠认知无线电网络的每节点吞吐量性能
在许多情况下,同一空间域中可能存在多个认知无线电网络。本文考虑两个不协调且地理上重叠的CR网络与一个主网络共存。我们特别研究了CR网络可实现的每节点吞吐量性能。首先,指定了一个干扰模型来模拟这种情况。利用该模型推导了重叠CR网络的每节点吞吐量。进一步推导了达到一定吞吐量所需的虚警概率的上界。本文的结果说明了不同的CR网络参数,如网络密度、传输概率和感知性能,如何影响重叠CR网络中可实现的每节点吞吐量。此外,这些结果对多CR网络的部署具有指导意义。
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