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Cognitive Radio Operation under Directional Primary Interference and Practical Path Loss Models

机译:定向主要干扰和实际路径损耗模型下的认知无线电操作

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This paper discusses the possibility of deploying a short-range cognitive radio (secondary communication system) within the service area of a primary system. Although the secondary system interferes with the primary system, there are certain locations in the service area of the primary system where the cognitive radio can reuse the frequency of the primary system without causing harmful interference to it and being disturbed by the primary system. These locations are referred to as having a spatial opportunity for communications in the secondary system, since it can reuse the frequency of the primary system. Simulation results indicate that the antenna gain, beamwidth, and propagation path loss greatly affect the spatial opportunity of frequency reuse for the secondary users. The results show that spatial spectrum reuse can be significantly increased when the primary system users are equipped with directional antennas. An important component in this study is the heterogeneous path loss model, i.e., the path loss model within the primary system is different from the model used to calculate the interference between the primary and the secondary systems. Our results show that the propagation models corresponding to the actual antenna heights in the primary/secondary system can largely impact the possibilities for spectrum reuse by the cognitive radios.
机译:本文讨论了在主要系统的服务区域内部署短距离认知无线电(二次通信系统)的可能性。尽管辅助系统会干扰主要系统,但是在主要系统的服务区域中仍有某些位置,认知无线电可以重用主要系统的频率,而不会对其造成有害干扰并不受主要系统的干扰。这些位置被称为在次级系统中具有通信的空间机会,因为它可以重用初级系统的频率。仿真结果表明,天线增益,波束宽度和传播路径损耗极大地影响了次要用户频率复用的空间机会。结果表明,当主要系统用户配备定向天线时,空间频谱的复用将大大增加。这项研究的重要组成部分是异构路径损耗模型,即,主系统中的路径损耗模型与用于计算主系统和辅助系统之间干扰的模型不同。我们的结果表明,与主要/辅助系统中实际天线高度相对应的传播模型会极大地影响认知无线电频谱复用的可能性。

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