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Comparison of Cell Sizes for Cost Efficient Deployment of a Sensor Network Aided Cognitive Radio System

机译:用于传感器网络辅助认知无线电系统的低成本部署的小区大小比较

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摘要

To exploit spectrum resources on a secondary basis, a Sensor Network Aided Cognitive Radio Network uses a wireless sensor network that assists a secondary cognitive radio network by providing information about the current primary spectrum occupancy. In this paper we determine the performance for different cell sizes when considering the costs for deployment of base stations in a secondary network that exploits spectrum holes identified by the wireless sensor network. The secondary base station is deployed co-located with a mobile primary network that uses a cellular reuse pattern with seven frequencies. Performance of the secondary system and impact on the primary system are mainly studied in terms of throughput, packet loss and coverage when using spectrum holes in the space, time and frequency domains. Especially, we find that the cell size and configured transmit powers for the secondary system are important for optimal system performance, and that smaller cell sizes and less expensive base stations for the secondary system are beneficial. The impact on primary system performance was found to be low, but that optimal tuning of the sensor network is important.
机译:为了在次要基础上利用频谱资源,传感器网络辅助认知无线电网络使用无线传感器网络,该无线传感器网络通过提供有关当前主要频谱占用的信息来辅助次要认知无线电网络。在本文中,当考虑利用无线传感器网络识别的频谱空洞的辅助网络中的基站部署成本时,我们确定不同小区大小的性能。辅助基站与使用7个频率的蜂窝复用模式的移动主网络位于同一位置。当在空域,时域和频域中使用频谱孔时,主要从吞吐量,数据包丢失和覆盖范围等方面研究辅助系统的性能以及对主要系统的影响。尤其是,我们发现辅助系统的小区大小和配置的发射功率对于优化系统性能很重要,而较小的小区大小和较便宜的基站对于辅助系统是有益的。发现对主系统性能的影响很小,但是传感器网络的最佳调整很重要。

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