基于传感器网络的认知无线电网络频谱感知

Muhammad Usman, Koo Insoo
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引用次数: 5

摘要

网络寿命和能量消耗是无线传感器网络的主要问题,而对主用户的保护是认知无线电网络中最重要的活动,这就要求认知无线电能够及时、准确地检测到主用户的信号。我们提出了一种网络架构,通过有效地消耗能量来延长网络的寿命,并通过提高单个无线电的感知精度来保证对主用户的保护。该网络由移动认知无线电和基础设施无线传感器节点组成。传感器节点利用其空间分异,对移动认知无线电进行频谱感知。在该网络中,位于认知无线电通信范围内的传感器节点根据其距离组成集群。由于认知无线电的移动性,集群定期更新,并进一步划分为不相交的子集群,这些子集群通过停用冗余传感器节点形成。为了节约能源,集群中的一个子集群保持活动状态,而其他子集群则切换到睡眠模式。通过仿真证明了该网络的有效性,该有效性是由能耗、寿命和检测误差决定的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sensor network-based spectrum sensing for cognitive radio network
Network lifetime and energy consumption are major issues in wireless sensor networks while protection of the primary user is the most important activity in a cognitive radio network that necessitates the cognitive radios to detect the primary user signal promptly and accurately. We propose a network architecture that increases lifetime of the network by efficiently consuming energy and guarantees protection of the primary user by enhancing the sensing accuracy of a single radio. The proposed network consists of mobile cognitive radios and infrastructure wireless sensor nodes. The sensor nodes, exploiting their spatial diversity, perform spectrum sensing for the mobile cognitive radios. In the proposed network, sensor nodes laying in the communication range of the cognitive radios form clusters based on their distances. The clusters are regularly updated due to mobility of the cognitive radios and are further divided into disjoint sub-clusters, which are formed by deactivating the redundant sensor nodes. For energy conservation, one of the sub-clusters in a cluster remains active while others are switched to sleep mode. Effectiveness of the proposed network, which is determined in terms of energy consumption, lifetime, and detection error, is shown through simulations.
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