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Applying Case-Based Reasoning to Tactical Cognitive Sensor Networks for Dynamic Frequency Allocation

机译:基于案例的推理在战术认知传感器网络中的动态频率分配

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摘要

In this paper, a cognitive radio engine platform is proposed for exploiting available frequency channels for a tactical wireless sensor network while aiming to protect incumbent communication devices, known as the primary user (PU), from undesired harmful interference. In the field of tactical communication networks, there is an urgent need to identify available frequencies for opportunistic and dynamic access to channels on which the PU is active. This paper introduces a cognitive engine platform for determining the available channels on the basis of a case-based reasoning technique deployable as a core functionality on a cognitive radio engine to enable dynamic spectrum access (DSA) with high fidelity. To this end, a plausible learning engine to characterize the channel usage pattern is introduced to extract the best channel candidate for the tactical cognitive radio node (TCRN). The performance of the proposed cognitive engine was verified by simulation tests that confirmed the reliability of the functional aspect, which includes the learning engine, as well as the case-based reasoning engine. Moreover, the efficacy of the TCRN with regard to the avoidance of collision with the PU operation, considered the etiquette secondary user (SU), was demonstrated.
机译:在本文中,提出了一种认知无线电引擎平台,用于开发战术无线传感器网络的可用频道,同时旨在保护称为主要用户(PU)的现有通信设备免受不希望的有害干扰。在战术通信网络领域,迫切需要确定可用的频率,以机会性和动态地访问PU处于活动状态的信道。本文介绍了一种认知引擎平台,用于基于案例的推理技术确定可用信道,该案例技术可部署为认知无线电引擎的核心功能,以实现高保真动态频谱访问(DSA)。为此,引入了一种合理的学习引擎来表征信道使用模式,以提取战术认知无线电节点(TCRN)的最佳候选信道。通过模拟测试验证了所提出的认知引擎的性能,该模拟测试确认了功能方面的可靠性,其中包括学习引擎以及基于案例的推理引擎。此外,还证明了TCRN在避免与PU作业发生冲突方面的有效性(考虑到礼节第二使用者(SU))。

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