实验频谱传感平台中传感性能的在线评估

Stratos Keranidis, Virgilios Passas, Kostas Chounos, Wei Liu, T. Korakis, I. Koutsopoulos, I. Moerman, L. Tassiulas
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引用次数: 2

摘要

动态频谱接入旨在利用未充分利用的频段来改善无线网络性能。在这种情况下,采用频谱感知,以监测频谱占用并推动适当的适应决策。该领域的研究人员主要根据检测精度和自由频谱利用效率来评估所提出的传感方法。在这项工作中,我们的重点是在线评估频谱占用相对于传感延迟和能源效率。在最近的实验发展中,关于这两个指标的频谱传感方法的评估相当滞后。首先是频谱感知过程引起的延迟及其对感知效率的影响,这与认知解决方案的最终性能密切相关。另一方面,在所有类型的无线通信中,能量消耗被认为是一个至关重要的问题。因此,为了使认知试验台具备先进的监测能力,扩展现有的试验台实验工具并开发新的试验台是很重要的。为此目的,我们将提议的监测程序与CREW试验台联盟的实验工具结合起来。为了证明我们的框架的适用性,我们通过实验验证了四种不同传感平台的性能,以及根据上述指标在软件定义无线电上实现并行处理的实时频谱传感引擎。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Online assessment of sensing performance in experimental spectrum sensing platforms
Dynamic Spectrum Access aims at exploiting underutilized frequency bands towards improving wireless network performance. In this context, spectrum sensing is employed, in order to monitor spectrum occupancy and drive appropriate adaptation decisions. Researchers in the field primarily evaluate proposed sensing approaches in terms of detection accuracy and efficiency of free spectrum utilization. In this work, we focus on online assessment of spectrum occupancy with respect to sensing delay and energy efficiency. Evaluation of spectrum sensing methods with respect to these two metrics is rather lagging in recent experimental developments. The first is related to the latency induced by the spectrum sensing process and its impact on sensing efficiency, which is tightly connected to the resulting performance of the cognitive solution. On the other hand, energy consumption is considered as a crucial issue in all types of wireless communications. Therefore, it is important to extend existing testbed experimentation tools and develop new ones, in order to equip cognitive testbeds with such advanced monitoring capabilities. To this aim, we integrated the proposed monitoring procedure with the experimentation tools of the CREW testbed federation. In order to demonstrate the applicability of our framework, we experimentally validate the performance of four different sensing platforms, as well as a real-time spectrum sensing engine that implements parallel processing on software defined radios, in terms of the aforementioned metrics.
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