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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Cognitive ultra wideband radio spectrum sensing window length optimization algorithm
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Cognitive ultra wideband radio spectrum sensing window length optimization algorithm

机译:认知超宽带无线电频谱感知窗口长度优化算法

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A critical objective of cognitive radio (CR) system is to enhance the spectrum efficiency, and one of the key factors that can determine the spectrum efficiency is the system spectrum sensing performance with respect to sensing window length. For non-coherent detection-based sensing technique, the length of the sensing window required to meet the detection criteria is inversely proportional to the detected signal-to-noise ratio (SNR) of the primary users (PUs). This fact may result in an inadequate use of the white or gray space for the conventional CR system whose transmission and sensing window length are both fixed because a high detected PUs SNR can lead to an excessive long fixed sensing window which occupies the potential CR transmission opportunities while a low received PUs SNR can result in an insufficient sensing window length which degrades the CR detection criteria. In this paper, to improve the spectrum efficiency compared with the fixed sensing/transmission window length-based CR system, we propose an adaptive spectrum sensing window length optimization algorithm. We design the algorithm based on the ultra wideband (UWB) system which is an ideal candidate for the implementation of the CR technology. Based on the analysis of the CR-UWB’s spectrum sensing technique in terms of the factors such as spectrum efficiency, spectrum sensing length, PUs SNR, detection criteria etc., we formulate the optimization problem into a convex problem, which enables the proposed algorithm to find the optimal trade-off with low computational complexity between the sensing window length and the desired detection probabilities for the CR-UWB system. Compared with the conventional fixed length spectrum sensing techniques, the proposed algorithm is verified to be able to adapt the length of the CR-UWB’s transmission window according to the PUs SNR to optimize the use of the available spectrum while guaranteeing the PUs from being interfered.
机译:认知无线电(CR)系统的一个关键目标是提高频谱效率,而可以确定频谱效率的关键因素之一是相对于感测窗口长度的系统频谱感测性能。对于基于非相干检测的感测技术,满足检测标准所需的感测窗口的长度与主要用户(PU)的检测信噪比(SNR)成反比。这个事实可能会导致传统CR系统的空白或灰色空间使用不充分,因为其传输和检测窗口的长度都是固定的,因为检测到的PU SNR高会导致固定的检测窗口过长,从而占据潜在的CR传输机会接收到的PU SNR低会导致检测窗口长度不足,从而降低CR检测标准。与基于固定的传感/透射窗长的CR系统相比,本文提出了一种自适应频谱传感窗长优化算法。我们基于超宽带(UWB)系统设计算法,该算法是实施CR技术的理想人选。在分析CR-UWB频谱感知技术的基础上,从频谱效率,频谱感知长度,PUs SNR,检测标准等因素出发,将优化问题表述为凸问题,从而使所提算法能够在CR-UWB系统的感测窗口长度和所需检测概率之间以低计算复杂度找到最佳折衷方案。与传统的固定长度频谱感测技术相比,该算法经过验证,能够根据PU SNR调整CR-UWB传输窗口的长度,以优化可用频谱的使用,同时保证PU不受干扰。

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