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Pulse signal detection in cognitive UWB system 被引量:1
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作者 SONG Xiao-ou XIANG Xin +1 位作者 BI Du-yan DENG Yong 《The Journal of China Universities of Posts and Telecommunications》 EI CSCD 2012年第3期74-79,共6页
According to the problem of cognitive ultra wide-band (UWB) spectrum sensing, a novel UWB pulse signal detection algorithm based on cumulative sum (CUSUM) test is proposed in this paper. Based on the analysis of t... According to the problem of cognitive ultra wide-band (UWB) spectrum sensing, a novel UWB pulse signal detection algorithm based on cumulative sum (CUSUM) test is proposed in this paper. Based on the analysis of the existing spectrum sensing schemes for cognitive UWB system, some obvious facts are obtained that it is difficult to detect UWB pulse signal with conventional spectrum sensing schemes, due to its low average signal to noise ratio (SNR), large bandwidth, and low duty ratio. In this paper the detection algorithm of signal distribution change, which is application of CUSUM test, is considered to be applied to cognitive UWB spectrum sensing. But CUSUM test request that the pre-change and the post-change distributions are i.i.d, which cannot be satisfied in the detection process of UWB pulse signal. Since there are two time domain descriptions on UWB pulse signal, namely one contains only noise and the other one contains pulse signal plus noise, the existing detection algorithm of signal distribution change cannot be directly applied to detect UWB pulse signal. Hence the uniform probability density function expression of UWB pulse signal is first deduced, then CUSUM test is applied to cognitive UWB spectrum sensing. The proposed algorithm is a time sequential detection algorithm, with low complexity and minimal detection delay, which is suitable to detect the low duty ratio signal. Its performance is evaluated through theoretical analysis and numerical simulations. It is shown that this algorithm outperforms the conventional energy detection algorithm and conquers SNR wall phenomenon. 展开更多
关键词 cognitive uwb (cuwb spectrum sensing pulse signal cusum
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基于非参量CUSUM的认知超宽带频谱感知算法
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作者 宋晓鸥 向新 +1 位作者 毕笃彦 杨宝强 《信号处理》 CSCD 北大核心 2011年第8期1254-1258,共5页
提出了一种基于非参量CUSUM的超宽带信号快速检测算法,该算法针对认知超宽带频谱感知中超宽带信号检测问题,根据超宽带信号占空比低的特点,选择短时能量作为非参量CUSUM算法的观测统计量,将块检测思想和序列检测思想进行有机结合,克服... 提出了一种基于非参量CUSUM的超宽带信号快速检测算法,该算法针对认知超宽带频谱感知中超宽带信号检测问题,根据超宽带信号占空比低的特点,选择短时能量作为非参量CUSUM算法的观测统计量,将块检测思想和序列检测思想进行有机结合,克服了块检测算法的信噪比门限效应,并采用加滑动预处理窗的方式降低噪声对观测统计量的影响。本文通过自适应改变非参量CUSUM算法中Reference Value取值的方法,提出改进算法以进一步缩短检测延迟。仿真证明,占空比为1/10、信噪比为-25dB时,所提算法可在用户发送50个脉冲的时间内以90%的概率检测出主用户信号的存在,而能量检测算法在8dB时才能达到相同检测概率,且所提算法检测延迟小于能量检测算法。改进算法在-10dB≤SNR≤5dB时,改进算法检测延迟小于本文所提算法,但5dB<SNR时,检测延迟基本相同。 展开更多
关键词 认知超宽带 频谱感知 累加和(Cumulate Sum) 检测延迟
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一种适用于认知超宽带的CUSUM频谱感知算法
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作者 宋晓鸥 向新 +1 位作者 毕笃彦 陈顺方 《西安电子科技大学学报》 EI CAS CSCD 北大核心 2011年第6期173-178,共6页
提出了一种新的认知超宽带频谱感知算法,该算法适合检测低平均信噪比、低占空比的超宽带脉冲信号,且具有复杂度低、检测延迟性能优越的特点.论文根据超宽带脉冲信号特性,给出形式统一的低占空比接收信号概率密度函数表达式,并采用累加和... 提出了一种新的认知超宽带频谱感知算法,该算法适合检测低平均信噪比、低占空比的超宽带脉冲信号,且具有复杂度低、检测延迟性能优越的特点.论文根据超宽带脉冲信号特性,给出形式统一的低占空比接收信号概率密度函数表达式,并采用累加和(CUSUM)算法实施检测.仿真结果表明,该算法对低占空比信号具有良好的适应性,有效克服了能量检测的信噪比门限效应,且检测延迟性能优越. 展开更多
关键词 认知超宽带 频谱感知 累加和 检测延迟
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