电子与信息学报
電子與信息學報
전자여신식학보
Journal of Electronics & Information Technology
2015年
11期
2769-2775
,共7页
信号检测%瞬态电磁辐射%微弱信号%广义互相关%混沌
信號檢測%瞬態電磁輻射%微弱信號%廣義互相關%混沌
신호검측%순태전자복사%미약신호%엄의호상관%혼돈
Signal detection%Transient electromagnetic%Weak signal%Generalized cross correlation%Chaos
该文以研究微弱瞬态电磁辐射信号的探测手段为目的,提出广义互相关与混沌序列预测相集成的检测算法。基于双天线测试和互相关信息估计方法,将低信噪比条件下非周期微弱放电信号的检测问题转化为周期性时延参数的估计问题,同时降低了噪声水平。基于混沌预测方法对其估计结果进行预测,得到的误差均值即为目标信号检测结果。通过仿真与实验分析对该方法的可行性进行了检验,结果表明:在低信噪比条件下利用集成方法可有效抑制噪声干扰的影响,相对于传统互相关估计法或混沌预测法而言,对微弱瞬态电磁辐射信号具有较高的检测概率,且需要的脉冲积累次数较少,提高了检测效率,比较适合用于微弱电磁辐射源的远距离探测。
該文以研究微弱瞬態電磁輻射信號的探測手段為目的,提齣廣義互相關與混沌序列預測相集成的檢測算法。基于雙天線測試和互相關信息估計方法,將低信譟比條件下非週期微弱放電信號的檢測問題轉化為週期性時延參數的估計問題,同時降低瞭譟聲水平。基于混沌預測方法對其估計結果進行預測,得到的誤差均值即為目標信號檢測結果。通過倣真與實驗分析對該方法的可行性進行瞭檢驗,結果錶明:在低信譟比條件下利用集成方法可有效抑製譟聲榦擾的影響,相對于傳統互相關估計法或混沌預測法而言,對微弱瞬態電磁輻射信號具有較高的檢測概率,且需要的脈遲積纍次數較少,提高瞭檢測效率,比較適閤用于微弱電磁輻射源的遠距離探測。
해문이연구미약순태전자복사신호적탐측수단위목적,제출엄의호상관여혼돈서렬예측상집성적검측산법。기우쌍천선측시화호상관신식고계방법,장저신조비조건하비주기미약방전신호적검측문제전화위주기성시연삼수적고계문제,동시강저료조성수평。기우혼돈예측방법대기고계결과진행예측,득도적오차균치즉위목표신호검측결과。통과방진여실험분석대해방법적가행성진행료검험,결과표명:재저신조비조건하이용집성방법가유효억제조성간우적영향,상대우전통호상관고계법혹혼돈예측법이언,대미약순태전자복사신호구유교고적검측개솔,차수요적맥충적루차수교소,제고료검측효솔,비교괄합용우미약전자복사원적원거리탐측。
To investigate the remote detecting approaches of weak transient electromagnetic signals, the detecting method based on the general cross correlation and chaotic time series prediction integrate algorithm is proposed. Based on the double antennas test and cross correlation information estimation, the signal detection of weak non-periodic discharge signal in low Signal to Noise Ratio (SNR) is transformed to the estimation of periodic time- delay parameters, which decreases the level of noise simultaneously. The results of estimation are predicted based on chaotic predicting method, and the mean value of predicting error is the detection results of target signal. The feasibility of the approach is analyzed by simulating and experimental method. The results show that in the low SNR, the integration method can effectively restrain the interference from noise. Compared with the traditional cross correlation method or chaotic prediction algorithm, the detecting probability is higher for weak transient electromagnetic signals. Furthermore, the pulse integrating algorithm needs the less accumulation times, and its detecting efficiency increases. Hence, the proposed integrate algorithm is suitable for remote detection of partial discharge source.