哈尔滨工程大学学报
哈爾濱工程大學學報
합이빈공정대학학보
JOURNAL OF HARBIN ENGINEERING UNIVERSITY
2015年
1期
62-67
,共6页
李秀坤%夏峙%王向红%牟林
李秀坤%夏峙%王嚮紅%牟林
리수곤%하치%왕향홍%모림
水声探测%掩埋目标%混响%信号混叠%可分离性%信号分离%盲源分离
水聲探測%掩埋目標%混響%信號混疊%可分離性%信號分離%盲源分離
수성탐측%엄매목표%혼향%신호혼첩%가분리성%신호분리%맹원분리
underwater acoustic detection%buried target%reverberation%signal aliasing%separability%signal separa-tion%blind source separation
针对水下掩埋目标探测中目标回波信混比较低的问题,提出将混响视为一类信源的与目标回波盲分离方法,研究了目标回波与混响在时域统计特性、时频域以及时域波形上的可分离性与分离原则问题,解决了传统时频方法不适用于当混响与目标回波在时频域内混叠时的抑制混响问题。海上掩埋目标探测实验数据处理结果表明,经过时域二阶统计盲分离与时频域盲分离处理后,目标回波的信混比提高了约5 dB,在时频分布上可以更清楚的观察到目标几何亮点,从而提高对目标回波识别的准确性。
針對水下掩埋目標探測中目標迴波信混比較低的問題,提齣將混響視為一類信源的與目標迴波盲分離方法,研究瞭目標迴波與混響在時域統計特性、時頻域以及時域波形上的可分離性與分離原則問題,解決瞭傳統時頻方法不適用于噹混響與目標迴波在時頻域內混疊時的抑製混響問題。海上掩埋目標探測實驗數據處理結果錶明,經過時域二階統計盲分離與時頻域盲分離處理後,目標迴波的信混比提高瞭約5 dB,在時頻分佈上可以更清楚的觀察到目標幾何亮點,從而提高對目標迴波識彆的準確性。
침대수하엄매목표탐측중목표회파신혼비교저적문제,제출장혼향시위일류신원적여목표회파맹분리방법,연구료목표회파여혼향재시역통계특성、시빈역이급시역파형상적가분리성여분리원칙문제,해결료전통시빈방법불괄용우당혼향여목표회파재시빈역내혼첩시적억제혼향문제。해상엄매목표탐측실험수거처리결과표명,경과시역이계통계맹분리여시빈역맹분리처리후,목표회파적신혼비제고료약5 dB,재시빈분포상가이경청초적관찰도목표궤하량점,종이제고대목표회파식별적준학성。
Considering the low signal?reverberation ratio ( SRR) of target echoes in underwater buried object detec?tion, a method of separation between a target echo and reverberation is proposed. In this paper, the reverberation is regarded as a kind of source. The statistical characteristics of the target echo and reverberation in time domain and separation principle of waveform in time and time?frequency domains are researched. Addressing the problem related to the traditional signal processing method being inappropriate to suppress reverberation when target echo and rever?beration is aliasing in time?frequency domain is solved. The processing results of buried object detection experiment on the sea showed that the SRR of the target echo increases by 5 dB after the processing by the blind source separa?tion of two?order statistics in time domain and the blind source separation in time?frequency domain. The geomet?rical bright spot of the target can be observed clearly in time frequency distribution in which the accuracy of target echo recognition is improved.