声学技术
聲學技術
성학기술
Technical Acousitics
2014年
5期
412-416
,共5页
双曲线调频信号%线性调频信号%水声遥测%多普勒频移
雙麯線調頻信號%線性調頻信號%水聲遙測%多普勒頻移
쌍곡선조빈신호%선성조빈신호%수성요측%다보륵빈이
large eddy simulation%acoustic analogy%aeroacoustics
对于高速、强机动的水下目标来说,其航行参数信息的实时遥测具有重要意义。水声信号的多普勒频移估计与补偿是水声遥测的关键技术之一,它直接影响着水声遥测的效果与性能。针对双曲线调频信号及线性调频信号进行仿真分析,对比在相同情况下的多普勒频偏可补偿性,仿真实验证明双曲线调频信号具备较高的多普勒容限,其时延值估计精度可达到1μs。结合工程实际,采用双曲调频信号与单频信号组合的方式进行水声遥测,充分发挥双曲线调频信号的多普勒不变性和单频信号对多普勒频移的敏感性,在获得较高定位精度的同时,也具备高精度的水声遥测功能。该组合信标信号经过湖上试验验证,具有遥测精度高、误码率低、易于实现等优点,可直接应用于相关水声工程中。
對于高速、彊機動的水下目標來說,其航行參數信息的實時遙測具有重要意義。水聲信號的多普勒頻移估計與補償是水聲遙測的關鍵技術之一,它直接影響著水聲遙測的效果與性能。針對雙麯線調頻信號及線性調頻信號進行倣真分析,對比在相同情況下的多普勒頻偏可補償性,倣真實驗證明雙麯線調頻信號具備較高的多普勒容限,其時延值估計精度可達到1μs。結閤工程實際,採用雙麯調頻信號與單頻信號組閤的方式進行水聲遙測,充分髮揮雙麯線調頻信號的多普勒不變性和單頻信號對多普勒頻移的敏感性,在穫得較高定位精度的同時,也具備高精度的水聲遙測功能。該組閤信標信號經過湖上試驗驗證,具有遙測精度高、誤碼率低、易于實現等優點,可直接應用于相關水聲工程中。
대우고속、강궤동적수하목표래설,기항행삼수신식적실시요측구유중요의의。수성신호적다보륵빈이고계여보상시수성요측적관건기술지일,타직접영향착수성요측적효과여성능。침대쌍곡선조빈신호급선성조빈신호진행방진분석,대비재상동정황하적다보륵빈편가보상성,방진실험증명쌍곡선조빈신호구비교고적다보륵용한,기시연치고계정도가체도1μs。결합공정실제,채용쌍곡조빈신호여단빈신호조합적방식진행수성요측,충분발휘쌍곡선조빈신호적다보륵불변성화단빈신호대다보륵빈이적민감성,재획득교고정위정도적동시,야구비고정도적수성요측공능。해조합신표신호경과호상시험험증,구유요측정도고、오마솔저、역우실현등우점,가직접응용우상관수성공정중。
For high-speed underwater target of strong maneuverability, the real-time telemetry of the navigation para-meters is important. Doppler shift estimation and compensation of underwater acoustic signal is one of those key techniques for the underwater acoustic telemetry, which directly affects the effectiveness and performance of the tele-metry. In this article, Doppler shift is compensated for both HFM and LFM signals by simulation, and the analysis and comparison in the same conditions are made. Simulation results show that hyperbolic frequency modulated (HFM) signal has higher Doppler tolerance, and the estimation accuracy for time delay can be achieved by 1μs. In practical applications, the HFM signal is combined with a single frequency signal for underwater acoustic telemetry. Thus, both the Doppler invariance of the HFM signal and the Doppler shift sensitivity of the single-frequency signal can fully play important roles in obtaining high positioning accuracy to realize high-precision underwater acoustic telemetry. The ef-fectiveness of this combined beacon signal has been verified through lake trial. The testing results show that this signal has the characteristics of higher telemetry precision and lower error rate. And, this signal is easy to be implemented, so can be directly applied to the relevant underwater acoustic engineering projects.