一种自主可控声速剖面测量仪系统

By employing the time-of-flight method and wire-wound probe deployment technology in the ocean sound velocity profiler, the problems of low measurement rate and low accuracy in existing technologies have been solved, achieving efficient sound velocity profile data measurement, improving measurement accuracy and deployment speed, and expanding application scenarios.

CN116222737BActive Publication Date: 2026-07-17HAIYING ENTERPRISE GROUP

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
HAIYING ENTERPRISE GROUP
Filing Date
2022-12-07
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing ocean sound velocity measurement methods suffer from low measurement rates, low accuracy, and limitations on probe deployment speed due to mechanical transmission mechanisms, making it difficult to achieve efficient sound velocity profile data measurement.

Method used

The sound velocity is measured by combining the time-of-flight method with a TDC chip, and the probe is deployed in a winding mode controlled by an electronic control module to achieve efficient probe deployment and retrieval, combined with depth, sound velocity and temperature data acquisition.

Benefits of technology

It significantly improves the accuracy and speed of sound velocity measurement, with the probe lowering speed reaching 3.5m/s to 4m/s, reducing measurement time, expanding application scenarios, lowering costs, and improving measurement efficiency.

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Abstract

本发明涉及一种自主可控声速剖面测量仪系统,所述测量仪系统设于海洋水文船上,且基于电控模组、探头、外部的收绕装置设计,包括绕线机绕线;探头下放;深度数据采集;声速、温度数据采集;探头回收、声线计算及绘制;本发明的测量仪系统采用了飞跃时间法进行声速测量,声速测量的精度和速率都大幅提高。同时本发明在传统绞车吊放、回收探头进行声速剖面数据测量的基础上,增加了一种绕线模式的探头布放技术,下放速度能够达到3.5m / s~4m / s。大大节省了一次收放的时间,探头配备了大容量电池供电,既可以多次反复使用降低成本,又可以提高测量效率。
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