Bionic jellyfish type mariculture ocean ranching full-dimensional monitoring device and monitoring operation method thereof

The marine ranch monitoring equipment, designed in the shape of a jellyfish, utilizes a negative pressure vacuum water tank and a single power source synchronous drive mechanism. Combined with an underwater acoustic communication base station and a sea surface communication base station, it solves the problems of large propulsion disturbance, high communication cost, and low level of intelligence of existing equipment, and achieves a full-process monitoring effect with low disturbance, high stability, high level of intelligence, and long endurance.

CN122408714APending Publication Date: 2026-07-17HUAQIAO UNIVERSITY
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
HUAQIAO UNIVERSITY
Filing Date
2026-04-30
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing marine ranch monitoring equipment suffers from problems such as large propulsion disturbances, high communication costs, low intelligence levels, and poor endurance adaptability, making it difficult to meet the monitoring needs of deep-sea areas.

Method used

Adopting a biomimetic jellyfish design, combined with a negative pressure vacuum water tank, a single power source synchronous drive mechanism, an underwater acoustic communication base station, and a sea surface communication base station, it achieves full-dimensional monitoring with low disturbance, high stability, high level of intelligence, and strong endurance.

Benefits of technology

It achieves full-process monitoring of marine ranches with low disturbance, high biocompatibility, reliable communication, high level of intelligence, and long endurance, and is applicable to nearshore to deep-sea environments.

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Abstract

本申请属于海洋牧场监测技术领域,其公开了一种仿生水母式海洋牧场全维监测设备及其监测作业方法。该设备包括移动式仿生水母监测主体、水下水声通信基站、海面通信基站及数字孪生监控平台;移动式仿生水母监测主体采用 “负压 ‑ 同步 ‑ 变胞” 三位一体仿生驱动,集成多类传感器采集环境参数;水下水声通信基站与海面通信基站构建三级通信链路实现数据稳定传输;数字孪生监控平台实现环境实时映射、智能预警与远程调控。本申请解决了传统监测设备推进扰动大、通信成本高、智能化程度低的技术问题,具有低扰动、高生物亲和性、通信可靠、智能化程度高、续航长的优点,适用于近岸至深远海的海洋牧场全流程监测。
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