Unmanned underwater vehicle deploying and retrieving system and deploying and retrieving method

A recovery system and submersible technology, applied in the field of unmanned submersible deployment and recovery, can solve the problems of low operation efficiency, low operator safety, and high risk, and achieve improved work efficiency, safe and convenient control, and anti-overturning. powerful effect

Active Publication Date: 2021-02-26
SHANGHAI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] 1) Human participation is required, and deployment and recovery are usually done manually. After completing the task, the unmanned submersible is now surfaced, and then manually salvaged. The safety of the operator is low and the risk is high;
[0005] 2) The semi-submersible ship lacks a corresponding fast locking device for the UUV, and the loosening and fixing process of the UUV on the semi-submersible ship is cumbersome and the fixing effect is poor;
[0006] 3) The maneuverability of the semi-submersible ship is not good, and at the same time, it has high requirements on sea conditions and the operation efficiency is not high

Method used

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  • Unmanned underwater vehicle deploying and retrieving system and deploying and retrieving method
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  • Unmanned underwater vehicle deploying and retrieving system and deploying and retrieving method

Examples

Experimental program
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Effect test

Embodiment 1

[0047]SeeFigure 1-Figure 5, An unmanned submarine deployment and recovery system:

[0048]Including the unmanned boat control module set in the control room of the semi-submersible unmanned boat 1. The unmanned boat control module is connected with the deployment and recovery device 4, the snorkeling module and the power module, and the deployment and recovery device 4 is set in the semi-submersible unmanned boat. In the middle position on the deck of the manned boat 1, the deployment and recovery device 4 is equipped with a positioning device, and the positioning device is set in the middle position of the deployment and recovery device 4; the unmanned boat control module is also connected with the boat affairs information processing module, The boat control module is mainly used for: 1) motion control of the semi-submersible unmanned boat 1, 2) snorkeling control of the semi-submersible unmanned boat 1, 3) information interaction with the boat information processing module; boat info...

Embodiment 2

[0055]The method for deploying and recovering the unmanned submarine using the above system includes the deployment process and the recovery process.

[0056]SeeFigure 6 , The deployment process includes the following steps:

[0057]S1. The operator sends instructions to the semi-submersible unmanned boat 1 through the remote monitoring module, giving the longitude and latitude information of the mission water area where the unmanned submarine 2 will dive; the semi-submersible unmanned boat 1 receives the navigation instructions, and the semi-submersible The boating information processing module of the unmanned boat 1 plans the route according to the received instructions, and the unmanned boat control module controls the semi-submersible unmanned boat 1 carrying the unmanned submarine 2 to sail to the mission area according to the route.

[0058]S2. The navigation and positioning module of the semi-submersible unmanned boat 1 automatically recognizes whether it has reached the mission water...

Embodiment 3

[0071]SeeFigure 8 , An unmanned submarine vehicle deployment and recovery system and deployment and recovery method, the difference from embodiment 1 is only that the power mechanism is connected with the splint; the reinforced frame 407 is provided with a rectangular block, and the rectangular block is provided with an inverted T-shaped groove , The inverted T-shaped groove is slidably connected with a horizontal T-shaped rod 413; the power mechanism is a clamping hydraulic cylinder 410, which is horizontally arranged on the bracket, and the piston rod of the clamping hydraulic cylinder 410 and the T-shaped rod 413 The vertical rods are arranged in parallel, and the rest are the same as in Example 1.

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Abstract

The invention belongs to the technical field of unmanned underwater vehicle deploying and retrieving, and discloses an unmanned underwater vehicle deploying and retrieving system and deploying and retrieving method. The system mainly comprises an unmanned ship control module, a deploying and retrieving device, a snorkeling module, a power module and a ship service information processing module which are arranged on a semi-submersible unmanned ship. The ship service information processing module is connected with a navigation positioning module, a target recognition device and a sensor module;the system also comprises a remote monitoring module which is arranged on the ground; the deploying and retrieving device comprises a locking device and an auxiliary clamping device matched with the locking device for use; the locking device can limit horizontal displacement and rotation of the unmanned underwater vehicle, and the auxiliary clamping device can limit vertical sliding of the unmanned underwater vehicle and has higher anti-overturning capacity. The invention solves the problem that in the prior art, when the unmanned underwater vehicle is laid and recovered through a semi-submersible ship, there is no device capable of automatically and rapidly laying and recovering the unmanned underwater vehicle.

Description

Technical field[0001]The invention relates to the technical field of deployment and recovery of unmanned submarine vehicles, in particular to an unmanned submarine vehicle deployment and recovery system and deployment and recovery method.Background technique[0002]As an important tool for ocean exploration, unmanned submersibles have received more and more attention from countries all over the world in recent years; unmanned submarines are generally released from the mother ship into the mission waters during missions, and they are recovered after the mission is completed; unmanned submarines The deployment and recovery of slag has always been an important subject of research.[0003]The current unmanned submarine deployment and recovery system based on semi-submersible ships has the following shortcomings:[0004]1) Human participation is required. Manual deployment is usually performed during deployment and recovery. After completing the mission, the unmanned submarine emerges from the...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B63B35/00B63B27/28
CPCB63B27/28B63B35/00B63B2035/008
Inventor 王曰英魏岩路楠周卫祥成敏吴乃龙杜鑫严怀成杨希祥罗均付俊
Owner SHANGHAI UNIV
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