Air-seat interface observation key technology-data real-time water surface relay communication float

A key technology and interface technology, applied in the direction of buoys, measuring devices, special-purpose ships, etc., can solve the problems of limiting the application value of submersible buoys, and the inability to timely and effectively send back data in real time, so as to ensure the success rate, reduce the volume, and reduce the The effect of the sealing link

Pending Publication Date: 2018-09-18
OCEAN UNIV OF CHINA
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

This technology uses a special device called a boat that floats up or sinks down when it moves horizontally due to its own weight. By placing this device inside another chamber where there's no water between them, the space around these devices becomes smaller while still allowing for smooth movement without causing any problems like leakage from cracks caused during manufacturing processes. Additionally, the use of a separate vessel allows for easy maintenance and replacement of components within the system. Overall, this new design reduces fluid drag and makes navigation more stable over longer periods of time compared to traditional methods used in terrestrial communications systems.

Problems solved by technology

This patented technical problem addressed by this patents relates to improving the ability for submerged waterborne observers (subs) to gather more accurate environmental or situational data during exploration operations on both coastal areas and nearshore locations where they may encounter waves that could affect their performance.

Method used

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  • Air-seat interface observation key technology-data real-time water surface relay communication float
  • Air-seat interface observation key technology-data real-time water surface relay communication float
  • Air-seat interface observation key technology-data real-time water surface relay communication float

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Embodiment Construction

[0016] In order to further understand the invention content, characteristics and effects of the present invention, the following examples are given, and detailed descriptions are as follows in conjunction with the accompanying drawings:

[0017] see Figure 1 ~ Figure 4 , a key technology for air-sea interface observation-data real-time surface relay communication float, including a floating ball, a cylindrical airtight cabin and a carrying platform 9, the cylindrical airtight cabin is provided with a cylinder that runs through the floating ball Shaped body 13, the cylindrical body 13 extends along the vertical diameter of the floating ball, the lower end of the cylindrical sealed cabin protrudes from the floating ball, and the carrying platform 9 is set and fixed on the circle The lower end of the cylindrical airtight cabin, a tether beam 11 is suspended on the lower end of the cylindrical airtight cabin, and at least one pair of buoyant acoustic transducers 10 is installed on t

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Abstract

The invention discloses an air-seat interface observation key technology-data real-time water surface relay communication float. The air-seat interface observation key technology-data real-time watersurface relay communication float comprises a floating ball, a cylindrical sealed cabin and a carrying platform; a cylindrical body which runs through the floating ball is arranged on the cylindricalsealed cabin; the cylindrical body extends along the vertical diameter of the floating ball; the lower end part of the cylindrical sealed cabin extends out of the floating ball; the carrying platformis fixed at the lower end part of the cylindrical sealed cabin in a sleeving manner; at least one pair of float acoustic transducers is mounted on the carrying platform; a battery pack and a working module are mounted in the cylindrical sealed cabin in sequence from bottom to top; and a cable passing passage coaxial with the cylindrical sealed cabin is arranged in the battery pack. The air-seat interface observation key technology-data real-time water surface relay communication float has the advantages that the vertical stability is high, the vertical directivity of acoustic communication andsatellite communication can be guaranteed so that measuring data are more effectively passed back to a shore station monitoring center in real time.

Description

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Claims

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Application Information

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Owner OCEAN UNIV OF CHINA
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