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Device and method for measuring gravity center of waterborne carrier in motion state

A technology of motion state and measuring device, which is applied in the direction of measuring device, static/dynamic balance test, equipment for reducing ship motion, etc. It can solve problems such as inaccuracy and unreasonable method of determining the center of gravity, and achieve easy operation and fast Obtain results in real time to ensure the effect of safe production

Active Publication Date: 2019-08-02
THE FIRST INST OF OCEANOGRAPHY SOA
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AI Technical Summary

Problems solved by technology

[0004] Aiming at the irrationality and inaccuracy of the existing method for determining the center of gravity of the water carrier, the present invention provides a device and method for measuring the center of gravity of the water carrier that can accurately obtain the position of the center of gravity of the water carrier in real time

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  • Device and method for measuring gravity center of waterborne carrier in motion state
  • Device and method for measuring gravity center of waterborne carrier in motion state
  • Device and method for measuring gravity center of waterborne carrier in motion state

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Embodiment Construction

[0038] The specific embodiments of the present invention will be described in further detail below in conjunction with the drawings and embodiments. The following examples are used to illustrate the present invention, but not to limit the scope of the present invention.

[0039] A device for measuring the center of gravity of a water carrier in a motion state, including: GNSS signal receiving device, attitude sensor device, CPU data recording and processing device;

[0040] A GNSS signal receiving device that receives GNSS satellite signals in real time and calculates the geographic coordinates of the observation point. There are 4 or more stations, two of which are installed in the heading direction of the water carrier; the GNSS signal receiving device includes a GNSS receiving antenna , The GNSS receiving antenna receives the GNSS ranging code and the carrier signal, and receives the GNSS differential signal or the CORS station signal in real time. The GNSS receiving antenna in...

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Abstract

The invention provides a device for measuring the gravity center of a waterborne carrier in a motion state. The device is characterized by being provided with four or more GNSS signal receiving devices, a posture sensor device and a CPU data recording and processing device, wherein the GNSS signal receiving devices are used for receiving a GNSS satellite signal in real time, and calculating the geographic coordinates of an observing point; two of the GNSS signal receiving devices are arranged in the heading direction of the waterborne carrier; the posture sensor device is used for acquiring the posture values of rolling, pitching and heaving of the waterborne carrier in real time; and the CPU data recording and processing device is connected with each GNSS signal receiving device and the posture sensor, and used for recording the observing value of each device in real time, and processing the observation values to obtain the coordinates of the gravity center of the waterborne carrier under a waterborne carrier coordinate system. Through adoption of the device and method for measuring the gravity center of the waterborne carrier, the gravity center position of the waterborne carriercan be obtained accurately in real time specific to the problems of irrationality and inaccuracy of an existing waterborne carrier gravity center determining method.

Description

Technical field [0001] The invention relates to the field of center of gravity measurement, in particular to a device and method for measuring the center of gravity of a large-scale water carrier on the water in a sports state. Background technique [0002] The measurement technology of the center of gravity of the waterborne vehicle is very important for the weight and navigation safety of the waterborne vehicle. Due to the huge structure and weight of the water carrier itself, it is in a state of continuous swing, shaking and movement in the water. It is impossible to determine its center of gravity through the support method and the suspension method, and changes with its own cargo configuration and the supplement and consumption of fuel and fresh water , Its center of gravity will also change. [0003] The center of gravity of large-scale waterborne vehicles on the water is often obtained through estimation models based on the design model and construction materials during con...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01M1/12B63B39/12B63B39/14
CPCB63B39/12B63B39/14G01M1/122
Inventor 李治远胡俊吴永亭张海泉张彬彬豆虎林
Owner THE FIRST INST OF OCEANOGRAPHY SOA
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