IP Library Patent Application 18531243
Patent Application
App. No. 18/531,243

REAL-TIME FEED PIPE MONITORING

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Quick Facts
Patent No.
US None
App. No.
18/531,243
Abstract

Methods, systems, and apparatus, including computer programs encoded on computer storage media, for real-time monitoring of an aquaculture feeding system using Time Domain Reflectometry (TDR). In one aspect, an aquaculture feeding system comprises: a feed pipe arranged between a dosing system and a fish pen; a feed pipe monitoring subsystem comprising one or more controlled impedance cables arranged along the feed pipe, and a pulse generator configured to generate a series of pulses at a predetermined pulse rate to be transmitted through the controlled impedance cables; and a controller subsystem connected to the feed pipe monitoring subsystem, the controller subsystem configured to: monitor pulse responses along the controlled impedance cables; and detect, from the pulse responses, a condition of the feed pipe.

Claims (45)

1 . An aquaculture feeding system comprising:

a feed pipe arranged between a dosing system and a fish pen;

a feed pipe monitoring subsystem comprising one or more controlled impedance cables along the feed pipe, and a pulse generator configured to generate a series of pulses at a predetermined pulse rate to be transmitted through the controlled impedance cables; and

a controller subsystem connected to the feed pipe monitoring subsystem, the controller subsystem configured to:

monitor pulse responses along the controlled impedance cables; and

detect, from the pulse responses, a condition of the feed pipe.

2 . The aquaculture feeding system of claim 1 , wherein detecting the condition of the feed pipe comprises detecting an abnormality in the feed pipe.

3 . The aquaculture feeding system of claim 2 , wherein detecting the fault in the feed pipe comprises detecting a location or a type of the abnormality in the feed pipe.

4 . The aquaculture feeding system of claim 3 , wherein the type of the abnormality in the feed pipe comprises a leakage, a clog, or a breakage of the feed pipe.

5 . The aquaculture feeding system of claim 1 , wherein the pulse generator comprises a Time Domain Reflectometry (TDR) pulse generator that is configured to generate TDR pulses.

6 . The aquaculture feeding system of claim 5 , wherein monitoring the pulse responses along the controlled impedance cables comprises:

monitoring time domain TDR pulse responses of the controlled impedance cables; and

determining a voltage level change in the time domain TDR pulse responses.

7 . The aquaculture feeding system of claim 5 , wherein detecting the condition of the feed pipe comprises:

obtaining a first Time Domain Reflectometry (TDR) pattern of the feed pipe; and

detecting the condition by comparing the first TDR pattern with a second TDR pattern that indicates an expected TDR pattern for a feed pipe without any abnormalities.

8 . The aquaculture feeding system of claim 1 , wherein monitoring the pulse responses along the controlled impedance cables comprises:

performing simultaneous analog-to-digital sampling of the pulse responses.

9 . The aquaculture feeding system of claim 1 , wherein monitoring the pulse responses along the controlled impedance cables comprises:

performing dynamic spatial resolution modification of the pulse responses.

10 . The aquaculture feeding system of claim 1 , wherein the one or more controlled impedance cables comprise one or more twin-lead cables.

11 . The aquaculture feeding system of claim 1 , wherein the controller subsystem is also configured to determine, from the pulse responses, one or more of the following:

underwater motion of the feed pipe;

density of feed in the feed pipe;

velocity of the feed moving along the feed pipe; or

estimate of an amount of feed to be delivered to the enclosure.

12 . The aquaculture feeding system of claim 1 , wherein the controller subsystem is also configured to transmit a message to the dosing system as a result of detecting the condition.

13 . A method, comprising:

generating, by a pulse generator of a feed pipe monitoring subsystem, a series of pulses at a predetermined pulse rate to be transmitted through one or more controlled impedance cables arranged along a feed pipe arranged between a dosing system and a fish pen;

monitoring, by a controller subsystem connected to the feed pipe monitoring subsystem, pulse responses along the controlled impedance cables; and

detecting, by the controller subsystem connected to the feed pipe monitoring subsystem from the pulse responses, a condition of the feed pipe.

14 . The method of claim 13 , wherein detecting the condition of the feed pipe comprises detecting a fault in the feed pipe.

15 . The method of claim 14 , wherein detecting the fault in the feed pipe comprises detecting a location or a type of the fault in the feed pipe.

16 . The method of claim 15 , wherein the type of the fault in the feed pipe comprises a leakage, a clog, or a breakage of the feed pipe.

17 . The method of claim 13 , wherein the pulse generator comprises a Time Domain Reflectometry (TDR) pulse generator that is configured to generate TDR pulses.

18 . The method of claim 17 , wherein monitoring the pulse responses along the controlled impedance cables comprises:

monitoring time domain TDR pulse responses of the controlled impedance cables; and

determining a voltage level change in the time domain TDR pulse responses.

19 . The method of claim 17 , wherein detecting the condition of the feed pipe comprises:

obtaining a first Time Domain Reflectometry (TDR) pattern of the feed pipe; and

detecting the condition by comparing the first TDR pattern with a second TDR pattern that indicates an expected TDR pattern for a feed pipe without any faults.

20 . A computer storage medium encoded with a computer program, the program comprising instructions that are operable, when executed by data processing apparatus, to cause the data processing apparatus to perform operations comprising:

generating, by a pulse generator of a feed pipe monitoring subsystem, a series of pulses at a predetermined pulse rate to be transmitted through one or more controlled impedance cables arranged along a feed pipe arranged between a dosing system and a fish pen;

monitoring, by a controller subsystem connected to the feed pipe monitoring subsystem, pulse responses along the controlled impedance cables; and

detecting, by the controller subsystem connected to the feed pipe monitoring subsystem from the pulse responses, a condition of the feed pipe.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2024
From: X DEVELOPMENT LLC
To: TIDALX AI INC.
Reel/Frame 068477/0306 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2023
From: SWANSON, THOMAS ROBERT; PHAM, HARRISON
To: X DEVELOPMENT LLC
Reel/Frame 065885/0751 →