IP Library Granted Patent US 11,408,401
Granted Patent B2
US 11,408,401 · App. 16/381,169 · Granted Aug 9, 2022

Robotic access system including robotic fan crawler for wind blade inspection and maintenance

Inventors: Todd William Danko (Niskayuna, NY); Judith Ann Guzzo (Niskayuna, NY); John Robert Hoare (Latham, NY); Yakov Polishchuk (Niskayuna, NY); Douglas Forman (Niskayuna, NY); Shiraj Sen (Clifton Park, NY)
Assignee: General Electric Company
F03D80/50B62D57/024
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Quick Facts
Patent No.
US 11,408,401
App. No.
16/381,169
Granted
Aug 9, 2022
Kind
B2
Abstract

A robotic access system including a robotic fan crawler configured to traverse a surface of a wind turbine and perform one or more tasks. The robotic fan crawler includes one or more fans to adhere the robotic fan crawler to the surface of the wind turbine and one or more driving components to drive the robotic fan crawler along the surface of the wind turbine. The robotic fan crawler further includes one or more omnidirectional cameras operable to capture images of the surface from multiple perspectives during an inspection activity and data collection period. One or more steering components provide directional changes of the robotic fan crawler during operation. A tether cable is coupled to the robotic fan crawler and a tether management system to provide one or more of power, communications, grounding, supplies and distance calculations.

Claims (16)

1. A robotic access system for climbing a sloped, interior surface of a blade of a wind turbine, the robotic access system comprising:

a robotic fan crawler configured to traverse and climb a sloped, interior surface of a wind turbine away from a base or hub, and perform one or more tasks, the robotic fan crawler comprising:

a suction fan comprising a pivoting mechanism to adhere the robotic fan crawler to the surface of the wind turbine, to drive the robotic fan crawler along the surface of the wind turbine, and to control a position of the robotic fan crawler;

one or more omnidirectional cameras operable to capture images of the surface of the wind turbine from multiple perspectives during an inspection tasks and data collection period; and

one or more steering components that provide directional control of the robotic fan crawler during operation,

a tether cable coupled to the robotic fan crawler;

a tether management system coupled to the tether cable; and

a control system communicatively coupled to one or more of the robotic fan crawler and the tether management system;

wherein the tether cable provides a tension to control a position of the robotic fan crawler as the robotic fan crawler traverses and climbs the sloped, internal surface of the wind turbine; and

wherein the control system determines the position of the robotic fan crawler, based at least in part on the tension, during ascent of the robotic fan crawler during operation.

2. The robotic access system of claim 1 , wherein the tether management system is located at one of a base location or a hub of the wind turbine and wherein the tether cable is configured to provide one or more of power, communications, grounding, supplies and distance calculations.

3. The robotic access system of claim 1 , wherein the one or more steering components are non-powered wheels.

4. The robotic access system of claim 1 , wherein the fan is configured to provide both a suction force to adhere the robotic fan crawler to the sloped, internal surface of the wind turbine and a driving force to drive the robotic fan crawler along the sloped, internal surface of the wind turbine, wherein the pivoting mechanism to provides orientation of the fan to redirect at least a portion of an airflow from the suction force to the driving force, and wherein the one or more steering components are non-powered wheels that provide the directional control and also crabbing control of the robotic fan crawler.

5. The robotic access system of claim 1 , wherein the one or more driving components are powered wheels to provide a driving force to drive the robotic fan crawler along the surface of the wind turbine.

6. The robotic access system of claim 1 , wherein the robotic access system is configured for use by a human inspector to view areas of interest along the surface of the wind turbine.

7. The robotic access system of claim 1 , wherein the robotic access system is configured to detect indications on the surface of the wind turbine autonomously.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2024
From: LM WIND POWER US TECHNOLOGY APS
To: GE INFRASTRUCTURE TECHNOLOGY LLC
Reel/Frame 066869/0770 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2023
From: GENERAL ELECTRIC COMPANY
To: LM WIND POWER US TECHNOLOGY APS
Reel/Frame 065531/0160 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2019
From: DANKO, TODD WILLIAM; GUZZO, JUDITH ANN; HOARE, JOHN ROBERT; POLISHCHUK, YAKOV; FORMAN, DOUGLAS; SHIRAJ, SEN
To: GENERAL ELECTRIC COMPANY
Reel/Frame 048856/0778 →
Continuity (1)
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