Szczegóły publikacji

Opis bibliograficzny

An integrated robotic system: experimental validation of fault detection robot for overhead cranes / Arun Kumar YADAV, Janusz SZPYTKO // W: Automation 2025: recent advances in automation, robotics and measurement techniques / eds. Roman Szewczyk, [et al.]. — Switzerland : Springer, cop. 2026. — ( Lecture Notes in Networks and Systems ; ISSN  2367-3370 ; 1687 ). — ISBN: 978-3-032-08358-6; e-ISBN: 978-3-032-08359-3. — S. 224–233. — Bibliogr., Abstr. — Publikacja dostępna online od: 2025-10-30

Autorzy (2)

Słowa kluczowe

wheeled robotGMR sensorcrack detectionmagnetic adhesionclimbing robotnon destructive testing

Dane bibliometryczne

ID BaDAP164243
Data dodania do BaDAP2025-12-09
DOI10.1007/978-3-032-08359-3_21
Rok publikacji2026
Typ publikacjifragment książki
Otwarty dostęptak
WydawcaSpringer
Czasopismo/seriaLecture Notes in Networks and Systems

Abstract

The purpose of this paper is to propose a new model of magnetic wheeled climbing robot for climbing various types of structures that include significant obstacles, besides inspection of industrial vessels made of various materials, including non-ferromagnetic material. The inspection consists of live video streaming of the inspection surface, sensing the surface and sub-surface cracks by using the GMR sensor array. The design mainly consists a flexible structure of the mobile robot with four specially designed magnetic wheels. An improved magnetic adhesion way by using the magnetic wheels was used to as the adhesion system for this climbing robot. This system generates the required adhesion force to support the robot on the climbed surfaces. Dynamic simulation and calculation of magnetic flux density, using ADAMS and FEM are performed and ensures the success of this idea. Experimental tests to check the capabilities of inspection robot, climbing different surfaces, such as smooth, rough, flat and cylindrical surfaces like the real vessel, are successfully carried out. In addition, the robot stops accurately on the climbed surface at any desired location for inspection purposes, and it overcomes significant obstacles up to 40 mm. This proposed climbing can be implanted for industries such as petrochemical, construction, bridges and many more where a regular inspection of the welds and the wall thickness is required. But here the primary motive task is the inspection of overhead cranes girders for which this robot is proposed.

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#155081Data dodania: 24.9.2024
Fault detection robotic system: controlling and experimental validation of overhead crane climbing robot / Arun Kumar YADAV, Janusz SZPYTKO // W: MMAR 2024 [Dokument elektroniczny] : 2024 28th international conference on Methods and Models in Automation and Robotics : 27–30 August 2024, Międzyzdroje, Poland : technical papers : on line proceedings. — Wersja do Windows. — Dane tekstowe. — Danvers : IEEE, cop. 2024. — (International Conference on Methods and Models in Automation and Robotics ; ISSN 2835-2815). — e-ISBN: 979-8-3503-6233-6. — S. 119–124. — Wymagania systemowe: Adobe Reader. — Bibliogr. s. 124, Abstr. — Publikacja dostępna online od: 2024-09-19. --- Abstrakt w: MMAR 2024 : 28th international conference on Methods and Models in Automation and Robotics : 27--30 August 2024, Międzyzdroje, Poland : program - abstracts. --- S. 30
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#156991Data dodania: 29.1.2025
An innovative fault detection robotic tool for overhead cranes in industries: magnetic wheel modelling and experimental validation / Arun YADAV, Janusz SZPYTKO // W: IFAC/INSTICC IN4PL 2024 [Dokument elektroniczny] : 5th IFAC/INSTICC international conference on Innovative intelligent industrial production and logistics : Porto, Portugal, November 21 - 22, 2024 : final program and book of abstracts. — Wersja do Windows. — Dane tekstowe. — Portugal : SCITEPRESS - Science and Technology Publications, cop. 2024. — S. 35–36. — Wymagania systemowe: Adobe Reader. — Tryb dostępu: https://portal.insticc.org/SignUp [2024-12-03]. — Dostęp po zalogowaniu