Sway control of a tower crane with varying cable length using input shaping

Haszuraidah, Ishak and Zaharuddin, Mohamed and Fasih, S.M. and Bello, M.M. and Reza Ezuan, Samin and Adebayo, B.W. (2024) Sway control of a tower crane with varying cable length using input shaping. In: Communications in Computer and Information Science. 22nd Asia Simulation Conference, AsiaSim 2023 , 25 - 26 October 2023 , Langkawi, Malaysia. pp. 188-200., 1912. ISBN 978-981997242-5 (Published)

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Abstract

This paper presents the development of input shaping techniques for effective sway control of a tower crane, considering varying cable lengths. The nonlinear dynamic model of the tower crane is derived using the Lagrange equation, and simulations confirm its close agreement with experimental results. To design and assess the input shaping control schemes, an unshaped square-pulse input is initially employed to determine the system’s characteristic parameters. Zero Vibration (ZV) and Zero Vibration Derivative (ZVD) shapers are specifically devised based on the tower crane’s inherent properties, and their performance is examined under various operating conditions, encompassing payload hoisting scenarios. The effectiveness of these shapers is evaluated through criteria such as maximum oscillation and reduction of mean squared error (MSE) for overall oscillations. The outcomes of this study demonstrate that implementing input shapers can offer practical and advantageous solutions for enhancing tower crane performance and ensuring smoother operation.

Item Type: Conference or Workshop Item (Paper)
Additional Information: Indexed by Scopus
Uncontrolled Keywords: Tower Crane, Input Shaping, Sway Control
Subjects: T Technology > TK Electrical engineering. Electronics Nuclear engineering
Faculty/Division: Faculty of Electrical and Electronic Engineering Technology
Depositing User: Miss Amelia Binti Hasan
Date Deposited: 15 Jan 2025 07:18
Last Modified: 15 Jan 2025 07:18
URI: http://umpir.ump.edu.my/id/eprint/43577
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