Antisloshing Trajectories for High-Acceleration Motions in Automatic Machines

Author:

Guagliumi Luca1,Berti Alessandro2,Monti Eros2,Carricato Marco1

Affiliation:

1. Department of Industrial Engineering, University of Bologna, Bologna 40137, Italy

2. R&D departement Marchesini Group S.p.a., Pianoro (BO) 40065, Italy

Abstract

Abstract This paper studies the design of antisloshing trajectories for application in automatic machines for packaging liquid products, with specific reference to cylindrical containers and emphasis on prescribed motion durations. Different strategies, based on a discrete linear model of the sloshing phenomenon and applicable in real-time, are analyzed to perform antisloshing feedforward control of the container motion: finite impulse response (FIR) filters (input shapers and others), dynamic-model inversion, and infinite impulse response (IIR) filters. Unlike the previous literature, these strategies are applied to highly dynamical motion laws, with maximum accelerations from 4 m/s2 to 13 m/s2. The effectiveness of the proposed antisloshing trajectories is assessed by experiments.

Publisher

ASME International

Subject

Computer Science Applications,Mechanical Engineering,Instrumentation,Information Systems,Control and Systems Engineering

Reference32 articles.

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4. Time-Optimal Trajectory Planning for Anti-Sloshing 2-Dimensional Motions of an Industrial Robot,2021

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