Adaptive Rejection Filter for the Drives Stabilization of Pressure Die Casting Machines

The presented paper deals with the design of a mathematical model of a rejection filter for the drives stabilization applied to pressure die casting processes. The rejection filter allows the stabilization of electrohydraulic servo drives making use of periodically repeated zero transfer functions w...

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Main Authors: Miroslav Rimar, Marcel Fedak, Janka Mihalcova, Stefan Kuna
Format: Article
Language:English
Published: SAGE Publishing 2014-05-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1155/2014/453724
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spelling doaj-a9dc9853d21c462ba5cd0c2dcc9823e12020-11-25T02:22:53ZengSAGE PublishingAdvances in Mechanical Engineering1687-81322014-05-01610.1155/2014/45372410.1155_2014/453724Adaptive Rejection Filter for the Drives Stabilization of Pressure Die Casting MachinesMiroslav RimarMarcel FedakJanka MihalcovaStefan KunaThe presented paper deals with the design of a mathematical model of a rejection filter for the drives stabilization applied to pressure die casting processes. The rejection filter allows the stabilization of electrohydraulic servo drives making use of periodically repeated zero transfer functions while taking advantage of the essence of a parallel joint of the proportional unit and a time delay unit. Consequently, the model of the adaptive rejection filter algorithm with a higher form of electrohydraulic servo drives has been mathematically elaborated. The paper comprises the algorithm description for the models implementation in the process of a servo drive control, which to a sufficiently greater extent can respond to the changes in technological parameters of pressure die casting than a conventional drive system. The introduction of a position feedback or a high-speed feedback allows the elimination of excessive porosity formation. By Introducing additional feedbacks, it is possible to affect the speed of a piston movement in the range of a low pressing speed depending on other technological parameters, for example, a melt temperature in the chamber.https://doi.org/10.1155/2014/453724
collection DOAJ
language English
format Article
sources DOAJ
author Miroslav Rimar
Marcel Fedak
Janka Mihalcova
Stefan Kuna
spellingShingle Miroslav Rimar
Marcel Fedak
Janka Mihalcova
Stefan Kuna
Adaptive Rejection Filter for the Drives Stabilization of Pressure Die Casting Machines
Advances in Mechanical Engineering
author_facet Miroslav Rimar
Marcel Fedak
Janka Mihalcova
Stefan Kuna
author_sort Miroslav Rimar
title Adaptive Rejection Filter for the Drives Stabilization of Pressure Die Casting Machines
title_short Adaptive Rejection Filter for the Drives Stabilization of Pressure Die Casting Machines
title_full Adaptive Rejection Filter for the Drives Stabilization of Pressure Die Casting Machines
title_fullStr Adaptive Rejection Filter for the Drives Stabilization of Pressure Die Casting Machines
title_full_unstemmed Adaptive Rejection Filter for the Drives Stabilization of Pressure Die Casting Machines
title_sort adaptive rejection filter for the drives stabilization of pressure die casting machines
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8132
publishDate 2014-05-01
description The presented paper deals with the design of a mathematical model of a rejection filter for the drives stabilization applied to pressure die casting processes. The rejection filter allows the stabilization of electrohydraulic servo drives making use of periodically repeated zero transfer functions while taking advantage of the essence of a parallel joint of the proportional unit and a time delay unit. Consequently, the model of the adaptive rejection filter algorithm with a higher form of electrohydraulic servo drives has been mathematically elaborated. The paper comprises the algorithm description for the models implementation in the process of a servo drive control, which to a sufficiently greater extent can respond to the changes in technological parameters of pressure die casting than a conventional drive system. The introduction of a position feedback or a high-speed feedback allows the elimination of excessive porosity formation. By Introducing additional feedbacks, it is possible to affect the speed of a piston movement in the range of a low pressing speed depending on other technological parameters, for example, a melt temperature in the chamber.
url https://doi.org/10.1155/2014/453724
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AT jankamihalcova adaptiverejectionfilterforthedrivesstabilizationofpressurediecastingmachines
AT stefankuna adaptiverejectionfilterforthedrivesstabilizationofpressurediecastingmachines
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