Pole-Zero Cancellation Method for Multi Input Multi Output (MIMO) Temperature Control in Heating Process System

With the rapid development of industrial technology, the multi-point (multi-input multi-output) heating processing systems with integrated temperature control have been increasingly needed to achieve high-quality and high-performance processing. In this paper, in response to the demand for proper tr...

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Main Authors: Song Xu, Seiji Hashimoto, Wei Jiang
Format: Article
Language:English
Published: MDPI AG 2019-08-01
Series:Processes
Subjects:
Online Access:https://www.mdpi.com/2227-9717/7/8/497
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spelling doaj-0fcd7882c2d448c2922c4bd8b2a6e26c2020-11-25T01:34:57ZengMDPI AGProcesses2227-97172019-08-017849710.3390/pr7080497pr7080497Pole-Zero Cancellation Method for Multi Input Multi Output (MIMO) Temperature Control in Heating Process SystemSong Xu0Seiji Hashimoto1Wei Jiang2Division of Electronics and Informatics, Gunma University, Kiryu 3768515, JapanDivision of Electronics and Informatics, Gunma University, Kiryu 3768515, JapanDepartment of Electrical Engineering, Yangzhou University, N.196 Huayang West Road, Yangzhou 225000, ChinaWith the rapid development of industrial technology, the multi-point (multi-input multi-output) heating processing systems with integrated temperature control have been increasingly needed to achieve high-quality and high-performance processing. In this paper, in response to the demand for proper transient response and to provide more accurate temperature controls, a novel pole-zero cancelation method is proposed for multi-input multi-output (MIMO) temperature control in heating process systems. In the proposed method, the temperature differences and transient characteristics of all points can be improved by compensating dead time difference and coupling effect together by matrix compensation and pole-zero cancelation with the feedforward reference model. Both simulations and experiments were carried out. The results were compared to the well-tuned conventional PI control system and PI plus decoupling compensation system to evaluate the control efficiency of the proposed method.https://www.mdpi.com/2227-9717/7/8/497MIMO temperature control in heating process systempole-zero cancelationtemperature differencetransient responsedead time
collection DOAJ
language English
format Article
sources DOAJ
author Song Xu
Seiji Hashimoto
Wei Jiang
spellingShingle Song Xu
Seiji Hashimoto
Wei Jiang
Pole-Zero Cancellation Method for Multi Input Multi Output (MIMO) Temperature Control in Heating Process System
Processes
MIMO temperature control in heating process system
pole-zero cancelation
temperature difference
transient response
dead time
author_facet Song Xu
Seiji Hashimoto
Wei Jiang
author_sort Song Xu
title Pole-Zero Cancellation Method for Multi Input Multi Output (MIMO) Temperature Control in Heating Process System
title_short Pole-Zero Cancellation Method for Multi Input Multi Output (MIMO) Temperature Control in Heating Process System
title_full Pole-Zero Cancellation Method for Multi Input Multi Output (MIMO) Temperature Control in Heating Process System
title_fullStr Pole-Zero Cancellation Method for Multi Input Multi Output (MIMO) Temperature Control in Heating Process System
title_full_unstemmed Pole-Zero Cancellation Method for Multi Input Multi Output (MIMO) Temperature Control in Heating Process System
title_sort pole-zero cancellation method for multi input multi output (mimo) temperature control in heating process system
publisher MDPI AG
series Processes
issn 2227-9717
publishDate 2019-08-01
description With the rapid development of industrial technology, the multi-point (multi-input multi-output) heating processing systems with integrated temperature control have been increasingly needed to achieve high-quality and high-performance processing. In this paper, in response to the demand for proper transient response and to provide more accurate temperature controls, a novel pole-zero cancelation method is proposed for multi-input multi-output (MIMO) temperature control in heating process systems. In the proposed method, the temperature differences and transient characteristics of all points can be improved by compensating dead time difference and coupling effect together by matrix compensation and pole-zero cancelation with the feedforward reference model. Both simulations and experiments were carried out. The results were compared to the well-tuned conventional PI control system and PI plus decoupling compensation system to evaluate the control efficiency of the proposed method.
topic MIMO temperature control in heating process system
pole-zero cancelation
temperature difference
transient response
dead time
url https://www.mdpi.com/2227-9717/7/8/497
work_keys_str_mv AT songxu polezerocancellationmethodformultiinputmultioutputmimotemperaturecontrolinheatingprocesssystem
AT seijihashimoto polezerocancellationmethodformultiinputmultioutputmimotemperaturecontrolinheatingprocesssystem
AT weijiang polezerocancellationmethodformultiinputmultioutputmimotemperaturecontrolinheatingprocesssystem
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