Research and Design of Control System for Vibration Transmission Machine

Currently, the vibration transmission machines are widely used in mining, metallurgy, coal, chemical, building material, light industry, food, and machinery manufacturing industries. Inertia vibrator is divided into two categories - non-resonant and resonant. The former has the following advantages:...

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Published in:Chemical Engineering Transactions
Main Authors: J. Chu, G.Y. Wang
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2015-12-01
Online Access:https://www.cetjournal.it/index.php/cet/article/view/4361
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author J. Chu
G.Y. Wang
author_facet J. Chu
G.Y. Wang
author_sort J. Chu
collection DOAJ
container_title Chemical Engineering Transactions
description Currently, the vibration transmission machines are widely used in mining, metallurgy, coal, chemical, building material, light industry, food, and machinery manufacturing industries. Inertia vibrator is divided into two categories - non-resonant and resonant. The former has the following advantages: simple structure, conveniently manufactured, and stable working state. That is why non-resonant inertia vibrators are mostly used in engineering practices. The biggest disadvantage of non-resonant type is bigger power consumption. In contrast, the resonant type is durable, has compact structure and has less energy consumption. But it is difficult to adjust the working status; small frequency drift will cause large amplitude fluctuation. In order to improve energy efficiency and stability, we used vibration velocity as a closed-loop feedback signal and microcomputer technology to control resonance conveyor. In the control unit we utilized quadratic optimal control algorithm of PID parameter optimal tuning to maximize the automatic frequency tracking and achieved steady state of resonance and optimal energy efficiency.
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spelling doaj-art-e5b56a659f144158991e16c2807d6c332025-08-19T21:08:53ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162015-12-014610.3303/CET1546192Research and Design of Control System for Vibration Transmission MachineJ. ChuG.Y. WangCurrently, the vibration transmission machines are widely used in mining, metallurgy, coal, chemical, building material, light industry, food, and machinery manufacturing industries. Inertia vibrator is divided into two categories - non-resonant and resonant. The former has the following advantages: simple structure, conveniently manufactured, and stable working state. That is why non-resonant inertia vibrators are mostly used in engineering practices. The biggest disadvantage of non-resonant type is bigger power consumption. In contrast, the resonant type is durable, has compact structure and has less energy consumption. But it is difficult to adjust the working status; small frequency drift will cause large amplitude fluctuation. In order to improve energy efficiency and stability, we used vibration velocity as a closed-loop feedback signal and microcomputer technology to control resonance conveyor. In the control unit we utilized quadratic optimal control algorithm of PID parameter optimal tuning to maximize the automatic frequency tracking and achieved steady state of resonance and optimal energy efficiency.https://www.cetjournal.it/index.php/cet/article/view/4361
spellingShingle J. Chu
G.Y. Wang
Research and Design of Control System for Vibration Transmission Machine
title Research and Design of Control System for Vibration Transmission Machine
title_full Research and Design of Control System for Vibration Transmission Machine
title_fullStr Research and Design of Control System for Vibration Transmission Machine
title_full_unstemmed Research and Design of Control System for Vibration Transmission Machine
title_short Research and Design of Control System for Vibration Transmission Machine
title_sort research and design of control system for vibration transmission machine
url https://www.cetjournal.it/index.php/cet/article/view/4361
work_keys_str_mv AT jchu researchanddesignofcontrolsystemforvibrationtransmissionmachine
AT gywang researchanddesignofcontrolsystemforvibrationtransmissionmachine