Design of an Adaptive Boost Energy-Saving Fuzzy Control System Driven by the Finite State Machine

Aiming at the challenging problem of the traditional warp knitting machine electronic jacquard control system with complex structure of multiple circuit boards layered cascade, such as large physical space occupation, high power consumption, and independent high-voltage power supply voltage, we prop...

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Main Authors: Wen Ren, Xia Wen, Sencai Lai
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2021/9924836
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spelling doaj-f5614691acd14fecb9ad53f9442cad512021-05-17T00:01:31ZengHindawi LimitedMathematical Problems in Engineering1563-51472021-01-01202110.1155/2021/9924836Design of an Adaptive Boost Energy-Saving Fuzzy Control System Driven by the Finite State MachineWen Ren0Xia Wen1Sencai Lai2Sanming UniversitySanming UniversitySanming UniversityAiming at the challenging problem of the traditional warp knitting machine electronic jacquard control system with complex structure of multiple circuit boards layered cascade, such as large physical space occupation, high power consumption, and independent high-voltage power supply voltage, we proposed an embedded circuit and control strategy design for the piezoelectric jacquard needle (PJN) with adaptive boost and energy recovery functions. Firstly, the electromechanical dynamics model of PJN was established. Secondly, the fuzzy PI double closed-loop control algorithm driven by a finite state machine is proposed. Thirdly, with the help of a Metal-Oxide-Semiconductor Field-Effect Transistor (MOSFET), the PJN is integrated with the drive circuit. The drive circuit of PJN uses an energy storage inductor to replace the current limiting resistor of the traditional drive circuit, which can not only limit the forward charging current of the PJN and reduce energy loss but also can use the energy absorbed from the low-voltage power supply to adaptively boost the power supply of the PJN to the high voltage required for working conditions. The simulation results show that the new PJN drive circuit has an adaptive self-boost function. The PWM signal modulated by the fuzzy PI double closed-loop control algorithm can efficiently and accurately control the adaptive boost power supply and the voltage across the PJN. The mode of the circuit can be correctly switched through the sequential logic of the finite state machine and realize the energy recovery function.http://dx.doi.org/10.1155/2021/9924836
collection DOAJ
language English
format Article
sources DOAJ
author Wen Ren
Xia Wen
Sencai Lai
spellingShingle Wen Ren
Xia Wen
Sencai Lai
Design of an Adaptive Boost Energy-Saving Fuzzy Control System Driven by the Finite State Machine
Mathematical Problems in Engineering
author_facet Wen Ren
Xia Wen
Sencai Lai
author_sort Wen Ren
title Design of an Adaptive Boost Energy-Saving Fuzzy Control System Driven by the Finite State Machine
title_short Design of an Adaptive Boost Energy-Saving Fuzzy Control System Driven by the Finite State Machine
title_full Design of an Adaptive Boost Energy-Saving Fuzzy Control System Driven by the Finite State Machine
title_fullStr Design of an Adaptive Boost Energy-Saving Fuzzy Control System Driven by the Finite State Machine
title_full_unstemmed Design of an Adaptive Boost Energy-Saving Fuzzy Control System Driven by the Finite State Machine
title_sort design of an adaptive boost energy-saving fuzzy control system driven by the finite state machine
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1563-5147
publishDate 2021-01-01
description Aiming at the challenging problem of the traditional warp knitting machine electronic jacquard control system with complex structure of multiple circuit boards layered cascade, such as large physical space occupation, high power consumption, and independent high-voltage power supply voltage, we proposed an embedded circuit and control strategy design for the piezoelectric jacquard needle (PJN) with adaptive boost and energy recovery functions. Firstly, the electromechanical dynamics model of PJN was established. Secondly, the fuzzy PI double closed-loop control algorithm driven by a finite state machine is proposed. Thirdly, with the help of a Metal-Oxide-Semiconductor Field-Effect Transistor (MOSFET), the PJN is integrated with the drive circuit. The drive circuit of PJN uses an energy storage inductor to replace the current limiting resistor of the traditional drive circuit, which can not only limit the forward charging current of the PJN and reduce energy loss but also can use the energy absorbed from the low-voltage power supply to adaptively boost the power supply of the PJN to the high voltage required for working conditions. The simulation results show that the new PJN drive circuit has an adaptive self-boost function. The PWM signal modulated by the fuzzy PI double closed-loop control algorithm can efficiently and accurately control the adaptive boost power supply and the voltage across the PJN. The mode of the circuit can be correctly switched through the sequential logic of the finite state machine and realize the energy recovery function.
url http://dx.doi.org/10.1155/2021/9924836
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AT xiawen designofanadaptiveboostenergysavingfuzzycontrolsystemdrivenbythefinitestatemachine
AT sencailai designofanadaptiveboostenergysavingfuzzycontrolsystemdrivenbythefinitestatemachine
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