• Title/Summary/Keyword: AC servo motor control

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The Mechanical Characteristic Analysis and Improvement of Precision Position Control System with AC Servo Motor and Ball Screw (AC Servo Motor와 Ball screw를 이용한 정밀 위치제어시스템의 기계적 특성 분석 및 개선)

  • Ko, Su-Chang;Jin, Kyoung-Bog
    • Journal of the Semiconductor & Display Technology
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    • v.6 no.1 s.18
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    • pp.31-36
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    • 2007
  • Effect of coulomb friction and backlash on the single loop position control has been studied for the precision position control. We have showed the limit cycle on the single loop system which used a ball screw that had the backlash. Also, we have made an inner loop with a classical velocity and torque controller which was forcing the current of d axis to be zero by using a permanent-magnet synchronous motor and composed the outer loop with linear encoder for sensing a position of the loader. Also, we have used least squares fit(LSF) observer for reducing noise when we got velocity from position outputs. We have shown a good result by using the dual loop through simulation and experiment.

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A two-phase servo motor control circuit for the nut-runners employing the tightening torque control method (자동나사체걸기의 토크제어를 위한 AC 2상서보모터 제어회로 설계)

  • 김기엽;김일환;박찬웅
    • 제어로봇시스템학회:학술대회논문집
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    • 1987.10b
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    • pp.312-316
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    • 1987
  • A simple hybrid circuit to control the two-phase AC motor of the nut-runners which employ the tightening torque control system is described in this paper. The circuit has emphasis on the low-cost implementation. The circuit constitutes of the V/F converter using a timer IC, the pulse width modulator using the fastening torque signal and the two-phase logic sequencer.

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Design and Implementation of High Speed Pulse Motor Controller Chip (고속 펄스 모터 콘트롤러 칩의 설계 및 구현)

  • 김원호;이건오;원종백;박종식
    • Journal of Institute of Control, Robotics and Systems
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    • v.5 no.7
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    • pp.848-854
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    • 1999
  • In this paper, we designed and implemented a precise pulse motor controller chip that generates the pulse needed to control step motor, DC servo and AC servo motors. This chip generates maximum pulse output rate of 5Mpps and has the quasi-S driving capability and speed and moving distance override capability during driving. We designed this chip with VHDL and executed a logic simulation and synthesis using Synopsys tool. The pre-layout simulation and post-layout simulation was executed by Compass tool. This chip was produced with 100 pins, PQFP package by 0.8${\mu}{\textrm}{m}$ gate array process and implemented by completely digital logic. We developed the test hardware board of performance and the CAMC(Computer Aided Motor Controller) Agent softwate to test the performance of the pulse motor controller chip produced. CAMC Agent enables user to set parameters needed to control motor with easy GUI(Graphic User Interface) environment and to display the output response of motor graphically.

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Synchronous AC servo motor speed control using adaptive control scheme (적응제어를 이용한 동기형 교류 서어보 전동기의 속도제어)

  • Yoon, Tae-Woong;Song, Joong-Ho;Kim, Kwang-Bae
    • Proceedings of the KIEE Conference
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    • 1987.11a
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    • pp.351-354
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    • 1987
  • In this paper, an adaptive control scheme is applied to the speed control system of a synchronous AC servo motor. The adaptive control system using Ioannou's modified adaptation law is shown to be robustly stable in the presence of current control error and load torque disturbance. The computer simulation demonstrates the rapid compensation of rotor speed deviation due to load torque disturbance.

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Robust Disturbance Suppression Control for AC Servo Motors (AC 서보모터에 대한 견실한 외란억제 제어)

  • Kim, Chang-Hwan
    • The Journal of the Korea institute of electronic communication sciences
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    • v.7 no.4
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    • pp.839-848
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    • 2012
  • In this paper, we propose a robust control scheme of AC servo motors to suppress disturbance torques effectively. The proposed controller consists of both a model based feed-forward controller and a stabilizing feedback controller. The feed-forward controller is designed such that the output of the nominal plant tracks perfectly the reference velocity command with desired dynamic characteristics. The feedback controller stabilizes the overall closed loop system. Furthermore, the feedback controller contains a free function that can be chosen arbitrarily. The free function can be designed so as to achieve both suppression of disturbances and robustness to model uncertainties. In order to illuminate the superior performance of the proposed control scheme to the conventional ones, we present some simulation results.

Design of Microprocessor Embedded 2-Axis Motor Control Chip (Microprocessor Embedded 2-Axis Motor Control Chip의 설계)

  • Roh, Kyu-Jin;Choi, Sung-Hyuk;Won, Jong-Baek;Kim, Jong-Eun;Park, Jong-Sik
    • Proceedings of the KIEE Conference
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    • 2001.11c
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    • pp.193-196
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    • 2001
  • In this paper we designed CAMC-SP, the microprocessor embedded 2-axis motor control chip which controls a precise pulse motor by generating the pulse needed to control step motor, DC servo and AC servo motor. This design enables to decrease costs and to minimize a size. First we designed risc type 8-bit microprocessor compatible with PIC16C84, second we designed pulse motor controller. CAMC-SP is integrated of those two block. We designed CAMC-SP by VHDL and we testified to the Performance of it by performing functional simulation.

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A digital AC servo motor controller for the industrial auto trimming sewing machines

  • Huh, Kyung-Moo;Park, Myung-Kwan;Kwon, Seok-Ki;Chang, Min-Sik
    • 제어로봇시스템학회:학술대회논문집
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    • 1990.10b
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    • pp.1405-1409
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    • 1990
  • Generally, the required control functions for the industrial auto trimming sewing machines are the sewing speed control with pedal input, the up/down stopping-position control of the needle, the automatic sewing according to the memorized sewing pattern including the number of stitches, and etc. We developed a new type of AC servo motor controller, which suffices for all the above functions. The developped controller is working well, and the performances are very good for the practical use.

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Speed Control of AC Servo Motor Using Fuzzy-Tuning Method (퍼지 동조 기법을 이용한 교류 서보 전동기의 속도제어)

  • Yun, Kwang-Ho;Kim, Sang-Hoon;Kim, Lark-Kyo;Nam, Moon-Hyun
    • Proceedings of the KIEE Conference
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    • 2000.07d
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    • pp.2470-2472
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    • 2000
  • A conventional PID controller does not provide a proper response in face of various kinds of load variation. In this paper, Fuzzy-PID Control scheme are proposed in order to improve the performance of the PID Controller. The proposed control schemes are applied to the speed controller of AC servo motor systems. The effectiveness of the proposed methods is shown by implementation and the advantage of each control scheme is discussed.

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Position Control of Brushless Servo Motor using Variable Structure System (가변구조 시스템을 이용한 브러시리스 서보모터의 위치제어)

  • Cho, Chang-Hee;Won, Jong-Soo
    • Proceedings of the KIEE Conference
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    • 1990.11a
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    • pp.10-14
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    • 1990
  • Variable Structure System(VSS) la being extended to a new control system of ac servo machines for its merits of simple mechanism and robustness. This paper has studied about applying VSS to position control for brushless servo motor. But VSS has the chattering problem of control input. This chattering phenomenon cause acoustic noises, torque ripple and increase harmonics of the current. One of the useful way to eliminate this defect of VSS, linearlizing the switching function is discussed here. Though the conventional method of linearizing the switching function diminishes the chattering, it may degrade the robustness of the system. In this paper, new linearized switching function which shows robust performance to the parametric variation and reduces chattering simultaneously is introduced and assured by simulation.

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Improvement in rise time and robustness of AC servomotor (AC servo motor 제어시 rise time 과 강인성 개선)

  • 정광조;임선종
    • 제어로봇시스템학회:학술대회논문집
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    • 1991.10a
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    • pp.446-450
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    • 1991
  • PID controller is popular but have defect inversing following reference input and noise elimination. Therefor, this paper focus on reducing rise time and robustness against noise. The result that is simulated with feedforward method and sliding mode show that rise time decrease and robustness increase.

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