• 제목/요약/키워드: current and speed control

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외란 관측기를 이용한 BLDCM의 위치 및 속도제어 (The Position and Speed Control of the BLDC Motor Using the Disturbance Observer)

  • 전용호
    • 한국전자통신학회논문지
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    • 제15권5호
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    • pp.899-906
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    • 2020
  • 전동기의 제어에 있어서 전동기의 수학적 모델 오차와 작용하는 외란에 대해서 강건하며 정밀한 제어의 성능을 요구한다. 강건하며 정밀한 제어를 위하여 외란 관측기를 설계하여 부하변동을 추정하고, 공칭 시스템으로 설계된 백스텝핑 제어기에 적용하였다. 설계된 시스템의 제어 성능을 확인하고자 120 [W]급의 BLDCM(Brushless Direct Current Motor)에 적용하여, 위치제어 및 속도제어의 결과 외란을 극복하고 정상상태 오차가 영으로 수렴하며, 점근적 안정한 결과를 확인할 수 있다.

백스텝핑을 기반으로 하는 BLDC 전동기의 위치 및 속도제어(이득 설정) (Position and Speed Control of the BLDC Motor based on the Back-stepping(Gain design))

  • 이승;전용호;조황
    • 한국전자통신학회논문지
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    • 제10권3호
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    • pp.403-411
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    • 2015
  • 본 논문은 백스텝핑 설계기법을 이용하여 BLDC 전동기의 위치 및 속도, 전류제어를 위한 제어기 설계방법을 제안한다. 또한, 전체 시스템을 안정화하며 추종성능을 향상시킬 수 있는 적절한 제어이득을 설정하기 위한 방법을 제시한다. 제안된 제어기를 120W급의 BLDC 전동기에 적용하여 위치, 속도 및 전류 레퍼런스를 추종하는 능력을 시뮬레이션 시험하였다. 설계된 제어기가 정상상태의 오차가 1% 이내를 가짐으로 상태 추종 성능에 대해 유용한 제어기임을 보일 수 있었다.

교류 서보 전동기 속도센서리스 제어를 위한 퍼지 동조 고이득 관측기 설계 (Design of a Fuzzy-Tuning High Gain Observer for Speed-Sensorless Control of an AC Servo Motor)

  • 김상훈;김낙교
    • 대한전기학회논문지:시스템및제어부문D
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    • 제54권12호
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    • pp.705-712
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    • 2005
  • This paper deals with speed-sensorless control of an AC servo motor using Fuzzy-Tuning High Gain Observer(FTHGO). Resolver or encoder can be used to measure a rotor speed, but it has a limit to detect motor speed precisely. To solve this problem, it is studied to measure a speed of an AC servo motor without sensor. In this paper, the gain of an observer to estimate motor speed is properly set up and designed using the fuzzy control theory. It calculates the differentiation of the rotor current of the AC motor and estimates the rotor speed using it. Proposed speed sensorless control is performed using the estimated speed as the control variable. Designed FTHGO is applied to AC servo motor to verify the feasibility of the proposed observer. Feasibility of the FTHGO proposed in this paper is proven comparing the experimental results with/without the speed sensor.

퍼지제어기를 이용한 센서리스 직류전동기의 속도제어에관한연구 (A Study on the Speed Control of a Sensorless DC Motor by using a Fuzzy Controller)

  • 하주식
    • Journal of Advanced Marine Engineering and Technology
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    • 제22권3호
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    • pp.311-319
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    • 1998
  • DC Motors have been widely used in industry as driving power motors for electrical vehicles cranes and winches due to their strong starting torques and as servo-motors for position and speed control systems due to their convenience of speed control etc. Generally in the speed control systems of motors speed sensors are required and this fact results in he increased price and operating cost and in the limitted applications. This paper presents a new speed control method for sensorless DC motors. In this scheme the speed signal is estimatd by the measurement values of the armature voltage and current. A Fuzzy feedback controller instead of the conventional PID controller. Through simulations the effectiveness and usefullness of the proposed method are illustrated.

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DSP를 이용한 영구자석형 동기전동기의 전 디지탈 속도 제어 (Full Digital Speed Control of Permanent Magnet Synchronous Motor Drive Using DSP)

  • 김경화;박재우;배정도;정세교;윤명중
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1994년도 하계학술대회 논문집 A
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    • pp.591-594
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    • 1994
  • In the high performance AC motor drive system, exact torque and speed control is required For exact torque and speed control, good current controller is prerequisite. In this paper, predictive current control scheme for PMSM is presented and implemented using DSP. Full digital speed controller for PMSM is constructed its usefulness is verified.

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직접 토크제어에 의한 속도검출기 없는 SPMSM의 속도 제어 시스템 (A Speed Sensorless SPMSM Position Control System with Direct Torque Control)

  • 김민호;김남훈;김동희;김민회
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2001년도 춘계학술대회 논문집 전기기기 및 에너지변환시스템부문
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    • pp.277-280
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    • 2001
  • This paper presents a speed sensorless implementation of digital speed control system of Surface Permanent-Magnet Synchronous Motor(SPMSM) drives with a direct torque control(DTC). The system presented are stator flux and torque observer of stator flux feedback control model that inputs are current and voltage sensing of motor terminal with estimated rotor angle for a low speed operating area, two hysteresis band controllers, an optimal switching look-up table, rotor speed estimator, and IGBT voltage source inverter by using fully integrated control software. The developed speed sensorless control system are shown a good motion control response characteristic results and high performance features using 1.0Kw purposed servo drive SPMSM.

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유도 전동기 센서리스 제어를 위한 동기 각속도 오차 보상기를 갖는 향상된 Programmable LPF 자속 추정기 (Improved Programmable LPF Flux Estimator with Synchronous Angular Speed Error Compensator for Sensorless Control of Induction Motors)

  • 이상수;박병건;김래영;현동석
    • 전력전자학회논문지
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    • 제18권3호
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    • pp.232-239
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    • 2013
  • This paper proposes an improved stator flux estimator through ensuring conventional PLPF to act as a pure integrator for sensorless control of induction motors. Conventional PLPF uses the estimated synchronous speed as a cut-off frequency and has the gain and phase compensators. The gain and phase compensators are determined on the assumption that the estimated synchronous angular speed is coincident with the real speed. Therefore, if the synchronous angular speed is not same as the real speed, the gain and phase compensation will not be appropriate. To overcome the problem of conventional PLPF, this paper analyzes the relationship between the synchronous speed error and the phase lag error of the stator flux. Based on the analysis, this paper proposes the synchronous speed error compensation scheme. To achieve a start-up without speed sensor, the current model is used as the stator flux estimator at the standstill. When the motor starts up, the current model should be switched into the voltage model. So a stable transition between the voltage model and the current model is required. This paper proposes the simple transition method which determines the initial values of the voltage model and the current model at the transition moment. The validity of the proposed schemes is proved through the simulation results and the experimental results.

고정자전압제어 전류형 인버터에 의한 유도전동기의 속도제어 (Speed Control of Induction Motor Driven by Stator Voltage-Controlled CSI)

  • 송중호;윤태웅;김광배
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1991년도 하계학술대회 논문집
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    • pp.583-586
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    • 1991
  • This paper presents a comprehensive study on the stability of several control schemes for the induction motor driven by current source inverters. A stator voltage-controlled current source inverter drive system without a speed sensor is investigated in order to find appropriate control schemes, which are primarily based on direct or, alternatively, indirect frequency control scheme. The overall control systems with either voltage control loop or current and voltage control loops provided in addition to each frequency control scheme are analyzed by utilizing the root locus method and simulated by computer to illustrate the validity of this analysis.

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벡터제어법에 의한 유도형교류 서보전동기의 속도제어에 관한 연구 (The speed control system of an induction type a.c servo motor by vector control)

  • 홍순일;노창주
    • Journal of Advanced Marine Engineering and Technology
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    • 제13권3호
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    • pp.56-63
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    • 1989
  • In recent years, a.c servo motors have been gradually replacing d.c sevo motors in various high-performance demanded aplications such as machine tools and industrial robots. In particular, the high-performance slip-frequency control of an induction motor, which is often called the vector control, is considered one of the best a.c drive. In this paper, the transient state equation and vector control algrithms of an induction motor are described mathematically by using the two-axis theory(d-q coordinates). According to the result of these algorithms, we scheme the speed control system for an induction type ac servo motor in which vector control is adopted to give tha a.c motor high performance. Motor drive is a PWM inverter using power MOS-FET, and is controlled in order to let the actual input current of the motor track the current reference obtained from a microcomputer(8086 cpu). Driving experiments are performed in the range of 0 to 3000 rpm, and it is verified that high speed response is possible.

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Fuzzy 제어기를 이용한 7상 BLDC 전동기 속도제어 구동시스템 (Driving System of 7-Phase BLDC Motor Speed Control by Fuzzy Controller)

  • 윤용호
    • 전기학회논문지
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    • 제66권11호
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    • pp.1663-1668
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    • 2017
  • A BLDC motor with higher number of phases has several advantages, compared to the conventional three-phase BLDC motors. It can reduce the commutation torque ripple and the iron loss without increasing the voltage per phase and increase the reliability and power density. Higher number of phases increase the torque-per-ampere ratio for the same machine volume and output power by widening the electrical conduction period. In this paper, the proposed seven-phase BLDC motor drive system is made into several functional modular blocks, so that it can be easily extended to other ac motor applications: back-EMF block, hysteresis current control block, pwm inverter block, phase current block, and speed/torque control block. Also in a system of BLDC motor drive, the PI controller has been widely used in the speed controller because of the simple implementation. To obtain a good speed response in a general drive system using the PI controller, the high bandwidth of a controller is established. therefore, in this paper, a Fuzzy controller is applied to the 7-phase BLDC motor drive system in order to improve the speed control performance. The Fuzzy controller is compared with a conventional PI controller through the experiment with respect to speed dynamic responses. These experimental results show that the Fuzzy controller of the 7-phase BLDC motor drive system is superior over the conventional PI controller. The algorithm using the Fuzzy controller can improve a comfortable ride in the field of high performance 7-phase BLDC motor drive applications.