• Title/Summary/Keyword: AC Motor Drives

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Improving of Starting and Low Speed Performance of PMAC with Linear Encoder

  • Lee, Dong-Hee;Lee, Hwa-Seok;Park, Sung-Jun;Lee, Yang-Woo
    • 제어로봇시스템학회:학술대회논문집
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    • 2001.10a
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    • pp.99.4-99
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    • 2001
  • PMAC(Permanent magnet AC) motor drives are widely used in the industrial applications and home appliances because of high torque ratio, high efficiency and precise control performance. In recent years there has been a significant development of PMAC motors of various kinds. Improvements in the properties of permanent magnet materials have increased the viability of related types of motors. However, precise speed and position information is essential for the good control performance. In order to produce correct torque, the rotor flux position information from position sensor has to be identified. In this paper, a low cost position sensor is proposed for improving of starting and low speed performance of PMAC. The proposed position ...

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SAMSUNG FARA SCARA robot system (삼성 파라 스카라 로봇시스템)

  • 김성권;신기범;김동일;전재욱;김영철;오인환;황찬영;임상권;김호규
    • 제어로봇시스템학회:학술대회논문집
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    • 1991.10a
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    • pp.504-510
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    • 1991
  • SAMSUNG Electronics has developed a SCAR.A robot system, SM3, which is applicable to several assembly, inspection, and adjustment tasks. This robot system drives by AC servo motors has attained a .theta.1 and .theta.2 axis maximum composite speed of 5.4 m/sec, a repeatability of .+-.05 mm, and a cycle time of 1.2 sea. The robot controller based on three 8086 and one 8087 processors consists of the main controller, the joint position controller, and the motor controller. The robot controller has plentiful self-diagnosis and control capabilities, and can be interfaced to other external device. The robot language FARAL Is designed such that every task is easily programmed. In this paper, the main features of the body, controller, and FARAL of SM3 will be described. In particular, the control method designed for a stable and fast robot motion will be explained. Finally, the future development will be addressed.

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Current Sampling Error in Digitally-Controlled AC Motor Drives (디지털 제어기로 인한 교류 전동기 제어 시스템의 전류 샘플링 오차 및 보상)

  • Yim, Jung-Sik;Sul, Seung-Ki
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.883-884
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    • 2008
  • 디지털 제어기는 벡터 제어(Vector Control) 구현에 적합하기 때문에, 현재 대다수의 고성능 교류 전동기 구동 시스템에 사용되고 있다. 디지털 제어기를 사용하는 교류 전동기 구동 시스템에 대한 기존의 연구는 주로 디지털 제어기의 시지연이 제어 성능에 미치는 효과에 주목하였다. 그리고 디지털 제어기의 전류 샘플링 오차에 주목한 연구들은 주로 전력 변환기기의 전압 변조(PWM, Pulse Width Modulation)와 디지털 제어기의 샘플링 순간과의 관계에 따른 전류 샘플링 오차에 대해 연구하였다. 본 논문에서는 기존의 연구에서는 다루어지지 않았던 디지털 제어기의 제로-오더-홀드(Zero-Order Hold) 특성에 의해 발생하는 전류 샘플링 오차를 다룬다. 이 오차는 전동기의 전기적 회전 주파수가 디지털 제어기의 샘플링 주파수에 비해 무시할 수 없을 정도로 커지는 경우 그 영향이 두드러지게 된다. 본 논문에서는 이러한 전류 샘플링 오차를 분석하고, 이것을 보상하는 방법에 대해 서술한다.

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Fault Diagnosis and Neutral-Point Voltage Control according to Faults for a Three-level Neutral-Point-Clamped PWM Inverter (NPC 3-레벨 PWM 인버터에서 고장 발생에 따른 고장 진단과 중성점 전압 제어)

  • Son Ho-In;Kim Tae-Jin;Kang Dae-Wook;Hyun Dong-Seok
    • Proceedings of the KIPE Conference
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    • 2003.11a
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    • pp.11-16
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    • 2003
  • The 3-level converter/inverter system is very efficient in the ac motor drives of high voltage and high power application. This paper proposed a simple method to diagnose faults using change of current vector pattern in space vector diagram when the faults occurrence in the 3-level inverter and a control method that can protect system from unbalance of the neutral point voltage according to faults. The validity of the proposed method is demonstrated by the simulation results.

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Fault Diagnosis and Neutral Point Voltage Control Under the Switch Fault in NPC 3-Level Voltage Source Inverter (NPC 3-레벨 인버터의 스위치 고장시 고장 진단과 중성점 불평형 전압 제어)

  • Kim Tae-Jin;Kang Dae-Wook;Hyun Dong-Seok;Son Ho-In
    • The Transactions of the Korean Institute of Electrical Engineers B
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    • v.54 no.5
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    • pp.231-237
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    • 2005
  • Many conventional multi-level inverters have detected switching faults by using the over voltage and current. However, fault detection of the switching elements is very difficult because the voltage and current due to each switching fault decrease more than the normal operation. Moreover, the dc-link unbalancing voltage causes a serious problem in the safety and reliability of system when the 3-level inverter faults occur Therefore, this paper proposes the simple fault diagnose method and the neutral-point-voltage control method that can protect the 3-level inverter system from the unbalancing voltage of the do-link capacitors when the faults of switching elements occur in the 3-level inverter that is very efficient in ac motor drives of the high voltage and high power applications. Through experiment results, the validity of the proposed method is demonstrated.

Control Characteristics of Current Controlled PWM Using Vector Control in VSI-IM Drive System (VSI-IM 구동 시스템에 벡터제어를 이용한 전류제어 PWM 방식의 제어특성)

  • Dong Hwa Chung
    • Journal of the Korean Institute of Telematics and Electronics B
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    • v.28B no.12
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    • pp.38-50
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    • 1991
  • A current-controlled scheme of pulse width modulation voltage source inverter (PWM VSI) has attracted considerable attention due to its fast response with current limit and especially suitable for potentially high performance applications such as AC motor drives and UPS systems. These features yield near-sinusoidal currents in the load with reduced current peaks, lower inverter switching frequency and reduce inverter and load stresses. A high performance current-controlled inverter must have a quick response in transient state and low harmonic current in steady state. This paper compares and shows the controlled-characteristics with hysteresis controller(HC), ramp comparison controller(RCC) and predictive controller(PC) of PWM inverter to control actual current of VSI-IM.

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Expansion method of current reconstruction area using voltage injection in synchronous coordinates system (동기좌표계 전압주입을 이용한 3션트 PWM 인버터의 전류 복원 영역 확장 기법)

  • Choi, Dong-Min;Cho, Byung-Geuk;Cho, Younghoon
    • Proceedings of the KIPE Conference
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    • 2017.07a
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    • pp.208-209
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    • 2017
  • When controlling a three-phase inverter that drives AC motor, it is important to know the value of the current. In this case, shunt sensing methods are known as low cost and useful performance. However, for certain swithcing condition, immeasurable areas exist and it is necessary to reconstruct the current in the area. This paper proposes a reconstruction method using voltage injection in synchronous coordinates system at the area, and verify the validity of the method through simulation.

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A New Smallest 1200V Intelligent Power Module for Three Phase Motor Drives (3상 모터 구동을 위한 새로운 1200V 지능형 전력 반도체 모듈)

  • Lee, JongUk;Lee, Minsub;Beak, Miran;Lee, Junbae;Chung, Daewoong
    • Proceedings of the KIPE Conference
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    • 2018.11a
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    • pp.157-158
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    • 2018
  • 본 논문은 3상 AC 모터와 영구동기자석 모터제어를 위한 새로운 1200V, 5A/10A 지능형 전력반도체 모듈(Intelligent Power Module, IPM) 제품을 소개한다. 이 전력 모듈은 DIP(Dual in line)패키지의 DBC(Direct Bond Copper)로 구성되어 있으며 Silicon on Insulator, SOI type의 6 채널 게이트 드라이브와 6개의 IGBT, Diode로 구성되어 있다. 본 논문에서는 1200V, 5A/10A 의 새로운 전력반도체의 전기적 특성 및 드라이빙 퍼포먼스를 소개한다.

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An Adaptive Fuzzy Current Controller with Neural Network For Field-Oriented Controller Induction Machine

  • Lee, Kyu-Chan;Lee, Hahk-Sung;Cho, Kyu-Bock;Kim, Sung-Woo
    • Proceedings of the KIEE Conference
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    • 1993.07a
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    • pp.227-230
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    • 1993
  • Recently, the development of novel control methodology enables us to improve the performance of AC-machine drives by using pulse width modulation (PWM) technique. Usually, the dynamic characteristic of induction motor (IM) has been represented by the 5-th order nonlinear differential equation. This dynamics, however, can be reduced to 3-rd order dynamics by applying direct control of IM input current. This methodology concludes that it is much easier to control IM by means of the field-oriented methods employing the current controller. Therefore a precise current control is crucial to achieve a high control performance both in dynamic and steady state operations. This paper presents an adaptive fuzzy current controller with artificial neural network (ANN) for field-oriented controlled IM. This new control structure is able to adaptively minimize a current ripple while maintaining constant switching frequency. Especially the proposed controller employs neuro-computing philosophy as well as adaptive learning pattern recognizing principles with respect to variations of the system parameters. The proposed approach is applied to the IM drive system, and its performance is tested through various simulations. Simulation results show that the proposed system, compared among several known classical methods, has a superb performance.

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Implementation of Industrial AC Motor Drive Using the Direct Vector Control (직접벡터제어에 의한 산업용 전동기의 구동시스템 구현)

  • 손진근;박종찬;문학룡;김병진;전희종
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.12 no.4
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    • pp.81-89
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    • 1998
  • In the field of industrial drives, the vector control of the induction motor has been widely used to achieve the good control performance. In this paper, to require the information of rotor flux in direct vector control scheme, the flux observer by current model of rotor circuit is used. This flux observer is not only available at low-speed region bt good for the error reduction by feedback properties. Also, employing the flux observer on rotor reference frame, the robustness of decoupling control to the observation of rotor flux can be achieved. Through digital simulation and DSP-based IGBT inverter system, the validity for practical implementation is verified.

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