• Title/Summary/Keyword: Instantaneous power control

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Instantaneous Voltage Disturbance Generator for the Performance Test of Dynamic UPS (다이나믹 UPS의 성능시험을 위한 순시전압 변동 발생기)

  • Kim J.W.;Lee K.S.;Byeon W.Y.;Nho E.C.;Kim I.D.;Chun T.W.;Kim H.G.
    • Proceedings of the KIEE Conference
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    • summer
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    • pp.1254-1256
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    • 2004
  • This paper deals with a novel 3-phase power quality disturbance generator. The proposed generator can be applied to the performance that of custom power devices. Voltage sag, swell and outage are provided by the generator. The control scheme for the disturbance generation is simple, and hardware setup is cost effective, compared with conventional scheme. The operating principle of the generator is described and the usefulness verified through simulation with 10KVA power rating.

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Single Phase NPC Module - Development of 75KVA Single Phase Smart Transformer with 3 Serial Cascade Configuration (단상 NPC Module- 3직렬 Cascade 구성 방식의 75KVA급 단상 지능형 변압기 개발)

  • Park, Ju-Young;Niyitegeka, Gedeon;Cho, Kyeong-Sig;Kim, Myung-Yong;Park, Ga-Woo
    • The Transactions of the Korean Institute of Power Electronics
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    • v.22 no.2
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    • pp.118-125
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    • 2017
  • In this paper, we propose a smart transformer for a smart transformer miniature model, which can replace a 60 [Hz] single-phase transformer installed in an electric vehicle. The proposed smart transformer is lighter than a conventional transformer, can control instantaneous voltage, and can be expected to improve power quality through harmonic compensation. The proposed intelligent transformer consists of an incoming part, an AC/DC converter, and a dual active bridge. Only the incoming part and the AC/DC converter are described in this paper. The proposed intelligent transformer has 75 kVA 3.3 kV input and 750 V DC output, which are verified by simulation and experiment.

Speed Control of a Sensorless BLDC Motor (위치 및 속도검출기 없는 BLDC 전동기의 속도제어에 관한 연구)

  • 이홍락;김성환;권영안
    • Journal of Advanced Marine Engineering and Technology
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    • v.20 no.1
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    • pp.24-30
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    • 1996
  • BLDC motor is widely used as a servo motor, because it has high efficiency, high power ratio, low inertia, and easy maintenance. However, position and speed sensors generally attached in BLDC motor increase motor cost, and limit environments of application. This study describes a sensorless speed control of sinusoidal BLDC motor using the d-q transformed instantaneous voltage equation, and presents the result of computer simulation. The sensorless algorithm is applied to the casse of a voltage controlled PWM inverter. The result indicates good dynamics and a robust control in cases of a load change and a system parameter variation.

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Maximum Efficiency Control of an Induction Motor Drive by Parameter Adaptive Compensation (파라미터 적응보상에 의한 유도전동기의 최대효율 제어기법)

  • Shon, Jin-Geun;Choi, Myung-Gyu;Park, Jong-Chan;Na, Chae-Dong;Lee, Sung-Bum
    • Proceedings of the KIEE Conference
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    • 2000.07e
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    • pp.162-166
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    • 2000
  • In this paper, a maximum efficiency control technique of real-time processing in which parameter variation is compensated in vector control of an induction motors(I.M.) is proposed. Based on equivalent model of I.M., a loss minimization factor(LMF) with the variations of speed is derived. To solve problem of inaccuracy of LMF curves due to machine parameter variation, rotor resistance estimation is performed by using instantaneous reactive power. The estimated rotor resistance values are applied to the maximum efficiency control with a LMF.

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A Research to Minimizing the Effect of Voltage Disturbances on Sensitive Electrical and Electronic Equipment (민감한 전기전자기기의 전압외란에 대한 영향 최소화 연구)

  • 윤갑구
    • Journal of the Korean Professional Engineers Association
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    • v.19 no.2
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    • pp.10-20
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    • 1986
  • This paper describes a countermeasure of electric utilities and customer equipment in order to minimize an effect of sensitive electrical and electronic equipment on the voltage disturbances. After being studied, some schemes to solve were discovered. Firstly, in the electric utilities, the reduction of frequency and influence of voltage drop's time are not easy to realize because of the standpoint of effect and economy. Secondly, in the customer equipment, there are some equipment to minimize the voltage disturbances, Such as an UPSs, a noise suppressors and a power conditioners. One of them should be established on the computer control and automated systems, the electromagnetic switch of delay-release type should be adopted on the electromagnetic switch, the controlling circuit should be adopted on the variable speed motors which is being considered a countermeasure for a momentary under-voltage drops, the luminaire adhering a instantaneous restrike device should be adopted on the HID lamp. And also, the scheme of extending a setting time of relay on the undervoltage relay and the forming method of sequence which is automatic reclosing at this time of instantaneous suspension of an electric supply have been studied.

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Current Control Method for Torque Ripple Reduction in Brushless DC Motor (브러시리스 직류 전동기의 토크 맥동 저감을 위한 전류 제어 방식)

  • 이광운;홍희정;박정배;여형기;이인호;유지윤
    • The Transactions of the Korean Institute of Power Electronics
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    • v.3 no.3
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    • pp.191-198
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    • 1998
  • This paper presents a new current control method to reduce the torque ripple due to phase commutation, when the unipolar PWM method is applied for the phase current control of brushless DC motor. Phase commutation bring about an instantaneous change in the average voltage of conducting phase so that current undulates, and this undulating current generates torque ripple. In this paper, we analyze average voltage variations of conducting phase in commutation period with PWM pattern and design current controller to compensate average variations. In addition, we prove the validity of proposed method by experimental results.

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Characteristic Analysis and Control of Three Phase PWM Buck AC-AC Converter (3상 PWM Buck AC-AC 컨버터의 특성해석과 제어)

  • 최남섭
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.7 no.6
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    • pp.1283-1290
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    • 2003
  • Recently, PWM Buck AC-AC Converter is widely employed in various industrial applications such as voltage and power regulator, electronic transformer, phase shifter and so on. This paper presents static and dynamic modeling and complete characteristic analysis of a PWM Buck AC-AC converter. Firstly, the three phase converter system is modelled by using DQ transformation whereby we can obtain basic characteristic equations such as voltage gain and power factor as well as state equation and transfer function for control. Secondly, based on the analysis, the feedforward-feedback control technique is also proposed to obtain instantaneous duty level change whereby very fast dynamic response is achieved. Finally, the experimental results show the validity of the modeling, analysis and control.

An Improved Central 60° Synchronous Modulation for High Transient Performance with PMSM Stator Flux Control Used in Urban Rail Transit Systems

  • Fang, Xiaochun;Lin, Fei;Yang, Zhongping
    • Journal of Power Electronics
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    • v.16 no.2
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    • pp.542-552
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    • 2016
  • Central 60° synchronous modulation is an easy pulse-width modulation (PWM) method to implement for the traction inverters of urban rail trains at a very low switching frequency. Unfortunately, its switching patterns are determined by a Fourier analysis of assumed steady-state voltages. As a result, its transient responses are not very good with over-currents and high instantaneous torque pulses. In the proposed solution, the switching patterns of the conventional central 60° modulation are modified according to the dynamic error between the target and actual stator flux. Then, the specific trajectory of the stator flux and current vector can be guaranteed, which leads to better system transients. In addition, stator flux control is introduced to get smooth mode switching between the central 60° modulation and the other PWMs in this paper. A detailed flow chart of the control signal transmission is given. The target flux is obtained by an integral of the target voltage. The actual PMSM flux is estimated by a minimum order flux state observer based on the extended flux model. Based on a two-level inverter model, improved rules in the α-β stationary coordinate system and equations of the switching patterns amendment are proposed. The proposed method is verified by simulation and experimental results.

Modeling of SVPWM and Control Method for Driving Systems of High-speed Trains by using Multi-level Power Converters (고속전철 추진시스템을 위한 멀티레벨 전력변환기의 제어기법 및 SVPWM 모델링)

  • Lee, Dong-Myung;Hong, Chan-Hee
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.23 no.12
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    • pp.136-145
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    • 2009
  • This paper proposes control methods and simulation models of a driving system, which consists of converters and inverters, for high speed trains employing multi-level power converters. The control method of a single phase three-level converter for high-speed trains is designed to use DC values instead of instantaneous current values which are usually used in single-phase application, so that it results in a fast and robust voltage control response. In addition, simulation models of Space Vector Pulse Width Modulation (SVPWM) for single phase three-level converters as well as three level inverters are proposed. Experimental results demonstrate the validity of the simulation model for three-level inverters.

Shunt Active Filter for Multi-Level Inverters Using DDSRF with State Delay Controller

  • Rajesh, C.R.;Umayal, S.P.
    • Journal of Power Electronics
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    • v.18 no.3
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    • pp.863-870
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    • 2018
  • The traditional power control theories for the harmonic reduction methods in multilevel inverters are found to be unreliable under unbalanced load conditions. The unreliability in harmonic mitigation is caused by voltage fluctuations, non-linear loads, the use of power switches, etc. In general, the harmonics are reduced by filters. However, such devices are an expensive way to provide a smooth and fast response to secure power systems during dynamic conditions. Hence, the Decoupled Double Synchronous Reference Frame (DDSRF) theory combined with a State Delay Controller (SDC) is proposed to achieve a harmonic reduction in power systems. The DDSRF produces a sinusoidal harmonic that is the opposite of the load harmonic. Then, it injects this harmonic into power systems, which reduces the effect of harmonics. The SDC is used to reduce the delay between the compensation time for power injection and the generation of a reference signal. The proposed technique has been simulated using MATLAB and its reliability has been verified experimentally under unbalanced conditions.