• Title/Summary/Keyword: Ripple Compensation

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Ripple Voltage instantaneous following Compensation Controller using Analogue Integrator (아나로그 적분기를 이용한 리플전압 순시추종 보상 제어기)

  • Kim, K.T.;Kim, S.D.;Gho, H.S.;Lee, H.W.
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 2004.05a
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    • pp.486-489
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    • 2004
  • 대용량의 직류 전원을 연속적으로 얻기 위한 가장 손쉬운 방법은 상용 교류전력을 정류하여 사용하는 것이다. 이렇게 얻어진 직류 전압 원은 리플을 포함하는 문제와 허용된 법위에 있지만 전압 변동율이 존재하게 된다. DC-DC 컨버터나 인버터 제어에서 이러한 문제를 해결하기 위하여 많은 연구가 행해지고 있다. 그러나 보상제어시간이 길거나 제어나 제어 이론이 복잡하여 시스템이 복잡하게 되는 등 각각의 문제점을 가지고 있다. 본 연구에서는 아나로그 적분기의 적분시간이 적분기 입력전압의 크기에 반비례하는 원리를 이용하여 이 펄스 변조 스위칭 컨버터를 순시 추종 제어하는 방법을 제시한다. 제안된 제어방법의 주요 특징은 정주촉수로 동작한다. 보상제어시간은 스위칭 주기를 기본단위로 추종제어 한다. 제어결과는 한 주기의 평균치로 추종 제어한다. 정상상태는 물론 과도 상태에서도 정확하게 지령치에 추종하여 제어됨을 알 수 있다.

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Analysis and Compensation of Current Sampling Error in Discontinuous PWM Inverter for AC Drive (교류 전동기 구동용 불연속 PWM 인버터의 전류 샘플링 오차 해석 및 보상)

  • Song, Seung-Ho;Son, Yo-Chan;Seol, Seung-Gi
    • The Transactions of the Korean Institute of Electrical Engineers B
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    • v.48 no.9
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    • pp.517-522
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    • 1999
  • This paper addresses the issue of current sampling in a high performance AC drive system fed by a discontinuous PWM inverter. The effect of the sampling error due to the measurement delay produced by an input stage low pass filter and an A/D converter is described in the case of discontinuous PWM. To compensate for the sampling error, a method to estimate the delay time of the whole measurement system based on the measured current is proposed and its effectiveness is verified by experimental results. The proposed algorithm can automatically estimate the system delay introduced by the low pass filter and the A/D converter at the commissioning stage. By delaying the current sampling by the estimated value, experimental results indicate that more than 50% reduction of current ripple can be achieved.

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Implementation of Thrust Ripple Reduction for a Permanent Magnet Linear Synchronous Motor Using an Adaptive Feed Forward Controller

  • Baratam, Arundhati;Karlapudy, Alice Mary;Munagala, Suryakalavathi
    • Journal of Power Electronics
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    • v.14 no.4
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    • pp.687-694
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    • 2014
  • This paper focuses on the analysis and compensation of thrust ripples in permanent magnet linear synchronous motors (PMLSM). The main drawback in PMLSMs is the presence of thrust ripples, which are mainly due to the interaction between the permanent magnets and armature slotted core. These thrust ripples reduce the performance of the drive system in high precision applications especially at low speeds. This paper analyzes thrust ripples using the discrete wavelet transform. These undesired thrust ripples are compensated by using an adaptive feed forward controller. It is observed that this novel controller reduces about 65 percent of the thrust ripples. An extensive simulation is performed through MATLAB and it is validated through experimental results using a d-SPACE system with a DS1104 control board.

Analysis of Phase Error Effects Due to Grid Frequency Variation of SRF-PLL Based on APF

  • Seong, Ui-Seok;Hwang, Seon-Hwan
    • Journal of Power Electronics
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    • v.16 no.1
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    • pp.18-26
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    • 2016
  • This paper proposes a compensation algorithm for reducing a specific ripple component on synchronous reference frame phase locked loop (SRF-PLL) in grid-tied single-phase inverters. In general, SRF-PLL, which is based on all-pass filter to generate virtual voltage, is widely used to estimate the grid phase angle in a single-phase system. In reality, the estimated grid phase angle might be distorted because the phase difference between actual and virtual voltages is not 90 degrees. That is, the phase error is caused by the difference between cut-off frequency of all-pass filter and grid frequency under grid frequency variation. Therefore, the effects on phase angle and output current attributed to the phase error are mathematically analyzed in this paper. In addition, the proportional resonant (PR) controller is adapted to reduce the effects of phase error. The validity of the proposed algorithm is verified through several simulations and experiments.

Design and Implementation of a Robust Predictive Control Scheme for Active Power Filters

  • Han, Yang;Xu, Lin
    • Journal of Power Electronics
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    • v.11 no.5
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    • pp.751-758
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    • 2011
  • This paper presents an effective robust predictive control scheme for the active power filter (APF) using a smith-predictor based current regulator, which show superior features when compared to proportional-integral (PI) controllers in terms of an enhanced closed-loop bandwidth and an improved current tracking accuracy. A moving average filter (MAF) is implemented using a field programmable gate array (FPGA) for signal pre-processing to eliminate the switching ripple contamination. An adaptive linear neural network (ADALINE) is used for individual harmonic estimation to achieve selective compensation purpose. The effectiveness and validity of the devised control algorithm are confirmed by extensive simulation and experimental results.

Analysis and Compensation of Battery Ripple Current in Three-phase Grid Connected Battery Charger (3상 계통연계형 배터리 충전기의 전류리플 분석 및 보상)

  • Lee, Wujong;Kim, Youngrok;Cha, Hanju
    • Proceedings of the KIPE Conference
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    • 2012.07a
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    • pp.267-268
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    • 2012
  • 본 논문에서는 3상 계통연계형 배터리 충전기의 전류리플 발생 원인을 분석하고 보상하는 기법을 제안한다. 배터리 전류리플의 요소로는 전류 측정 시 발생하는 오차에와 데드타임에 의해 각각 기본파, 2고조파, 6고조파 성분이 발생한다. 배터리 전류의 리플 성분은 배터리 수명을 저하시키는 요소 중 하나로 리플 성분을 보상하여 그 크기를 줄이는 알고리즘이 필요하다. 배터리 전류 리플 성분의 발생은 시뮬레이션과 실험을 통해 확인하였고, 공진형 전류제어기를 사용하여 특정 고조파에 해당하는 리플 성분을 보상하여 배터리 전류의 리플을 보상하는 알고리즘을 적용하여 배터리의 리플 성분이 감소함을 확인하였다.

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The Study on The Application of QAM-OFDM Scheme for Nonlinear Satellite Channel (비선형 위성 채널에서 QAM-OFDM 방식의 적용에 관한 연구)

  • Lee, Hae-Seon
    • 전자공학회논문지 IE
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    • v.45 no.1
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    • pp.44-49
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    • 2008
  • In this paper, the performance for the non-linear satellite channel including the characteristics of group delay and gain ripple of transponder is analyzed with multi-level QAM-OFDM schemes. Comparing the BER performances between general OFDM and CI(Carrier Interferometry)-OFDM for various QAM schemes, the degree of performance improvement is presented in AWGN environments for specified nonlinear characteristics. The simulations are performed with the 36MHz bandwidth of transponder channel and 120Mbps transmission rate for QPSK, 8QAM, 16QAM, 32QAM, 64QAM schemes between normal and worst case condition. It is shown that the improvement measure by the CI-OFDM for the group delay of channel and nonlinear characteristic of HPA outperforms that for the gain ripple in the case of higher level QAM scheme in normal condition. And the simulation results show that the additional techniques like the channel coding and compensation scheme against the nonlinear characteristic are required for 32QAM and higher level QAM in worst case condition.

Analysis and Compensation of Current Measurement Error in Digitally Controlled AC Drives (디지털 제어 교류 전동기 구동시스템의 전류 측정 오차 해석 및 보상)

  • 송승호;최종우;설승기
    • The Transactions of the Korean Institute of Power Electronics
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    • v.4 no.5
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    • pp.462-473
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    • 1999
  • This paper addresses the current measurement issue of all digital field oriented control of ac motors. The p paper focuses on the effect of low-pass filter and also on the sampling of the fundamental component of the m motor current. The low-pass filter, which suppresses the switching noise of the motor current, introduces v variable phase delay according to the current ripple frequency. It is shown that the current sampling error c consists of the fundamental component and high frL'quency ripple components. In this paper, the dependency of t this current sampling e$\pi$or on the reference voltage vector is investigated analytically and a sampling technique i is proposed to minimize the error. The work is based on the three phase symmetry pulse width modulation l inverter driving an induction machine. With this technique, the bandwidth of current regulator can be extended t to the limit given by the switching frequency of the inverter and more precise torque regulation is possible.

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Real-Time Compensation Method of Current Measurement Error in Vector-Controlled Inverter for Induction Motor (유도전동기용 벡터제어 인버터에서 전류측정 오차의 실시간 보상 방법)

  • Kim, Ji-Hoon;Yoon, Duck-Yong
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.3
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    • pp.1685-1690
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    • 2014
  • This paper proposes a novel method to compensate for the measurement errors in detecting phase currents for vector-controlled inverter in real-time. The output torque equations for 3-phase induction motor are derived in terms of offset error and transducing gain error in current measurement circuits, and the equations shows that motor output torque has many ripples due to current measurement errors. Especially, if the proposed method is applied to vector-controlled inverter, the torque ripple by transducing gain error can be reduced in real-time at running state of motor. To verify the proposed method, it was applied to vector-controlled inverter for 3-phase induction motor of 200[W] and computer simulation and experimentation were carried out.

A High-Efficiency, Robust Temperature/voltage Variation, Triple-mode DC-DC Converter (고효율, Temperature/voltage 변화에 둔감한 Triple-mode CMOS DC-DC Converter)

  • Lim, Ji-Hoon;Ha, Jong-Chan;Kim, Sang-Kook;Wee, Jae-Kyung
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.45 no.6
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    • pp.1-9
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    • 2008
  • This paper suggests the triple-mode CMOS DC-DC converter that has temperature/voltage variation compensation techniques. The proposed triple-mode CMOS DC-DC converter is used to generate constant or variable voltages of 0.6-2.2V within battery source range of 3.3-5.5V. Also, it supports triple modes, which include Pulse Width Modulator (PWM) mode, Pulse Frequency Modulator (PFM) mode and Low Drop-Out (LDO) mode. Moreover, it uses 1MHz low-power CMOS ring oscillator that will compensate malfunction of chip in temperature/voltage variation condition. The proposed triple-mode CMOS DC-DC converter, which generates output voltages of 0.6-2.2V with an input voltage sources of 3.3-5.5V, exhibits the maximum output ripple voltage of below 10mV at PWM mode, 15mV at PFM mode and 4mV at LDO mode. And the proposed converter has maximum efficiency of 93% at PWM mode. Even at $-25{\sim}80^{\circ}C$ temperature variations, it has kept the output voltage level within 0.8% at PWM/PFM/LDO modes. For the verification of proposed triple-mode CMOS DC-DC converter, the simulations are carried out with $0.35{\mu}m$ CMOS technology and chip test is carried out.