• Title/Summary/Keyword: PWM method

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Comparative Analysis of Offset Voltage PWM and $V_{max}-V_{mid}$ PWM Method for 3 Phase Matrix Converter (3상 매트릭스 컨버터에 사용되는 옵셋전압 PWM 방법과 $V_{max}-V_{mid}$ PWM 방법의 비교분석)

  • Cha, Han-Ju;Kim, Woo-Jung
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.58 no.2
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    • pp.285-291
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    • 2009
  • In this paper, comparative analysis of offset voltage PWM method and $V_{max}-V_{mid}$ PWM method for three-phase matrix converter is addressed by using a simple analytical and graphical method. Offset voltage PWM method calculates PWM patterns in terms of offset voltage and variable slope of carrier, and it simplifies matrix converter modulation algorithm significantly. $V_{max}-V_{mid}$ PWM method generates patterns by using two phases and maintaining a remaining phase to base phase, and it is implemented in the industrial products. The most important performance criterion of modulation method is a magnitude of current ripples and it is analytically modelled. The graphical illustration of theses complex multivariable functions make per-carrier cycle and per fundamental cycle behavior of two PWM methods understood. Two modulation methods are analysed with the analytical formulas and graphics, and the analysis shows offset voltage PWM method is superior to $V_{max}-V_{mid}$ PWM method with respect to input current ripples and output voltage ripples.

Performance Improvement of BLDC Motor Speed Control Using Hybrid PWM Method (하이브리드 PWM 방식을 이용한 브러시리스 직류 전동기의 속도 제어 성능 향상)

  • 이동훈;오태석;전성구;김일환;남부희
    • The Transactions of the Korean Institute of Electrical Engineers D
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    • v.53 no.7
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    • pp.491-500
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    • 2004
  • This paper considers a hybrid PWM(pulse width modulation) method which can be used in the brushless DC motor controller. Due to many disadvantages of bipolar PWM method, unipolar PWM method is mostly used in industrial field. In constant speed control application, the unipolar PWM method shows the good performance of speed control. But in the wide range of speed control application, it shows poor performance especially when deceleration is needed. So we propose the hybrid PWM method that utilizes both of bipolar and unipolar PWM methods according to the sign of the speed controller output. Simulation and experimental result show that the proposed method improves speed control performance of the brushless DC motor which is applied to the industrial sewing machines.

Performance Improvement of BLDC Motor Speed Control Using Hybrid PWM Method (하이브리드 PWM 방식을 이용한 브러시리스 직류 전동기의 속도 제어 성능 향상)

  • Lee, Dong-Hoon;Kim, Il-Hwan;Nam, Bu-Hee
    • Proceedings of the KIEE Conference
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    • 2004.05a
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    • pp.19-21
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    • 2004
  • This paper considers pulse width modulation (PWM) methods which are used in 3-phase brushless DC motor controller. Due to many disadvantages of bipolar PWM method, unipolar PWM method is mostly used in industrial field. In constant speed control application, the unipolar PWM method shows a good performance of speed control. But in the wide range of speed control application, it shows a poor performance especially when deceleration is needed. So we propose hybrid PWM method that utilizes two PWM methods according to the sign of speed controller output. The simulation and experimental result shows that the proposed method improves a speed control performance of the brushless DC motor which is applied to industrial sewing machines.

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MRSF-PWM Method for Acoustic Noise Reduction of Traction Motor Drive Systems (견인전동기 구동시스템의 소음 저감을 위한 MRSF-PWM 방식)

  • 홍순찬;서영민
    • The Transactions of the Korean Institute of Power Electronics
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    • v.7 no.3
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    • pp.262-271
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    • 2002
  • In PWM inverters used in traction motor drive systems, the switching frequency is restricted by their large power capacity and thus the electromagnetic acoustic noise is generated. To reduce such an audible noise, the new MRSF-PWM(Modified Random Switching Frequency PWM) method is proposed. In the Proposed MRSF-PWM method, both triangular wave and sawtooth wave are used together as carrier waves for harmonic diffusion and reference wave is generated by injecting 3rd harmonic into the stone wave to expand the linear control region of output voltages. To verify the validity of the proposed MRSF-PWM method, computer simulations are carried out. And the results show that the MRSF-PWM method is more excellent than other RPWM methods in the aspects of both linearity and harmonic diffusion md more effective than SPWM(Sinusoidal PWM) method for the reduction of an audible noise.

PWM Method with Low d-axis Current Ripple for reducing Input Current THD at Light Loads in Three Phase PWM Rectifier (3상 PWM 정류기의 경부하시 입력전류 THD 저감을 위한 d축 전류리플 저감 PWM 방법)

  • Jin, Yong-Sin;Shin, Hee-Keun;Kim, Hag-Wone;Cho, Kwan-Yuhl
    • The Transactions of the Korean Institute of Power Electronics
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    • v.17 no.6
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    • pp.478-485
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    • 2012
  • In this paper, a new PWM method is proposed to reduce the input current harmonics of 3 phase PWM rectifier. In the conventional carrier comparison PWM method, a triangular wave is generally used as the carrier wave. However, the large d-axis current ripple by the triangle carrier wave may be a source of large input current THD(Total Harmonic Distortion). In this paper, a new carrier comparison PWM method with saw tooth wave is proposed. Depending on the sector where the voltage command vector places, one of the rising or falling saw tooth wave is selected. To reduce the switching losses of the saw tooth carrier PWM, the discontinuous PWM is also presented. The proposed PWM method can reduce the d-axis current ripple as well as the switching losses. The performance of the conventional and proposed PWM methods is verified by the simulation and experimental results.

Novel PWM Method with Low Ripple Current for Position Control Applications of BLDC Motors

  • Kim, Hag-Wone;Shin, Hee-Keun;Mok, Hyung-Soo;Lee, Yong-Kyun;Cho, Kwan-Yuhl
    • Journal of Power Electronics
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    • v.11 no.5
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    • pp.726-733
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    • 2011
  • BLDC Motors are widely used in various speed control applications due to their ease of control and low cost. Generally, the unipolar PWM method is used for speed control applications. However, the unipolar PWM method has a current spike problem in the braking operation which can be a problem in speed reversal which generally happens in position control applications. However, the current spike problem can be solved by the conventional bipolar PWM method. Although the current spike problem can be solved, the conventional bipolar PWM method has the problem of a large current ripple. In this paper, a novel bipolar PWM method is proposed to solve this problem. The current ripple and the current spike problems are analyzed in this paper for the unipolar and bipolar PWM methods. At last, the merits of the proposed bipolar PWM method are proven by experiment.

A single-carrier comparison PWM for Voltage Control of Vienna Rectifier (단일 반송파를 이용한 비엔나 정류기의 전압 제어)

  • Yoon, Byung-Chul;Kim, Hag-Wone;Cho, Kwan-Yuhl;Lim, Byung-Kuk
    • The Transactions of the Korean Institute of Power Electronics
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    • v.17 no.2
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    • pp.129-134
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    • 2012
  • In this paper, a new simple PWM method for Vienna rectifier is proposed. The previous SVPWM method for Vienna rectifier is very complex and difficult to implement. To solve these problems, a new single-carrier comparison PWM method for voltage control of Vienna rectifier is proposed. Because of using the only single carrier, implementation of the proposed PWM is very simple. In the proposed PWM method, carrier comparison parts of the PWM block is only changed from the 2 level PWM control block. The usefulness of the proposed PWM method is verified by the simulation and experiment.

Maximum Boost Discrete PWM method of Z-Source Inverters (Z-소스 인버터의 최대승압 불연속 PWM 방법)

  • Kim, Seonghwan;Park, Janghyun;park, Taesik
    • Journal of IKEEE
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    • v.21 no.2
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    • pp.166-169
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    • 2017
  • In this paper, maximum boost discrete PWM(DPWM) method of Z-Source Inverter(ZSI) is proposed. In general, a DPWM method is used to reduce the switching losses of the inverters and increase the efficiencies. The maximum boost PWM method of Z-Source Inverters is combined with the DPWM method. The proposed Maximum boost DPWM of ZSI is analyzed and it shows how to reduce the switching losses of ZSI. An experimental system has been built and tested to verify the effectiveness of the proposed method.

Speed Control of PMSM using DTC-PWM Approach (DTC-PWM 방식에 의한 PMSM의 속도 제어 기법)

  • Lee, Dong-Hee;Choo, Young-Bae
    • The Transactions of the Korean Institute of Power Electronics
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    • v.14 no.4
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    • pp.268-277
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    • 2009
  • This paper presents an DTC-PWM (Direct Torque Control-Pulse Width Modulation) of PMSM (Permanent Magnet Synchronous Motor). The proposed DTC-PWM method combines a conventional DTC and PWM approach for switching signal generation. The actual torque is estimated by the torque estimator in conventional method, but the switching signal is generated by PWM method according to the switching rules and torque error. A effective voltage vector and zero vector are used to generate the switching signals and asymmetric switching method is applied. A simple calculation of PWM without any complex determination of space vector can assure the constant switching frequency with an constant torque and flux. The proposed torque control scheme for PMSM is verified by experimental results.

A Study On The Load Sharing PWM Method For Multi-level Converter (멀티레벨 PWM 컨버터의 부하분담 PWM 방식 연구)

  • Ahn, Joonseon
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.10 no.6
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    • pp.529-534
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    • 2017
  • In this paper, the implementation of proposed Automatic Load Balanced (ALB) PWM generation method is discussed. The conventional PWM generation method for cascade type H-bridge PWM converter causes the unbalance between each H-bridge converter, therefore the complex redundancy is required for the balancing of switching load of each converter, it consumes more computing power of controller. The ALB PWM method needs no additional switching redundancy for balancing, this paper discusses the implementation of ALB-PWM.