• Title/Summary/Keyword: Sinusoidal input

검색결과 388건 처리시간 0.026초

A Noel Soft-Switching AC-DC Converter using $L^2SC$

  • Kim C. S.;Lee H. W.;Suh K. Y.;Kim H. D.;Kim K. T.
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2001년도 Proceedings ICPE 01 2001 International Conference on Power Electronics
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    • pp.271-275
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    • 2001
  • In this paper, proposes a novel AC-DC converter of high power factor and high efficiency by partial resonant method. The input current waveform in proposed circuit is got to be a discontinuous sinusoidal form in proportion to magnitude of ac input voltage under the constant duty cycle switching. Thereupon, the input power factor is nearly unity and the control circuit is simple. Also the switching devices in a proposed circuit are operated with soft switching by the partial resonant method. The result is that the switching loss is very low and the efficiency of system is high. The partial resonant circuit makes use of a inductor using step up and $L^2SC$ (Loss-Less Snubber Condenser). The switching control technique of the converter is simplified for switches to drive in constant duty cycle. Some simulative results and experimental results are included to confirm the validity of the analytical results.

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The Effect of Asynchronous Carrier on Matrix Converter Characteristics

  • Oyama, Jun;Higuchi, Tsuyoshi;Abe, Takashi;Yamada, Eiji;Hayashi, Hideki;Koga, Takashi
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 1998년도 Proceedings ICPE 98 1998 International Conference on Power Electronics
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    • pp.512-517
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    • 1998
  • In a matrix converter, input side and output side are coupled with each other through switching elements. Since disturbances on either side affect directly on the other side, it requires a high-speed on-line control system to compensate them. We proposed in previous papers a new control strategy and an on-line control circuit for a matrix converter. The control circuit could keep the output voltage at commanded value against fluctuation in the supply voltage. Furthermore wave forms of the output voltage and the input current were always kept sinusoidal. The switching pattern was generated by comparing modified voltage references with a carrier. The carrier was synchronized with the supply voltage using a PLL system, which made the control circuit complicated and costly. This paper discusses on the possibility of an asynchronized carrier. Experiment results show the input current distortion in case of asynchronous carrier is bigger than that of synchronous carrier. However, the deterioration can be minimized by increased carrier frequency.

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이송기구의 정밀 위치제어 (Precision Position Control of Feed Drives)

  • 송우근;최우천;조동우;이응석
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1994년도 추계학술대회 논문집
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    • pp.266-272
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    • 1994
  • An essential ingredient in precision machining is a positioning system that responds quickly and precisely to very small input signal. In this paper, two different positioning systems were presented fot the precision positioning control. The one is a friction drive system, the other is a ballscrew system. The friction drive system was composed of an air sliding guide and a friction drive. The ballscrew system was made of a ballscrew and a linear guide. Nonlinear behaviors of the given systems tend to make the system inaccurate. The paper looked at the phenomena that has caused the positioning error. These apparently nonlinear phenomena can be attributed mainly to the presence of the nonlinear friction and slip effect plus the dynamic change from the microdynamic to the macrodynamic and form the macrodynamic to the microdynamic. For the control of the positioning system, the control algorithm based on a neural network is suggested. The FEL(Feedback Error Learning) controller can learn the inverse dynamics of a nonlinear system by using the neural network controller, and stabilize the system by a linear controller. In the experiment, PTP control is implemented withen the maximum error of 0.05 .mu.m ~0.1 .mu. m when i .mu.m step reference input is applied and that of maximum 1 .mu. m when 100 .mu.m step reference input is given. Sinusoidal inputs with the amplitude of 1 .mu.m and 100 .mu. m are used for the tracking control of the positioning system. Experimental results of the proposed algorithm are shown to be superior to those of conventional PD controls.

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소프트 스위칭형 PFC 승강압 AC-DC 컨버터에 관한 연구 (A Study on PFC Buck-Boost AC-DC Converter by Soft Switching Method)

  • 곽동걸;이승호;이봉섭;정도영;심재선;임진근
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2007년도 하계학술대회 논문집
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    • pp.435-437
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    • 2007
  • Authors propose a PFC(power factor correction) Buck-Boost AC-DC converter by soft switching method. The proposed converter for a discontinuous conduction mode eliminates the complicated control requirement and reduces the size of components. The input current waveform in the converter is got to be a sinusoidal form of discontinuous pulse in proportion to magnitude of ac input voltage under the constant duty cycle switching.Therefore,the input power factor is nearly unity and the control algorithm is simple. To achieve high efficiency system, the proposed converter is constructed by using a partial resonant technique. The control switches using in the converter are operated with soft switching for a partial resonant. The control switches are operated without increasing their voltage and current stresses by the soft switching method. The result is that the switching loss is very low and the efficiency of converter is high.

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LED용 고효율 SMPS 개발에 관한 연구 (A Study on Development of High Efficiency SMPS used in LED)

  • 곽동걸;이봉섭;최신형;박영직
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2014년도 전력전자학술대회 논문집
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    • pp.431-432
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    • 2014
  • Recently, the demand of LED(light-emitting diode) lighting is gradually enlarged by governmental saveenergy policy, which the LED lighting has been established compulsorily in new buildings, public institutions, and residential installations etc.. The LED lighting is driven by SMPS (switching mode power supply). The SMPS requires high efficiency because the SMPS changes a commercial ac power source to low voltage dc power source. Harmonic components that occur in the conversion process of SMPS decrease system power factor and deal great damage in electric power system. To improve such problems, this paper proposes a SMPS of high efficiency. The switching devices in the proposed SMPS are operated by soft switching technique using a new quasi-resonant circuit. The input ac current waveform in the proposed SMPS becomes a quasi-sinusoidal waveform proportional to the magnitude of input ac voltage under constant switching frequency. As a result, the proposed SMPS obtains low switching power loss and high efficiency, and its input power factor is nearly in unity.

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전기저항용접의 파형제어에 관한 기초연구 (Preliminery study of waveform control in ERW process)

  • 조민현;김동철;강문진;은성수
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2009년 추계학술발표대회
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    • pp.32-32
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    • 2009
  • Electric Resistance Welding (ERW) process is the most efficient process to manufacture the linepipe. To develop the high performance ERW linepipe using the high strength and the high alloy steels, the modulation of input power waveform such as sinusoidal waveform is introduced because the conventional ERW technology is not sufficient enough to produce the high quality linepipe due to its strength and high alloy contents (high Ceq). In this article, the material used for the experiment was API X60 with 8.2mm thickness, and ERW simulator at POSCO was used to develop a waveform control system for the power modulation. The frequency of power modulation was varied from 50Hz to 150Hz with the fixed amplitude of ${\pm}2%$ power. The non-modulated power input and the modulated power input cases are conducted to demonstrate the variation of the narrow gap length and the arcing frequency due to power modulation. From results of the non-modulated power input case, the excessive power causes the longer narrow gap length and the low arcing frequency due to the large heat input and the strong electro magnetic force that increase the weld defect. On the contrary, the small narrow gap length and the high arcing frequency reduce the weld defect. After modulating the power input with 50Hz and 100Hz at the fixed power, the arcing frequency increases, but the narrow gap length does not change much. The high arcing frequency prevents the formation of weld defect because the sweeping frequently cleans the oxides on the narrow gap edges. As a result, the manufacturing window can be expanded by the power modulation that provides the stable ERW process for the quality improvement of the linepipe made from the high strength/high alloy steels.

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PWM-based Integral Sliding-mode Controller for Unity Input Power Factor Operation of Indirect Matrix Converter

  • Rmili, Lazhar;Hamouda, Mahmoud;Rahmani, Salem;Blanchette, Handy Fortin;Al-Haddad, Kamal
    • Journal of Power Electronics
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    • 제17권4호
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    • pp.1048-1057
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    • 2017
  • An indirect matrix converter (IMC) is a modern power generation system that enables a direct ac/ac conversion without the need for any bulky and limited lifetime electrolytic capacitor. This system also allows four-quadrant operation, generation of sinusoidal output voltage waveforms with variable frequency and amplitude, and control of input power factor. This study proposes a pulse-width modulation-based sliding-mode controller to achieve unity input-power factor operation of the IMC independently of the active power exchanged with the grid, as well as a fast dynamic response. The designed equivalent control law determines, at each sampling period, the appropriate q-axis component of the modulated input current to be injected into the grid through the LC input filter. An integral term of the error is included in the expression of the sliding surface to increase the accuracy of the control method. A double space vector modulation method is used to synthesize the direction of the space vector of the input currents as required by the sliding-mode controller and the space vectors of the target output voltages. Simulation and experimental results are provided to show the effectiveness and evaluate the performance of the proposed control method.

금속펄스 선형증폭기의 빠른 입력펄스에 대한 이득안정도에 관한 연구 (Sinusoidal A Study on the gain Stability of the Feedback Linear Pulse Amplifiers for Fast Pulse Input)

  • 이병선
    • 대한전자공학회논문지
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    • 제11권3호
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    • pp.1-14
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    • 1974
  • 귀환 펄스 선형증폭기에 단계전압과 방사능검출기에서 나오는 펄스 전압이 인가되었때 경우의 이득안정도에 관하여 해석검토 하였다. 방사능 검출기의 일부를 이루고 있는 광전증배관의 양극회로에서 형성되는 파형을 나타내는 식을 유도 하였으며 귀환 증폭기가 하나의 시정수와 두 개의 시정수를 가졌을 경우에 관하여 해석하였고 이 들을 비교 검토하였다. 이들 빠른 입력펄스전압이 귀환증폭기에 인가되면 출력전압의 선형도와 안정도는 증폭기의 rise time와, 2∼3배가 경과하여야 귀환효과가 나타난다. 이 제한을 줄이기 위하여는 귀환증폭기의 rise time을 계측할려는 입력 펄스의 폭보다 적도록 설계하여야 한다는 것을 증명하였다. 이상의 이론은 선형증폭기의 기본증폭단으로 설계된 고렬전압 귀환증폭단에도 그대로 적용굴을 보였으며 이 증폭단의 입력저항이 적을수록 이득안정도가 좋아짐을 보였다.

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고역율 PWM 매트릭스 컨버터의 개선된 순시추종 제어함수 (Improved instantaneous Following Control Function for High Power Factor PWM Matrix Converter)

  • 김광태
    • 조명전기설비학회논문지
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    • 제19권3호
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    • pp.35-43
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    • 2005
  • 종래의 컨버터-인버터 전력변환 시스템에서 do-link를 제거하여 보다 효과적인 인버터를 만들기 위하여 매트릭스 컨버터에 관하여 연구를 하고자 한다. 따라서 매트릭스 컨버터는 에너지를 저장하는 능동소자를 갖지 않는 장점이 있으나 전원이 스위치를 통하여 직접 부하에 연결되므로 전원의 리플과 노이즈가 그대로 부하에 전달되는 결점을 갖는다. 매트릭스 컨버터는 전원을 부하에 대하여 정현적으로 스위칭해야 되며, 한편 이러한 노이즈를 제거 및 보상하는 특성과 함께 역율문제도 함께 해결해야 한다. 본 연구에서는 종래의 제시된 방법에 비하여 제어어시간을 단축시킨 제어함수를 제시한다. 제시된 제어함수는 전원에 포함된 리플과 노이즈를 스위칭하는 과정에서 자동으로 보상하며 역율 1이되게 스위칭한다. 시뮬레이션 결과와 실험결과를 함께 제시한다.

헬리콥터 능동진동제어시스템 가속도 신호 처리 (Accelerometer Signal Processing for a Helicopter Active Vibration Control System)

  • 김도형
    • 한국항공우주학회지
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    • 제45권10호
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    • pp.863-871
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    • 2017
  • 헬리콥터 능동진동제어시스템에 널리 이용되는 LMS (least mean square) 알고리즘은 전방경로 (forward path) 전달함수와 에러 신호의 연산을 통해 제어 입력을 계산한다. 에러 신호가 정현파 형태일 경우, 기준 신호에 동기화된 진동수, 위상을 가지는 코사인과 사인 함수의 조합으로 표현될 수 있다. 제어 신호 또한 동일한 진동수를 가지게 되므로 제어 입력의 코사인, 사인 성분의 크기만 계산하고, 기준 신호의 진동수, 위상 정보를 활용하면 제어알고리즘은 단순하게 구현될 수 있다. 제어 입력 신호의 계산은 단순한 행렬 연산으로 구현되고, 제어 명령의 변화는 에러 센서의 주파수에 비해 느리기 때문에 제어알고리즘은 낮은 주파수에서 운용 가능하다. 에러 센서의 코사인, 사인 성분을 추출하는 신호처리 알고리즘을 시뮬링크 모델로 구현하고, PIL (processor in the loop) 모드 시뮬레이션을 통해 실시간 작동 성능을 평가하였다.