• 제목/요약/키워드: unbalance and distortion compensation

검색결과 8건 처리시간 0.022초

3상 양방향 인버터의 계통전압 불평형 및 왜곡에 의한 계통전류 보상 (The Compensation of the Grid Current Distortion caused by the Grid Voltage Unbalance and Distortion for 3-Phase Bi-Directional DC to AC Inverter)

  • 양승대;김승민;최주엽;최익;송승호;이상철;이동하
    • 한국태양에너지학회 논문집
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    • 제32권spc3호
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    • pp.228-234
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    • 2012
  • This paper presents the algorithm of the compensation of the grid current distortion caused by the grid voltage unbalance and distortion in 3-phase bi-directional DC to AC inverter. Usually 3-phase grid system has unbalance and distortion because of connecting 1-phase and non-linear load with 3-phase load using same input node. Controlling 3-phase inverter by general method under the unbalanced and distorted grid voltage, the grid current has distortion. This distortion of the grid current cause the grid voltage distortion again. So, it need to control the grid current balanced and non-distorted, even the grid voltage gets unbalanced and distorted. There are some complex method to compensate the gird current distortion. it sugest simple method to solve the problem. PSIM simulation is used to validate the proposed algorithm.

3상 양방향 인버터의 계통전압 불평형 및 왜곡에 의한 계통전류 불평형 및 왜곡 보상 (A Compensation of the Grid Current Unbalance and Distortion caused by the Grid Voltage Unbalance and Distortion in 3-Phase Bi-Directional DC to AC Inverter)

  • 양승대;김승민;최주엽;최익;송승호;이상철;이동하
    • 전력전자학회논문지
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    • 제18권2호
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    • pp.161-168
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    • 2013
  • This paper presents an algorithm of a compensation of the grid current distortion caused by the grid voltage unbalance and distortion in 3-phase bi-directional DC to AC inverter. Usually 3-phase grid system has unbalance and distortion because of connecting 1-phase and non-linear load with 3-phase load using same input node. Controlling 3-phase inverter by general method under the unbalanced and distorted grid voltage, the grid current has distortion. This distortion of the grid current cause the grid voltage distortion again. So, it need to control the grid current balanced and non-distorted, even the grid voltage gets unbalanced and distorted. There are some complex method to compensate the gird current distortion. it suggest simple method to solve the problem. Simulation and experiment is used to validate the proposed algorithm.

전원전압의 불평형 및 왜곡 보상기능을 갖는 3상 PWM 정류기의 전류제어기 (A Current Controller with the Compensation of the Input Voltage Unbalance and Distortion for Three Phase PWM Rectifier)

  • 신근희;김학원;조관열;임병국
    • 전력전자학회논문지
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    • 제16권6호
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    • pp.594-601
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    • 2011
  • 본 논문은 상용의 전원 전압이 불평형 및 왜곡을 갖는 경우, 전원전압 불평형 및 왜곡 보상기능을 갖는 전류제어기를 제안한다. 일반적으로 3상 전원 시스템은 공통 입력 단자 (Point of Common Coupling)에 단상 부하 및 비선형 부하가 3상 부하와 같이 연결될 수 있어, 종종 불평형과 왜곡이 발생한다. 이런 조건하에서 3상 PWM 정류기를 일반적인 전류 제어기로 제어 할 경우, 3상 PWM 정류기 입력 전류가 불평형 및 왜곡을 갖는 문제가 발생한다. 본 논문에서는 간단한 모델 기반 적응 제어 시스템(Model Reference Adaptive System)기법을 이용하여 3상 입력 전압의 불평형 및 왜곡을 관측하고 전향 보상하는 전류 제어기를 제안하며, 모의해석과 실험을 통하여 그 효용성을 입증한다.

멀티레벨 인버터를 이용한 무효전력 보상장치에서의 DC-Link 전압 불평형 보상 (DC-Link Voltage Unbalance Compensation of Reactive Power Compensator using Multi-level Inverter)

  • 김효진;정승기
    • 전력전자학회논문지
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    • 제18권5호
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    • pp.422-428
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    • 2013
  • Recently, we use a static synchronous compensator(STATCOM) with cascaded H-bride topologies, because it is easy to increase capacity and to reduce total harmonic distortion(THD). When we use equipment for reactive power compensation, dc-link voltage unbalances occur from several reasons although loads are balanced. In the past, switching pattern change of single phase inverter and reference voltage magnitude change of inverter equipped with power sensor have been used for dc-link voltage balance. But previous methods are more complicated and expensive because of additional component costs. Therefore, this paper explains reasons of dc-link voltage unbalance and proposes solution. This solution is complex method that is composed of reference voltage magnitude change of inverter without additional hardware and shifted phase angle of inverter reference voltages change. It proves possibility through 1000[KVA] system simulation.

계통전압 왜곡 및 불평형시 3상 계통연계인버터의 계통전류제어 기법 (Grid Current Control Scheme at Thee-Phase Grid-Connected Inverter Under Unbalanced and Distorted Grid Voltage Conditions)

  • ;전태원
    • 전기학회논문지
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    • 제62권11호
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    • pp.1560-1565
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    • 2013
  • This paper proposes the control method for compensating for unbalanced grid current and reducing a total harmonic distortion (THD) of the grid current at the three-phase grid-connected inverter systems under unbalancd and distorted grid voltage conditions. The THD of the grid current caused by grid voltage harmonics is derived by considering the phase delay and magnitude attenuation due to the hardware low-pass filter (LPF). The Cauchy-Schwarz inequality theory is used in order to search more easily for a minimum point of THD. Both the gain and angle of a compensation voltage at the minimum point of THD of the grid current are derived. The negative-sequence components in the three-phase unbalanced grid voltage are cancelled in order to achieve the balanced grid current. The simulation and experimental results show the validity of the proposed control methods.

3상 양방향 인버터의 계통 불평형 및 왜곡 보상 (The Compensation of the Input Voltage Unbalance and Distortion for Three Phase Bi-Directional Inverter)

  • 양승대;김승민;송승호;최익;최주엽;이상철;이동하
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2012년도 전력전자학술대회 논문집
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    • pp.526-527
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    • 2012
  • 본 논문은 상용계통의 전압에 불평형 및 왜곡이 있을 경우, 양방향 인버터의 동작에 영향을 주어 발생하는 계통전류의 불평형 및 왜곡을 보상해 주는 알고리즘을 제안한다. 일반적으로 3상 계통시스템은 공통 입력단자에 단상 부하 및 비선형 부하가 3상 부하와 같이 연결될 수 있으므로 종종 불평형과 왜곡이 발생한다. 이러한 불평형 및 왜곡상황에서 3상 양방향 인버터를 일반적인 방법으로 제어할 경우, 계통의 입 출력 전류의 불평형 및 왜곡 문제가 발생한다. 본 논문에서는 제어기 상에서 왜곡성분을 추출하고 이를 제어기의 출력에 보상하여 줌으로써 간단한 보상기법을 제시하며, 모의실험을 통하여 그 효과를 검증한다.

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Wind Energy Interface to Grid with Load Compensation by Diode Clamped Multilevel Inverters

  • Samuel, Paulson;Naik, M. Kishore;Gupta, Rajesh;Chandra, Dinesh
    • Journal of Power Electronics
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    • 제14권2호
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    • pp.271-281
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    • 2014
  • Fluctuating wind conditions necessitate the use of a variable speed wind turbine (VSWT) with a AC/DC/AC converter scheme in order to harvest the maximum power from the wind and to decouple the synchronous generator voltage and frequency from the grid voltage and frequency. In this paper, a combination of a three phase diode bridge rectifier (DBR) and a modified topology of the diode clamped multilevel inverter (DCMLI) has been considered as an AC/DC/AC converter. A control strategy has been proposed for the DCMLI to achieve the objective of grid interface of a wind power system together with local load compensation. A novel fixed frequency current control method is proposed for the DCMLI based on the level shifted multi carrier PWM for achieving the required control objectives with equal and uniform switching frequency operation for better control and thermal management with the modified DCMLI. The condition of the controller gain is derived to ensure the operation of the DCMLI at the fixed frequency of the carrier. The converter current injected into the distribution grid is controlled in accordance with the wind power availability. In addition, load compensation is performed as an added facility in order to free the source currents being fed from the grid of harmonic distortion, unbalance and a low power factor even though the load may be unbalanced, non-linear and of a poor power factor. The results are validated using PSCAD/EMTDC simulation studies.

자립형 태양광 발전 시스템을 위한 3상 양방향 DC-AC 인버터 연구 (The Study of 3-Phase Bi-Directional DC to AC Inverter for the Bi-Model PV PCS)

  • 양승대;정승환;최주엽;최익;이영권
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2012년도 춘계학술발표대회 논문집
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    • pp.319-324
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    • 2012
  • This paper presents the study of 3-Phase bi-directional DC to AC inverter with unity power factor. 3-Phase bi-directional DC to AC inverter is important for the bi-modal PV PCS with an energy storage system. Both Inverting and converting are needed to connect between the grid side and boost converting side to charge and discharge the energy storage system. The paper proposes the appropriate circuit topology and proper control system for the bi-directional inverter. It also proposes the method of selecting the optimum control method considering system stability. PSIM simulation is used to validate the proposed algorithm.

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