• 제목/요약/키워드: Modular multilevel converter (MMC)

검색결과 98건 처리시간 0.03초

Scheme for Reducing Harmonics in Output Voltage of Modular Multilevel Converters with Offset Voltage Injection

  • Anupom, Devnath;Shin, Dong-Cheol;Lee, Dong-Myung
    • Journal of Power Electronics
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    • 제19권6호
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    • pp.1496-1504
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    • 2019
  • This paper proposes a new THD reduction algorithm for modular multilevel converters (MMCs) with offset voltage injection operated in nearest level modulation (NLM). High voltage direct current (HVDC) is actively introduced to the grid connection of offshore wind powers, and this paper deals with a voltage generation technique with an MMC for wind power generation. In the proposed method, third harmonic voltage is added for reducing the THD. The third harmonic voltage is adjusted so that each of the pole voltage magnitudes maintains a constant value with a maximum number of (N+1) levels, where N is the number of sub-modules per arm. By using the proposed method, the THD of the output voltage is mitigated without increasing the switching frequency. In addition, the proposed method has advantageous characteristics such as simple implementation. As a part of this study, this paper compares the THD results of the conventional method and the proposed method with offset voltage injection to reduce the THD. In this paper, simulations have been carried out to verify the effectiveness of the proposed scheme, and the proposed method is implemented by a HILS (Hardware in the Loop Simulation) system. The obtained results show agreement with the simulation results. It is confirmed that the new scheme achieved the maximum level output voltage and improved the THD quality.

Development and Testing of a 10 kV 1.5 kA Mobile DC De-Icer based on Modular Multilevel Converter with STATCOM Function

  • Hu, Pengfei;Liang, Yiqiao;Du, Yi;Bi, Renming;Rao, Chonglin;Han, Yang
    • Journal of Power Electronics
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    • 제18권2호
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    • pp.456-466
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    • 2018
  • This paper introduces the development of a de-icer based on a full-bridge modular multilevel converter (FMMC). The FMMC can generate a wide range of DC voltages owing to its modularity, scalability, and redundancy, which makes it suitable for ice-melting applications. First, operating principles and voltage ranges are analyzed when FMMC is applied as a mobile de-icer. Second, two new startup strategies, constant modulation index and constant power startup strategies, are proposed. Third, the main control strategies of the de-icer are proposed. Fourth, a novel rated-current zero-power test scheme is proposed to simplify test conditions. Finally, a 10 kV 1.5 kA mobile MMC de-icer is designed and built, and experiments are carried out to validate the proposed startup, control strategies, and rated-current zero-power test scheme.

스위칭 손실을 줄이기 위한 모듈형 멀티레벨 컨버터의 제어 방법 (Control Method of Modular Multilevel Converter to Reduce Switching Losses)

  • 박소영;김재창;곽상신
    • 전력전자학회논문지
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    • 제22권6호
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    • pp.476-483
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    • 2017
  • In this paper, a voltage-based model predictive control (MPC) scheme for a modular multilevel converter is used to reduce switching loss. The proposed method calculates an offset voltage that clamps the switching operation of submodules in which the current greatly flows at every sampling period by using the reference phase voltage and the reference phase current. To use the offset voltage, the proposed method converts the current-based MPC to the voltage-based MPC. The proposed voltage-based MPC then generates a new reference pole voltage that clamps the switching of submodules by applying the calculated offset voltage to the phase voltage. Therefore, the proposed method can reduce the switching loss by stopping the switching operation of submodules in which the current greatly flows. The switching loss reduction effect of the proposed method is verified by comparing its loss data with those of the conventional MPC method.

MMC-HVDC 시스템용 서브모듈 성능시험회로와 제어기법 (Performance Test Circuit and Control Method for Submodule of MMC-HVDC System)

  • 조광래;서병준;박권식;김학수;허진용;노의철
    • 전력전자학회논문지
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    • 제24권6호
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    • pp.452-458
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    • 2019
  • This study proposes a new test circuit and control method for the submodules of modular multilevel converter (MMC)-based HVDC systems. The test current of conventional submodule test circuits cannot provide the DC offset components or may have some distortion in the linearized current with the DC offset. The proposed scheme can provide not only the DC component but also linearized current without distortion. Therefore, the submodule test current waveform is relatively similar to that of a real submodule consisting of an MMC-based HVDC system. The validity of the proposed circuit and control method is verified through a simulation and experiment.

Investigation of Capacitor Voltage Regulation in Modular Multilevel Converters with Staircase Modulation

  • Shen, Ke;Wang, Jianze;Zhao, Dan;Ban, Mingfei;Ji, Yanchao;Cai, Xingguo
    • Journal of Power Electronics
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    • 제14권2호
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    • pp.282-291
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    • 2014
  • This paper presents a detailed theoretical analysis and performance assessment of the capacitor voltage balancing strategies for staircase modulated modular multilevel converters (MMC) in terms of the algorithm structures, voltage balancing effect, and switching frequency. A constant-frequency redundancy selection (CFRS) method with minimal switching loss is proposed and the function realization of specific modules of the algorithm is given. This method is simple and efficient in both switching frequency and regulation capacity. Laboratory results show very good agreement with the theoretical analysis and numerical simulations.

MMC VSC 기반 Point-to-Point HVDC Grid에서의 DC 고장 분석 (DC Fault Study in Point-to-Point HVDC Grid based on MMC VSC)

  • 이동수;김기석;장길수
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2015년도 제46회 하계학술대회
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    • pp.161-162
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    • 2015
  • 최근 세계적으로 전력계통의 대륙 간 연계나 신재생에너지, 분산전원의 계통 연계를 위해 HVDC(High voltage Direct Current)에 대한 연구가 활발히 진행되고 있다. 대용량, 장거리 송전이 필요한 경우 HVAC에서의 전력손실과 송전거리의 한계를 극복하기 위하여 HVDC가 새로운 대안으로 떠오르고 있으며, LCC(Line commutated Converter)와 VSC(Voltage Source Converter)의 기술발전이 비약적으로 이뤄지고 있다. 특히, DC Grid화를 위해서 유럽에서는 해상풍력을 연계한 Windfarm을 DC Grid화 하는 프로젝트가 활발히 진행되고 있다. 이러한 신재생 에너지의 계통 연계를 위해서 DC Grid가 본격적으로 논의가 되고 있고 관련분야에서는 기술개발을 앞다퉈 진행하고 있는 상황이다. DC Grid 구현을 위해 VSC HVDC가 최근 주목받고 있으며, VSC로 연계된 DC Grid의 AC 계통과의 연계를 위해 가장 필요한 것이 바로 DC 차단기라고 할 수 있겠다. 본 논문에서는 DC Grid의 고장분석을 위한 기초연구로써 MMC(Modular Multilevel Converter) VSC를 기반으로 한 Point-to-Point HVDC Grid에서의 DC 고장에 대한 분석을 실시하였으며 그 특징을 분석하였다.

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AC 계통 불평형 조건에서 출력동요 저감을 위한 MMC 내부 동적특성 분석 (Analysis of Internal Dynamics in Modular Multilevel Converter for Reducing Power Oscillation Under Grid Voltage Distortion)

  • 이상중;강재식;강대욱;박영주;정지훈
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2020년도 전력전자학술대회
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    • pp.320-321
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    • 2020
  • 본 논문은 AC 계통 불평형 발생 시 출력전력의 동요를 저감시키기 위한 POD 전략을 수행하는 MMC-HVDC 시스템의 내부 동적상태를 분석하였다. POD 전략을 통해서 MMC 출력전류의 역상분을 제어하여 계통에 주입되는 유효 전력의 발진을 제거함으로써, MMC-HVDC 시스템이 연계된 인근 계통에 공급 신뢰도를 향상시킬 수 있다. POD 전략에서 유효 전력만 출력할 경우, MMC의 각 상에는 동일한 전력이 흐른다. 반면, 계통 전압 보상을 위해서 무효 전력을 동시에 공급할 경우, 각 상에 흐르는 전력은 불균형해지기 때문에 MMC의 암전류 불평형이 발생하여 스위치 소자의 정격 용량 및 열 스트레스를 증가 시켜 MMC의 안정성을 저해시킨다. 본 논문은 POD 전략을 수행하기 위해서 무효 전력이 MMC 암 전류에 미치는 영향을 분석하였으며, 200 MW MMC-HVDC 모델을 바탕으로 PSCAD/EMTDC 시뮬레이션 툴을 이용하여 분석 결과를 검증하였다.

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스위칭 손실을 줄이기 위한 모듈형 멀티레벨 컨버터의 제어 방법 (Control method for Modular Multilevel Converter to reduce switching losses)

  • 박소영;김재창;곽상신
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2017년도 전력전자학술대회
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    • pp.22-23
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    • 2017
  • 본 논문에서는 모듈형 멀티레벨 컨버터 (Modular Multilevel Converter; MMC)의 스위칭 손실을 줄이기 위한 모델 예측 제어 (Model Predictive Control; MPC) 방법을 제안한다. 제안된 방법은 지령 상 전압과 상 전류를 이용하여 매 샘플링 시점 마다 전류가 크게 흐르는 구간 동안 서브모듈의 스위칭 동작을 클램핑 시키는 옵셋전압을 계산한다. 제안된 방법의 스위칭 손실 저감 효과는 기존의 방법과의 손실 데이터 비교를 통하여 검증되었다.

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A PDPWM Based DC Capacitor Voltage Control Method for Modular Multilevel Converters

  • Du, Sixing;Liu, Jinjun;Liu, Teng
    • Journal of Power Electronics
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    • 제15권3호
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    • pp.660-669
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    • 2015
  • This paper presents a control scheme with a focus on the combination of phase disposition pulse width modulation (PDPWM) and DC capacitor voltage control for a chopper-cell based modular multilevel converter (MMC) for the purpose of eliminating the time-consuming voltage sorting algorithm and complex voltage balancing regulators. In this paper, the convergence of the DC capacitor voltages within one arm is realized by charging the minimum voltage module and discharging the maximum voltage module during each switching cycle with the assistances of MAX/MIN capacitor voltage detection and PDPWM signals exchanging. The process of voltage balancing control introduces no extra switching commutation, which is helpful in reducing power loss and improving system efficiency. Additionally, the proposed control scheme also possess the merit of a simple executing procedure in application. Simulation and experimental results indicates that the MMC circuit together with the proposed method functions very well in balancing the DC capacitor voltage and improving system efficiency even under transient states.

제주계통의 전압조정을 위한 MMC-HVDC 시스템 응용 (Application of MMC-HVDC System for Regulating Grid Voltage Based on Jeju Island Power System)

  • 왓나우덩;김일환;이도헌;김호찬
    • 전력전자학회논문지
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    • 제19권6호
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    • pp.494-502
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    • 2014
  • This paper presents a control method of the modular multilevel converter - high-voltage direct current (MMC-HVDC) system to regulate grid voltage on the basis of the Jeju Island power system. In this case, the MMC-HVDC system is controlled as a static synchronous compensator (Statcom) to exchange the reactive power with the power grid. The operation of the MMC-HVDC system is verified by using the PSCAD/EMTDC simulation program. The Jeju Island power system is first established on the basis of the parameters and measured data from the real Jeju Island power system. This power system consists of two line-commutated converter - high-voltage direct current (LCC-HVDC) systems, two Statcom systems, wind farms, thermal power plants, transformers, and transmission and distribution lines. The proposed control method is then applied by replacing one LCC-HVDC system with a MMC-HVDC system. Simulation results with and without using the MMC-HVDC system are compared to evaluate the effectiveness of the control method.