• 제목/요약/키워드: converter modeling

검색결과 337건 처리시간 0.028초

LCC 컨버터 기반의 제논 플래시 램프 구동장치를 위한 시머회로 설계 (Design of a Simmer Circuit for Xenon Flash Lamp Driver Based on a LCC Converter)

  • 송승호;조찬기;박수미;박현일;배정수;장성록;류홍제
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2017년도 전력전자학술대회
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    • pp.231-232
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    • 2017
  • This paper describes the design and implementation of a 2.5kW (500V, 5A) simmer circuit that maintains the ionization of xenon gas inside the lamp. The design is based on a LCC resonant converter in continuous conduction mode (CCM) with above resonant frequency to take advantage of high power density from using parasitic elements such as the leakage inductance in a power transformer. In addition, since the converter has current source output characteristics, it is suitable for maintaining ionization of the lamp having the negative resistance load characteristic. To verify this converter design, PSpice modeling was performed. Finally, the developed simmer circuit is verified by a resistive load of rated performance and the Ionization maintenance operation of the xenon flash lamp.

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Modeling, Simulation and Fault Diagnosis of IPFC using PEMFC for High Power Applications

  • Darly, S.S.;Vanaja Ranjan, P.;Justus Rabi, B.
    • Journal of Electrical Engineering and Technology
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    • 제8권4호
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    • pp.760-765
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    • 2013
  • An Interline Power Flow Controller (IPFC) is a converter based controller which compensates and balance the power flow among multi-lines within the same corridor of the multi-line subsystem. The Interline Power Flow Controller consists of a voltage source converter based Flexible AC Transmission System (FACTS) controller for series compensation. The reactive voltage injected by individual Voltage Source Converter (VSC) can be controlled to regulate active power flow in the respective line in which one VSC regulates the DC voltage, the other one controls the reactive power flows in the lines by injecting series active voltage. In this paper, a circuit model for IPFC is developed and simulation of interline power flow controller is done using the proposed circuit model. Simulation is done using MATLAB Simulink and PSPICE. The results obtained by MATLAB are compared with the results obtained by PSPICE and compared with theoretical values.

DC-Link Voltage Balance Control Using Fourth-Phase for 3-Phase 3-Level NPC PWM Converters with Common-Mode Voltage Reduction Technique

  • Jung, Jun-Hyung;Park, Jung-Hoon;Kim, Jang-Mok;Son, Yung-Deug
    • Journal of Power Electronics
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    • 제19권1호
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    • pp.108-118
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    • 2019
  • This paper proposes a DC-link voltage balance controller using the fourth-phase of a three-level neutral-point clamped (NPC) PWM converter with medium vector selection (MVS) PWM for common-mode voltage reduction. MVS PWM makes the voltage reference by synthesizing the voltage vectors that cannot generate common-mode voltage. This PWM method is effective for reducing the EMI noise emitted from converter systems. However, the DC-link voltage imbalance problem is caused by the use of limited voltage vectors. Therefore, in this paper, the effect of MVS PWM on the DC-link voltage of a three-level NPC converter is analyzed. Then a proportional-derivative (PD) controller for the DC-link voltage balance is designed from the DC-link modeling. In addition, feedforward compensation of the neutral point current is included in the proposed PD controller. The effectiveness of the proposed controller is verified by experimental results.

영구자석형 풍력-디젤 복합발전시스템 모델링 및 운전제어 알고리즘에 관한 연구 (Modeling & Operating Algorithm of Islanding Microgrid with PMSG Wind Turbine and Diesel Generator)

  • 김재언
    • 한국산학기술학회논문지
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    • 제16권9호
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    • pp.6419-6424
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    • 2015
  • 현재 도서지역에 도입되어 운용되고 있는 풍력-디젤 하이브리드 발전시스템에는 풍속과 부하변동에 대하여 적정범위의 전압주파수를 갖는 전력을 공급하기 위하여 고가의 제어가 복잡한 플라이휘일 또는 배터리 에너지저장장치를 설치운영하고 있다. 그러나, 본 논문은 이와 같이 비경제적이고 복잡도가 높은 에너지저장장치를 설치하지 않고, 풍속 및 부하변동에도 안정적인 운전이 가능한 영구자석형(PMSG: Permanent Magnet Synchronous Generator) 풍력-디젤 복합발전시스템으로 구성되는 독립형 마이크로그리드의 운전제어 알고리즘과 모델링 방법을 제안하였다. 먼저, 부하 및 풍속변동에 관계없이 적정범위의 전압주파수를 유지할 수 있는 PMSG 풍력발전기의 운전제어 알고리즘을 제안하고, 이를 바탕으로 한 전가변속 운전이 가능한 PMSG, WT측 컨버터 및 Grid측 컨버터를 모델링하고, 이를 독립형 마이크로그리드에 적용하여 풍속 및 부하변화에 대하여 전압주파수가 적정범위내로 잘 유지됨을 입증하였다.

A Conversion Process to IFC Files for Integrated Use of Open and Web-based BIM Quantities, Process, and Construction Costs in Civil Engineering

  • Lee, Jae-Hong;Hwang, Hee-Suk
    • 한국컴퓨터정보학회논문지
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    • 제24권10호
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    • pp.11-23
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    • 2019
  • 본 연구에서는 토목분야의 다양한 상용 BIM 모델링 설계 소프트웨어의 사용자들에게 상호 호환성과 상호 운용성을 보장하기 위해 BIM 국제 표준 파일 포맷인 IFC 파일로의 파일 변환 프로세스를 새롭게 설계하여 제시한다. 제안된 프로세스는 상용 BIM 모델링 소프트웨어를 위한 add-in 방식의 컨버터(Converter)를 사용하여, 변환되는 IFC 파일의 3차원 객체 형상 정보에 수량 산출식 코드 속성과 토목 분야 CBS/OBS/WBS 표준분류체계 속성으로 구성되는 추가적인 속성들을 삽입한다. 또한, 개방형(Open) 웹 기반 수량, 공정(4D) 및 공사비(5D) 관리를 위한 IFC 파일의 통합 활용 프로세스를 추가로 설계하고 구축한다. 이러한 작업을 통해 토목 분야의 BIM 모델링 설계 단계에서 최종적인 시공 단계에 이르는 개방형 웹 기반 수량, 공정(4D) 및 공사비(5D)의 연계적 활용에 대한 새로운 프로세스를 제시하는 것이 본 연구의 궁극적인 목적이다.

Development of a Power Plant Simulation Tool with GUI based on General Purpose Design Software

  • Kim Dong Wook;Youn Cheong;Cho Byung-Hak;Son Gihun
    • International Journal of Control, Automation, and Systems
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    • 제3권3호
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    • pp.493-501
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    • 2005
  • A power plant simulation tool ('PowerSim') has been developed with 10 years experience from the development of a plant simulator for efficient modeling of a power plant. PowerSim is the first developed tool in Korea for plant simulation with various plant component models, instructor station function and the Graphic Model Builder (GMB). PowerSim is composed of a graphic editor using general purpose design software, a netlist converter, component models, the scheduler, Instructor Station and an executive. The graphic editor generates a netlist that shows the connection status of the various plant components from the Simdiagram, which is drawn by Icon Drag method supported by GUI environment of the PowerSim. Netlist Converter normalizes the connection status of the components. Scheduler makes scheduling for the execution of the device models according to the netlist. Therefore, the user makes Simdiagram based on the plant Pipe and Instrument Drawing (P&ID) and inputs the plant data for automatic simulating execution. This paper introduces Graphic Model Builder (GMB), instructor station, executive and the detailed introduction of thermal-hydraulic modeling. This paper will also introduce basic ideas on how the simulation Diagram, based on netlist generated from general purpose design software, is made and how the system is organized. The developed tool has been verified through the simulation of a real power plant.

Modeling and Control of IGBT Converter-Based High-Voltage Direct Current System

  • Kim, Hong-Woo;Ko, Suk-Whan;An, Hae-Joon;Jang, Gil-Soo;Ko, Hee-Sang
    • 조명전기설비학회논문지
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    • 제25권7호
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    • pp.97-104
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    • 2011
  • This paper presents modeling and control for the emerging IGBT converter-based high-voltage direct-current system (IGBT-HVDC). This paper adds to the representation of the IGBT-HVDC system in the dq-synchronous reference frame and its decoupled control scheme. Additionally, since the IGBT-HVDC is able to actively support the grid due to its capacity to control independently active and reactive power production, a reactive power control scheme is presented in order to regulate/contribute to the voltage at a remote location by taking into account its operational state and limits. The ability of the control scheme is assessed and discussed by means of simulations using ahybrid power system, which consists of a permanent magnetic synchronous-generator (PMSG) based wind turbine, an IGBT-HVDC, and a local load.

Effects of Wind Generation Uncertainty and Volatility on Power System Small Signal Stability

  • Shi, Li-Bao;Kang, Li;Yao, Liang-Zhong;Qin, Shi-Yao;Wang, Rui-Ming;Zhang, Jin-Ping
    • Journal of Electrical Engineering and Technology
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    • 제9권1호
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    • pp.60-70
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    • 2014
  • This paper discusses the impacts of large scale grid-connected wind farm equipped with permanent magnet synchronous generator (PMSG) on power system small signal stability (SSS) incorporating wind generation uncertainty and volatility. Firstly, a practical simplified PMSG model with rotor-flux-oriented control strategy applied is derived. In modeling PMSG generator side converter, the generator-voltage-oriented control strategy is utilized to implement the decoupled control of active and reactive power output. In modeling PMSG grid side converter, the grid-voltage-oriented control strategy is applied to realize the control of DC link voltage and the reactive power regulation. Based on the Weibull distribution of wind speed, the Monte Carlo simulation technique based is carried out on the IEEE 16-generator-68-bus test system as benchmark to study the impacts of wind generation uncertainty and volatility on small signal stability. Finally, some preliminary conclusions and comments are given.

임베디드 시스템에서의 상황인식 제어를 위한 상태전이 기반 상황 모델링과 이를 응용한 상황-동작 변환기 (SAC)의 설계 (A state transition based situation modeling and its application to design of SAC(Situation-Action Converter) for situation-aware control for embedded systems)

  • 허길;박희정;조위덕;최재영
    • 한국정보과학회논문지:시스템및이론
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    • 제33권9호
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    • pp.642-649
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    • 2006
  • 지능형 서비스를 제공하는 환경에서 상황을 인식하기 위하여 임베디드 시스템이 갖는 제한적인 리소스와 컴퓨팅 파워 환경에 적합한 상태 전이 기반 상황 표현 모델을 제안하고, 이를 인식하는 상황 인식기와 제어 신호를 발생시키는 동작 발생기를 결합한 임베디드 시스템에 탑재하기에 적합한 상황-동작 변환기(SAC)를 설계하였다. 또한 ARM 프로세서 기반의 임베디드 보드에 설계된 상황-동작 변환기를 응용한 상황 관리기를 구현하여 이를 스마트 스케줄러 서비스에 활용하였다.

불평형 전원 조건에서 MMC 기반 HVDC 시스템 순환전류에 관한 연구 (A Study of Circulating Current in MMC based HVDC System under an Unbalanced Grid Condition)

  • 도원석;김시환;김태진;김래영
    • 전기학회논문지
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    • 제64권8호
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    • pp.1193-1201
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    • 2015
  • This paper presents a study of circulating current of modular multi-level converter (MMC) based a high voltage direct current (HVDC) system under unbalanced grid conditions. Due to the connection of a dependent DC source in each phase, the MMC system inherently generates the power ripple of double-line-frequency components in the AC-side and as a result, the additional sinusoidal current named circulating current flows through the each arm. Reliability improvement of HVDC system under an unbalanced grid condition is one of the important criteria. Generally, the modeling of the circulating current is based on the power relation between DC-side and AC-side. However, the method is not perfectly matched in the MMC system due to the difference of the structural characteristic. In this paper, improved modeling method of circulating current is proposed, which is based on the inner arm power. The proposed method is verified by several simulations to have good agreement of the circulating current components.