• 제목/요약/키워드: Direct Current(DC)

검색결과 437건 처리시간 0.032초

가스배관의 교류부식 특성에 관한 연구 (A Study on the Characteristics for AC Corrosion of Gas Pipelines)

  • 배정효;하태현;이현구;김대경
    • 한국가스학회지
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    • 제5권3호
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    • pp.29-35
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    • 2001
  • $\cdot$방식분야에서 직류부식은 많이 연구되어 왔지만, 교류부식은 직류에 비래 부식률이 매우 낮다는 이유로 소홀히 연구되어 왔다. 그러나 최근 유럽을 비롯한 북미에서도 교류부식에 의한 사고가 빈발하게 발생하기 시작하였다. 따라서 본 논문에서는 가스배관의 교류부식에 대한 특성을 실험실 시험과 현장에서의 실 사례 연구를 통하여 규명하였다.

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연료전지 발전 시스템용 고주파 링크 DC-AC 컨버터 (A High Frequency Link Direct DC-AC Converter for Fuel Cell Power Source)

  • 송유진;박석인;정학근;한수빈;정봉만
    • 한국조명전기설비학회:학술대회논문집
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    • 한국조명전기설비학회 2005년도 학술대회 논문집
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    • pp.245-249
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    • 2005
  • This paper describes a boost converter cascaded high frequency link direct dc-ac converter suitable for fuel cell power sources. A new multi-loop control for a boost converter to reduce the low frequency input current harmonics drawn from fuel cell is proposed. A new PWM technique for the cycloconverter at the secondary to reject the low order harmonics in the output voltages is presented in detail.

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아크 발생에 따른 고장 및 화재를 보호하기 위한 직류 아크 Generator 개발 (Development of DC Arc Generator to protect against Malfunctions and Fires caused by Arcing)

  • 윤용호
    • 한국인터넷방송통신학회논문지
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    • 제21권6호
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    • pp.123-128
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    • 2021
  • 직류 배전시스템의 보급이 증가됨에 따라 이에 따른 고장 발생 및 화재 사고도 증가하고 있고 특히 스마트 그리드의 구성 요소인 ESS 화재 사고, 직류 시스템인 태양광 발전 시스템의 화재 사고는 신재생에너지의 보급이 급격하게 증가하고 동시에 사용 연수 10년 이상의 노후 시설이 많아짐에 따라, 시스템 구성 요소 간의 전기적인 접속의 문제들로 발생하고 있다. 이로 인해 유발된 빛과 열을 방출하여 직접적인 화재의 원인이 될 수 있는 아크가 화재의 한 원인으로 지적되고 있다. 따라서 이러한 아크 결함의 문제는 기존의 과전류차단기와 누전차단기로는 아크사고를 사전에 차단할 수 없는 실정이며 대규모 유틸리티 시스템뿐만 아니라 소규모 주거 시스템에서도 인간의 안전에 중대한 위협이 될 수 있기에 아크사고에 대한 대책이 필요하다. 본 논문에서는 국제표준화에 만족하는 시험장비 개발과 아크 발생에 따른 고장 및 화재를 보호하기 위한 직류 아크 Generator를 개발 하고자 한다.

Innovative step-up direct current converter for fuel cell-based power source to decrease current ripple and increase voltage gain

  • Salary, Ebrahim;Falehi, Ali Darvish
    • ETRI Journal
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    • 제44권4호
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    • pp.695-707
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    • 2022
  • As for the insufficient nature of the fossil fuel resources, the renewable energies as alternative fuels are imperative and highly heeded. To deliver the required electric power to the industrial and domestic consumers from DC renewable energy sources like fuel cell (FC), the power converter operates as an adjustable interface device. This paper suggests a new boost structure to provide the required voltage with wide range gain for FC power source. The proposed structure based on the boost converter and the quazi network, the so-called SBQN, can effectively enhance the FC functionality against its high operational sensitivity to experience low current ripple and also propagate voltage and current with low stress across its semiconductors. Furthermore, the switching power losses have been decreased to make this structure more durable. A full operational analysis of the proposed SBQN and its advantages over the conventional and famous structures has been compared and explained. Furthermore, a prototype of the single-phase converter has been constructed and tested in the laboratory.

초퍼저항 및 de-loading 협조제어를 통한 해상풍력 연계용 HVDC시스템 DC전압 상승 억제 방안 (DC Voltage Build-Up Suppression Scheme of HVDC System for Offshore Wind Farm Connection using Chopper Resistor and de-loading)

  • 이형진;강병욱;김재철
    • 전기학회논문지
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    • 제66권5호
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    • pp.750-756
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    • 2017
  • This paper presents a method for DC voltage control of HVDC system connection of offshore wind farms. In the event of fault in AC grid, HVDC system need to meet LVRT regulations. When HVDC system meet LVRT regulation, unbalance is caused between power input and power output for DC link. Therefore, LVRT regulation lead to DC voltage increase of HVDC system. To control the DC voltage increase, the chopper resistor can be suggested. In this paper, DC voltage suppression is proposed using chopper resistor and de-loading. The effectiveness of the chopper resistor was verified using PSCAD/EMTDC.

모델급 초전도 직류 송전 선로의 설계 (Design of a laboratory-scale superconducting DC transmission line)

  • 김성규;딘민차우;박민원;유인근
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2015년도 제46회 하계학술대회
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    • pp.1102-1103
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    • 2015
  • The researchers worldwide have been trying to apply high temperature superconducting wire for power system devices. High voltage direct current (HVDC) transmission system has been used for bulk and long-distance power transmission. The authors designed a laboratory-scale superconducting DC transmission line to investigate its applicability to an HVDC system. The superconducting DC transmission line was simulated in connection to a laboratory-scale HVDC system using PSCAD/EMTDC. The operating characteristics of the superconducting DC transmission line connected to HVDC system and the effects of the superconducting DC transmission line on HVDC system were analyzed and compared with the results of a conventional DC transmission line. The results of operating characteristics for the superconducting DC transmission line were discussed in detail.

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Two Vector Based Direct Power Control of AC/DC Grid Connected Converters Using a Constant Switching Frequency

  • Mehdi, Adel;Reama, Abdellatif;Benalla, Hocine
    • Journal of Power Electronics
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    • 제17권5호
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    • pp.1363-1371
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    • 2017
  • In this paper, an improved Direct Power Control (DPC) algorithm is presented for grid connected three phase PWM rectifiers. The new DPC approach is based on two main tasks. First the optimization of the look-up table, which is well-known in conventional DPC, is outlined for selecting the optimum converter output voltage vectors. Secondly a very simple and effective method is used to directly calculate their duty cycles from the power errors. Therefore, the measured active and reactive powers are made to track their references using hysteresis controllers. Then two vectors are selected and applied during one control cycle to minimize both the active and reactive power ripples. The main advantages of this method are that there is no need of linear current controllers, coordinates transformations or modulators. In addition, the control strategy is able to operate at constant switching frequencies to ease the design of the power converter and the AC harmonic filter. The control exhibits a good steady state performance and improves the dynamic response without any overshoot in the line current. Theoretical principles of the proposed method are discussed. Both simulation and experimental results are presented to verify the performance and effectiveness of this control scheme.

Z-source 직류 차단기의 기계식 스위치 적용을 위한 최적화 설계 (Optimization Design for the Use of Mechanical Switch in Z-source DC Circuit Breaker)

  • 이현승;이건아
    • 한국안전학회지
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    • 제37권1호
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    • pp.12-19
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    • 2022
  • Circuit breakers are a crucial factor in ensuring the safety of a Direct Current (DC) grid. One type of DC circuit breaker, the Z-source DC circuit breaker (ZCB), uses a thyristor, which is a type of semiconductor switch. In the event of a fault in the circuit, the ZCB isolates the fault by generating a zero crossing current in the thyristor. The thyristor quickly and actively isolates the fault while generating a zero crossing current, but thyristor switch cannot control turn-off and the allowable current is lower than the current of the mechanical switch. Therefore, it is best to use a mechanical switch with a high allowable current capacity that is capable of on/off control. Due to the slow reaction time of mechanical switches, they may not isolate the fault during the zero crossing current time interval created by the existing circuit. In this case, the zero crossing current time can be increased by using the property that hinders the rapid change in the current of the inductor. This paper will explore whether adding system inductance to increase the zero crossing current time interval is a solution to this problem. The simulation of changing inductor and capacitor (LC) of the circuit is repeated to find an optimal change in the zero crossing current time according to the LC change and provides an inductor and capacitor range optimized for a specific load. The inductor and capacitor range are expected to provide optimization information in the form LC values for future applications of ZCB's using a mechanical switch.

Estimating Stability of MTDC Systems with Different Control Strategy

  • Nguyen, Thai-Thanh;Son, Ho-Ik;Kim, Hak-Man
    • Journal of Electrical Engineering and Technology
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    • 제10권2호
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    • pp.443-451
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    • 2015
  • The stability of a multi-terminal direct current (MTDC) system is often influenced by its control strategy. To improve the stability of the MTDC system, the control strategy of the MTDC system must be appropriately adopted. This paper deals with estimating stability of a MTDC system based on the line-commutated converter based high voltage direct current (LCC HVDC) system with an inverter with constant extinction angle (CEA) control or a rectifier with constant ignition angle (CIA) control. In order to evaluate effects of two control strategies on stability, a MTDC system is tested on two conditions: initialization and changing DC power transfer. In order to compare the stability effects of the MTDC system according to each control strategy, a mathematical MTDC model is analyzed in frequency domain and time domain. In addition, Bode stability criterion and transient response are carried out to estimate its stability.

Effect of Non-Idealities on the Design and Performance of a DC-DC Buck Converter

  • Garg, Man Mohan;Pathak, Mukesh Kumar;Hote, Yogesh Vijay
    • Journal of Power Electronics
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    • 제16권3호
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    • pp.832-839
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    • 2016
  • In this study, the performance of a direct current (DC)-DC buck converter is analyzed in the presence of non-idealities in passive components and semiconductor devices. The effect of these non-idealities on the various design issues of a DC-DC buck converter is studied. An improved expression for duty cycle is developed to compensate the losses that occur because of the non-idealities. The design equations for inductor and capacitor calculation are modified based on this improved expression. The effect of the variation in capacitor equivalent series resistance (ESR) on output voltage ripple (OVR) is analyzed in detail. It is observed that the value of required capacitance increases with ESR. However, beyond a maximum value of ESR (rc,max), the capacitor is unable to maintain OVR within a specified limit. The expression of rc,max is derived in terms of specified OVR and inductor current ripple. Finally, these theoretical studies are validated through MATLAB simulation and experimental results.