• 제목/요약/키워드: Electric utility

검색결과 338건 처리시간 0.029초

방식사의 지하 전력시설용 되메움재 활용에 관한 연구 (A Study on the Utilization of Waste Foundry Sand as Backfill Material for Underground Electric Utility Systems)

  • 이대수;홍성연;김경열
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 봄 학술발표회 논문집
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    • pp.665-672
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    • 2002
  • In this paper, the utilization of waste foundry sand produced in the molding process is studied as a backfill material for underground electric utility systems such as concrete box structures and pipe lines for power supply. The physical, chemical and thermal properties for waste foundry sand are investigated for mechanical stability, environmental hazard and power transmission capacity. Also its properties are compared with the natural river sand. The test results show that waste foundry sand can be utilized for underground concrete box structures as a backfill material; however, it can not be applied to underground pipe lines due to high thermal resistivity or low power transmission capacity.

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Co-combustion of Bituminous Coal with Anthracite in a Down-firing, 200 MW Boiler

  • Park, Ho Young;Baek, Se Hyun;Kim, Young Joo;Kim, Tae Hyung;Kim, Hyun Hee;Lim, Hyun Soo;Park, Yoon Hwa
    • KEPCO Journal on Electric Power and Energy
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    • 제1권1호
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    • pp.93-97
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    • 2015
  • The combustion tests for Korean anthracite-bituminous coal blend were carried out in the 200 MW utility boiler. The burning characteristics of the blend were studied with a thermogravimetric analyzer (TGA). From the observation of TGA burning profiles, it was found that the presence of bituminous coal in the blend appeared to enhance the reactivity of anthracite in the higher temperature region, indicating certain interactions between the two coals. The plant test showed the boiler operation was reasonably stable with somewhat poor combustion efficiency, and some modification of the combustion environment in the furnace is necessitate for the further stable plant operation.

50kW급 계통연계형 태양광발전시스템의 시뮬레이터 구현 (Implementation of the 50kW Utility Interconnected Photovoltaic System Simulator)

  • 정병호;박정민;조금배;백형래;정수복
    • 한국태양에너지학회 논문집
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    • 제25권4호
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    • pp.21-27
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    • 2005
  • This paper summarizes the results of these efforts by offering a photovoltaic system structure in 50kW middle scale applications installed in Cho-sun University dormitory roof. The combination of photovoltaic system components are interconnected and system monitoring system will be summarized for the purpose of the increasing safety in this article. This paper describes configuration of utility interactive photovoltaic system which generated electric power supplies to dormitory. In order to installing the middle or large scale photovoltaic system, It must investigated the optimal design of system, compute quantity of power generation, economic rate of return and so on. In this paper represent 50kW utility photovoltaic system examination and developed simulation results. The performance of photovoltaic system has been evaluated and analyzed with simulation. The results obtained in this research will be much useful to prior investigation for installing utility interactive photovoltaic system.

초전도 전력케이블의 전력계통 적용을 위한 고장전류 특성에 관한 연구 (A Study on the Fault Current Characteristics for the Utility Application of HTS Power cable)

  • 김재호;박민원;심기덕;조전욱;유인근
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2007년도 제38회 하계학술대회
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    • pp.75-76
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    • 2007
  • Several kinds of High Temperature Superconducting(HTS) power cables have already been developed and evaluated for use in the utility power network. HTS power cable is expected to be used as a very powerful energy delivery system supplying electric power for densely populated cities in the near future, because HTS power cable is capable of the high current density delivery with low AC loss and the size effect comparing with the conventional cable whose capacity is same. Before applying the HTS power cable to real utility network system analysis should be carried out by some simulation tools. Hereby the electrical power system analysis is very important for the practical use of HTS power devices. In this paper, authors propose a real-time simulation method which incorporates a real HTS tapes into the simulated 22.9kV utility power network system using Real Time Digital Simulator(RTDS). For the simulation analysis, a test sample of HTS tapes was actually manufactured, and the transient phenomenon of HTS power cable system was analyzed in the simulated utility power network.

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BESS 모델링 및 전기철도 급전계통에의 전압보상 적용 (BESS Modeling and Application to Voltage Compensation of Electric Railway System)

  • 유형준;손호익;김학만
    • 전기학회논문지
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    • 제62권3호
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    • pp.417-423
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    • 2013
  • The load of electric railroad can generate voltage fluctuation in the electric railway system because of high speed of the electric railroad and frequent movement and stop. This voltage fluctuation of electric railway system can cause not only voltage imbalance but also harmonic in the utility grid. Therefore the electric railroad system is in need of the reactive power compensation, such as static synchronous compensator (STATCOM) and static var compensator (SVC). Especially, the battery energy storage system (BESS) can control the real and reactive power at the same time. In this paper, the electric railway system using BESS has been modeled to show its voltage compensation effect using Matlab/Simulink.

대규모 AC/DC 전력 시스템 실시간 EMP 시뮬레이션의 부하 분산 연구 (Analysis of Distributed Computational Loads in Large-scale AC/DC Power System using Real-Time EMT Simulation)

  • 박인권;이종후;이장;구현근;권용한
    • KEPCO Journal on Electric Power and Energy
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    • 제8권2호
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    • pp.159-179
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    • 2022
  • Often a network becomes complex, and multiple entities would get in charge of managing part of the whole network. An example is a utility grid. While the entire grid would go under a single utility company's responsibility, the network is often split into multiple subsections. Subsequently, each subsection would be given as the responsibility area to the corresponding sub-organization in the utility company. The issue of how to make subsystems of adequate size and minimum number of interconnections between subsystems becomes more critical, especially in real-time simulations. Because the computation capability limit of a single computation unit, regardless of whether it is a high-speed conventional CPU core or an FPGA computational engine, it comes with a maximum limit that can be completed within a given amount of execution time. The issue becomes worsened in real time simulation, in which the computation needs to be in precise synchronization with the real-world clock. When the subject of the computation allows for a longer execution time, i.e., a larger time step size, a larger portion of the network can be put on a computation unit. This translates into a larger margin of the difference between the worst and the best. In other words, even though the worst (or the largest) computational burden is orders of magnitude larger than the best (or the smallest) computational burden, all the necessary computation can still be completed within the given amount of time. However, the requirement of real-time makes the margin much smaller. In other words, the difference between the worst and the best should be as small as possible in order to ensure the even distribution of the computational load. Besides, data exchange/communication is essential in parallel computation, affecting the overall performance. However, the exchange of data takes time. Therefore, the corresponding consideration needs to be with the computational load distribution among multiple calculation units. If it turns out in a satisfactory way, such distribution will raise the possibility of completing the necessary computation in a given amount of time, which might come down in the level of microsecond order. This paper presents an effective way to split a given electrical network, according to multiple criteria, for the purpose of distributing the entire computational load into a set of even (or close to even) sized computational loads. Based on the proposed system splitting method, heavy computation burdens of large-scale electrical networks can be distributed to multiple calculation units, such as an RTDS real time simulator, achieving either more efficient usage of the calculation units, a reduction of the necessary size of the simulation time step, or both.

Assessment of Magnetic Field Mitigation and Electrical Environmental Effects for Commercially Operating 154kV Transmission Lines with Passive Loop

  • Lee, Byeong-Yoon;Myung, Sung-Ho;Ju, Mun-No;Cho, Yeun-Gyu;Lee, Dong-Il;Lim, Yun-Seog;Kim, Sang-Beom
    • Journal of Electrical Engineering and Technology
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    • 제9권3호
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    • pp.991-996
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    • 2014
  • Power frequency magnetic field is still a critical problem for new construction of overhead power transmission lines in Korea because most people have been concerned about possibly carcinogenic effects of it. Although reference level of power frequency(60Hz) magnetic field has been set to 200uT in ICNIRP guidelines published in 2010, Korean government has no intention of adjusting 83.3uT specified by law in 2006 to this new reference level in consideration of people's concerns for the time being. Regardless of the current regulated magnetic field value, electric utility company has been trying to reduce magnetic field in the residential area in the vicinity of overhead power transmission lines to take into account of public concerns on the long-term effect of magnetic fields. In an effort to reduce magnetic field, engineering side has made considerable efforts to develop passive loop based, cost-effective mitigation technique of power frequency magnetic field more than ten years. In order to verify developed power frequency magnetic field mitigation technique based on passive loop, a horizontal type of passive loop was designed and installed for commercially operating 154kV overhead power transmission line for the first time in Korea. The measurement results before and after the installation of passive loop showed that magnetic field could be reduced to about 20%. The electrical environmental effects such as AN, RI and TVI were assessed before and after the installation of passive loop and these values were complied with the requirements specified by electric utility. It has been confirmed from the field test results that passive loop could be commercially and cost-effectively utilized to mitigate power frequency magnetic field.

스마트 그리드 지원을 위한 컴퓨터 기반 3상 전력 데이터 수집 솔루션 개발 (The Development of Collection Solution of the Three-Phase Power Data based on the Personal Computer for Supporting the Smart Grid)

  • 고윤석
    • 한국전자통신학회논문지
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    • 제6권4호
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    • pp.553-558
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    • 2011
  • 스마트 그리드는 기존의 전력망에 디지털 정보망을 결합한 지능형 전력망으로 전력공급자와 사용자간에 양방향 통신을 통해서 전력을 공급 및 제어함으로써 전기 에너지 이용 효율을 극대화한다. 본 연구에서는 스마트 그리드를 지원하기 위해 스마트 수용가를 위한 컴퓨터 기반의 병렬 통신을 이용한 3상 전력 데이터 수집 솔루션을 설계하고 그 시작품을 제작하는 것을 연구목표로 한다.

병실 냉.난방을 위한 초퍼와 PWM 전압형 인버터를 이용한 계통 연계형 태양광 발전시스템에 관한 연구 (A Study on the Utility Interactive Photovoltaic System Using a Chopper and PWM Voltage Source Inverter for Air Conditioner a Clinic room)

  • 황락훈;나승권
    • 한국산학기술학회논문지
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    • 제9권2호
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    • pp.360-369
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    • 2008
  • 태양전지는 일사량, 온도와 부하에 의해 크게 변동하기 때문에 가능한 한 많은 에너지를 얻기 위해서는 태양전지의 출력을 항상 최대로 제어할 필요가 있다. 태양전지의 출력은 직류이므로 교류부하에 적용하기 위해서는 전력변환장치 중 인버터가 필수적이며 단위 역률을 갖는 정현파 전류 및 전압을 부하계통에 공급해 주어야 한다. 본 논문에서는 태양광 발전시스템을 승압 쵸퍼와 단상 PWM(Pulse Width Modultion) 전압형 인버터로 구성하였고, 안정된 변조를 위해서 동기신호와 제어신호를 원칩 마이크로프로세서에 의해서 처리하였다. 전력비교에 따라 시비율을 변화시키지만 태양전지는 전형적인 수하특성을 갖고 있어, 일사량과 온도변화에 관계없이 항상 최대 출력 점을 추적하도록 승압초퍼를 제어하였다. 단상 PWM 전압형 인버터는 태양전지가 연속 발전할 수 없는 단점을 보완하기 위해 일반 상용전원과 연계함으로써 약 $10{\sim}20%$ 전력절감효과를 얻을 수 있는 에너지절약 전원복합형 전력변환장치로 구성되어 있다. 단상 PWM 전압형 인버터와 위상동기를 위해서 계통전압을 검출하여 계통전압과 인버터 출력을 동상 운전하므로 잉여전력을 계통과 연계할 수 있게 하여 고 역률과 저고조파 출력을 유지 하므로써 부하와 계통에 전력이 안정하게 공급될 수 있도록 제어하였다.