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초전도 한류기 적용시 소형 분산전원시스템의 연계 위치에 따른 배전계통의 전압강하 분석
문종필(Jong-Fil Moon),손진근(Jin-Geun Shon) 대한전기학회 2013 전기학회논문지 P Vol.62 No.4
This paper analyze the bus voltage sags in the power distribution system with a small scale cogeneration system when the superconducting fault current limiter was introduced. Among the solutions to decrease the short-circuit current considering the locations of the small scale cogeneration system, the superconducting fault current limiter (SFCL) has been announced as one of the promising methods to reduce the fault current because the installation of the small scale cogeneration system which increases the short-circuit current. According to the application locations of the small scale cogeneration system in a power distribution system, it has caused the variations of voltage sag and duration which depends on the change of the short-circuit current, which can make the operation of the protective device deviate from its original set value when the fault occurs. To investigate the voltage sag when a SFCL was applied into a power distribution system where the small scale cogeneration system was introduced into various locations, the SFCL, small scale cogeneration system, and power system are modeled using PSCAD/EMTDC. In this paper, the effects on voltage sags are assessed when the SFCL is installed in power distribution system with various locations of the small scale cogeneration system.
문종필(Jong-Fil Moon),임성훈(Sung-Hun Lim),김재철(Jae-Chul Kim),김진석(Jin-Seok Kim),김명후(Myung-Hoo Kim),유일경(Il-Kyung You) 대한전기학회 2009 대한전기학회 학술대회 논문집 Vol.2009 No.7
본 논문에서는 배전계통에 초전도한류기 적용시 전압 Sag 개선효과를 분석하였다. 기존 배전계통의 Sag는 대부분 계통 고장으로 인한 것으로, 고장시 고장전류 증가로 인한 전압강하로 Sag가 발생하게 된다. 기존 계통에 초전도한류기가 설치되면, 설치 위치 및 임피던스 크기에 따라 고장전류가 저감되어 Sag개선 효과를 볼 수 있다. 따라서 본 논문에서는 배전계통에 초전도 한류기 적용시 한류기 임피던스에 따라 Sag 개선효과를 CBEMA 곡선을 이용하여 분석하였다. 분석결과 피더앞단에 설치할 경우 Sag 개선 효과가 가장 큰 것으로 나타났으며, 임피던스가 클수록, 리액터보다는 저항을 쓸수록 개선효과가 큰 것으로 나타났다. 또한 고장전류의 저감으로 인하여 차단기 트립시간이 늘어남에 따라 Sag의 지속시간은 보다 커지는 것으로 나타났다. 따라서 한류기 적용시 계전기 재정정을 통하여 트립시간을 조정할 경우 Sag의 크기에 많은 효과가 있는 것으로 분석되었다.
Ordinal Optimization을 이용한 배전계통에 RCM 적용기법에 관한 연구
문종필(Jong-Fil Moon),지평식(Pyeong-Shik Ji) 대한전기학회 2012 전기학회논문지 P Vol.61 No.2
This paper proposes optimal maintenance strategies for power distribution systems that involve the use of the reliability-centered maintenance (RCM) method. We developed an improved decision model based on the Markov process. This model can obtain the optimal inspection interval and maintenance method based on the total expected cost. We used ordinal optimization for solving the optimal problem. Optimal maintenance strategies were presented by applying the developed method to the RBTS model. A B/C analysis proved that these strategies offer maximum benefit-to-cost
Reliability Cost Evaluation of Power Distribution System with Superconducting Fault Current Limiter
Jong-Fil Moon(문종필) 대한전기학회 2014 전기학회논문지 P Vol.63 No.4
In this paper, the effects of superconducting fault current limiter (SFCL) installed in power distribution system on reliability are evaluated and analyzed. The fault current will be decreased in power distribution system with SFCL because of the increased impedance of SFCL. The decreased fault current will improve the voltage drop of the bus of substation. The voltage drop is an important factor of power distribution system reliability. In this paper, improvement of reliability worth is analyzed when SFCLs are installed at the starting point in power distribution system. First, resistor-type SFCL model is used in PSCAD/EMTDC. Next, typical power distribution system is modeled. Finally, when the SFCLs with impedance 0.5 [Ω] are installed in feeder, power distribution system reliability is evaluated. Also, the improvement effect of reliability worth including the effect of voltage sag is analyzed using customer interruption cost according to whether or not SFCL is installed.
Jong-Fil Moon(문종필) 대한전기학회 2013 전기학회논문지 P Vol.62 No.4
In this paper, voltage quality improvement is analyzed in case of Superconducting Fault Current Limiter (SFCL) installed in grounding line of main transformer in power distribution system. First, a resistive-type SFCL model is used. Next, Korean power distribution system is modeled. Finally, when SFCL is installed in the starting point of feeder and grounding line of main transformer, voltage qualities are evaluated according to various fault locations and resistance values of SFCL using PSCAD/EMTDC. The voltage quality results in case of grounding line are compared with the voltage in case of feeder.
문종필(Jong-Fil Moon),손진근(Jin-Geun Shon) 대한전기학회 2010 전기학회논문지 P Vol.59 No.2
In this paper, the Time-varying Failure Rates(TFR) of power distribution system components are extracted from the recorded failure data of KEPCO(Korea Electric Power Corporation) and the reliability of power distribution system is evaluated using Mean Failure Rate(MFR) and TFR. The TFR is approximated to bathtub curve using the exponential and Weibull distribution function. In addition, Kaplan-Meier estimation is applied to TFR extraction because of incomplete failure data of KEPCO. Also the reliability of the real power distribution system of Korea is evaluated using the MFR and TFR extracted from real failure data, respectively and the results of each case are compared with each other. As a result, it is proved that the reliability evaluation using the TFR is more realistic than MFR. In addition, it is presented that the application method at power distribution system maintenance and repair using the result of TFR.
A Study on Failure Rate Extraction of Power Distribution System Equipment
문종필(Jong-Fil Moon),김재철(Jae-Chul Kim),이희태(Hee-Tae Lee),주철민(Cheol-Min Chu),안재민(Jae-Min Ahn) 한국조명·전기설비학회 2007 한국조명·전기설비학회 학술대회논문집 Vol.2007 No.5월
In this paper, the Time-varying Failure Rate (TFR) of power distribution system equipment is extracted from the recorded failure data of Korea Electric Power Corporation (KEPCO). For TFR extraction, it is used that the fault data accumulated by KEPCO during 10 years. The TFR is approximated to bathtub curve using the exponential (random failure) and Weibull (aging failure) distribution function. In addition, Kaplan-Meier estimation is applied to TFR extraction because of incomplete failure data of KEPCO. Finally, Probability plot and regression analysis is applied. It is presented that the extracted TFR is more effective and useful than Mean Failure Rate (MFR) through the comparison between TFR and MFR.