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이복희,엄주홍,이승칠,김성원,안창환,Lee, Bok-Hui,Eom, Ju-Hong,Lee, Seung-Chil,Kim, Seong-Won,An, Chang-Hwan 대한전기학회 2001 전기학회논문지C Vol.51 No.3
This paper describes an advanced measuring method and precise evaluation of the ground resistance for the grounding system of energized substations and power equipments. A grounding system of substations consists of all interconnected grounding connections of grounded conductors, neutral ground wires, underground conductors of distribution lines, cable shields, grounding terminals of equipments, and etc. It is very difficult to measure the accurate ground resistance of the grounding terminals of equipments, and etc. It is very difficult to measure the accurate ground resistance of the grounding system of high voltage energized substations because of harmonic components caused by switched power supplies or overloads. The conventional fall-of-potential method may be subject to big error if stray ground currents and potentials are present. In this work, to improve the precision in measurements of the ground resistance by eliminating the effects of harmonic components and stray currents and potentials, the investigations of the ground resistance measurement by using a low pass filter in a model energized grounding system were conducted. The accuracy of ground resistance mesurements was evaluated as a function of the ratio of the test signal to noise (S/N). The errors due to the proposed ground resistance measurement method were decreased with increasing S/N and were less than 5[%] as S/N is 10. The proposed ground resistance measurement method appears to be considerably more accurate than the conventional fall-of -potential method. It is allows cancellation of the parasitic resistance of energized grounding systems, to employ the measurement method that allows cancellation of the parasitic effects due to other circulating ground currents and ground potential rises in practical situations.
이복희,이동문,이승칠,Lee, Bok-Hee,Lee, Dong-Moon,Lee, Seung-Chil 한국조명전기설비학회 2006 조명·전기설비학회논문지 Vol.20 No.2
This paper presents the protection effect of surge protective devices(SPDs) according to the conditions of installations. To propose the effective protection measures of information and communication equipments against lightning surges, actual-sized experiments in relation to the protection effects on the positions of installations of SPDs, the length of branch circuit, the wiring methods, and the materials of conduit, were conducted. The effective method of protecting information and communication equipments from lightning surges is to install SPDs in the vicinity of input terminals of each electronic equipments to be protected. The wiring method of connecting an SPD minimizing the length of leads is desirable when point-to-point wiring is to be used. 이 논문은 서지보호기의 설치조건에 따른 보호효과에 대하여 기술하였으며, 뇌서지로부터 정보통신설비를 효과적으로 보호하는 설치기법을 제안하기 위해 서지보호기의 보호효과에 미치는 설치위치, 분기회로의 길이, 배선방법, 전선관 재료의 영향에 대해서 실규모 조건에서의 실험을 수행하였다. 그 결과, 보호하고자 하는 각각의 전자기기의 입력단에 서지보호기를 설치하는 것이 효과적이며, 선간에 서지보호기를 설치할 때는 접속선의 길이가 최소가 되도록 하는 배선방법이 효과적이다.
이복희(Bok-Hee Lee),김성원(Seong-Weon Kim),엄주홍(Ju-Hong Eom),이승칠(Seung-Chil Lee) 한국조명·전기설비학회 2000 한국조명·전기설비학회 학술대회논문집 Vol.2000 No.-
The purpose of this paper is to describe a new measuring method of ground resistance for the grounding system in energized power equipment and substations. It is very difficult to measure the accurate ground resistance in energized power equipment and substations because of the noise conducted from all external connections to the grounding system and harmonics components caused by unbalanced loads and overloads. The ground resistance that is measured with existing methods includes not only the effect of desired signals but also noise components for the measurement period in grounding system. The measured value of ground resistance can entirely be different from actual value. In this paper, to eliminate 60[㎐] power system interference and harmonic components the low-pass filter method was used in the measurement of ground resistance.