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Dimming형 IC를 이용한 형광램프용 전자식 안정기의 회로상수 결정
송상빈(Sang-Bin Song),김선(Sun-Kim),곽재영(Jae-Young Gwarg),여인선(In-Seon Yeo) 한국조명·전기설비학회 1998 한국조명·전기설비학회 학술대회논문집 Vol.1998 No.-
The purpose of this paper is to determine circuit parameters in the inverter part of the electronic dimming ballast for fluorescent lamps, that is adequate to use with the prevailing dimming controller IC. Firstly, the operating frequency characteristics are investigated by varying circuit parameters of electronic ballasts and are matched with the output characteristics of dimming ballast controller. Secondly, circuit parameter values are determined by using PSpice simulation and operating frequency characteristics. Finally its validity is verified from the electrical and light output characteristics on the prototype of the electronic dimming ballast.
광전식 화재감지기의 감지 효율 향상을 위한 광학 구조에 관한 연구
김완호(Wan-Ho Kim),노주현(Ju-Hyun Noh),송상빈(Sang-Bin Song),여인선(In-Seon Yeo) 한국조명·전기설비학회 2021 한국조명·전기설비학회 학술대회논문집 Vol.2021 No.11
There are many difficulties in extinguishing the initial fire due to the detection performance and malfunction of the fire detector. In this paper, the detection efficiency of a photoelectric fire detector were studied according to the chamber structure and characteristics of smoke concentration change.
LED용 실리콘 봉지재의 경화방법이 신뢰성에 미치는 영향
김완호,장민석,강영래,김기현,송상빈,여인선,김재필,Kim, Wan-Ho,Jang, Min-Suk,Kang, Young-Rae,Kim, Ki-Hyun,Song, Sang-Bin,Yeo, In-Seon,Kim, Jae-Pil 한국전기전자재료학회 2012 전기전자재료학회논문지 Vol.25 No.10
Encapsulant curing in terms of convection oven leads to thermal induced stress due to nonuniform thermal conductivity in LED package. We have adopted infrared (IR) light for silicone curing in order to release the stress. The light uniformity irradiated on an encapsulant surface is confirmed to be uniform by optical simulation. Shear strength of die paste using IR compared to convection oven is increased 19.2% at the same curing time, which indicates curing time can be shortened. The indentation depth difference between center and edge of silicone encapsulant in terms of convection oven and IR are 14.8% and 3.4%, respectively. Curing by IR also shows 2.3% better radiant flux persistency rate of LED at $85^{\circ}C$ after 1,000 h reliability test compared to convection curing.
머신러닝과 통계분석 기법의 비교분석을 통한 건물에 대한 서울시 구별 지진취약도 등급화 및 위험건물 밀도분석
김상빈,김성훈,김대현,Sang-Bin Kim,Seong H. Kim,Dae-Hyeon Kim 대한산업경영학회 2023 산업융합연구 Vol.21 No.7
In the recent period, there have been numerous earthquakes both domestically and internationally, and buildings in South Korea are particularly vulnerable to seismic design and earthquake damage. Therefore, the objective of this study is to discover an effective method for assessing the seismic vulnerability of buildings and conducting a density analysis of high-risk structures. The aim is to model this approach and validate it using data from pilot area(Seoul). To achieve this, two modeling techniques were employed, of which the predictive accuracy of the statistical analysis technique was 87%. Among the machine learning techniques, Random Forest Model exhibited the highest predictive accuracy, and the accuracy of the model on the Test Set was determined to be 97.1%. As a result of the analysis, the district rating revealed that Gwangjin-gu and Songpa-gu were relatively at higher risk, and the density analysis of at-risk buildings predicted that Seocho-gu, Gwanak-gu, and Gangseo-gu were relatively at higher risk. Finally, the result of the statistical analysis technique was predicted as more dangerous than those of the machine learning technique. However, considering that about 18.9% of the buildings in Seoul are designed to withstand the Seismic intensity of 6.5 (MMI), which is the standard for seismic-resistant design in South Korea, the result of the machine learning technique was predicted to be more accurate. The current research is limited in that it only considers buildings without taking into account factors such as population density, police stations, and fire stations. Considering these limitations in future studies would lead to more comprehensive and valuable research.