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정인용,양새동,정회경,Jeong, In-Yong,Yang, Xitong,Jung, Hoe-Kyung 한국정보통신학회 2015 한국정보통신학회논문지 Vol.19 No.1
추천 시스템은 증가되고 있는 정보에서 사용자가 요구하는 적합한 정보를 선별해 제공해준다. 추천 시스템은 기존에 입력된 정보들을 알고리즘을 통해 선별하는 과정을 거치고 사용자의 정보나 내용 기반으로 정보를 제공한다. 추천 시스템의 문제점으로는 Cold-Start가 있으며, Cold-Start는 새로운 사용자의 정보가 충분하지 않아서 추천 시스템에서 새로운 사용자에게 정보를 추천할 때 발생한다. Cold-Start를 해결하기 위해선 사용자의 정보나 항목 정보가 충족해야 한다. 이에 본 논문에서는 협업 필터링 기법과 내용 기반의 필터링 기법을 혼합한 혼합 필터링 기법 기반으로 Cold-Start 문제를 해결하고 이를 사용하는 영화 추천 시스템을 제안한다. Recommendation system is filtering for users require appropriate information from increasing information. Recommendation system is provides the information based on user information or content that information entered in the original through process of filtering through the algorithm. Recommend system is problems with Cold-start, and Cold-start is not enough information in the occurrences for new users of recommend system in the new information to the user when recommend. Cold-start is should meet to resolve the user of information and item information. In this paper, Suggest for movie recommendation system on collaborative filtering techniques and content-based filtering techniques based to a hybrid of a hybrid filtering techniques to solve problems in cold-start.
제주 연해 수중 주변소음 계류 측정과 환경 변화에 따른 분석
정인용,민수홍,팽동국 한국음향학회 2020 韓國音響學會誌 Vol.39 No.5
Underwater ambient noise was measured at the eastern and western costal sites of Jeju Island where the water depth was 20 m by a hydrophone moored at mid-depth (10 m) for 4 months. These eastern and western sites were selected as potential sites for offshore wind power generator and the current wave energy generator, respectively. Ambient noise was affected by environmental data such as wind and wave, which were collected from nearby weather stations and an observation station. Below 100 Hz, ambient noise was changed about 5 dB ~ 20 dB due to low and high tide. Below 1 kHz, wave and wind effects were the main source for ambient noise, varying up to 25 dB. Ambient noise was strongly influenced by wave at lower frequency and by wind at higher frequency up to over 1 kHz. The higher frequency range over 10 kHz was influenced by rainfall and biological sources, and the spectrum was measured about 10 dB higher than the peak spectrum level from Wenz curve at this frequency range. 본 연구는 풍력, 파력발전기가 설치되는 제주 동부와 서부 수심 20 m 연해에서 4개월동안 수중 청음기를중층(10 m)에 계류하여 주변소음을 측정하였다. 측정 소음레벨에 영향을 미치는 기상정보는 측정 지점 근처 기상대와관측소를 이용하여 자료를 수집하였다. 100 Hz 이하의 주파수 대역에서 조석의 영향으로 간조와 만조, 조금과 사리일때 약 5 dB ~ 20 dB가량 변화를 보였다. 파랑과 바람의 영향은 1 kHz 이하의 주파수 대역에서 25 dB이내로 큰 변화를보였으며 파랑은 저주파 대역에 영향을 주었고 바람은 1 kHz 이상의 고주파 대역까지도 영향을 주었다. 10 kHz 이상의 고주파 대역에 영향을 주는 요인으로 강우와 생물 소음이 있고 웬즈 곡선 최대값에 비해 약 10 dB 높게 측정되었다.
Relationship between airborne pollen concentrations and meteorological parameters in Ulsan, Korea
정인용,최기룡 한국생태학회 2013 Journal of Ecology and Environment Vol.36 No.1
The concentration of airborne pollen is related to meteorological parameters. The main purpose of this study was to determine the correlation between airborne pollen and meteorological parameters in Ulsan based on sampling from 2010 to 2011. The primary factors of interest were differences in the pollen scattering start date, end date, and peak date,and the fluctuations in pollen concentration. The meteorological parameters that affected the start and peak dates of the pollen season were as follows. For Pinus and Alnus, the dates were correlated with sunshine and an increase in temperature,whereas for Quercus, the dates were correlated with increasing temperature. During the pollen season, Alnus peaked when the temperature was highest and Pinus peaked when the relative humidity was lowest. The concentration of airborne pollen was correlated with meteorological parameters during the sampling period as follows: Pinus, Alnus, and Humulus pollen concentrations were positively correlated with increasing temperature and negatively correlated with rainfall and relative humidity; Humulus pollen concentration was positively correlated with sunshine; and Quercus and Humulus pollen concentrations were positively correlated with wind speed.