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      • KCI등재

        농축산식품산업 특수분류 기반 추정적격률을 이용한 모집단 추정

        위성승 ( Wee Seong Seung ),이민철 ( Lee Mincheol ),김진민 ( Kim Jin Min ),신용태 ( Shin Yong Tae ) 한국정보처리학회 2023 정보처리학회논문지. 소프트웨어 및 데이터 공학 Vol.12 No.3

        농림축산식품부는 2008년 조직개편을 통해 식품 정책에 대한 기능이 이관되어 보건복지부 등에 산재하여 있던 식품산업을 통합관리 하게 되었고, 1, 2, 3차 산업을 포괄한 종합 정책을 수립하고 있다. 최근 4차 산업혁명과 더불어 농축산식품산업에도 스마트팜, 푸드테크 등 새로운 사업개념이 등장하였다. 농림축산식품부는 4차산업에 적합한 정책을 수립하기 위해 농축식품산업의 사업체 규모를 정확히 추정하는 것이 필요하게 되었다. 농림축산식품부는 전방과 후방 산업의 연계분석을 통한 부가가치 산출과 농축산식품산업의 정확한 모집단을 추정하기 위해서 2017년부터 농축산식품산업 특수분류를 위해 연구하기 시작하였고 통계청으로부터 농축산식품 특수분류 승인을 받았다. 특수 분류를 기반으로 한 농축산식품산업의 모집단 추정은 매출액, 종사자 수 등 전 산업에서 차지하는 비중이 정책의 수립과 중요도에 많은 영향을 미치기 때문에 매우 중요하다. 본 논문은 농축산식품 특수분류와 한국표준산업분류에서의 추출된 표본을 이용하여 현재적격률을 산정하고 모집단을 추정하는 과정과 현재적격률을 보완하기 위한 추정적격률을 제안하여 보다 모집단을 잘 반영하는 방안을 제시하고자 한다. Through reorganization in 2008, The ministry of Agriculture, Food and Rural Affairs integrated management of the food industry by transferred functions which was scattered in the Ministry of Health and Welfare, and established comprehensive policies covering the primary, secondary, and tertiary industries. In the agricultural industry sector, new business concepts such as smart farm and food tech have recently emerged alongside the fourth industrial revolution. In order for the Ministry of Agriculture, Food, and Rural Affairs to develop appropriate policies for the fourth industrial revolution, it is necessary to accurately estimate the size of agricultural and livestock-related businesses. In 2017, the Ministry of Agriculture, Food, and Rural Affairs initiated research for the agriculture, livestock and food industry's special classification, which was approved by the National Statistical Office in 2020. The estimation of the agriculture, livestock and food industry's size based on special classification is crucial because it has a substantial impact on the formulation and significance of policies. In this paper, the appropriate rate was derived from samples extracted from the special classification and the Korean standard industrial classification. Proposed are a method for estimating the population of the agricultural and livestock food industry, as well as a method for calculating the appropriate rate that more accurately reflects the population than the method currently in use.

      • KCI등재
      • KCI등재

        대조코호트 연구를 위한 충주의 대기오염현황 조사와 산단지역과의 비교

        김재훈,위성승,남상훈,안정선,김대선,Kim, Jae-Hoon,Wee, Seong-Seung,Nam, Sang-Hoon,An, Jung-Sun,Kim, Dae-Sun 한국환경보건학회 2008 한국환경보건학회지 Vol.34 No.1

        The purpose of this study was to investigate air quality in Chungju, Korea, using data obtained with a local air quality monitoring system. We have utilised cohort studies to investigate the relations between environmental pollution and the health of residents near large industrial complexes since 2004. This study analyzes the $O_3,\;NO_2,\;SO_2,\;CO\;and\;PM_{10}$ concentration in Chungju from 2002 to 2006. Air pollutants are closely related to the number of manufacturing facilities and cars, energy utilization and weather conditions. Generally, the diurnal concentration of air pollutants in Chungju reached the highest level in the morning (about$08:00{\sim}$) and early evening (about$19:00{\sim}$). On the other hand, the diurnal concentration of ozone as recorded gives the highest amount in late afternoon (about$16:00{\sim}$) and lowest in early morning (about$08:00{\sim}$). The concentration of air pollutants in Chungju was highest from winter to spring and lowest during the summer season. On the other hand, the monthly variation of ozone concentration was greatest in June and smallest in December. Also the, $PM_{10}$ concentration posted the highest record in April and the lowest during September. In general, this study analyzed air pollution changes in Chungju as well as in large scale industrial complex regions within Korea such as Ulsan, Pohang, Kwangyang, Sihwa Panwol and Gangneung in Korea. We compared the air quality of Chungju with those of these cites and found that air pollutants except for CO in Chungju was generally lower than large industrial complex regions.

      • KCI등재

        환경보건정보 통합관리체계에 관한 연구

        김대선,위성승,유승도,박충희,정영희,Kim, Dae-Seon,Wee, Seong-Seung,Yu, Seung-Do,Park, Choong-Hee,Chung, Young-Hee 한국환경보건학회 2007 한국환경보건학회지 Vol.33 No.4

        The National Institute of Environmental Research(NIER) launched a research about Framework of Environmental Health Information System for Industrial Complex in 2001, with the goal of finding out measures to establish an integrated management system(IMS) for environmental health information. Based on the research results, NIER started to build integrated information system. The process will continue from 2006 to 2008. As the first step, in 2006, NIER outsourced the job of setting up the specific plan. In 2007, based on the plan created in the previous year, computerization work began. During 2008, the $3^{rd}$ year of the process, the integrated system will be compatible to conventional GIS system and statistics analysis system to deliver funker efficient and useful services. In this vein, the objective of the study is to identify data collection procedure, data utilization, and overall goal of the system. In addition, It will illustrate digitalization process and recommendation about how to utilize the system.

      • KCI등재

        국내 초등학생의 체내 총수은 농도 및 노출요인 조사

        김근배,김대선,이종화,박희진,위성승,Kim, Guen-Bae,Kim, Dae-Seon,Lee, Jong-Hwa,Park, Hee-Jin,Wee, Seong-Seung 한국환경보건학회 2007 한국환경보건학회지 Vol.33 No.5

        Mercury contamination and its health effects have become major concern of environmental health study in Korea. Mercury exposure of some group were investigated to get the accurate data for policy making and study. About 2,000 children at 26 elementary schools participated in this survey to evaluate the exposure levels and to investigate main exposure source of mercury. Analysis of mercury levels in the whole blood and urine samples were conducted and questionnaire survey was done about the factors influencing exposures simultaneously. Mercury exposure levels of domestic children were N.D. to 17.26 ppb in blood, 0.17 to $21.67{\mu}g/g$-creatinine in urine. The mean(arithmetic) levels are 2.42 ppb in blood and $2.53{\mu}g/g$-creatinine in urine. Both of them were below the recommendation levels of US EPA and German CHBM I $5.8{\mu}g/l$ and $5{\mu}g/l$ in blood, $5{\mu}g/g$-creatinine of German CHBM I in urine. But 1%, 0.51% of levels in blood exceed the level of CHBM I and US EPA, 8%, 0.85% of children were over the level of CHBM I and CHBM II in urine. Multi-valuable regression analysis showed that the existence of road near the residence in addition to the preference for fish have significance with blood mercury exposure level of domestic children. The existence of factory near the house and the experience of dental amalgam treatment had statistical relations with urine mercury level.

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