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문병현,송주열,이현성,손경규,엄태환,김정우,김아름 대구대학교 정보통신연구소 2004 情報通信硏究 Vol.3 No.2
The system designed in this paper, can mark the interior state of greenhouse using sensors of temperature, humidity and illumination on greenhouse interior by greenhouse system for farm village area's agriculture automation. And, the real time monitor is possible real time monitoring by camera. Also, system that can supply water using spring cooler system and humidifier. The proposed system can sustain a designed environment of the greenhouse through rentilation fan, fluorescent light and roof door control. TCP/IP is used for the remote control of state the sensors in the client program. 본 논문에서 설계된 시스템은 농촌 지역의 농업 자동화를 위한 온실 시스템으로 온실 내부에 온도, 습도, 조도 센서를 이용한 온실 내부의 상태를 표시할 수 있으며 카메라를 이용하여 실시간 관측이 가능하다. 또한 본 시스템은 지붕 개폐, 스프링 쿨러와 가습기를 이용한 수분 공급, 환풍기, 형광등 등을 통하여 온실 내부의 환경을 유지시킬 수 있다. 모든 센서를 이용한 상태와 온실 제어를 TCP/IP를 이용한 클라이언트 프로그램에서 원격으로 관리할 수 있다.
Development of Datamining Engine for Customer Pattern Analysis in Mobile Computing
Ah-Reum Noh,Hyo-Won Noh,Nam-Ho Kim 한국멀티미디어학회 2006 한국멀티미디어학회 국제학술대회 Vol.2006 No.-
The purpose of this paper is to suggest a new marketing method in the electronic commerce such as internet shopping, which is more complicated due to the growth of the scale of markets and the enlargement of customers' choice. Our study focused on how to provide more efficient selection to customer on growing markets than other competitive services does. We are suggesting the new engine, mCRM, that uses datamining technique and analyze customers' purchase pattern through association rule, sequential pattern and collaborative filtering. It helps to motivate the potential customers, obtain new customers and promote purchase. Such functions will lead to high profit and increase persistent relations with customers.
Phytochemical Constituents from Salvia plebeia
Ah-Reum Han,Chao Hui Duan,Jung Noh Lee,Kwang Sik Lee,홍진태,Kun Kook Lee 한국생약학회 2010 Natural Product Sciences Vol.16 No.4
Phytochemical investigation of Salvia plebeia resulted in the isolation of nine compounds. Their structures were determined to be 6-methoxynaringenin (1), 6-methoxynaringenin-7-O-b-D-glucoside (2), hispidulin (3), homoplantaginin (4), nepetin (5), nepitrin (6), 6-hydroxyluteolin (7), caffeic acid (8) and rosmarinic acid (9) by spectroscopic analyses. 6-Methoxynaringenin (1), 6-hydroxyluteolin (7) and rosmarinic acid (9) were isolated from this plant for the first time.