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서지환,이재현,강성인,신동석,김관형,Seo, Ji-Hwan,Lee, Jae-Hyun,Kang, Sung-In,Shin, Dong-Suk,Kim, Kwan-Hyung 한국정보통신학회 2009 한국정보통신학회논문지 Vol.13 No.11
최근 전자 및 제어장치의 발달로 자동차에도 많은 전자 장비들을 적용하여 차량의 자동화 및 다양한 상황인식 시스템이 적용되고 있다. 특히, 비젼시스템을 도입하여 무인운전 시스템 개발이 활발히 진행되고 있다. 그러나, 일반 차량에 대한 비젼시스템은 아직 고가이며 유선을 통한 영상정보를 전달하므로 차량내의 복잡한 배선으로 인하여 실용화에 더욱 어려움을 격고 있다. 본 논문에서는 차량 내부에 간단하게 설치 할 수 있는 저가의 무선통신 영상처리 장치를 통해 전방의 차선과 장애물을 인식하고 장애물이 발견될 시 운전자에게 이를 알려주는 알람시스템과 ZigBee무선 통신기반의 적외선, 초음파 센서를 이용하여 차량 외부 상황을 모니터링 하여 주차 시 운전자에게 편의를 줄 수 있는 시스템을 설계 구현하였다. 본 논문에서 제안한 시스템의 효율성을 알아보기 위해 모형자동차에 이를 적용하여 확인해 보았다. Due to growth of electronics and control devices, automation and situational awareness systems have been applied by automobile. Vision systems with the introduction of unmanned system being actively developed, but are still high price and visual information is passed through the cable, because of cars are difficult to install. In this paper, can be installed inside the car at low-cost, simple image processing device through a wireless communication know the obstacles and the alarm system based on Zigbee wireless communication, infrared and ultrasonic sensors to monitor the situation through with easy parking cars outside the system design was implemented.
서지환(Ji-Hwan Seo),김병탁(Byung-Tak Kim),진도훈(Do-Hun Chin) 한국기계가공학회 2014 한국기계가공학회지 Vol.13 No.4
This study presents the mechanical behavior of a ventilating window (a tsunami damper) on the building wall of a nuclear power plant. The window, which is under development, is used to ventilate a machinery room and the building under normal conditions, but it also provides a safety barrier for critical equipment against a tsunami caused by an earthquake. A finite element analysis was conducted to investigate the deflection and the stress distribution of the window under given loading conditions. With symmetry, a one-quarter portion of one window was modeled, ant the pressure due to a great tide is assumed to be 7 bar. A structural analysis of the assembled frame, composed of a blade and casing, was also conducted using contact conditions to find the stress and strain configurations caused by the applied pressure.
서지환(Ji-Hwan Seo),이부윤(Boo-Yoon Lee),이상훈(Sanghoon Lee) 한국기계가공학회 2019 한국기계가공학회지 Vol.18 No.4
We performed shape optimization of an anti-vibration rubber assembly which is used in the field option cabin of agricultural tractors to improve the vibration isolation capability. To characterize the hyper-elastic material property of rubber, we performed uniaxial and biaxial tension tests and used the data to calibrate the material model applied in the finite element analyses. We conducted a field test to characterize the input excitation from the tractor and the output response at the cabin frame. To account for the nonlinear behavior of rubber, we performed static analyses to derive the load–displacement curve of the anti-vibration rubber assembly. The stiffness of the rubber assembly could be calculated from this curve and was input to the harmonic analyses of the cabin. We compared the results with the test data for verification. We utilized Taguchi’s parameter design method to determine the optimal shape of the anti-vibration rubber assembly and found two distinct shapes with reduced stiffness. Results show that the vibration at the cabin frame was reduced by approximately 35% or 47.6% compared with the initial design using the two optimized models.