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병렬형 하이브리드 자동차의 SimulationX 모델 개발 및 연비 시뮬레이션
서영우(Y. W. Seo),한성민(S. M. Han),여현승(H. S. Yeo),이석우(S. W. Lee),류하오(Hao Liu) 유공압건설기계학회 2022 유공압건설기계학회 학술대회논문집 Vol.2022 No.12
Hybrid Electric Vehicles (HEVs) are an important seed in the process of converting from traditional internal combustion engine vehicles to eco-friendly vehicles. HEVs that use two energy sources have a complex structure, and thus, these two energy sources work independently/alternatively/jointly depending on road driving conditions in order to improve fuel efficiency. As HEVs are developed, it is becoming important to understand the operating principles and to interpret fuel economy performance in simulations. This research used simulationX, a commercial multi-domain analysis S/W, to develop a model for a parallel type hybrid vehicles, and implement fuel efficiency analysis. First, the heat engine, battery, electric motor, power train, etc. were modeled in a simulationX environment based on the parallel hybrid vehicle structure. Then, fuel efficiency analysis simulation was performed on driving condition of NEDC (New European Driving Cycle). The developed simulationX model for parallel type hybrid vehicle is prepared to develop a controller for fuel efficiency improvement in the future work.
SimulationX 기반 자동차 semi-active 현가장치의 모델 개발 및 특성 해석
정인태(I. T. Jeong),정동석(D. S. Jeong),정원식(W. S. Jeong),이성민(S. M. Lee),유보연(B. Y. Yoo),장대범(D. B. Jang),서영우(Y. W. Seo),한성민(S. M. Han),이석우(S. W. Lee),여현승(H. S. Yeo),류하오(Hao Liu) 유공압건설기계학회 2022 유공압건설기계학회 학술대회논문집 Vol.2022 No.12
The semi-active suspension system controls the damping force of the vehicle damper to simultaneously improve the steering stability (handling) and ride comfort of the vehicle. In order to improve the ride comfort of a passenger car, performance analysis is required through modeling and simulation adaptation of a semi-active suspension system. This study used SimulationX, a commercial multi-domain analysis S/W, and modeling about 1/4 car of the semi-active suspension system. The damping force was controlled through a given performance of the damper. The developed SimulationX-based semi-active suspension system model is prepared for future controller development research.
한성민(S. M. Han) 한국재활복지공학회 2010 재활복지공학회논문지 Vol.4 No.1
시각장애인을 위한 보조공학(Assistive Technology : AT)의 연구개발은 보행과 정보 접근을 위한 것이 대부분이고, 특히 정보커뮤니케이션을 위한 음성도서용 DAISY플레이어나, 컴퓨터 화면을 읽어 주는 스크린 리더, 저시력자용 독서확대기, 점자 및 점자정보단말기 등이 상품화되어 오늘날 많은 시각장애인들에게 필수적인 보조공학기기로 자리 잡고있다. 시각장애인들이 사용하는 보조공학은 촉각이나 청각을 이용하여 시각 기능을 대행하기 때문에 감각대행기라고도 한다. 촉각을 이용한 감각대행기인 점자디스플레이와 점자정보단말기는 점자 형성을 위한 액츄에이터로 압전 소자로 만든 바이몰프가 사용되며, 점자셀의 점자(핀)는 바이몰프의 상하 운동에 의해 형성된다. 점자 셀은 휴대용 점자정보단말기에 사용되고 있기 때문에, 소형화 및 저가격화가 관건이 되며 현재는 일본의 KGS사가 세계 점자 셀(Cell) 시장의 80% 이상을 점유하고 있다. 본 연구진은 2003년에 저가/소형 원반형 점자디스플레이를 개발하여, 세계 최초로 제품화에도 성공한 바 있다. 본고에서는 일본의 점자정보단말기를 비롯한 촉각디스플레이의 연구개발에 대해 검토하고 촉각을 이용한 감각대행 제품의 하나로서, 본 연구진이 개발한 원반형 점자디스플레이에 대해 고찰한다. Research and development of Assistive Technology (A1) for blind people is primarily focused on assisting mobility and improving access to information. Some particularly useful devices for aiding access to information and communication are DAISY players used with talking books, screen readers for reading screens, video magnifiers to aid low vision, Braille displays, and Braille PDAs. These essential devices have been successfully commercialized and have assisted many visually impaired people. Assistive technology devices for visually impaired people are called sensory substitution devices, because these devices substitute tactile or auditory functions for visual functions. The tactile interfaces of sensory substitution devices such as Braille displays and Braille PDAs have a bimorph type of piezoelectric actuator that forms a Braille ipin) of the Braille cells by moving up and down. KGS Corporation of Japan has more than 80% share of the worldwide market for these Braille cell actuators. Commercializing it for the first time in the world. This paper reviews the various endeavors in Japan in the research and development of tactile displays, such as Braille displays and Braille PDAs. Furthermore, it discusses sensory substitution devices that use tactile displays, focusing especially on the rotating Braille display we have developed.