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IEEE1394 기반의 홈 네트웍에서 이벤트와 등시성 서비스의 실시간성 보장을 위한 소프트웨어 구조
박동환,오봉진,강순주,Park, Dong-Hwan,O, Bong-Jin,Gang, Sun-Ju 한국정보처리학회 2002 정보처리학회논문지 A Vol.9 No.2
IEEE1394는 디지털 캠코더, 디지털 TV, 퍼스널 컴퓨터를 포함한 가정내의 디지털 네트웍을 구성하기 위한 대표적인 인터페이스이다. 최근 IEEE1394는 기존의 멀티미디어 데이터를 지원하는 장비의 인터페이스에서 벗어나 실시간성이 요구되는 제어 시스템에 적용이 되고 있으며 더불어 IICP(Instrument and Industrial Control Protocol)의 제정등 응용분야가 점차 확대되고 있다. 또한 홈 네트웍에서 제어 네트웍과 데이터 네트웍의 연동을 위해 기반 망으로 사용됨으로써 제어 네트웍에서 요구되는 실시간성의 보장이 IEEE1394에서도 요구되고 있다. 이 논문에서는 홈 네트윅에서 IEEE1374의 실시간성 보장을 위해 이벤트 채널 모델을 사용한 서비스의 우선순위에 따른 처리기법과 1394 디바이스 드라이버 레벨에서의 우선순위 보장을 위한 구조를 제안한다. 서비스의 우선순위에 따른 실시간성 보장기법은 서비스 이벤트의 우선순위에 따라 이벤트 채널을 통해 높은 우선순위 서비스의 예측가능성을 보장하며, 디바이스 드라이버 레벨에서는 우선순위 큐를 이용한 패킷의 전송과 등시성 전송을 위한 효율적인 버퍼관리 기법을 제공한다. 이러한 구조는 향후 IEEE1374기반의 홈 네트웍 미들웨어 뿐만이 아니라 실시간 응용이 요구되는 다양한 어플리케이션과 서비스 등에 사용될 수 있을 것으로 보인다. IEEE1394 is a de facto standard for the home network interfaces of digital multimedia home devices including digital A/V systems, digital camcorders, and PCs. Recently, it has been used in applications to guarantee the real-time characteristics such as home automation system and IICP (Instrument and Industrial Control Protocol). In order to guarantee real-time requirements in these IEEE1394-based real-time applications, this thesis proposes the software architecture of an IEEE1394 based home network that supports the guarantee for service's react-time characteristics. The proposed architecture has a real-time IEEE1394 device driver and event service architecture for guarantee real-time characteristics. The real-time device driver supports priority-based queueing of packets and mechanism to reduce the interrupt latency time in ISR. The event service architecture supports a real-time events delivery based on home network service using real-time event channel. This architecture can accommodate the real-time requirements of various applications and services such as digital multimedia services with QoS guarantees. home automation system required real-tine characteristics.
박동환,윤재정,홍진태,권혁홍,Park, Dong-Hwan,Yun, Jae-Jung,Hong, Jin-Tae,Kwon, Hyuk-Hong The Korean Society of Manufacturing Process Engine 2017 한국기계가공학회지 Vol.16 No.4
In the sand casting process, the flow of liquid metal affects the quality of casting products and their die life. To determine the optimal bush part design process, this study performed various analyses using commercial finite element analysis S/W. The simulation focused on the molten metal behaviors during the mold filling and solidification stages of sand casting. This study aims to develop methods to reduce the cost and increase the tool life of the continuous hot zinc plating roll.
고주파 유도가열을 이용한 선상가열 시 각 변형 예측에 관한 연구
박동환,진형국,박성식,신상범,Park, Dong-Hwan,Jin, Hyung-Kook,Park, Soung-Sig,Shin, Sang-Beom 대한용접접합학회 2015 대한용접·접합학회지 Vol.33 No.1
The purpose of this study is to establish the predictive method of the angular distortion caused by the line heating process with high frequency induction heating. In order to do it, the heat input model for the high frequency induction heating system was established through comparing the temperature evaluation results obtained by both FEA and experiment. The critical heating conditions to prevent the degradation of the work piece with various thicknesses were identified by FEA and microstructure test results. Under the critical heating conditions, the extensive line heating tests were performed. According to the test results, it was found that the angular distortion behavior of the heated plates could be defined as the function of heat intensity and the rigidity of heated plate. In addition, it was clarified that the angular distortion strongly depended on the size of test specimen such as the length and the width of the heated plate. Based on these results, the predictive equation for the angular distortion was established with the function of heat intensity, bending rigidity and size of heated plate.
Dong-Hwan Park(박동환),Jae-Jung Yun(윤재정),Jin-Tae Hong(홍진태),Hyuk-Hong Kwon(권혁홍) 한국기계가공학회 2017 한국기계가공학회지 Vol.16 No.4
In the sand casting process, the flow of liquid metal affects the quality of casting products and their die life. To determine the optimal bush part design process, this study performed various analyses using commercial finite element analysis S/W. The simulation focused on the molten metal behaviors during the mold filling and solidification stages of sand casting. This study aims to develop methods to reduce the cost and increase the tool life of the continuous hot zinc plating roll.
Dong-Hwan Park(박동환),Hyuk-Hong Kwon(권혁홍) 한국기계가공학회 2016 한국기계가공학회지 Vol.15 No.5
This paper aims to ensure describe the a spring-back prevention technique for improving shape fixability by using an ultra-high strength steel sheet with 980 MPa to develop a lightweight seat rail parts. Ultra-high strength steel gives a potential for considerable weight reduction and a cost-effective way to produce energy efficient vehicles. The influence of a spring-back of seat rail parts on the shape fixability in forming processes was investigated to be solved by an adjustment of the appropriate tool design and process parameters. The computed results for improving shape fixability were in good agreement with the experimental results.
Dong-Hwan Park(박동환),Hyuk-Hong Kwon(권혁홍) 한국기계가공학회 2016 한국기계가공학회지 Vol.15 No.2
It is very important to obtain the net shape of the product to maximize the shear cutting surface of fine blanking. In this paper, the fine blanking die was manufactured to achieve part characteristics, such as flatness and a fully sheared surface. The V-ring in the fine blanking die was designed to prevent lateral movement of the material. The fine blanking experiment was conducted with the fine blanking die. The material usage rate was increased by over 5.7% and that of the water-soluble lubricant was decreased by over 33% when the 2-cavity die technology was applied to fine blanking. The capacity of the existing press could lead to productivity improvement and cost reduction. Thus, 2-cavity die technology for fine blanking with a minute module of an accurate gear for producing seat recliner parts was developed.
무산소동 소재를 활용한 태양광 일렉트로드 바디 단조 부품 개발
박동환(Dong-Hwan Park),탁윤학(Yun-Hak Tak) 한국기계가공학회 2016 한국기계가공학회지 Vol.15 No.3
Forging operations are non-stationary processes occurring because of indirect pressure, generally, under conditions of three-dimensional stress and deformation. Furthermore, due to friction and the constraints of die geometry, deformation is not homogeneous. Material flow and deformation are largely determined by the shape of the tools. It is well known that net-shape forging can improve the mechanical strength of the final product as well as reduce material waste. Oxygen-free copper that is used for electrical and electronic components has excellent electrical and thermal conductivity. Oxygen-free copper parts have a low productivity in cutting process. Thus, the forging process is performed in order to improve the low productivity in cutting process. The forging of oxygen-free copper for electrode body parts was modeled using finite element simulation and forging experiments that were conducted for producing electrode body parts at room temperature. In order to reduce the cost of cutting products, the forging was performed in a closed cavity to obtain near-net or net-shape parts.