• 제목/요약/키워드: Automation Mechanism

검색결과 212건 처리시간 0.023초

가정식난방배수관내의자동온도송신장치에대한연구 (The Study on Automatic Temperature Transmission System for the Heating pipe at Home)

  • 박철민;조형국;이훈재
    • 한국정보통신학회논문지
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    • 제13권12호
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    • pp.2641-2646
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    • 2009
  • 가정 가사생활을 자동으로 관리 하는 Home Automation System은 점차 발전하고 있으며, 에너지의 절약과 재사용에 관한 부분 또한 점차 관심이 높아지고 있다. 일반 아파트에서 난방은 필수이다. 난방의 방법은 크게 두가지로 나눈다. 하나는 전기를 이용하는 것이고 다른 하나는 온수를 이용하는 것이다. 전기를 이용하면 전기요금의 상승으로 효률적이지 못하다. 그러나 온수를 이용하면 비용 면에서 많은 절감이 된다. 온수를 이용할 때, 온수의 온도가 모든 파이프에서 동일하지 못하다. 그러므로 실내의 온도를 설정치와 일치하지 못할때가 있다. 이러한 문제의 해결은 온수 파이프내에 온도 센서를 부착하여, 이 온도를 실시간으로 전송하고, 수신 측에서 온수의 온도를 조절하면 된다. 본 논문에서는 보일러 내부의 순환 pump가 난방수 순환에 따른 동력을 방바닥 시멘트 몰탈 내부의 소형교류 발전기에 의해서 전기에너지를 얻어 동작하는 저전력 기반의 난방배수관 자동온도 배수장치를 제안한다. 시스템의 전원은 프로펠러 수차 방식을 사용하여 분사수 충돌 방식을 사용하였으며, MCU 모듈은 atmel 사의 ATmega8, 통신모듈을 위하여 Chipcon사의 CC1020을 사용하였다.

블록체인 비교연구: 비트코인·네임코인·메디블록 (A Comparative Study of Block Chain : Bitcoin·Namecoin·MediBloc)

  • 김지연
    • 과학기술학연구
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    • 제18권3호
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    • pp.217-255
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    • 2018
  • 2008년 등장한 비트코인(Bitcoin)은 중앙의 신뢰기관 없이 직접 거래가 가능한 전자 화폐 시스템이다. 당시 비트코인은 단지 개념상의 화폐에 불과했지만, 이제는 현실 화폐만큼의 지위를 누리게 되었다. 비트코인의 대중화 덕분에 블록체인 기술은 대중적 관심의 대상이 되었다. 블록체인 기술은 화폐 기능만이 아니라, 다양한 영역으로 확장해가고 있다. 블록체인의 가능성은 구성 중이다. 이 논문에서는 블록체인 응용 중에서 비트코인, 네임코인(Namecoin), 메디블록(MediBloc) 사례를 비교함으로써 블록체인의 기술적 성격과 사회적 상호 구성의 경과를 살펴보고자 한다. 2013년 등장한 네임코인은 현행의 중앙집중적 인터넷 도메인 네임 시스템(DNS)을 대체할 목적으로 설계되었다. 도메인 네임 관리 방식에 대해서는 오래전부터 논쟁이 있었지만 이미 수립된 체제를 대체하는 일은 쉽지 않다. 한편 메디블록은 의료데이터의 분산적 관리를 제안하고 있다. 메디블록은 의료데이터의 핵심 생산자는 환자이므로 데이터의 관리도 환자에게 권한을 줘야 한다고 주장한다. 블록체인 기술은 현행의 관리 권한을 분산함으로써 더 민주적인 의사결정 형성을 도울 것인가? 아니면 단지 더 자동화된 기술적 해법에 그칠 것인가? 시민으로서 우리는 블록체인을 의제화함으로써 이 기술의 현실적 구현 과정에 개입할 수 있다. 그것이야말로 기술의 사회적 구성이 될 것이다.

Performance Improvement of IPMC(Ionic Polymer Metal Composites) for a Flapping Actuator

  • Lee, Soon-Gie;Park, Hoon-Cheol;Pandita Surya D.;Yoo Young-Tai
    • International Journal of Control, Automation, and Systems
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    • 제4권6호
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    • pp.748-755
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    • 2006
  • In this paper, a trade-off design and fabrication of IPMC(Ionic Polymer Metal Composites) as an actuator for a flapping device have been described. Experiments for the internal solvent loss of IPMCs have been conducted for various combinations of cation and solvent in order to find out the best combination of cation and solvent for minimal solvent loss and higher actuation force. From the experiments, it was found that IPMCs with heavy water as their solvent could operate longer. Relations between length/thickness and tip force of IPMCs were also quantitatively identified for the actuator design from the tip force measurement of 200, 400, 640, and $800{\mu}m$ thick IPMCs. All IPMCs thicker than $200{\mu}m$ were processed by casting $Nafion^{TM}$ solution. The shorter and thicker IPMCs tended to generate higher actuation force but lower actuation displacement. To improve surface conductivity and to minimize solvent evaporation due to electrically heated electrodes, gold was sputtered on both surfaces of the cast IPMCs by the Physical Vapor Deposition(PVD) process. For amplification of a short IPMC's small actuation displacement to a large flapping motion, a rack-and-pinion type hinge was used in the flapping device. An insect wing was attached to the IPMC flapping mechanism for its flapping test. In this test, the wing flapping device using the $800{\mu}m$ thick IPMC. could create around $10^{\circ}{\sim}85^{\circ}$ flapping angles and $0.5{\sim}15Hz$ flapping frequencies by applying $3{\sim|}4V$.

Process fault diagnostics using the integrated graph model

  • Yoon, Yeo-Hong;Nam, Dong-Soo;Jeong, Chang-Wook;Yoon, En-Sup
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1991년도 한국자동제어학술회의논문집(국제학술편); KOEX, Seoul; 22-24 Oct. 1991
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    • pp.1705-1711
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    • 1991
  • On-line fault detection and diagnosis has an increasing interest in a chemical process industry, especially for a process control and automation. The chemical process needs an intelligent operation-aided workstation which can do such tasks as process monitoring, fault detection, fault diagnosis and action guidance in semiautomatic mode. These tasks can increase the performance of a process operation and give merits in economics, safety and reliability. Aiming these tasks, series of researches have been done in our lab. Main results from these researches are building appropriate knowledge representation models and a diagnosis mechanism for fault detection and diagnosis in a chemical process. The knowledge representation schemes developed in our previous research, the symptom tree model and the fault-consequence digraph, showed the effectiveness and the usefulness in a real-time application, of the process diagnosis, especially in large and complex plants. However in our previous approach, the diagnosis speed is its demerit in spite of its merits of high resolution, mainly due to using two knowledge models complementarily. In our current study, new knowledge representation scheme is developed which integrates the previous two knowledge models, the symptom tree and the fault-consequence digraph, into one. This new model is constructed using a material balance, energy balance, momentum balance and equipment constraints. Controller related constraints are included in this new model, which possesses merits of the two previous models. This new integrated model will be tested and verified by the real-time application in a BTX process or a crude unit process. The reliability and flexibility will be greatly enhanced compared to the previous model in spite of the low diagnosis speed. Nexpert Object for the expert system shell and SUN4 workstation for the hardware platform are used. TCP/IP for a communication protocol and interfacing to a dynamic simulator, SPEEDUP, for a dynamic data generation are being studied.

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CPS(Cyber Physical System)와 MIS의 연구기회 탐색 (CPS(Cyber Physical System) & Research Opportunities for MIS)

  • 최무진;박종필
    • 한국정보시스템학회지:정보시스템연구
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    • 제26권4호
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    • pp.63-85
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    • 2017
  • Purpose Recently, much attention in building smart factory has dramatically increased with an emergence of the Industry 4.0. As we noted a connectivity gap between main concerns of MIS and the automated manufacturing systems such as POP and MES, it is recommended that CPS (Cyber-Physical System) can be an important building block for the smart factory and enrich the depth of MIS knowledge. Therefore, first, this study attempted to identify the connectivity gap between the traditional field of MIS (ERP, SCM, CRM, etc.) and the automated manufacturing systems, and then recommended CPS as a technical bridge to fill the gap. Secondly, we studied concepts and research trend of CPS that is believed to be a virtual mechanism to manage manufacturing systems in an integrated manner. Finally, we suggested research and educational opportunities in MIS based on the CPS perspectives. Design/methodology/approach Since this paper introduced relatively new idea of CPS originally discussed in the field of engineering, traditional MIS research method such as survey and experiment may not fit well. Therefore this research collected technical cases through literature survey in engineering fields, video clips from Youtube, and field references from various ICT Exhibitions and Conventions. Then we analyzed and reorganized them to highlight the necessity of CPS and draw some insight to share with MIS academia. Findings This paper introduced CPS to bridge the connectivity gap between the traditional MIS and automated manufacturing system (smart factory), a concern far away from the MIS academia. Further, this paper suggested future research subjects of MIS such as developing software to share big production data and systems to support manufacturing decisions, and innovating MIS curricula including smart and intelligent manufacturing technology within the context of traditional enterprise systems.

Multi-FNN Identification Based on HCM Clustering and Evolutionary Fuzzy Granulation

  • Park, Ho-Sung;Oh, Sung-Kwun
    • International Journal of Control, Automation, and Systems
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    • 제1권2호
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    • pp.194-202
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    • 2003
  • In this paper, we introduce a category of Multi-FNN (Fuzzy-Neural Networks) models, analyze the underlying architectures and propose a comprehensive identification framework. The proposed Multi-FNNs dwell on a concept of fuzzy rule-based FNNs based on HCM clustering and evolutionary fuzzy granulation, and exploit linear inference being treated as a generic inference mechanism. By this nature, this FNN model is geared toward capturing relationships between information granules known as fuzzy sets. The form of the information granules themselves (in particular their distribution and a type of membership function) becomes an important design feature of the FNN model contributing to its structural as well as parametric optimization. The identification environment uses clustering techniques (Hard C - Means, HCM) and exploits genetic optimization as a vehicle of global optimization. The global optimization is augmented by more refined gradient-based learning mechanisms such as standard back-propagation. The HCM algorithm, whose role is to carry out preprocessing of the process data for system modeling, is utilized to determine the structure of Multi-FNNs. The detailed parameters of the Multi-FNN (such as apexes of membership functions, learning rates and momentum coefficients) are adjusted using genetic algorithms. An aggregate performance index with a weighting factor is proposed in order to achieve a sound balance between approximation and generalization (predictive) abilities of the model. To evaluate the performance of the proposed model, two numeric data sets are experimented with. One is the numerical data coming from a description of a certain nonlinear function and the other is NOx emission process data from a gas turbine power plant.

자동화 수동 변속기의 CBW 시스템 개발 (Design and Implementation of Clutch-by-wire System for Automated Manual Transmissions)

  • 문상은;김민성;여훈;송한림;한관수;김현수;황성호
    • 한국자동차공학회논문집
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    • 제12권4호
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    • pp.119-128
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    • 2004
  • With the growing traffic density and increasing comfort requirements, the automation of the drive train will gain importance in vehicles. The automatic clutch actuation relieves the drivers especially in urban driving and stop-and-go traffic conditions. This paper describes the dynamic modeling of a clutch actuator and clutch spring. The dynamic model of the clutch system is developed using MATLAB/Simulink, and evaluated by experimental data using a test rig. This performance simulator is useful to develop the clutch-by-wire (CBW) system for an automated manual transmission (AMT). The electro-mechanical type CBW system is also implemented as an automatic clutch for AMT. The prototype of CBW system is designed and implemented systematically, which is composed of an electric motor, worm gear and slider-crank mechanism. The test rig is developed to perform the basic function test of the automatic clutch, and the developed prototype is validated by the experimental data on the test rig.

An Intelligent Wireless Sensor and Actuator Network System for Greenhouse Microenvironment Control and Assessment

  • Pahuja, Roop;Verma, Harish Kumar;Uddin, Moin
    • Journal of Biosystems Engineering
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    • 제42권1호
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    • pp.23-43
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    • 2017
  • Purpose: As application-specific wireless sensor networks are gaining popularity, this paper discusses the development and field performance of the GHAN, a greenhouse area network system to monitor, control, and access greenhouse microenvironments. GHAN, which is an upgraded system, has many new functions. It is an intelligent wireless sensor and actuator network (WSAN) system for next-generation greenhouses, which enhances the state of the art of greenhouse automation systems and helps growers by providing them valuable information not available otherwise. Apart from providing online spatial and temporal monitoring of the greenhouse microclimate, GHAN has a modified vapor pressure deficit (VPD) fuzzy controller with an adaptive-selective mechanism that provides better control of the greenhouse crop VPD with energy optimization. Using the latest soil-matrix potential sensors, the GHAN system also ascertains when, where, and how much to irrigate and spatially manages the irrigation schedule within the greenhouse grids. Further, given the need to understand the microclimate control dynamics of a greenhouse during the crop season or a specific time, a statistical assessment tool to estimate the degree of optimality and spatial variability is proposed and implemented. Methods: Apart from the development work, the system was field-tested in a commercial greenhouse situated in the region of Punjab, India, under different outside weather conditions for a long period of time. Conclusions: Day results of the greenhouse microclimate control dynamics were recorded and analyzed, and they proved the successful operation of the system in keeping the greenhouse climate optimal and uniform most of the time, with high control performance.

단위 취약점 식별자 부여 자동화에 대한 연구 (A study on automation of AV(Atomic Vulnerability) ID assignment)

  • 김형종
    • 인터넷정보학회논문지
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    • 제9권6호
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    • pp.49-62
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    • 2008
  • 단위 취약점(atomic vulnerability)은 기존의 취약점의 표현방법이 갖는 모호성을 개선하여, 취약점을 시스템적으로 표현하기 위한 취약점의 새로운 정의이다. 단위 취약점은 취약점의 유형, 위치, 결과 등에 따라 보다 세분화하여, 취약점을 의미를 중심으로 분석하고 자 할 때 필요한 정보로서, 기존의 취약점은 몇 개의 단위 취약점 식별자의 조합으로 표현된다. 현재 가장 대표적으로 사용되는 취약점 정보인 CW(Common Vulnerability Exposure)의 경우, 취약점의 핵심적인 내용을 자연어 형태의 설명(description)을 통해 제시한다. 이러한 CVE의 설명 정보는, 정형화되어 있지 않아서 단위 취약점 분석을 위해서는 기존의 CVE 설명 정보에서 특정 단어들을 검색하여 데이터를 분류하는 자연어 검색 및 판단 기법이 필요하다. 본 논문에서는 자연어 검색 기법을 이용하여 단위 취약점 분석에 활용할 수 있는 소프트웨어를 설계하고 이를 실제 구현한 결과를 소개하고자 한다. 본 연구의 기여점은 설명위주의 취약점 표현을 정형화된 형태로 변환해 주는 소프트웨어 시스템의 개발에 있다.

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Object tracking based on adaptive updating of a spatial-temporal context model

  • Feng, Wanli;Cen, Yigang;Zeng, Xianyou;Li, Zhetao;Zeng, Ming;Voronin, Viacheslav
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제11권11호
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    • pp.5459-5473
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    • 2017
  • Recently, a tracking algorithm called the spatial-temporal context model has been proposed to locate a target by using the contextual information around the target. This model has achieved excellent results when the target undergoes slight occlusion and appearance changes. However, the target location in the current frame is based on the location in the previous frame, which will lead to failure in the presence of fast motion because of the lack of a prediction mechanism. In addition, the spatial context model is updated frame by frame, which will undoubtedly result in drift once the target is occluded continuously. This paper proposes two improvements to solve the above two problems: First, four possible positions of the target in the current frame are predicted based on the displacement between the previous two frames, and then, we calculate four confidence maps at these four positions; the target position is located at the position that corresponds to the maximum value. Second, we propose a target reliability criterion and design an adaptive threshold to regulate the updating speed of the model. Specifically, we stop updating the model when the reliability is lower than the threshold. Experimental results show that the proposed algorithm achieves better tracking results than traditional STC and other algorithms.