• 제목/요약/키워드: Fault Redundancy

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네트워크 본딩 기술을 기반한 IEEE 1588의 고장 허용 기술 연구 (Fault Tolerance for IEEE 1588 Based on Network Bonding)

  • 무스타파 알타하;이종명
    • 한국정보전자통신기술학회논문지
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    • 제11권4호
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    • pp.331-339
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    • 2018
  • IEEE 1588은 측정 및 제어 시스템에서 사용되는 네트워크의 정확한 시각 동기 표준(PTP, Precision Time Protocol)이다. Best Master Clock (BMC) 알고리즘은 PTP에서 최적의 마스터-슬레이브 계층을 선택하기 위해 사용한다. 슬레이브가 마스터와의 링크 장애 또는 현재의 시각 동기 에러가 발생하였을 때, BMC는 자동으로 다른 마스터 신호를 수신할 수 있도록 한다. 이때의 슬레이브 클럭은 마스터 신호의 장애 보상 시간 값에 따라 달라진다. 그러나 BMC 알고리즘에서는 마스터 클럭의 장애 발생에 따른 빠른 고장 복구 방안은 전혀 고려하지 않았다. 이에 본 논문에서는 네트워크 본딩 (Bonding) 기술을 적용하여 마스터 클럭의 장애에 따른 빠른 복구 방안을 제시하였다. 본 연구는 리눅스 시스템의 PTP livery 데몬(Ptpd)과 IEEE 1588의 특정 프로파일을 사용하였으며, 본딩 모드를 통해서 제어하도록 하였다. 네트워크 본딩 기술은 둘 이상의 네트워크 인터페이스 신호를 하나의 네트워크 인터페이스에 전송하기 위해 신호를 결합하는 과정에 대한 것으로, 네트워크의 이중화와 성능 향상을 제공한다. 본딩 기술은 만약 하나의 링크에서 장애가 발생하면, 본딩되어 있는 다른 링크를 통해서 즉각적으로 신호 전달이 가능하기에 네트워크의 이중화 또는 부하 분산 등에 사용한다. IEEE 1588만 적용한 것과 대비하여 IEEE 1588 기술과 네트워크 본딩 기술을 결합한 네트워크 복구 기술의 뛰어난 성능을 본 논문을 통하여 증명하였다.

무선 센서 망을 위한 K-연결 (K+1)-감지도 고장 감내 위상 제어 프로토콜 (K-connected, (K+1)-covered Fault-tolerant Topology Control Protocol for Wireless Sensor Network)

  • 박재현
    • 한국통신학회논문지
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    • 제34권11B호
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    • pp.1133-1141
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    • 2009
  • 본 논문에서는 무선 센서 망으로 k-연결 (k+1)-감지 고장 감내 위상을 구성하는 분산 위상 제어 프로토콜을 제시한다. 센서 망에 있어 최근에 주목받고 있는 근본적인 문제는 최소한의 활동하는 노드들로 위상을 구성하며, 다양한 응용과 환경에 적합한 감지도와 망 연결수를 제공하는 것이다. 망의 수용 능력을 증대시키는 동시에 에너지 효율성을 개선하고 더불어 망의 연결성을 유지하기 위해서, 많은 위상 제어 알고리즘들이 제안되어 왔다. 대부분의 알고리즘들은 연결되는 링크들의 수를 줄임으로써, 노드들의 고장이나 파손시에 여분의 경로배정이 어렵게 되는 문제를 발생시킨다. 특정 감지도를 보장하며 이 문제를 해결하는 프로토콜이 제안되었으나, 감지도 계산을 위해서는 정확한 위치정보가 필요하고, k-감지인 경우에 대부분의 활동 센서들이 2k-연결을 유지한다. 우리는 감지범위의 반지름이 통신 범위의 반지름의 두 배인 조건이 연결이 감지범위를 함의하기 위한 필요충분조건임을 증명하고, 이에 기반하여 무선 센서 망에서 k-연결을 제공하며 (k+1)-감지를 보장하는 고장 감내 위상을 구성하는 프로토콜을 제시한다. 제안한 분산된 알고리즘은 정확한 위치정보 없이 (k+1)-감지를 보장하며, 복잡도는 O(1) 이다. 모의 실험하여 패킷손실율과 전송 지연시간 그리고 에너지 소비율을 분석 하였다.

인공신경망을 이용한 2진 로봇 매니퓰레이터의 역기구학적 해석 (Inverse Kinematic Analysis of a Binary Robot Manipulator using Neural Network)

  • 류길하;정종대
    • 한국정밀공학회지
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    • 제16권1호통권94호
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    • pp.211-218
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    • 1999
  • The traditional robot manipulators are actuated by continuous range of motion actuators such as motors or hydraulic cylinders. However, there are many applications of mechanisms and robotic manipulators where only a finite number of locations need to be reached, and the robot’s trajectory is not important as long as it is bounded. Binary manipulator uses actuators which have only two stable states. As a result, binary manipulators have a finite number of states. The number of states of a binary manipulator grows exponentially with the number of actuators. This kind of robot manipulator has some advantage compared to a traditional one. Feedback control is not required, task repeatability can be very high, and finite state actuators are generally inexpensive. And this kind of robot manipulator has a fault tolerant mechanism because of kinematic redundancy. In this paper, we solve the inverse kinematic problem of a binary parallel robot manipulator using neural network and test the validity of this structure using some arbitrary points m the workspace of the robot manipulator. As a result, we can show that the neural network can find the nearest feasible points and corresponding binary states of the joints of the robot manipulator

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Design Improvement for the Cooling System of the Interim Spent Fuel Storage Facility Using a PSA Method

  • Ko, Won-Il;Park, Jong-Won;Park, Seong-Won;Lee, Jae-Sol;Park, Hyun-Soo
    • Nuclear Engineering and Technology
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    • 제28권5호
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    • pp.440-451
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    • 1996
  • With emphasis on safety, this study addresses for better design condition for the cooling system in a wet-type interim spent fuel storage facility, using a probabilistic safety assessment method. To incorporate the design renovation into the design phase, a simple approach is proposed. By taking the cooling system of a reference design, a fault tree analysis was performed to identify the weak point of the considered system, and then basic factors for design renovation were defined. A total of 21 design alternatives were selected through the combination of the basic factors. Finally, the optimum design alternative for the cooling system is derived by means of the cost and effect analysis based on the estimated cost, system reliability and assumed probabilistic safety criteria. With the assumption that the failure frequency of at-reactor spent fuel cooling system compiles with probabilistic safety criteria for the interim spent fuel cooling system, it was shown that the optimum alternative should have l00% cooling loop redundancy with one pump per cooling loop and a cleanup system installed separately from the main loop. Furthermore, it also should be classified into safety system. The result of this study can be used as a useful basis to identify factors of safety concern and to establish design requirements in the future. The method also can be applied for other nuclear facilities.

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다목적 실용위성의 임무수명 인자에 대한 연구 (STUDY ON KOMPSAT SATELLITE MISSION LIFETIME FACTORS)

  • 장영근;백명진;최해진
    • Journal of Astronomy and Space Sciences
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    • 제15권2호
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    • pp.459-473
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    • 1998
  • 인공위성이 더욱 복잡해 감에 따라 예측할 수 없는 실패의 발생은 설계의 부적당성, 경험 부족, 문제인식 부족, 빈약한 품질제어 능력, 부적당한 시험 또는 작업자의 실수 등 때문에 늘어나고 이들은 위성의 임무 수명을 단축시킬 수 있다. 본 고에서는 위성의 일반적인 실패유형과 임무수명 인자에 대해 검토하고, 지구 및 해양관측 임무를 갖고 있는 태양동기 저궤도위성인 다목적 실용위성에 대한 임무수명인자를 조사하고 실제 예상되는 위성의 임무수명을 예측하였다. 임무수명의 예측 시 랜덤하게 발생하는 실패에 의한 수명의 중단은 예측할 수 없는 것이기 때문에, 여기서는 주로 예측이 가능한 마모에 의한 대표적인 임무수명 인자 예를 들어, 전력 버짓, 추진제 버짓, 배터리 충 방전 사이클, 복사환경의 영향, 탑재체의 신뢰도, 단일 점 실패, 위성 여유 분을 등을 조사하고 개략적인 수명을 예측하였다.

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HVDC용 12-펄스 위상제어정류기의 새로운 게이트 펄스 발생 기법 (A New Gate Pulse Generating Method of 12-Pulse Phase Controlled Rectifier for HVDC)

  • 안종보;김국헌;이종무;이기도
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 추계학술대회 논문집 학회본부 A
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    • pp.139-141
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    • 2000
  • High voltage direct current(HVDC) transmission system uses the phase controlled rectifier triggered by means of IPC(individual phase control) or EPC(equidistant pulse control). Most HVDC system has adopted EPC method that can solve the harmonic instability problem of IPC method in weak power system. But EPC has inherent indirect synchronizing problem requiring the closed loop control. This paper presents the new gate pulse generating method for 12-pulse HVDC converter, which combines IPC with EPC. Simulation and test results are presented. The basic concept is that it generates the gating pulse for 12-pulse converter by synthesizing the internal phase reference using the frequency and phase information of a sin91e phase voltage. To ensure the reliability of the external phase input, Potential transformer that detects the phase voltage has redundancy. Using fault detecting algorithm the healthy input is always guaranteed. And the frequency compensation function was reinforced.

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중간 결과값 연산 모델을 위한 2차원 DCT 구조 (Two-dimensional DCT arcitecture for imprecise computation model)

  • 임강빈;정진군;신준호;최경희;정기현
    • 전자공학회논문지C
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    • 제34C권9호
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    • pp.22-32
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    • 1997
  • This paper proposes an imprecise compuitation model for DCT considering QOS of images and a two dimensional DCT architecture for imprecise computations. In case that many processes are scheduling in a hard real time system, the system resources are shared among them. Thus all processes can not be allocated enough system resources (such as processing power and communication bandwidth). The imprecise computtion model can be used to provide scheduling flexibility and various QOS(quality of service)levels, to enhance fault tolerance, and to ensure service continuity in rela time systems. The DCT(discrete cosine transform) is known as one of popular image data compression techniques and adopted in JPEG and MPEG algorithms since the DCT can remove the spatial redundancy of 2-D image data efficiently. Even though many commercial data compression VLSI chips include the DCST hardware, the DCT computation is still a very time-consuming process and a lot of hardware resources are required for the DCT implementation. In this paper the DCT procedure is re-analyzed to fit to imprecise computation model. The test image is simulated on teh base of this model, and the computation time and the quality of restored image are studied. The row-column algorithm is used ot fit the proposed imprecise computation DCT which supports pipeline operatiions by pixel unit, various QOS levels and low speed stroage devices. The architecture has reduced I/O bandwidth which could make its implementation feasible in VLSI. The architecture is proved using a VHDL simulator in architecture level.

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3차원 2진 로봇 머니퓰레이터의 역기구학적 해석 (Inverse Kinematic Analysis of a Three Dimensional Binary Robot Manipulator)

  • 류길하;이인석
    • 한국정밀공학회지
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    • 제16권4호통권97호
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    • pp.205-212
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    • 1999
  • A three dimensional binary parallel robot manipulator uses actuators which have only two stable states and its structure is variable geometry truss. As a result, it has a finite number of states and fault tolerant mechanism because of kinematic redundancy. This kind of robot manipulator has some advantages compared to a traditional one. Feedback control is not required, task repeatability can be very high, and finite state actuators are generally inexpensive. Because the number of states of a binary robot manipulator grows exponentially with the number of actuators it is very difficult to solve and inverse kinematic problem. The goal of this paper is to develop an efficient algorithm to solve an inverse kinematic problem of three dimensional binary parallel robot manipulator using a backbone curve when the number of actuators are too much. We first derive the coordinate transformations associated with a three degree of freedom in-parallel actuated robot manipulator. The backbone curve is generated optimally by considering the maximum roll and pitch angles of the robot manipulator configuration and length of link. Then, the robot manipulator is fitted along the backbone curve with some criterion.

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이중화 구조를 가진 변전소자동화시스템의 개발 (The Development of Dual Structured Power Management System)

  • 우천희;이보인
    • 전기학회논문지P
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    • 제59권3호
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    • pp.275-288
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    • 2010
  • In order to improve the quality of electricity in large scale power systems, stability of power system has to be achieved. This can be done by the means of preventative diagnosis of power equipments and protection, monitoring and control of the power system. Since the recent adoption of digital controllers, an improvement in stability was observed; in particular, IED, which contained self-diagnostic abilities such as fault tolerance, allowed for automatic recovery via redundancy or switching-over functions should there be faults with the equipments. Furthermore, communication lines have been hugely simplified, thus adding to the improvement in stability significantly. Taking these error reports and forecasting emergency reports and by effectively responding to them in the overiding controlling systems, high levels of system stability can be obtained. Power Management System that is being applied to automated power sub-stations, takes the IEC61850 international standard as its specification. In this paper, additional research into achieving stability of already developed PMS system and also the stability of the overall system was carried out, and the results of development of communication servers, which play a pivotal role in connecting systems, are stated.

등뼈 곡선을 이용한 2진 로봇 머니퓰레이터의 역기구학적 해석 (A Study on the Inverse kinematic Analysis of a Binary Robot Manipulator using Backbone Curve)

  • 류길하;이인석
    • 한국정밀공학회지
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    • 제16권3호통권96호
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    • pp.174-179
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    • 1999
  • A binary parallel robot manipulator uses actuators which have only two stable states and is structure is variable geometry truss. As a result, it has a finite number of states and fault tolerant mechanism because of kinematic redundancy. This kind of robot manipulator has the following advantages compared to a traditional one. Feedback control is not required, task repeatability can be very high, and finite state actuators are generally inexpensive. Because the number of states of a binary robot manipulator grows exponentially with the number of actuators, it is very difficult to solve an inverse kinematic problem. The goal of this paper is to develop an efficient algorithm to solve an inverse kinematic problem when the number of actuators are too much or the target position is located outside of workspace. The backbone curve is generated optimally by considering the curvature of the robot manipulator configuration and length of link. Then, the robot manipulator is fitted along the backbone curve with some criteria.

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