• 제목/요약/키워드: Inspection Period

검색결과 432건 처리시간 0.022초

One-Shot System에 대한 점검주기 연장 방안 연구 (A Study on How to Extend The Inspection Period for The One-Shot System)

  • 김종진;송정훈;한정원;이창규
    • 한국산학기술학회논문지
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    • 제22권2호
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    • pp.113-118
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    • 2021
  • 무기체계는 최근 고도의 신기술과 비용이 투자되어 첨단화, 정밀화 복합 기능화 등의 특징을 가진 형태로 변화하고 있다. 유도무기체계의 경우 주어진 임무를 한번만 수행하게 되는 One-Shot 시스템으로서 전원이 인가되어 임무를 수행하기까지 오랜 시간 동안 저장 되는 것이 특징이다. 이에 따라 유도무기체계의 경우도 경제적인 운용과 사용자의 안전성을 보장하는 측면에서 신뢰성이 보장되어야 한다. 특히 유도무기체계 중 보증탄의 형태로 개발된 유도탄의 경우, 개발단계 시 장기 저장 환경을 고려한 신뢰도 유지 기준이 제시 되고 이를 유지하기 위한 최적화된 점검주기가 필요하다. 본 연구는 현재 군에서 장기간 운용 중인 OO 유도탄을 대상으로 점검주기 간 발생한 정비현황 및 사격결과를 기초로 수학적 모형에 의한 추세 검정, 적합도 검정, 분포 분석 등을 통하여 실측 신뢰도를 산출한다. 이를 통하여 개발단계 시 설정된 점검주기 모델(Martinez 기법)에 적용하여 개선된 점검주기를 활용 가능한지 여부를 판단한다. 마지막으로 이러한 연구 결과 자료를 종합하여 점검주기 연장에 따른 정책적 관리방안을 제언한다.

철도차량 일상검수 주기 및 방법에 관한 연구 (A Study on the Daily Inspection of the Rolling-stocks)

  • 유양하;이낙영;김호순
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2010년도 춘계학술대회 논문집
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    • pp.1642-1649
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    • 2010
  • At present, KORAIL is in the middle of renovating. All steps exert great effort at cost reduction and a profit improvement. Especially to improve maintenance method and inspection period at the rolling-stock division lots of research is under progress. Daily inspection of rolling stocks is to operate the rolling stock normally. Daily inspection items are driving control device, coupling device, brake system, water system and air conditioning system, electrical system etc. Half of the maintenance manpower are inputted at daily inspection. Strengthens the quality and optimize the proportion of daily inspection are urgent problem. Daily inspection period extension aim is as follows. KTX from 3,500km to 5,000km, passenger car from 1st to 3,500km, new style electric locomotive from 2nd to 5,000km, the diesel locomotive is 2,800km from 1,200km. In this paper, the optimal daily inspection period and methods are considered including expected problem and counter measures.

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위험도평가에 의한 고속도로 교량의 점검주기 (Highway Bridge Inspection Period Based on Risk Assessment)

  • 이일근;김동현
    • 한국구조물진단유지관리공학회 논문집
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    • 제19권3호
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    • pp.64-72
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    • 2015
  • 고속도로교량을 위한 위험도기반점검주기를 제안하였다. 고속도로 교량유지관리시스템에서 얻은 상태데이터를 분석하여 교량상태 열화에 영향을 주는 위해성인자를 찾았다. 그러한 인자와 상태열화사이의 특정한 상관성을 찾았다. 이들을 이용하여 위해성점수를 평가하는데 이용하였다. 여러 가지 위해성 인자들을 종합하여 최종 위해성을 높음, 보통, 낮음의 세 단계로 구분하였다. 취약성은 교량의 현재상태로 평가하였다. 위험도행렬을 점검주기를 위해 제안하였다. C, D, E등급 교량의 점검주기는 현행대로 유지하였다. 그러나, 보통과 높음으로 위해성이 평가된 A 및 B 등급교량은 점검주기를 최대 6년까지 연장하였고 최소주기는 현행과 같이 3년으로 하였다. 위험도 평가에 따라 점검주기를 보정하므로써 평균 점검인력을 27% 절약할 수 있었다.

자동차 정기검사 주기에 관한 고찰 (A Consideration on the Inspection Frequency of the Periodic Technical Vehicle Inspection)

  • 임재문;정영달;여운석;강병도;윤영한
    • 자동차안전학회지
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    • 제4권2호
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    • pp.17-21
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    • 2012
  • The periodic technical vehicle inspection is to prevent the accident through the finding and fixing the defects of the vehicle. The periodic technical vehicle inspection in Korea was studied for assessing the adequacy of the inspection frequency. The inspection frequencies of many countries including EU, USA and Japan were compared. The average mileages by the vehicle usage and type were represented. The warranty period and recommended replacement period of parts of the domestic auto makers was studied. Currently, the inspection frequency for the periodic technical vehicle inspection in Korea is appropriate. The pass-fail rate and the cost-benefit analysis for the periodic technical inspection in Korea will be needed in the decision making process for the inspection frequency.

중수로 칼란드리아 내장품 원격 육안검사 기술 개발 (Development of Remote Visual Inspection Technology for Calandria & Internal of CANDU NPP)

  • 이상훈;진석홍;문균영
    • 한국압력기기공학회 논문집
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    • 제6권1호
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    • pp.72-77
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    • 2010
  • During the period of reinforcement work for the licensing renewal of CANDU NPP, the fuel channels, Calandria tubes and feeders of CANDU Reactor are replaced. The remote visual inspection of Calandria internal is also performed during the period of reinforcement work. This period is a unique opportunity to inspect the inside of the Calandria. The visual inspection for the Calandria vessel and its internals of Wolsong NPP Unit 1 was performed by Nuclear Engineering & Technology Institute(NETEC) of KHNP. To perform this inspection, NETEC developed equipment applied new technology such as the synchronization of 3D CAD, automatic alignment and control system. The inspection confirmed that the Calandria integrity of Wolsong NPP Unit 1 is perfect.

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이단계 고장을 갖는 설비에 대한 최적 검사 정책 (A study on Optimum Inspection Policy for an equipment with two stages of failures)

  • 김정식
    • 산업경영시스템학회지
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    • 제13권21호
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    • pp.19-24
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    • 1990
  • This paper deals with a problem of choosing an optimum inspection period for an equipment with two stages of failures. Stage I failure which can be detected only through inspection detenorates the equipment and causes critical stage II failure after a random period of time. The expected average cost function is obtained and an optimum inspection policy is discussed. A numerical example is also worked out.

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목표 신뢰도를 고려한 원-샷 시스템의 최적검사정책 (Optimal Inspection Policy for One-Shot Systems Considering Reliability Goal)

  • 정승우;정영배
    • 산업경영시스템학회지
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    • 제40권4호
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    • pp.96-104
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    • 2017
  • A one-shot system (device) refers to a system that is stored for a long period of time and is then disposed of after a single mission because it is accompanied by a chemical reaction or physical destruction when it operates, such as shells, munitions in a defense weapon system and automobile airbags. Because these systems are primarily related with safety and life, it is required to maintain a high level of storage reliability. Storage reliability is the probability that the system will operate at a particular point in time after storage. Since the stored one-shot system can be confirmed only through inspection, periodic inspection and maintenance should be performed to maintain a high level of storage reliability. Since the one-shot system is characterized by a large loss in the event of a failure, it is necessary to determine an appropriate inspection period to maintain the storage reliability above the reliability goal. In this study, we propose an optimal inspection policy that minimizes the total cost while exceeding the reliability goal that the storage reliability is set in advance for the one-shot system in which periodic inspections are performed. We assume that the failure time is the Weibull distribution. And the cost model is presented considering the existing storage reliability model by Martinez and Kim et al. The cost components to be included in the cost model are the cost of inspection $c_1$, the cost of loss per unit time between failure and detection $c_2$, the cost of minimum repair of the detected breakdown of units $c_3$, and the overhaul cost $c_4$ of $R_s{\leq}R_g$. And in this paper, we will determine the optimal inspection policy to find the inspection period and number of tests that minimize the expected cost per unit time from the finite lifetime to the overhaul. Compare them through numerical examples.

CANDU형 원전 칼란드리아 및 내장품 원격 육안검사 기술 개발 (Development of Remote Visual Inspection Technology for CANDU Calandria & Internals)

  • 이상훈;김한종
    • 한국압력기기공학회 논문집
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    • 제4권2호
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    • pp.57-61
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    • 2008
  • During the period of retubing work for the licensing renewal, the fuel channels, calandria tubes and feeders of CANDU Reactors will be replaced, and calandria visual examination will be performed. This period is a unique opportunity to inspect the inside of the calandria. The visual inspection for the calandria vessel and its internals of Wolsong NPP is scheduled for confirming the calandria integrity. The first visual inspection for the calandria is planned in Pt. Lepreau led by AECL. The visual inspection for Wolsong NPP, led by NETEC(Nuclear Engineering & Technology Institute) of KHNP, will employ 3D laser scanner and 3D CAD Mock-up for the first time in the world, in addition to a conventional video camera. The inspection system is composed of a robot with the 3D laser scanner, a video camera and a hardness meter.

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손실함수를 고려한 열화시스템의 최적교체정책 (Optimal Replacement Policy of Degradation System with Loss Function)

  • 박종훈;이창훈
    • 한국신뢰성학회지:신뢰성응용연구
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    • 제1권1호
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    • pp.35-46
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    • 2001
  • Replacement policy of a degradation system is investigated by incorporating the loss function. Loss function is defined by the deviation of the value of quality characteristic from its target value, which determines the loss cost. Cost function is comprised of the inspection cost, replacement cost and loss cost. Two cost minimization problems are formulated : 1)determination of an optimal inspection period given the state for the replacement and 2)determination of an optimal state for replacement under fixed inspection period. Simulation analysis is performed to observe the variation of total cost with respect to the variation of the parameters of loss function and inspection cost, respectively As a result, parameters of loss function are seen to be the most sensitive to the total cost. On the contrary, inspection cost is observed to be insensitive. This study can be applied to the replacement policy of a degradation system which has to produce the quality critical product.

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아태지역 항만국통제 점검결과에 관한 연구 - Tokyo MOU 출항정지를 중심으로 - (A Study on the Port State Control Inspection Results of Tokyo MOU - Focused on Detentions of Tokyo MOU -)

  • 임명환;신호식
    • 수산해양교육연구
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    • 제29권2호
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    • pp.333-342
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    • 2017
  • In this study, we studied and analyzed 3,751 ships regarding detention list of Tokyo MOU from 2013 to 2015 total for 36 months. The Member Authorities of the MOU has 20 committee consists of Korea and Peru joined in 2015. 1,250 ships in a year and 140 ships in a month are granted PSC Action Code-30 corresponding to detention. Averagely, 30,943 ships in a year and 2,579 ships have been received PSC inspection. Additionally, according to this PSC inspection, rate of Detention reaches to 4.04%. When it comes to Korean Flag Ships however, the number of Detention ships of Tokyo MOU has been rather increased from 3 ships in 2013 to 18 ships during 2years. Furthermore, MOU in the all over the world, the number of ships had Detention has largely increased from 5 ships to 9 up-to 19ships. The number of Detention Ships has been reached to 44.8% of 1~2 days period of Detentions, under 3~10 days period of Detentions reaches to 34.7% and over 10 days detention reaches 10.3%, which cause economically enormous loss. Continually, each MOU has been implemented Concentrated Inspection Campaign(CIC) annually. Each MOU including Tokyo MOU implemented "Crew Familiarization for Enclosed Space Entry" for 3 month from september, and During this period, Concentrated Inspection were carried out to 8,429 ships of Tokyo MOU. Accordingly, If ships and owners can get the information of CIC and deliver the information to the ship, then Ships can minimize the rate of Detention by thoroughly preparing for PSC Inspection. In addition, Bulk Carrier and General Cargo ship occupy 50% of rate of Detention and it shows that majority of list among Nature of Deficiencies are identical. Finally, If we can obtain the information of the ships inspected previously, We can reduce the number of detention by preparing for PSC inspection. And this will be able to contribute to shipping industry also.