• Title/Summary/Keyword: Software Safety Assessment

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Development of Safety Climate Measuring Software Tool (안전문화측정 전산화 프로그램 개발)

  • Baek, Jong-Bae;Ko, Jae-Wook
    • Journal of Energy Engineering
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    • v.18 no.1
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    • pp.63-68
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    • 2009
  • The safety culture of an organization is very complex and hard to study, but it is possible to examine norms that make up the culture. This paper describes of a Process Safety Management (PSM) climate assessment tool developed in high risk industry such as chemical industries. The main purpose is to develop measuring software tool behaviors by examining their nature and strength and by analysing underlying factors that offer explanations for attitudinal differences. We reviewed the current techniques and literatures available to assess safety climate and culture, conducted focus group interviews and discussions. Based on the reviews and focus group, PSM climate assessment questionnaires and an online application program were developed. A pilot assessment was done at a chemical plant in Korea and the safety climate profile was completed. It was suggested to have a constant feedback from different sectors of industry to improve the application.

Assessment Method of Step-by-Step Cyber Security in the Software Development Life Cycle (소프트웨어 생명주기 단계별 사이버보안 평가 방법론 제안)

  • Seo, Dal-Mi;Cha, Ki-Jong;Shin, Yo-Soon;Jeong, Choong-Heui;Kim, Young-Mi
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.25 no.2
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    • pp.363-374
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    • 2015
  • Instrumentation and control(I&C) system has been mainly designed and operated based on analog technologies in existing Nuclear Power Plants(NPPs). However, As the development of Information Technology(IT), digital technologies are gradually being adopted in newly built NPPs. I&C System based on digital technologies has many advantages but it is vulnerable to cyber threat. For this reason, cyber threat adversely affects on safety and reliability of I&C system as well as the entire NPPs. Therefore, the software equipped to NPPs should be developed with cyber security attributes from the initiation phase of software development life cycle. Moreover through cyber security assessment, the degree of confidence concerning cyber security should be measured and if managerial, technical and operational work measures are implemented as intended should be reviewed in order to protect the I&C systems and information. Currently the overall cyber security program, including cyber security assessment, is not established on I&C systems. In this paper, we propose cyber security assessment methods in the Software Development Life Cycle by drawing cyber security activities and assessment items based on regulatory guides and standard technologies concerned with NPPs.

AIMS-MUPSA software package for multi-unit PSA

  • Han, Sang Hoon;Oh, Kyemin;Lim, Ho-Gon;Yang, Joon-Eon
    • Nuclear Engineering and Technology
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    • v.50 no.8
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    • pp.1255-1265
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    • 2018
  • The need for a PSA (Probabilistic Safety Assessment) for a multi-unit at a site is growing after the Fukushima accident. Many countries have been studying issues regarding a multi-unit PSA. One of these issues is the problem of many combinations of accident sequences in a multi-unit PSA. This paper deals with the methodology and software to quantify a PSA scenarios for a multi-unit site. Two approaches are developed to quantify a multi-unit PSA. One is to use a minimal cut set approach, and the other is to use a Monte Carlo approach.

Summative Usability Assessment of Software for Ventilator Central Monitoring System (인공호흡기 중앙감시시스템 소프트웨어의 사용적합성 총괄평가)

  • Ji-Yong Chung;You Rim Kim;Wonseuk Jang
    • Journal of Biomedical Engineering Research
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    • v.44 no.6
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    • pp.363-376
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    • 2023
  • According to the COVID-19, development of various medical software based on IoT(Internet of Things) was accelerated. Especially, interest in a central software system that can remotely monitor and control ventilators is increasing to solve problems related to the continuous increase in severe COVID-19 patients. Since medical device software is closely related to human life, this study aims to develop central monitoring system that can remotely monitor and control multiple ventilators in compliance with medical device software development standards and to verify performance of system. In addition, to ensure the safety and reliability of this central monitoring system, this study also specifies risk management requirements that can identify hazardous situations and evaluate potential hazards and confirms the implementation of cybersecurity to protect against potential cyber threats, which can have serious consequences for patient safety. As a result, we obtained medical device software manufacturing certificates from MFDS(Ministry of Food and Drug Safety) through technical documents about performance verification, risk management and cybersecurity application.The purpose of this study is to conduct a usability assessment to ensure that ergonomic design has been applied so that the ventilator central monitoring system can improve user satisfaction, efficiency, and safety. The rapid spread of COVID-19, which began in 2019, caused significant damage global medical system. In this situation, the need for a system to monitor multiple patients with ventilators was highlighted as a solution for various problems. Since medical device software is closely related to human life, ensuring their safety and satisfaction is important before their actual deployment in the field. In this study, a total of 21 participants consisting of respiratory staffs conducted usability test according to the use scenarios in the simulated use environment. Nine use scenarios were conducted to derive an average task success rate and opinions on user interface were collected through five-point Likert scale satisfaction evaluation and questionnaire. Participants conducted a total of nine use scenario tasks with an average success rate of 93% and five-point Likert scale satisfaction survey showed a high satisfaction result of 4.7 points on average. Users evaluated that the device would be useful for effectively managing multiple patients with ventilators. However, improvements are required for interfaces associated with task that do not exceed the threshold for task success rate. In addition, even medical devices with sufficient safety and efficiency cannot guarantee absolute safety, so it is suggested to continuously evaluate user feedback even after introducing them to the actual site.

Development of the Design & Coding Standard of Railway Signaling Software as a Automatic Testing Tool (열차제어시스템 소프트웨어 안전성 확인을 위한 코딩규칙 테스팅 자동화 도구의 개발)

  • Hwang, Jong-Gyu;Jo, Hyun-Jeong
    • Journal of the Korean Society for Railway
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    • v.12 no.1
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    • pp.81-87
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    • 2009
  • Recent advances in computer technology have brought more dependency on software to railway signalling system. While much efforts have been reported to evaluate embedded software safety for railway signalling systems, not so much systematic approaches to evaluate software safety testing. In this paper, we propose a adaption of automatic software testing tool in terms of the design & coding standard for railway signalling system. The test items for the design & coding standard suggested in this study related international standards and MISRA-C. It is anticipated that it will be greatly helpful for the evaluation on the software for railway signalling system.

Application and Analysis of the Paradigm of Software Safety Assurance for a Digital Reactor Protection System in Nuclear Power Plants (원전 디지털 원자로보호계통 소프트웨어 안전보증 패러다임 적용 및 분석)

  • Kwon, Kee-Choon;Lee, Jang-Soo;Jee, Eunkyoung
    • KIISE Transactions on Computing Practices
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    • v.23 no.6
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    • pp.335-342
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    • 2017
  • In the verification and validation procedures regarding the safety-critical software of nuclear power plants for the attainment of the requisite license from the regulatory body, it is difficult to judge the safety and dependability of the development, implementation, and validation activities through a simple reading and review of the documentation. Therefore, these activities, especially safety assurance activities, require systematic evaluation techniques to determine that software faults are acceptable level. In this study, a safety case methodology is applied in an assessment of the level and depth of the results of the development and validation of a manufacturer in its targeting of the bistable processor of a digital reactor protection system, and the evaluation results are analyzed. This study confirms the possibility of an effective supplementation of the existing safety demonstration method through the application of the employed safety case methodology.

Automation Scheme of S/W Testing Tool for Railway Signaling System (열차제어시스템을 위한 바이탈 소프트웨어 테스팅 자동화 도구의 제안)

  • Hwang, Jong-Gyu;Jo, Hyun-Jeong;Jeong, Eui-Jin
    • Proceedings of the KIEE Conference
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    • 2008.04c
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    • pp.163-165
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    • 2008
  • A S/W testing for vital railway signaling system have been important because of the increase of software usage for signaling. And also the safety of vital signaling system is required by int'l std. such as IEC 61508. While much efforts have been reported to improve electronic hardware's safety, not so much systematic approaches to assessment software's safety. In this paper, we propose a automation schemen of software testing tool for railway signaling system. From that, we show the functional architecture and internal components of the tool.

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Development of a RBI Procedure and Implementation of a Software Based on API Code (I) - Qualitative Approach (API기준에 근거한 RBI 절차 개발 및 소프트웨어의 구현 (I) 정성적 접근법)

  • 심상훈;송정수;김지윤;윤기봉
    • Journal of the Korean Society of Safety
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    • v.17 no.3
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    • pp.66-72
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    • 2002
  • During the last ten years, effort has been made for reducing maintenance cost for aged equipments and ensuring safety, efficiency and profitability of petrochemical and refinery plants. Hence, it was required to develop advanced methods which meet this need. RBI(Risk Based Inspection) methodology is one of the most promising technology satisfying the requirements in the field of integrity management. In this study, a qualitative assessment algorithm for RBI based on the API 581 code was reconstructed for developing an RBI software. The user-friendly realRBI software is developed with a module for evaluating qualitative risk category using the potential consequence factor and the likelihood factor.

Development of RBI Procedures and Implementation of a Software Based on API Code (III) - Quantitative Approach (API 기준에 근거한 RBI 절차 개발 및 소프트웨어의 구현 (III) - 정량적 접근법 -)

  • 송정수;심상훈;최송천;윤기봉
    • Journal of the Korean Society of Safety
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    • v.18 no.1
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    • pp.56-63
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    • 2003
  • During the last decade, effort has been made f3r reducing maintenance cost for aged equipments and ensuring safety, efficiency and profitability of petrochemical and refinery plants. Hence, it was required to develop advanced methods which meet this need. RBI(Risk Based Inspection) methodology is one of the most promising technology satisfying the requirements in the field of integrity management. In this study, a quantitative assessment algorithm fir RBI based on the API 581 code was reconstructed for developing an RBI software. The user-friendly realRBI software is developed with a module for evaluating quantitative risk md financial risk using the potential consequence and the likelihood. Also, inspection planning module for inspection time and inspection method are included in it.

Development of Reliability Measurement Method and Tool for Nuclear Power Plant Safety Software (원자력 안전 소프트웨어 대상 신뢰도 측정 방법 및 도구 개발)

  • Lingjun Liu;Wooyoung Choi;Eunkyoung Jee;Duksan Ryu
    • The Transactions of the Korea Information Processing Society
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    • v.13 no.5
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    • pp.227-235
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    • 2024
  • Since nuclear power plants (NPPs) increasingly employ digital I&C systems, reliability evaluation for NPP software has become crucial for NPP probabilistic risk assessment. Several methods for estimating software reliability have been proposed, but there is no available tool support for those methods. To support NPP software manufacturers, we propose a reliability measurement tool for NPP software. We designed our tool to provide reliability estimation depending on available qualitative and quantitative information that users can offer. We applied the proposed tool to an industrial reactor protection system to evaluate the functionality of this tool. This tool can considerably facilitate the reliability assessment of NPP software.