Software Quality Assurance for Nuclear Safety Systems

Software Quality Assurance for Nuclear Safety Systems PDF Author: D. R. Sparkman
Publisher:
ISBN:
Category :
Languages : en
Pages : 12

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Book Description
The US Department of Energy has undertaken an initiative to improve the quality of software used to design and operate their nuclear facilities across the United States. One aspect of this initiative is to revise or create new directives and guides associated with quality practices for the safety software in its nuclear facilities. Safety software includes the safety structures, systems, and components software and firmware, support software and design and analysis software used to ensure the safety of the facility. DOE nuclear facilities are unique when compared to commercial nuclear or other industrial activities in terms of the types and quantities of hazards that must be controlled to protect workers, public and the environment. Because of these differences, DOE must develop an approach to software quality assurance that ensures appropriate risk mitigation by developing a framework of requirements that accomplishes the following goals: {sm_bullet} Ensures the software processes developed to address nuclear safety in design, operation, construction and maintenance of its facilities are safe {sm_bullet} Considers the larger system that uses the software and its impacts {sm_bullet} Ensures that the software failures do not create unsafe conditions Software designers for nuclear systems and processes must reduce risks in software applications by incorporating processes that recognize, detect, and mitigate software failure in safety related systems. It must also ensure that fail safe modes and component testing are incorporated into software design. For nuclear facilities, the consideration of risk is not necessarily sufficient to ensure safety. Systematic evaluation, independent verification and system safety analysis must be considered for software design, implementation, and operation. The software industry primarily uses risk analysis to determine the appropriate level of rigor applied to software practices. This risk-based approach distinguishes safety-critical software and applies the highest level of rigor for those systems. DOE has further defined a risk approach to nuclear safety system software consistent with the analyses required for operation of nuclear facilities. This requires the grading of software in terms of safety class and safety significant structures, systems and components (SSCs). Safety-class SSCs are related to public safety where as safety-significant SSCs are identified for specific aspects of defense-in-depth and worker safety. Industry standards do not directly categorize nuclear safety software and DOE sites are not consistent in their approach to nuclear safety software quality assurance. DOE is establishing a more detailed graded approach for software associated with safety class and safety significant systems. This paper presents the process and results that DOE utilized to develop a detailed classification scheme for nuclear safety software.

Software Quality Assurance for Nuclear Safety Systems

Software Quality Assurance for Nuclear Safety Systems PDF Author: D. R. Sparkman
Publisher:
ISBN:
Category :
Languages : en
Pages : 12

Get Book Here

Book Description
The US Department of Energy has undertaken an initiative to improve the quality of software used to design and operate their nuclear facilities across the United States. One aspect of this initiative is to revise or create new directives and guides associated with quality practices for the safety software in its nuclear facilities. Safety software includes the safety structures, systems, and components software and firmware, support software and design and analysis software used to ensure the safety of the facility. DOE nuclear facilities are unique when compared to commercial nuclear or other industrial activities in terms of the types and quantities of hazards that must be controlled to protect workers, public and the environment. Because of these differences, DOE must develop an approach to software quality assurance that ensures appropriate risk mitigation by developing a framework of requirements that accomplishes the following goals: {sm_bullet} Ensures the software processes developed to address nuclear safety in design, operation, construction and maintenance of its facilities are safe {sm_bullet} Considers the larger system that uses the software and its impacts {sm_bullet} Ensures that the software failures do not create unsafe conditions Software designers for nuclear systems and processes must reduce risks in software applications by incorporating processes that recognize, detect, and mitigate software failure in safety related systems. It must also ensure that fail safe modes and component testing are incorporated into software design. For nuclear facilities, the consideration of risk is not necessarily sufficient to ensure safety. Systematic evaluation, independent verification and system safety analysis must be considered for software design, implementation, and operation. The software industry primarily uses risk analysis to determine the appropriate level of rigor applied to software practices. This risk-based approach distinguishes safety-critical software and applies the highest level of rigor for those systems. DOE has further defined a risk approach to nuclear safety system software consistent with the analyses required for operation of nuclear facilities. This requires the grading of software in terms of safety class and safety significant structures, systems and components (SSCs). Safety-class SSCs are related to public safety where as safety-significant SSCs are identified for specific aspects of defense-in-depth and worker safety. Industry standards do not directly categorize nuclear safety software and DOE sites are not consistent in their approach to nuclear safety software quality assurance. DOE is establishing a more detailed graded approach for software associated with safety class and safety significant systems. This paper presents the process and results that DOE utilized to develop a detailed classification scheme for nuclear safety software.

Quality Assurance Engineering for Nuclear and Other Complex Facilities

Quality Assurance Engineering for Nuclear and Other Complex Facilities PDF Author: James R. Bohannon
Publisher:
ISBN:
Category : Industrial engineering
Languages : en
Pages : 498

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Book Description


Software for Computer Based Systems Important to Safety in Nuclear Power Plants

Software for Computer Based Systems Important to Safety in Nuclear Power Plants PDF Author: International Atomic Energy Agency
Publisher:
ISBN:
Category : Business & Economics
Languages : en
Pages : 106

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Book Description
This Safety Guide provides guidance on the collection of evidence and the preparation of documentation to be used to demonstrate the safety and reliability of the software for computer based systems important to safety in nuclear power plants for all phases of the system life-cycle. It recommends how to meet the requirements established in Safety Standards Series No. NS-R-1, The Safety of Nuclear Power Plants: Design (2000).

Digital Instrumentation and Control Systems in Nuclear Power Plants

Digital Instrumentation and Control Systems in Nuclear Power Plants PDF Author: National Research Council
Publisher: National Academies Press
ISBN: 0309175151
Category : Nature
Languages : en
Pages : 126

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Book Description
The nuclear industry and the U.S. Nuclear Regulatory Commission (USNRC) have been working for several years on the development of an adequate process to guide the replacement of aging analog monitoring and control instrumentation in nuclear power plants with modern digital instrumentation without introducing off-setting safety problems. This book identifies criteria for the USNRC's review and acceptance of digital applications in nuclear power plants. It focuses on eight areas: software quality assurance, common-mode software failure potential, systems aspects of digital instrumentation and control technology, human factors and human-machine interfaces, safety and reliability assessment methods, dedication of commercial off-the-shelf hardware and software, the case-by-case licensing process, and the adequacy of technical infrastructure.

Testing and Quality Assurance for Component-based Software

Testing and Quality Assurance for Component-based Software PDF Author: Jerry Gao
Publisher: Artech House
ISBN: 9781580537353
Category : Computers
Languages : en
Pages : 476

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Book Description
From the basics to the most advanced quality of service (QoS) concepts, this all encompassing, first-of-its-kind book offers an in-depth understanding of the latest technical issues raised by the emergence of new types, classes and qualities of Internet services. The book provides end-to-end QoS guidance for real time multimedia communications over the Internet. It offers you a multiplicity of hands-on examples and simulation script support, and shows you where and when it is preferable to use these techniques for QoS support in networks and Internet traffic with widely varying characteristics and demand profiles. This practical resource discusses key standards and protocols, including real-time transport, resource reservation, and integrated and differentiated service models, policy based management, and mobile/wireless QoS. The book features numerous examples, simulation results and graphs that illustrate important concepts, and pseudo codes are used to explain algorithms. Case studies, based on freely available Linux/FreeBSD systems, are presented to show you how to build networks supporting Quality of Service. Online support material including presentation foils, lab exercises and additional exercises are available to text adopters.

Quality Assurance Organization for Nuclear Power Plants

Quality Assurance Organization for Nuclear Power Plants PDF Author: International Atomic Energy Agency
Publisher: Bernan Press(PA)
ISBN:
Category : Business & Economics
Languages : en
Pages : 72

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Book Description


Software Quality Assurance

Software Quality Assurance PDF Author: Claude Y. Laporte
Publisher: John Wiley & Sons
ISBN: 1119312426
Category : Technology & Engineering
Languages : en
Pages : 624

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Book Description
This book introduces Software Quality Assurance (SQA) and provides an overview of standards used to implement SQA. It defines ways to assess the effectiveness of how one approaches software quality across key industry sectors such as telecommunications, transport, defense, and aerospace. Includes supplementary website with an instructor’s guide and solutions Applies IEEE software standards as well as the Capability Maturity Model Integration for Development (CMMI) Illustrates the application of software quality assurance practices through the use of practical examples, quotes from experts, and tips from the authors

Quality Assurance for Safety-related Software at Department of Energy Defense Nuclear Facilities

Quality Assurance for Safety-related Software at Department of Energy Defense Nuclear Facilities PDF Author: Thomas Burns
Publisher:
ISBN:
Category : Computer software
Languages : en
Pages : 38

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Book Description


Software Quality Assurance

Software Quality Assurance PDF Author: Tom Manns
Publisher: Palgrave
ISBN:
Category : Business & Economics
Languages : en
Pages : 256

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Book Description
A thoroughly revised and expanded new edition that devotes more space to the use of metrics in planning, monitoring and controlling the software development process, as well as for the certification of the product. A text for students and professionals; exercises are included.

IAEA Specialists' Meeting, Software Engineering in Nuclear Power Plants, Experience, Issues and Directions : Proceedings

IAEA Specialists' Meeting, Software Engineering in Nuclear Power Plants, Experience, Issues and Directions : Proceedings PDF Author: Chalk River Nuclear Laboratories
Publisher: Chalk River, Ont. : AECL Research, Chalk River Laboratories
ISBN:
Category :
Languages : en
Pages : 324

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Book Description