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ADVANCED ALARM SYSTEMS: A SURVEY OF INDUSTRY GUIDELINES

机译:高级报警系统:行业指南调查

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The main control room (MCR) in a conventional nuclear power plant provides the operator with alarm information via hundreds of hardware alarm tiles. The digital instrumentation and control systems used in next generation nuclear plants provide thousands of alarmable data points. Advanced alarm systems are needed to help the operator cope with the order of magnitude increase in alarm information. The Engineering Equipment and Materials Users Association (EEMUA) published a landmark document, EEMUA-191-1999, on advanced alarm systems in the wake of several industrial incidents. Other organizations have since published advanced alarm system guidelines including the Electric Power Research Institute (EPRI), the American National Standards Institute (ANSI)/International Society of Automation (ISA), the International Electrotechnical Commission (IEC), and the Nuclear Regulatory Commission (NRC). The EEMUA released a second edition of EEMUA-191 (Reference 1) in 2007. This paper summarizes advanced alarm system guidance on alarm generation, alarm processing, and alarm presentation from the following sources: 1. EEMUA Publication 191, Edition 2, Alarm Systems: A Guide to Design, Management and Procurement, Engineering Equipment and Materials Users Association, 2007 (Reference 1) 2. EPRI Technical Report 1010076, Advanced Control Room Alarm System: Requirements and Implementation Guidance, Electric Power Research Institute, December 2005 (Reference 2) 3. ANSI/ISA-18.2-2009, Management of Alarm Systems for the Process Industries, International Society of Automation, June 2009 (Reference 3) 4. IEC International Standard 62241 First Edition, Nuclear Power Plants - Main Control Room - Alarm Functions and Presentation, International Electrotechnical Commission, November 2004 (Reference 4) 5. NUREG-0700, Rev. 2, Human-System Interface Design Review Guidelines, Section 4, "Alarm System," U.S. Nuclear Regulatory Commission, May 2002 (Reference 5) The global nuclear renaissance provides a unique opportunity to apply the guidelines in the referenced documents to alarm systems in modern control rooms. The industry guidance has been instrumental in the development of the feature set of the Westinghouse Alarm Presentation System (APS). This paper also describes the features of the Westinghouse APS as implemented for the AP1000? nuclear power plant.
机译:传统核电站中的主控制室(MCR)通过数百个硬件报警瓷砖提供了报警信息的运营商。下一代核电站中使用的数字仪表和控制系统提供了数千个可怕的数据点。需要先进的报警系统来帮助操作员应对警报信息的幅度增加顺序。工程设备和材料用户协会(EEMUA)在几次工业事件之后发布了一个地标文档,EEMUA-191-1999,在高级报警系统上。此后其他组织自发布的先进报警系统指南,包括电力研究所(EPRI),美国国家标准研究所(ANSI)/国际自动化协会(ISA),国际电工委员会(IEC)和核监管委员会( NRC)。 EEMUA于2007年发布了第二版EEMUA-191(参考文献1)。本文总结了以下来源的报警生成,报警处理和报警演示文稿的先进报警系统指导:1。EEMUA Publication 191,Edition 2,警报系统:设计,管理和采购,工程设备和材料用户协会指南,2007年(参考文献1)2. EPRI技术报告1010076,先进的控制室报警系统:要求和实施指导,电力研究所,2005年12月(参考文献2) )3。ANSI / ISA-18.2-2009,管理工艺产品的报警系统,国际自动化协会,2009年6月(参考文献3)4。IEC国际标准62241第一版,核电站 - 主控制室 - 报警功能和演示,国际电工委员会,2004年11月(参考文献4)5。Nureg-0700,Rev.2,人力系统界面设计审查指南,第4节,“报警系统”,美国核监管委员会,2002年5月(参考文献5)全球核心复兴提供了一个独特的机会,以在现代控制室的报警系统中将指南应用于公共控制室的警报系统。行业指导在开发西部房屋报警演示系统(APS)的功能集时一直有助于。本文还描述了为AP1000实现的Westinghouse AP的功能?核电站。

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