可编程电子安全系统

R. Parry
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引用次数: 0

摘要

传统上用于保护粒子加速器实验室人员免受电气和辐射危害的安全系统已广泛使用机电继电器。这些系统具有高可靠性的优点,并允许设计人员轻松实现故障安全电路。基于中继的系统通常也很容易设计、实现和测试。随着系统(例如超导超级对撞机实验室(SSCL)目前正在开发的系统)尺寸的增加和监控点的数量的增加,基于继电器的系统变得笨重和不足。可编程电子安全系统正变得越来越广泛和被接受。在开发这些系统时,设计师必须考虑许多预防措施。设计具有可预测故障状态的故障安全电子系统是很困难的。冗余和自我测试是用来规避和/或检测故障的功能的主要例子。可编程系统还需要软件,这是另一个故障点,也是一个值得关注的问题。因此,设计人员必须同时考虑硬件和软件故障,并建立确保故障期间安全运行或关闭的手段。本文介绍了在开发安全系统时应考虑的特点,并介绍了最近在SSCL.>的加速器系统串测试(助理)设施中安装的系统
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Programmable electronic safety systems
Traditionally safety systems intended for protecting personnel from electrical and radiation hazards at particle accelerator laboratories have made extensive use of electromechanical relays. These systems have the advantage of high reliability and allow the designer to easily implement fail-safe circuits. Relay based systems are also typically simple to design, implement, and test. As systems, such as those presently under development at the Superconducting Super Collider Laboratory (SSCL), increase in size, and the number of monitored points escalates, relay based systems become cumbersome and inadequate. The move toward Programmable Electronic Safety Systems is becoming more widespread and accepted. In developing these systems there are numerous precautions the designer must be concerned with. Designing fail-safe electronic systems with predictable failure states is difficult at best. Redundancy and self-testing are prime examples of features that should be implemented to circumvent and/or detect failures. Programmable systems also require software which is yet another point of failure and a matter of great concern. Therefore the designer must be concerned with both hardware and software failures and build in the means to assure safe operation or shutdown during failures. This paper describes features that should be considered in developing safety systems and describes a system recently installed at the Accelerator Systems String Test (ASST) facility of the SSCL.<>
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