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An inherently fail-safe electronic logic design for a safety application in nuclear power plant

机译:核电站安全应用的本身故障安全电子逻辑设计

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In this paper, an inherently fail-safe electronic logic circuit is proposed. Further, the logic is investigated for safety critical application in a nuclear power plant with a very low unsafe failure probability requirement. The application involves control circuit for operation of solenoid valves based on the plant state, wherein the de-energization of certain solenoid valves is considered as a safe state. The inherent fail-safeness is achieved by processing the inputs as synchronized pulses rather than static digital levels. Pulse transformers are used at specific locations in the circuit so that energy transition to subsequent stages of the circuit is seized in case of a failure in the previous stage. Such pulse processing is selectively applied to those parts of the circuit for which fail-safe behavior of final control elements is expected. A Failure Mode Effect Analysis (FMEA) is performed for the circuit to systematically ensure that failure of components in postulated modes will result in the fail-safe state. A prototype circuit is built to verify the results obtained from FMEA. The inherency in the circuit is shown to possess a very low unsafe failure probability and quantitatively it is shown. The proposed technique is suggested as a diverse method to control, redundant instrumentation provisions usually provided for safety critical application. This method can be easily extended to similar industrial control involving combinational circuits with modifications. (C) 2017 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:本文提出了一种固有故障安全的电子逻辑电路。此外,对核电站的安全关键应用进行了研究,具有非常低的不安全故障概率要求,研究了逻辑。该应用涉及基于植物状态的电磁阀操作的控制电路,其中某些电磁阀的断电被认为是安全状态。通过将输入处理为同步脉冲而不是静态数字电平来实现固有的故障安全性。在电路中的特定位置使用脉冲变压器,使得在前阶段失败的情况下被抓住对电路的后续阶段的能量转换。这种脉冲处理被选择性地应用于电路的那些部分,用于预期最终控制元件的故障安全行为。对电路执行故障模式效果分析(FMEA)以系统地确保假设模式中的组件失效将导致故障安全状态。构建原型电路以验证从FMEA获得的结果。电路的内在还被示出具有非常低的不安全故障概率和定量所示。该提出的技术被建议作为控制的多样化方法,通常为安全关键应用提供的冗余仪器规定。这种方法可以很容易地扩展到涉及具有修改的组合电路的类似工业控制。 (c)2017年化学工程师机构。 elsevier b.v出版。保留所有权利。

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