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Efficient method for the global noise filtering in measuring channels of the VVER NPP leak monitoring systems

机译:VVER NPP泄漏监测系统测量通道中全局噪声滤波的高效方法

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In accordance with Ref. (GOST R 58328-2018 “Pipelines of Nuclear Power Plants. Leak Before Break Concept”), NPPs with VVER-1200 reactors operate an acoustic leak monitoring system (ALMS) and a humidity leak monitoring system (HLMS), each performing the leak monitoring functions locally, independently of the other. The diagnostics results are conveyed to the upper level control system (LCS) to be further displayed for the main control room (MCR) operating personnel. There is also an integrated diagnostics system (IDS) intended to confirm the diagnosis and to update the leak rate values and coordinates based on analyzing the leak monitoring system readings and I&C signals. The system measuring channel readings are composed of background noise, the source for which are processes on the part of the reactor facility’s key components and auxiliary systems, and the leak signal in response to the leak occurrence. A major factor that affects the capability of leak monitoring systems to detect the leak is the quality of the background noise filtering. A new efficient global noise filtering method is proposed for being used as part of the integrated diagnostics system (IDS).
机译:符合参考。 (GOST R 58328-2018“核电站管道。泄漏概念前泄漏”),具有VVER-1200反应堆的NPP运行声泄漏监测系统(ALMS)和湿度泄漏监测系统(HLMS),每个都能进行泄漏监测在本地功能,独立于另一个。诊断结果被传送到上层控制系统(LCS),以进一步显示为主控制室(MCR)操作人员。还有一个集成的诊断系统(IDS)旨在确认诊断并根据分析泄漏监测系统读数和I&C信号来更新泄漏率值和坐标。系统测量信道读数由背景噪声组成,其源是电抗器设施的关键部件和辅助系统部分的过程,以及响应于泄漏发生的泄漏信号。影响泄漏监测系统的能力以检测泄漏的主要因素是背景噪声滤波的质量。提出了一种新的高效全局噪声滤波方法,用于用作集成诊断系统(IDS)的一部分。

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