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首页> 外文期刊>European Physical Journal Plus >Subcriticality estimation by extended Kalman filter technique in transient experiment with external neutron source at Kyoto University Critical Assembly
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Subcriticality estimation by extended Kalman filter technique in transient experiment with external neutron source at Kyoto University Critical Assembly

机译:京都大学临界大会外中子源的瞬态实验中的扩展卡尔曼滤波技术估算

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摘要

The monitoring subcriticality by the extended Kalman filter (EKF) is evaluated in the presence of an external neutron source through transient analyses and compares with that by inverse kinetic method at Kyoto University Critical Assembly. Throughout the transient experiment, subcriticality is deduced with the use of neutron counts measured every 1 s. For ensuring the initial condition of the EKF technique, the basic transient experiment is carried out by dropping a control rod into the core at a critical state, and the result by the EKF technique shows remarkably accurate subcriticality as compared with the reference value obtained by the rod drop method with less fluctuation than by the inverse kinetic method. In the ADS transient experiment with the 14 MeV stable neutron source, the subcriticality is set as target subcriticality of the accelerator-driven system (keff=0.97); the external neutrons are then injected from outside the core. The EKF technique reveals significantly good agreement with MCNP6.1, whereas subcriticality by the inverse kinetic method fluctuates widely during the transient experiment. Thus transient experiment shows that the EKF technique is applicable to subcriticality monitoring with a high time resolution and a high degree of precision.
机译:通过瞬态分析在外部中子源的存在下,通过瞬态分析来评估扩展卡尔曼滤波器(EKF)的监测子临界性,并通过在京都大学关键组装的反向动力学方法进行比较。在整个瞬态实验中,利用每1秒测量的中子计数推导出亚临界性。为了确保EKF技术的初始条件,通过在临界状态下将控制杆丢弃到芯中来执行基本的瞬态实验,并且通过EKF技术的结果显示出与由所获得的参考值相比的显着精确的子临界性。杆落法与逆动力学法波动较少。在具有14MeV稳定中子源的ADS瞬态实验中,亚核性被设定为加速器驱动系统的目标子尺寸(Keff = 0.97);然后将外部中子从核心外部注入。 EKF技术揭示了与MCNP6.1显着良好的一致性,而逆动力学方法的亚临性在瞬态实验期间波动。因此,瞬态实验表明,EKF技术适用于具有高时间分辨率和高精度的子临时监测。

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  • 来源
    《European Physical Journal Plus》 |2020年第2期|共10页
  • 作者单位

    Kyoto Univ Res Ctr Safe Nucl Syst Inst Integrated Radiat &

    Nucl Sci Kumatori Osaka 5900494 Japan;

    Nagoya Univ Grad Sch Engn Dept Appl Energy Engn Chikusa Ku Furo Cho Nagoya Aichi 4648603 Japan;

    Kyoto Univ Res Ctr Safe Nucl Syst Inst Integrated Radiat &

    Nucl Sci Kumatori Osaka 5900494 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
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