In the H2020 CORTEX project, an interdisciplinary team developed neutron noise-based core monitoring techniques implemented as methods and tools based on the approaches of machine learning and artificial intelligence. These methods and tools allow the detection of anomalies in commercial nuclear reactor cores during operation by using the measurements of the fluctuations of the neutron flux – the so-called neutron noise – by very few detectors. The sensitivity of the techniques to changes of different inputs and model parameters were analyzed. Based on these analyses together with the return of experience gained from the operational history of neutron noise measurements, recommendations were derived on how the applicability and the accuracy...
This paper gives an overview of the CORTEX project, which is a Research and Innovation Action funde...
Introduction and background Fluctuations could be used for “diagnostics”, i.e.: • Early detection ...
In the CORTEX project, methods to simulate neutron flux oscillations were enhanced and machine-learn...
In the H2020 CORTEX project, an interdisciplinary team developed neutron noise-based core monitoring...
In the H2020 CORTEX project, an interdisciplinary team developed neutron noise-based core monitoring...
Core monitoring techniques represent methods that allow detecting anomalies in nuclear reactors, sub...
Overview of neutron noise-based core monitoring for identifying and characterizing anomalies and the...
This paper gives an overview of the neutron noise-based core monitoring technique developed as part ...
A methodology is proposed in this paper allowing the classification of anomalies and subsequently th...
A methodology is proposed in this paper allowing the classification of anomalies and subsequently th...
A methodology is proposed in this paper allowing the classification of anomalies and subsequently th...
This paper gives an overview of the CORTEX project, which is a Research and Innovation Action funded...
<p>This paper gives an overview of the CORTEX project, which is a Research and Innovation Action<br>...
This paper gives an overview of the CORTEX project, which is a Research and Innovation Action funded...
<p>Overview of neutron noise-based core monitoring for identifying and characterizing anomalies and ...
This paper gives an overview of the CORTEX project, which is a Research and Innovation Action funde...
Introduction and background Fluctuations could be used for “diagnostics”, i.e.: • Early detection ...
In the CORTEX project, methods to simulate neutron flux oscillations were enhanced and machine-learn...
In the H2020 CORTEX project, an interdisciplinary team developed neutron noise-based core monitoring...
In the H2020 CORTEX project, an interdisciplinary team developed neutron noise-based core monitoring...
Core monitoring techniques represent methods that allow detecting anomalies in nuclear reactors, sub...
Overview of neutron noise-based core monitoring for identifying and characterizing anomalies and the...
This paper gives an overview of the neutron noise-based core monitoring technique developed as part ...
A methodology is proposed in this paper allowing the classification of anomalies and subsequently th...
A methodology is proposed in this paper allowing the classification of anomalies and subsequently th...
A methodology is proposed in this paper allowing the classification of anomalies and subsequently th...
This paper gives an overview of the CORTEX project, which is a Research and Innovation Action funded...
<p>This paper gives an overview of the CORTEX project, which is a Research and Innovation Action<br>...
This paper gives an overview of the CORTEX project, which is a Research and Innovation Action funded...
<p>Overview of neutron noise-based core monitoring for identifying and characterizing anomalies and ...
This paper gives an overview of the CORTEX project, which is a Research and Innovation Action funde...
Introduction and background Fluctuations could be used for “diagnostics”, i.e.: • Early detection ...
In the CORTEX project, methods to simulate neutron flux oscillations were enhanced and machine-learn...