Published June 28, 2021 | Version v1
Publication Open

3D LEAST SQUARES MATCHING APPLIED TO MICRO-TOMOGRAPHY DATA

  • 1. Pontifical Catholic University of Rio de Janeiro
  • 2. Diamond Light Source

Description

Abstract. The paper introduces 3D least squares matching as a technique to analyze multi-temporal micro-tomography data in civil engineering material testing. Time series of tomography voxel data sets are recorded during an in-situ tension test of a strain-hardening cement-based composite probe at consecutive load steps. 3D least squares matching is a technique to track cuboids in consecutive voxel data sets minimizing the sum of the squares of voxel value differences after a 12-parameter 3D affine transformation. For a regular grid of locations in each voxel data set of the deformed states, a subvoxel-precise 3D displacement vector field is computed. Discontinuities in these displacement vector fields indicate the occurrence of cracks in the probes during the load tests. These cracks are detected and quantitatively described by the computation of principal strains of tetrahedrons in a tetrahedral mesh, that is generated between the matching points. The subvoxel-accuracy potential of the technique allows the detection of very small cracks with a width much smaller than the actual voxel size.

⚠️ This is an automatic machine translation with an accuracy of 90-95%

Translated Description (Arabic)

الملخص. تقدم الورقة مطابقة المربعات الصغرى ثلاثية الأبعاد كتقنية لتحليل بيانات التصوير المقطعي الدقيق متعددة الأزمنة في اختبار مواد الهندسة المدنية. يتم تسجيل السلاسل الزمنية لمجموعات بيانات فوكسل التصوير المقطعي أثناء اختبار التوتر في الموقع لمسبار مركب أساسه الأسمنت المتصلب في خطوات تحميل متتالية. مطابقة المربعات الصغرى ثلاثية الأبعاد هي تقنية لتتبع متوازي المستطيلات في مجموعات بيانات فوكسل متتالية تقلل من مجموع مربعات اختلافات قيمة فوكسل بعد تحويل تقاربي ثلاثي الأبعاد مكون من 12 معلمة. بالنسبة لشبكة منتظمة من المواقع في كل مجموعة بيانات فوكسل للحالات المشوهة، يتم حساب حقل متجه إزاحة ثلاثي الأبعاد دقيق تحت فوكسل. تشير الانقطاعات في حقول ناقلات الإزاحة هذه إلى حدوث تشققات في المجسات أثناء اختبارات الحمل. يتم الكشف عن هذه التشققات ووصفها كميًا من خلال حساب السلالات الرئيسية من رباعي السطوح في شبكة رباعية السطوح، والتي يتم إنشاؤها بين نقاط المطابقة. تسمح إمكانات دقة subvoxel لهذه التقنية باكتشاف تشققات صغيرة جدًا بعرض أصغر بكثير من حجم voxel الفعلي.

Translated Description (English)

Abstract. The paper introduces 3D least squares matching as a technique to analyze multi-temporal micro-tomography data in civil engineering material testing. Time series of tomography voxel data sets are recorded during an in-situ tension test of a strain-hardening cement-based composite probe at consecutive load steps. 3D least squares matching is a technique to track cuboids in consecutive voxel data sets minimizing the sum of the squares of voxel value differences after a 12-parameter 3D affine transformation. For a regular grid of locations in each voxel data set of the deformed states, a subvoxel-precise 3D displacement vector field is computed. Discontinuities in these displacement vector fields indicate the occurrence of cracks in the probes during the load tests. These cracks are detected and quantitatively described by the computation of principal strains of tetrahedrons in a tetrahedral mesh, which is generated between the matching points. The subvoxel accuracy potential of the technique allows the detection of very small cracks with a width much smaller than the actual voxel size.

Translated Description (French)

Résumé. The paper introduces 3D least squares matching as a technique to analyze multi-temporal micro-tomography data in civil engineering material testing. Time series of tomography voxel data sets are recorded during an in-situ tension test of a strain-hardening cement-based composite probe at consecutive load steps. 3D least squares matching is a technique to track cuboids in consecutive voxel data sets minimizing the sum of the squares of voxel value differences after a 12-parameter 3D affine transformation. For a regular grid of locations in each voxel data set of the deformed states, a subvoxel-precise 3D displacement vector field is computed. Les discontinuités dans ces champs de vecteurs de déplacement indiquent l'occurrence de fissures dans les échantillons pendant les tests de charge. These cracks are detected and quantitatively described by the computation of principal strains of tetrahedrons in a tetrahedral mesh, that is generated between the matching points. Le potentiel d'exactitude du subvoxel de la technique permet la détection de très petites fissures avec une largeur beaucoup plus petite que la taille réelle du voxel.

Translated Description (Spanish)

Abstract. The paper introduces 3D least squares matching as a technique to analyze multi-temporal micro-tomography data in civil engineering material testing. Time series of tomography voxel data sets are recorded during an in situ tension test of a strain-hardening cement-based composite probe at consecutive load steps. 3D least squares matching is a technique to track cuboids in consecutive voxel data sets minimizing the sum of the squares of voxel value differences after a 12-parameter 3D affine transformation. For a regular grid of locations in each voxel data set of the deformed states, a subvoxel-precise 3D displacement vector field is computed. Discontinuities in these displacement vector fields indicate the occurrence of cracks in the probes during the load tests. These cracks are detected and quantitatively described by the computation of principal strains of tetrahedrons in a tetrahedral mesh, that is generated between the matching points. The subvoxel-accuracy potential of the technique allows the detection of very small cracks with a width much smaller than the actual voxel size.

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Additional details

Additional titles

Translated title (Arabic)
مطابقة المربعات الصغرى ثلاثية الأبعاد المطبقة على بيانات التصوير المقطعي الدقيق
Translated title (English)
3D LEAST SQUARES MATCHING APPLIED TO MICRO-TOMOGRAPHY DATA
Translated title (French)
3D LEAST SQUARES MATCHING APPLIED TO MICRO-TOMOGRAPHY DATA
Translated title (Spanish)
3D LEAST SQUARES MATCHING APPLIED TO MICRO-TOMOGRAPHY DATA

Identifiers

Other
https://openalex.org/W3175976539
DOI
10.5194/isprs-archives-xliii-b2-2021-533-2021

GreSIS Basics Section

Is Global South Knowledge
Yes
Country
Brazil