Minimal Configurations in 3D Similarity Transformation: Selection Criteria for Stable Solutions
Jancsó, Tamás
Petőné Csuka, Ildikó
2025-12-04T13:10:38Z
2025-12-04T13:10:38Z
2025
http://hdl.handle.net/20.500.14044/36357
We revisit minimal seven-equation selections for
the 7-parameter 3D similarity (Helmert) transformation using
three common points. From the 9 available scalar equations
there are 36 possible seven-row subsets. Rather than claiming
that a fixed subset of these is always stable, we show that
stability is geometry-dependent: the same selection can be wellor
ill-behaved depending on the spatial arrangement of the three
points. We provide two simple, geometry-aware selection rules
that perform reliably across typical geodetic and
photogrammetric scenarios: (A) choose two full 3D points (six
rows) and add one component from the third point whose
direction is not parallel to the twist axis defined by the two full
points; and (B) choose one full 3D point and, from the other two
points, take the same 2D pair that includes the local normal (e.g.,
YZ or XZ in near-planar setups). These rules are motivated by
a first-order sensitivity analysis of the transformation equations
and are validated by synthetic experiments with non-unit scale,
non-zero rotations, translations, and measurement noise. For
each geometry we rank all 36 selections using a normalized,
unit-invariant conditioning measure derived from the scaled
Jacobian. Results show that the number of acceptable selections
may be less than, equal or greater than nine, depending on point
configuration, and the proposed rules consistently identify the
well-behaved cases while flagging the risky ones. The paper
offers practical guidance for choosing seven-row subsets that
avoid hidden instabilities when working with minimal threepoint
data.
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Minimal Configurations in 3D Similarity Transformation: Selection Criteria for Stable Solutions
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Open access
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Óbudai Egyetem
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2025. November 13.
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Budapest
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Alba Regia Műszaki Kar
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Óbudai Egyetem
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Műszaki tudományok - informatikai tudományok
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3D similarity transformation
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transformation
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minimal configuration
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three-point selection
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stability
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conditioning
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photogrammetry
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geodesy
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Konferenciaközlemény
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PROCEEDINGS of 20th International Symposium on Applied Informatics and Related Areas