SGIS-RC: Bio-Inspired Identifiability-Aware Single-Anchor Scalar-Range Compensation

Biological control often combines selective sensing, complementary response scales, and attenuation under weak evidence. Guided by these principles, this paper presents Spectrum-Guided Identifiable Single-Anchor Range Compensation (SGIS-RC), a deterministic physics–data framework for single-anchor scalar-range compensation. SGIS-RC removes the local anchor–bias nuisance tangent from the kinematic sensitivity, retains a numerically conditioned physical subspace, and models the remaining discrepancy through a Chebyshev–Matérn global–local residual field. The learned correction is further regulated by leverage, configuration-space support, and bounded amplitude control. On two public workbooks, ABB IRB120 and HSR-C JR680, a pre-specified outer-partition evaluation performed after the model specification was frozen yielded configuration-group MAEs of 0.2306±0.0148 mm and 0.0493±0.0021 mm, respectively, while the matched conventional hybrid yielded slightly lower mean errors of 0.2244±0.0151 mm and 0.0478±0.0015 mm. Same-fit analyses show that support placement can alter the balance between global and local residual correction, and the block protocols indicate that support-shift behavior remains dataset dependent. Overall, SGIS-RC provides a structured and auditable framework that integrates identifiability-aware physical adaptation, global–local residual modeling, and support-aware deployment control for single-anchor scalar-range compensation.

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Publication Details

Journal
Biomimetics
Published
2026-09-24
DOI
https://doi.org/10.3390/biomimetics11100692
Primary Topic
Structural Health Monitoring Techniques
Type
article
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0.00
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article

SGIS-RC: Bio-Inspired Identifiability-Aware Single-Anchor Scalar-Range Compensation

Huaixiang Zhang, Z Wang, Xiang Zhang, Ertao Li
Biomimetics
Structural Health Monitoring Techniques
article

SGIS-RC: Bio-Inspired Identifiability-Aware Single-Anchor Scalar-Range Compensation

Huaixiang Zhang, Z Wang, Xiang Zhang, Ertao Li
article en

Abstract

Biological control often combines selective sensing, complementary response scales, and attenuation under weak evidence. Guided by these principles, this paper presents Spectrum-Guided Identifiable Single-Anchor Range Compensation (SGIS-RC), a deterministic physics–data framework for single-anchor scalar-range compensation. SGIS-RC removes the local anchor–bias nuisance tangent from the kinematic sensitivity, retains a numerically conditioned physical subspace, and models the remaining discrepancy through a Chebyshev–Matérn global–local residual field. The learned correction is further regulated by leverage, configuration-space support, and bounded amplitude control. On two public workbooks, ABB IRB120 and HSR-C JR680, a pre-specified outer-partition evaluation performed after the model specification was frozen yielded configuration-group MAEs of 0.2306±0.0148 mm and 0.0493±0.0021 mm, respectively, while the matched conventional hybrid yielded slightly lower mean errors of 0.2244±0.0151 mm and 0.0478±0.0015 mm. Same-fit analyses show that support placement can alter the balance between global and local residual correction, and the block protocols indicate that support-shift behavior remains dataset dependent. Overall, SGIS-RC provides a structured and auditable framework that integrates identifiability-aware physical adaptation, global–local residual modeling, and support-aware deployment control for single-anchor scalar-range compensation.

BiomimeticsVol. 11(10)
Hangzhou Dianzi University (CN)
Openalex Percentile: Top 17%
Structural Health Monitoring Techniques
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SGIS-RC: Bio-Inspired Identifiability-Aware Single-Anchor Scalar-Range Compensation — Huaixiang Zhang, Z Wang, et al. · Biomimetics (2026) | TGRS Research Map | TGRS