Abstract
A dynamic light-pen measurement system equipped with a galvanometer-based camera enables active optical-axis steering, allowing the object to remain within the high-accuracy imaging region while supporting high-resolution imaging during motion. However, the system contains multiple coupled parameters, making conventional separate calibration prone to error accumulation. In this paper, a joint calibration framework for dynamic light-pen measurement systems is proposed. A regularized consistency-constrained method is developed to jointly estimate galvanometer and probe-tip parameters by enforcing cross-view probe-tip consistency. In addition, a constrained bundle-adjustment approach is introduced to calibrate the structural parameters of the light pen. Experimental results demonstrate improved geometric consistency and higher three-dimensional measurement accuracy compared with separate calibration methods.
| Original language | English |
|---|---|
| Pages (from-to) | 16018-16032 |
| Number of pages | 15 |
| Journal | Optics Express |
| Volume | 34 |
| Issue number | 9 |
| DOIs | |
| State | Published - 4 May 2026 |
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