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3D 矢量场与应变分析的突破

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  • 3D 矢量场与应变分析的突破
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3D Velocity Field & Strain with a Single LASER RADAR

3D Vibrometry Made simple

Ommatidia Q2 reconstructs full field 3D velocity vectors from multiple views using one parallel scanning Laser RADAR. Achieve modal analysis, ODS, and strain ready outputs with a compact, deployable setup that preserves a clear evidence chain from raw data to engineering deliverables

For how this Q2 workflow sits alongside QMini, Q1S and Q1 measurement platforms, use the Q-series comparison reference.


Discuss the application

Breakthrough Ommatidia Q2 reconstructs full field 3D velocity vectors from multiple views using one parallel scanning Laser RADAR. Achieve modal analysis, ODS, and strain ready outputs with a compact, deployable setup that https://ommatidia-lidar.com/wp-content/uploads/2026/06/mkt-1312-03.webp 18548 laboratory setup single laser radar scanning curved metal panel with spherical fiducial markers engineering test bench Breakthrough: 3D velocity field reconstruction with 1 single Laser RADAR: featured visual context.

LDV measures velocity along the beam; a single view is a projection and can misrepresent true motion on curved or complex structures. – Multi-view observations make vector components observable across shells, lightweight panels, blades, vehicle parts, civil elements, and lab test articles where motion includes out-of-plane, in-plane, and local rotations.

https://ommatidia-lidar.com/wp-content/uploads/2026/06/mkt-1312-06.webp 18575 docx-08-image2 https://ommatidia-lidar.com/wp-content/uploads/2026/06/mkt-1312-09.webp 18602 docx-02-image10 Key advantages

Simple: One single Q2 recovers a complete 3D velocity field.

  • Compact & affordable: Avoid multi-LDV rigs, robotic arms, and heavy lab integration.
  • Fast: No per-point calibration campaigns; the same instrument provides metrology and vibrometry.
  • Versatile: Deployable in labs, factories, and field sites without dedicated installations.

https://ommatidia-lidar.com/wp-content/uploads/2026/06/mkt-1312-09.webp 18602 docx-02-image10

Ommatidia Q2 extends Laser Doppler Vibrometry from directional, line-of-sight measurements to full-field 3D velocity vectors—using one single parallel-scanning Laser RADAR. By acquiring multiple Q2 views, registering them via spherical fiducials, and phase-aligning the data, the recovery software estimates the three velocity components at each surface point. The result is a coherent 3D motion field suitable for FEM correlation, modal analysis, ODS, and strain-ready outputs.

https://ommatidia-lidar.com/wp-content/uploads/2026/06/mkt-1312-12.webp 18629 docx-03-image11

  • Per view, Q2 acquires a point cloud, beam directions, and line-of-sight (LoS) velocity at illuminated points. 2) For each surface point seen from three or more independent directions, the 3D velocity vector is solved from the LoS projections; extra views improve robustness via weighted least squares. 3) Local quality indicators assess observation count, residuals, and geometric conditioning. 4) Export allows advanced visualisation and further processing in commercial FEA/engineering software packages.

https://ommatidia-lidar.com/wp-content/uploads/2026/06/mkt-1312-15.webp 18656 docx-04-image12 https://ommatidia-lidar.com/wp-content/uploads/2026/06/mkt-1312-18.webp 18683 docx-05-image13

Plan as a single coordinated campaign, not isolated scans.

  • Use Ommatidia planner tools to evaluate spatial coverage, sampling density, geometric consistency, phase consistency, and repeatable signal quality across views.
  • Generate synthetic datasets to load in the reconstruction tool.
  • Compare agains the ground truth to assess the effect of different experimental protocols, reconstruction algorithms and conditions (sampling, noise, interpolation scheme, etc.).

https://ommatidia-lidar.com/wp-content/uploads/2026/06/mkt-1312-18.webp 18683 docx-05-image13 PDFDownload application noteBreakthrough

docx-06-image14
Breakthrough: 3D velocity field reconstruction with 1 single Laser RADAR: measurement context.
docx-07-image15
Breakthrough: 3D velocity field reconstruction with 1 single Laser RADAR: measurement context.
docx-09-image3
Breakthrough: 3D velocity field reconstruction with 1 single Laser RADAR: measurement context.
docx-10-image4
Breakthrough: 3D velocity field reconstruction with 1 single Laser RADAR: measurement context.
docx-11-image5
Breakthrough: 3D velocity field reconstruction with 1 single Laser RADAR: measurement context.
docx-06-image14
Breakthrough: 3D velocity field reconstruction with 1 single Laser RADAR: gallery visual context.
docx-07-image15
Breakthrough: 3D velocity field reconstruction with 1 single Laser RADAR: gallery visual context.
docx-09-image3
Breakthrough: 3D velocity field reconstruction with 1 single Laser RADAR: gallery visual context.
docx-10-image4
Breakthrough: 3D velocity field reconstruction with 1 single Laser RADAR: gallery visual context.
docx-11-image5
Breakthrough: 3D velocity field reconstruction with 1 single Laser RADAR: gallery visual context.

Breakthrough Talk to Ommatidia LiDAR

Discuss how this measurement approach could support applications workflows with the Ommatidia LiDAR team.

Breakthrough: 3D velocity field reconstruction with 1 single Laser RADAR: featured visual context.

Application overview

LDV measures velocity along the beam; a single view is a projection and can misrepresent true motion on curved or complex structures.

Multi-view observations make vector components observable across shells, lightweight panels, blades, vehicle parts, civil elements, and lab test articles where motion includes out-of-plane, in-plane, and local rotations.

Up until now, the only way to achieve this was by using multi-head setups with robotic rigs. This was expensive, time consuming, rigid and limiting for many applications.


Talk to one of our Experts

docx-08-image2

Key advantages

Simple: One single Q2 recovers a complete 3D velocity field.

  • Compact & affordable: Avoid multi-LDV rigs, robotic arms, and heavy lab integration.
  • Fast: No per-point calibration campaigns; the same instrument provides metrology and vibrometry.
  • Versatile: Deployable in labs, factories, and field sites without dedicated installations.


Book a Demo

docx-03-image11

How it works

Ommatidia Q2 extends Laser Doppler Vibrometry from directional, line-of-sight measurements to full-field 3D velocity vectors—using one single parallel-scanning Laser RADAR. By acquiring multiple Q2 views, registering them via spherical fiducials, and phase-aligning the data, the recovery software estimates the three velocity components at each surface point.

The result is a coherent 3D motion field suitable for FEM correlation, modal analysis, ODS, and strain-ready outputs.


Talk to one of our Experts

Operational benefits

  1. Per view, Q2 acquires a point cloud, beam directions, and line-of-sight (LoS) velocity at illuminated points.
  2. For each surface point seen from three or more independent directions, the 3D velocity vector is solved from the LoS projections; extra views improve robustness via weighted least squares.
  3. Local quality indicators assess observation count, residuals, and geometric conditioning.
  4. Export allows advanced visualisation and further processing in commercial FEA/engineering software packages.


Book a Demo

docx-07-image15
Strain over a sherical shell (µstrain)

Proof points

Plan as a single coordinated campaign, not isolated scans.

  • Use Ommatidia planner tools to evaluate spatial coverage, sampling density, geometric consistency, phase consistency, and repeatable signal quality across views.
  • Generate synthetic datasets to load in the reconstruction tool.
  • Compare agains the ground truth to assess the effect of different experimental protocols, reconstruction algorithms and conditions (sampling, noise, interpolation scheme, etc.).


Talk to one of our Experts

docx-05-image13

PDFDownload application noteBreakthrough in 3D velocity field

Proof points

https://www.youtube.com/watch?v=pi3vfssHmQk

Webinar on the 3D Velocity & Strain Workflow

Talk to Ommatidia LiDAR

Discuss how this measurement approach could support applications workflows with the Ommatidia LiDAR team.


Book a Demo


Talk to one of our Experts

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