shake table data visualization

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AMIT CHOURASIA VISUALIZATION SCIENTIST VISUALIZATION SERVICES SAN DIEGO SUPERCOMPUTER CENTER PRESENTED AT : NEES 5 TH ANNUAL MEETING, JUN 20 TH SNOWBIRD UTAH Shake Table Data Visualization

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Shake Table Data Visualization. Amit Chourasia Visualization Scientist Visualization Services San Diego Supercomputer Center Presented at : NEES 5 th Annual meeting, Jun 20 th Snowbird UTAH. Data Source. Observed: Sensors (600 channels) Data Attributes Time varying - PowerPoint PPT Presentation

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Page 1: Shake Table Data Visualization

AMIT CHOURASIAVISUALIZATION SCIENTIST

VISUALIZATION SERVICES

SAN DIEGO SUPERCOMPUTER CENTER

PRESENTED AT : NEES 5TH ANNUAL MEETING, JUN 20TH

SNOWBIRD UTAH

Shake Table Data Visualization

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Data Source2

Observed: Sensors (600 channels)

Data AttributesTime varying MultivariateHeterogeneous

Original Footage

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Study Goal3

• Integrate the observed data into visual domain

• Asses the requirements and applicability to Structural Engineering

• Demonstrate such a system to Structural Engineers

• Disseminate information about the state-of-the-art research in structural engineering

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Motivation: Understanding Data4

Large amount of numbers don’t make much sense to humans

Visual information can encode large amount of numbers to gain insight

Low Bandwidth High Bandwidth

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Quest for Visual Representation5

Desirable Attributes

Intuitive (trainable)

Highlights feature of interest

Color: Perceptual or Rainbow style?

Compact

Unambiguous

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Dirty Data Issues6

Data comprised of 117 channels 5000+ timesteps @ 50 hz ~ 100 sec

Data Formating and Translation

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3D Model7

Movie:

3d Model

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Deformation Model8

Movie:

Deformation

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Renderings9

Original video Combined Perspective npr

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Camera Match10

Match Check Match

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Lessons Learned11

• The visual system should include the capability of real-time interaction with deformation of a textured 3D model; incorporate contextual elements when possible; represent sensor locations and properties

• Animation packages can be successfully utilized for scientific visualization. They are flexible and extensible for quick prototyping. The visual results are highly realistic with high fidelity.

• Proper registration of data and metadata is important. Without registration, features like camera matching and compositing can be guesswork at best.

• Matching environmental light is still a challenge.

• The visualized results are valuable tools for dissemination of information and suitable for both a broader scientific and non-scientific community.

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Visualization Issues12

• Domain knowledge• Multivariate data representation• Temporal coherence• Precision Loss (compression, etc…)• Interaction vs. batch• Perceptual Issues• Personal Bias (author & viewer)

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Video Recap13

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Acknowledgements14

Steve Cutchin

Mike Rossmasler (Viz Intern)

Ruben Soto-Alcauter (NEES-IT Intern)

Andrew Collier (NEES-IT Intern)

Jose Restrepo

Marios Panagiotou

Lelli Van Den Einde

Anke Kamrath

Study was funded by SDSC

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WEB: HTTP://VISSERVICES.SDSC.EDU/

REFERENCE: CHOURASIA, A. (2007) “DIGITAL RECREATION OF A SEVEN STORY BUILDING SHAKE DURING AN EARTHQUAKE”, ACM CROSSROADS, 13-3, 2007

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