Showing posts with label fabrication. Show all posts
Showing posts with label fabrication. Show all posts

02 July 2014

SIGGRAPH 2014 TECHNICAL PAPERS PREVIEW

The SIGGRAPH 2014 Technical Papers program is the premier international forum for disseminating new scholarly work in computer graphics and interactive techniques. In anticipation of the upcoming conference, SIGGRAPH’s 41st annual, the program preview trailer is available on the official ACM SIGGRAPH YouTube Channel (www.youtube.com/ACMSIGGRAPH).

Submissions to the Technical Papers program are received from around the globe and feature high quality, never-before-seen scholarly work. Submitters are held to extremely high standards in order to qualify.

“The quality of this year’s Technical Papers content was superb,” said Adam Finkelstein, SIGGRAPH 2014 Technical Papers Chair. “Not only did we receive outstanding work in the traditional areas of modeling, rendering, animation, and imaging, but we also noticed two emerging fields in design/fabrication and learning.”

SIGGRAPH accepted 127 technical papers (out of 550 submissions) for this year’s showcase, an acceptance rate of 25 percent (one percent higher than 2013). As is tradition, the papers were chosen by a committee made up of academia and industry experts.

The 2014 Technical Papers program also includes presentations for 46 papers published this year in the journal ACM Transactions on Graphics (TOG). SIGGRAPH 2014 takes place 10-14 August 2014 at the Vancouver Convention Centre in Vancouver, Canada.

Highlights From the SIGGRAPH 2014 Technical Papers Program:



Pixie Dust: Graphics Generated by Levitate and Animated Objects in Computational Acoustic-Potential Field
Authors: Yoichi Ochiai, Jun Rekimoto, The University of Tokyo; Takayuki Hoshi, Nagoya Institute of Technology

To generate graphics using levitated small objects, this method expands the acoustic manipulation method by changing the distribution of the acoustic-potential field. The approach makes available many expressions (for example, expression by materials and nondigital appearance), and the expressions are levitated in mid-air.

Floating Scale Surface Reconstruction
Authors: Simon Fuhrmann, Michael Goesele, Technische Universität Darmstadt


Introducing a novel, virtually parameter-free method for surface reconstruction from oriented, scale-enabled point samples. The approach constructs an implicit function as the sum of compactly supported basis functions. The final surface is extracted as the zero-level set of the implicit function.

PushPull++
Authors: Markus Lipp, Pascal Müller, Esri; Peter Wonka, King Abdullah University of Science and Technology


Introducing the novel 3D modeling tool PushPull++. which enables rapid modeling and adjustment of arbitrary meshes with slanted surfaces. PushPull++ reduces the required clicks for common modeling tasks up to an order of magnitude compared to leading commercial tools.

Intrinsic Images in the Wild
Authors: Sean Bell, Kavita Bala, Noah Snavely, Cornell University


Introducing a large-scale, public dataset for intrinsic image decompositions of indoor scenes (Intrinsic Images in the Wild) with crowdsourced annotations of pairwise comparisons of material properties. The approach develops a dense CRF-based algorithm for intrinsic image decomposition of these images that outperforms state-of-the-art algorithms.

Learning Bicycle Stunts
Authors: Jie Tan, Yuting Gu, Karen Liu, Greg Turk, Georgia Institute of Technology


A general approach to simulation and control of a human character riding a bicycle. The rider not only learns to steer and balance in normal riding situations, but also learns to perform a wide variety of stunts, including wheelie, endo, bunny hop, front-wheel pivot, and back hop.


24 April 2014

SIGGRAPH 2014 Releases Technical Papers Data & Statistics


Computational Design of Linkage-Based Characters
This year, the Technical Papers program received a total of 505 completed submissions! After committee review, 127 of them have been accepted, accounting for a 25% acceptance rate. In addition, 46 papers, published in ACM Transactions on Graphics during the course of the last year, will be presented at SIGGRAPH 2014.
Adam Finkelstein

“As is SIGGRAPH tradition, the quality of this year’s Technical Papers content was superb,” said Adam Finkelstein, Technical Papers Chair from Princeton University. “Not only did we receive outstanding work in the traditional areas of modeling, rendering, animation, and imaging, but we also noticed two emerging fields in design/fabrication and learning.”  

For a sneak peek at what's to come, see below.

Design and Fabrication
  • Computational Design of Linkage-Based Characters
Authors: Bernhard Thomaszewski, Stelian Coros, Disney Research Zürich; Eitan Grinspun, Columbia University; Vittorio Megaro, ETH Zürich; Markus Gross, Disney Research Zürich, ETH Zürich; Damien Gauge, ETH Zürich

This paper presents a design system for linkage-based mechanical characters. The system allows users to interactively browse different design options, while a continuous optimization step improves motion quality and safeguards against singularities.
  • Interactive Design and Optimization of Free-Formed Free-Flight Model Airplanes
Authors: Nobuyuki Umetani, The University of Tokyo, Autodesk Research; Yuki Koyama, The University of Tokyo; Ryan Schdmit, Autodesk Research; Takeo Igarashi, The University of Tokyo

This paper introduces novel interactive techniques for designing original hand-launched free-flight glider airplanes that can actually fly. Based on a compact aerodynamics model, a user-designed wing configuration is interactively optimized to maximize flight-worthiness.

Learning
  • Self-Refining Games Using Player Analytics
Authors: Matt Stanton, Ben Humberston, Brandon Kase, Carnegie Mellon University; James O'Brien, University of California, Berkeley; Kayvon Fatahalian, Adrien Treuille, Carnegie Mellon University

Data-driven simulation demands good training data. In games, users explore a small subset of the configuration space. In this paper, a precomputed fluid dynamics game uses crowd sourcing to learn user behavior models that predict the most frequently encountered configurations. Precomputation is concentrated around these states, reducing model error and visual artifacts. 
  • Learning Bicycle Stunts
Authors: Jie Tan, Yuting Gu, Karen Liu, and Greg Turk, Georgia Institute of Technology

This paper presents a general approach to simulate and control a human character riding a bicycle. The rider not only learns to steer and balance in normal riding situations, but also learns to perform a wide variety of stunts, including wheelie, endo, bunny hop, front wheel pivot, and back hop.

Take Note: You definitely won't want to miss the paper presentations at SIGGRAPH 2014. Occurring from Monday through Thursday, 10-14 August, the 35 paper sessions will highlight a total of 173 technical papers.