To install click the Add extension button. That's it.

The source code for the WIKI 2 extension is being checked by specialists of the Mozilla Foundation, Google, and Apple. You could also do it yourself at any point in time.

4,5
Kelly Slayton
Congratulations on this excellent venture… what a great idea!
Alexander Grigorievskiy
I use WIKI 2 every day and almost forgot how the original Wikipedia looks like.
Live Statistics
English Articles
Improved in 24 Hours
Added in 24 Hours
What we do. Every page goes through several hundred of perfecting techniques; in live mode. Quite the same Wikipedia. Just better.
.
Leo
Newton
Brights
Milds

Secondary animation

From Wikipedia, the free encyclopedia

Secondary animation, also known as secondary motion, is flat motions generated as a reaction to the movement of primary motion by a character. It is significant in animation because it amplifies the character's motion via effects that appear to be driven by the motion, i.e. it makes the character's motion seem natural. Examples of secondary motion include the rippling of water, swish of a cloak, or jiggle of body parts when a person is moving. These passive effects have many degrees of freedom, and complex interactions with characters, thus making them hard to animate by hand (hand animation), or via computer software.[1]

YouTube Encyclopedic

  • 1/3
    Views:
    2 037 434
    15 112
    10 061
  • How a CPU Works
  • Primary and Secondary Storage (Basic)
  • Electrochemical gradients and secondary active transport | Khan Academy

Transcription

Techniques

Creating a second motion requires using a technique called coupling that combines simulations of individual objects allowing them to interact together to produce secondary motion. The coupling can be divided into three categories: two-way coupled, one-way coupled, and hybrid.

  1. Two-way coupled - The purpose of a two-way coupled simulation is to model the interaction as realistically as possible given the component systems. Two-way interactions affect the two components, and the forces applied to one is mirrored by equal and opposite forces applied to the second. The actions of each system directly affect the other. However, the main drawback of this coupling method is the computation time required before the path of an object can be viewed. If simulated alone, the object can be viewed in real time allowing the animator to apply instant changes to its motion. When two simulations are coupled, the animator must wait before a motion can be viewed.[2]
  2. One-way coupled - In the one-way coupled system, the interaction forces are applied only to the secondary system, leaving the primary one unaffected. This way of disregarding depends on the assumption that minimal effect will fall upon the primary system. This situation is likely to happen when one system's mass is greater than the other. One advantage of this coupling approach is that it allows the individual simulation of each system. Generally, it is also easier to implement than the two-way coupled system because only the secondary system is adjusted. It also permits the coupling where it is not possible or favorable to modify the primary system such as in the case of a hand-animated character.[2]
  3. Hybrid - A hybrid system is a concession between the accuracy of the two-way coupling system and the speed of the one-way coupling. Instead of completely ignoring the effect of the interaction on the primary system, a small approximation from the secondary system is allowed to interact with the primary system. The design and parameters of the approximation provide the animator with additional controls, and because the hybrid coupling is supposed to provide a shorter debug cycle time for the primary system than the two-way coupling method, the animator may interactively modify these parameters until the desired result is reached.[2]

References

  1. ^ Jain, Eakta; Sheikh, Yaser; Mahler, Moshe; Hodgins, Jessica (2010). "Augmenting Hand Animation with Three-dimensional Secondary Motion": 1. CiteSeerX 10.1.1.168.5544. {{cite journal}}: Cite journal requires |journal= (help)
  2. ^ a b c O'Brien, James; Victor, Zordan; Hodgins, Jessica (July–August 2000). "Combining Active and Passive Simulations for Secondary Motion". IEEE Computer Graphics and Applications. 20 (4): 3–4. arXiv:2303.10551. doi:10.1109/38.851756.
This page was last edited on 5 January 2024, at 20:33
Basis of this page is in Wikipedia. Text is available under the CC BY-SA 3.0 Unported License. Non-text media are available under their specified licenses. Wikipedia® is a registered trademark of the Wikimedia Foundation, Inc. WIKI 2 is an independent company and has no affiliation with Wikimedia Foundation.