Showing posts with label CAE. Show all posts
Showing posts with label CAE. Show all posts

10/29/2009

Getting Started Using Adams/Flex

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Welcome to Adams/Flex
Adams/Flex is an add-on module to MD Adams products that lets you add flexible bodies to your models
to achieve more realistic simulation results.
If you’ve never used Adams/Flex before, this guide is a good place to start learning about Adams/Flex.
As you work through the two tutorials that we have provided, you will learn most of the basic concepts
and tasks that you can perform using Adams/Flex.
Before doing these tutorials you should be familiar with the basic features of the Adams/View interface.
For information about the Adams/View interface, see the guide, Getting Started Using Adams/View.

About the Tutorials
The two tutorials in this guide give you an introduction to using Adams/Flex:
• Building and Simulating a Flexible Model - The first tutorial teaches you how to integrate
flexible bodies into Adams/View and attach rigid bodies to them. The tutorial also introduces
you to Adams/Flex basics, such as the options that are available for setting up the modal content
of flexible bodies before a simulation.
• Exchanging a Rigid Body with a Flexible Body - The second tutorial teaches you how to bring
a flexible body into an existing model and replace a rigid body with the flexible body. It lets you
see how easy it is to integrate the flexible body into an existing rigid model so you can gradually
add complexity and realism to your model.
Note that there are additional tutorials in the guide, Using Adams/Flex, that explain many of the
advanced features of Adams/Flex. They are presented in the chapters in which the advanced features are
explained.

Auto Cross Correlation Function

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The nSoft ACCF module performs auto-correlation and cross-correlation on up to two single
parameter files.
It calculates the auto correlation function of a single time series signal and plots it graphically.
If two input files are entered, ACCF auto-correlates the two signals and, if possible, cross-correlates
each file. These results can also be plotted.

:nCode Agents worldwide

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MSC.Software Australia (Sydney)
Countries served: Australia, New Zealand
Main contact: Mr Mathew Wallis
Level 13, 309 Pitt St
Sydney
New South Wales 2000
Australia
Tel: + 61 2 9283 2577
Fax: + 61 2 9283 2585
E-mail: matthew.wallis@mscsoftware.com.au
MSC.Software Australia (Melbourne)
Main Contact: Simon Kellett
L7, 271 William St.
Melbourne 3000
Australia

Overview of Anomaly Detection

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Anomaly detection is the process of checking a data stream against a set of conditions
defining the validity of the data.
The software system which performs this function comprises three main parts.
• Anomaly definition - Define which anomalies to monitor on which data channels. A single
definition can be used with multiple test data sets.
• Anomaly detection - Perform a detection on one or more data sets given a previously
created anomaly definition.
• Anomaly display - Display the details of the detected anomalies, either graphically or in
a tabular form.
These three parts are provided as three separate programs, ANDEFINE, ANDETECT
and ANMULEDT.

Contour Plotting Program

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The CONTOR module produces contour plots from any nSoft histogram file. Normally it is used for
JPH files produced from a joint probability analysis. The JPH files can be produced by nSoft module
JPD. The plotted file is displayed on screen, or at the users discretion saved as a plot file for later
printing. CONTOR also plots regression lines, if available, that show the degree of correlation
between the input data sets.