Adept Scientific - Norge
Verdens førende software for industri, forskning og utvikling.
flag arrow
clearclear
Flag

 Adept Store | register Join My Adept | Flags  
Adept Scientific | Tel: 800 58 997  
UKdedksvnofi
Hjem
Produkter
Kurs
Services
 Kjøp Online
Downloads
Utdanning
Support
Mitt Adept
Internasjonal |  Om oss |  Blog |  Kontakt oss |  Presserom |  Jobb
Adept Scientific on Facebook Adept Scientific on Twitter Adept Scientific on YouBube Adept Scientific on LinkedIn


Gå videre

• Ask us a question
•  Download a Demo
•  Request a Brochure

Lær mer

Quanser Home
The Quanser Difference
Comparison Chart
Quanser Engineering Blog

Control Experiments
Linear
Rotary
Specialty
 - 2 DOF Helicopter
 - 3 DOF Helicopter
 - 3 DOF Hover
 - 3 DOF Crane
 - Direct Drive Rotary Servo
 - Planar Rotray IP
 - Solar Tracker
 - Coupled Tanks
 - 5 DOF CRS Robot
 - Heat Flow (HPE)
 - Shake Table l
 - Shake Table ll
 - Smart Structure
 - Magnetic Levitation
 - XY Shake Table lll
 - 2 DOF Flexible Serial Link
 - 2 DOF serial flexible joint
 - Cube
 - 5 DOF Haptic Wand
 - Omni Bundle

Mechatronics
Unmanned Vehicle Systems

QUARC 2.2

Service & support

Search the Knowledge Base
Technical Support request

Quanser

Smart Structure

iml_S12-smart.gif

Challenge:
Design a control system to dampen the flexible modes of a smart structure.

Description:
This experiment consists of a flexible beam clamped at one end of the structure. The opposite end of the structure is equipped with a servomotor that drives an eccentric load. The objective is to dampen out the vibrations in the beam by driving the motor. The experiment includes the following components:

1) Base plate instrumented with a strain gage
2) Flexible beam
3) Motor and encoder. The motor drives the load through a gear ratio of 70:1. The encoder measures the angle using a 1024 count disc which in quadrature results in 4096 counts/rev.
4) Inertia load consisting of two rigid beams and a round crossbeam.



Difficulty:
Undergraduate advanced / Graduate / Project / Research


Ready to buy?

Every customer requirement for the Quanser range is unique and we offer pre-sales support to ensure your purchase fully meets the project requirements.

For more information about Quanser Control Challenges and to discuss your project contact our Quanser team at your local office.

Latest Downloads

MapleSim and Quanser Case Study - Using MapleSim in Unmanned Aerial Vehicle Models
Quanser Case Study - Rehab Robot Helps Stroke Victim Recover
Quanser Article: Preparing Effective Global Engineers for Success
Quanser Case Study: University of Central Florida - Accelerating Research by Allowing Two Programming Languages to Talk
Quanser Case Study: University of Victoria Driving Haptic-Based Rehabilitation Further and Faster

Latest News

MapleSim and Quanser Case Study - Using MapleSim in Unmanned Aerial Vehicle Models
Quanser Case Study - Rehab Robot Helps Stroke Victim Recover
"In one week I installed QUARC...
"I spoke with people who had these devices in their labs...
Quanser Case Study: University of Central Florida - Accelerating Research by Allowing Two Programming Languages to Talk
adept

Top of the Page

Popular Links: ChemDraw | ChemOffice | Data Acquisition | Data Analysis | EndNote | Maple | MapleSim | Mathcad | MathType | Quality Analyst | Reference Manager | VisSim

EU ePrivacy Directive | Our Privacy and Terms and Conditions Statement
All Trademarks Recognised. Copyright © 2012, Adept Scientific.
Site designed and maintained by Lyndon Ash

Adept Scientific | Tel: 800 58 997