Design for Engineering

Slides:



Advertisements
Similar presentations
ELECTRONIC STABILITY PROGRAM (ESP) LECTURER NAME: MR
Advertisements

UNIVERSAL SYSTEMS MODEL
Motor Vehicle Level 3 Hydraulic Components Resource 3.
Troubleshooting, Research, Development and Experimentation Unit #6 Tom Weber Course 665 This material is based upon work supported by the national science.
Examples of Universal Systems Models This material is based upon work supported by the National Science Foundation under Grant No Any opinions,
Antilock Brake, Traction Control, and Stability Control Systems
Booch Block diagram for cruise control
Instrumentation and Control Systems Presentation 2006 Greg Heitkamp This material is based upon work supported by the National Science Foundation under.
ETP Brian Vance Top Ten Benefits of an ENGINEERING CAREER This material is based upon work supported by the National Science Foundation under Grant.
Open & Closed Loop Systems. InputProcessOutput Input ProcessOutput Monitor Compare & Adjust To Menu Feedback Loop.
CSE 425: Industrial Process Control 1. About the course Lect.TuLabTotal Semester work 80Final 125Total Grading Scheme Course webpage:
Systems Engineer An engineer who specializes in the implementation of production systems This material is based upon work supported by the National Science.
ABS(Antilock braking system)
ANTI LOCK BRAKING SYSTEM
Design for Engineering
ABS Sensors Their Operation and Waveform Produced
Process Control: Designing Process and Control Systems for Dynamic Performance Chapter 1. Introduction to Process Control Copyright © Thomas Marlin 2013.
Motor Vehicle Level 3 Electronics and Electronic Components Resource 1.
Design for Engineering Unit 5 Technological Systems Annette Beattie August 4, 2006 Technological Systems ETP 2006 – Annette Beattie This material is based.
An American engineering success Design for Engineering The Brooklyn Bridge 2006 Greg Heitkamp This material is based upon work supported by the National.
Abstract A software development life cycle can be divided into requirements elicitation, specification, design, implementation, testing, and maintenance.
System & Control Control theory is an interdisciplinary branch of engineering and mathematics, that deals with the behavior of dynamical systems. The desired.
INTRODUCTION TO CONTROL SYSTEMS
Foundations of Technology, Third Edition/ Technology, Engineering, and Design © 2011 International Technology and Engineering Educators Association STEM.
Land Transportation cont.. Transmitting Power »Drive System – A system used to transfer the motion of the engine’s crankshaft into the power that moves.
 ABS – Function, Design & Working  ABS types  Recent Advancements  Effectiveness & Limitations  Testing & Validation  Job of the Driver  Closing.
Q UALITY IN HEALTH C ARE What is it? How do we measure it? How do we know if we are providing quality?
Communicating a Design Proposal By Brian Nettleton This material is based upon work supported by the National Science Foundation under Grant No
Computer Aided Design By Brian Nettleton This material is based upon work supported by the National Science Foundation under Grant No Any opinions,
Unit 6 Trouble shooting, Research and Development, and Experimentation ETP 2006 – Jeff Pegg This material is based upon work supported the National Science.
Control Systems Engineering
Adaptive Cruise Control
Feedback Loops Andrew McCarthy. Purpose of Feedback The primary reason for feedback control is to measure and compensate for the effect of disturbances.
Updated September 2011 Medical Applications in Nanotechnology Nano Gold Sensors Lab.
Product Project Prototype Standards 2P, Q 9F, H This material is based upon work supported by the National Science Foundation under Grant No
Space Vehicle Control Systems
Antilock Braking System Dr. Khisbullah Hudha
Lesson Title: ThingNet Dale R. Thompson Computer Science and Computer Engineering Dept. University of Arkansas 1 This material.
 Wind Power TEAK – Traveling Engineering Activity Kits Partial support for the TEAK Project was provided by the National Science Foundation's Course,
Marko Jets Lecturer Faculty of Transport Ecology and Safety as a Driving Force in the Development of Vehicles IP Radom, 02 March – 15 March, 2008 TECHNICAL.
Systems and Systems Thinking 3a Foundations of Technology Mr. Barnes.
Engineering programs must demonstrate that their graduates have the following: Accreditation Board for Engineering and Technology (ABET) ETP 2005.
The Universal Systems Model. The Universal System Models The four components of the Universal Systems Model are: The four components of the Universal.
Universal Systems Model. Has 4 elements – Has 4 elements – Inputs Inputs Process Process Output Output Feedback Feedback.
CRUISE CONTROL KAMALA PRIYANKA VARANASI 08261A1456.
STEMCenter for Teaching & Learning™ Engineering byDesign™
Systems and Systems Thinking 3a
Author: Nurul Azyyati Sabri
PRESENTED BY:BHABESH RANJAN MAHAKUD
Top Ten Benefits of an ENGINEERING CAREER
Introduction to control system
ANTI LOCK BRAKING SYSTEM
WELCOME.
Discussion and Conclusion
STEMCenter for Teaching & Learning™ Engineering byDesign™
Trouble Shooting Brian Nettleton
STEMCenter for Teaching & Learning™ Engineering byDesign™
Electronic Automatic Transmissions
Written by: Jennifer Doherty, Cornelia Harris, Laurel Hartley
Foundations of Technology Mr. Brooks
Title of Poster Site Visit 2017 Introduction Results
People Who Did the Study Universities they are affiliated with
Title of session For Event Plus Presenters 12/5/2018.
Design for Engineering
Supporting Material for the Biodiversity Teaching Experiment
STEMCenter for Teaching & Learning™ Engineering byDesign™
(7th and 8th) EQ: How is the design process used to solve problem?
Anti-lock Brake System (ABS)
Title of Poster Site Visit 2018 Introduction Results
This material is based upon work supported by the National Science Foundation under Grant #XXXXXX. Any opinions, findings, and conclusions or recommendations.
Presentation transcript:

Design for Engineering The Universal Systems Model 2006 Greg Heitkamp This material is based upon work supported by the National Science Foundation under Grant No. 0402616. Any opinions, findings and conclusions or recommendations expressed in this material are those of the author's and do not necessarily reflect the view of the National Science Foundation (NSF).

The Universal System Models The four components of the Universal Systems Model are: Input – What is put into the system Output – What comes out of the input and process Process – All the activity that is required and take place to get the desired result. Feedback – The reaction of the input, output and process of a system. Used to reinforce or alter the elements of a system

Transportation example: Sub System Cruise Control Steering Wheel Control Vehicle Speed Signal Cable to Throttle Valve Vacuum Control Valve Input Cruise Control Computer Set speed Process Vacuum Actuator Brake Pedal Switch Clutch Pedal Switch Feedback Throttle Position Sensor Output Throttle Valve Control Speed Allows the Computer to Reset Valve Provides Constant Speed

Communication System E-mail Keyboard Email goes Through Internet Typing Computer Monitor CPU Electricity Process Send email over Internet to receiver's mailbox Input Email E-mail Gets read Not answer Answer Save for later Feedback Receiver decides what to do with e-mail Output Receiver gets E-mail

Construction System Bookcase Wood, Screws, Nails, Glue Hammer, Saw, Clamps, Screw drivers Gluing Plans Materials Sawing Building Tools Process Capital Input Painting Staining Measuring Planning Output Finished Bookcase Waste Right Type Of Wood Feedback Smooth Finish Sawdust Noise Correct Finish Correct Size Sawing Hammering

Medical Stress test Process Input Feedback Output Patient Electrodes measure heart rate X-ray taken Walking On Treadmill Testing Equipment Test Facility Process Input Doctor Nurse Barium Dye injected for X-ray Time for Waiting for test X-ray Technician Feedback Output Patient Gets tired from workout Test Does Not Work Results are good Results are Incomplete Equipment Works to get test results Test Results Are Collected Results Are bad

Standards Addressed Standard 2. Students will develop an understanding of the core concepts of technology. W. Systems thinking applies logic and creativity with appropriate compromises in complex real-life problems. X. Systems, which are the building blocks within larger technological, social, and environmental systems.

Standards Addressed Continued Y. The stability of a technological system is influenced by all of the components of a system, especially those in the feedback loop. Standard 14: Students will develop an understanding of and be able to select and use medical technologies. K. Medical technologies include prevention and rehabilitation, medical and surgical procedures, genetic engineering, and the systems within which is protected and maintained