01/21/2004By: Strobridge & Sulkoski1 G.U.S.T.E.R. Status Report.

Slides:



Advertisements
Similar presentations
Stator Voltage Control
Advertisements

Investigating the Use of a Variable-Pitch Wind Turbine to Optimize Power Output Under Varying Wind Conditions. Galen Maly Yorktown High School.
02/10/2004By: Strobridge & Sulkoski1 G.U.S.T.E.R. Electrical Design Project Presentation.
Closed-Loop Rotational Speed Control of Cooling Fan David ChoiJay Gainer Shad LawsKarl Stensvad.
September 23, 2003Jeff Wilson1 The Go-Go Gantry Jeff Wilson Lee Strobridge Allison Bodis David Carlson Mark Jarrett Jeremy Paradee.
02/10/2004By: Strobridge & Sulkoski1 G.U.S.T.E.R. Mechanical Design Project Presentation.
Professor Windmill An Educational Feedback Control System ELM Senior Project Dave Carlson Jeff Wilson.
September 23, 2003Jeff Wilson1 The Go-Go Gantry Jeff Wilson Lee Strobridge Allison Bodis David Carlson Mark Jarrett Jeremy Paradee.
Craig Chan & Mike Abidoye
04/26/04By: Strobridge & Sulkoski1 G.U.S.T.E.R. General User System for Testing Engineered Rotors.
FOLLOWER SENSORS AND ACTUATORS EE 552 INTSTRUCTOR :Dr MOHAN KRISNAN BY MOHAMMED KASHIF IQBAL ANESH BODDAPATTI UNIVERSITY OF DETROIT MERCY.
10/26/2003By: Strobridge & Sulkoski1 G.U.S.T.E.R. General Universal System for Testing External Rotors.
1. Wind Tunnel Control (WEBWIND) By: Adam Green Advisor: Dr. Aleksander Malinowski Dr. Scott Post Bradley University Department of Electrical Engineering.
Wind Instrument Testing Apparatus Project WITAP Team: Rob Koch Andy Lawrence.
Coordinate Based Tracking System
12/13/2003By: Strobridge & Sulkoski1 G.U.S.T.E.R. General Universal System for Testing External Rotors.
October 07, 2003 Created by: P'n'P Team 1 ELM-4701 Mini Project PULL ’N’ PLOT A Poster Plotting System.
ESE Lab Computer based Temperature Control Sid Deliwala, ESE Labs.
11/06/2003By: Strobridge & Sulkoski1 G.U.S.T.E.R. General Universal System for Testing External Rotors.
04/13/2004By: Strobridge & Sulkoski1 G.U.S.T.E.R. Status Report 4.
P07301 Summary Data Acquisition Module. Team Members.
Stability Control System for a Propeller Powered by a Brushless DC Motor Codey Lozier & Christian Thompson Advisor Dr. Mohammad Saadeh.
Damian Marks Rekha Vemuri Instructor: Dr. Wu Simple control system for a Stepper and DC motor using a tachometer and the HC11.
Chapter 15 DC Machines.
System Components Hardware overview for Apollo ACS.
Charging system PT 1 LSy_w.
SCADA and Telemetry Presented By:.
PUMP TESTING BY KAUSTUBH V GITAPATHI DIRECTOR VI AUTOMATION (P) LTD, PUNE.
Viking Pump Flow Manager - Phase 2 Senior Design May
E-LABORATORY PRACTICAL TEACHING FOR APPLIED ENGINEERING SCIENCES W O R K S H O P University of Oradea, Romania February 6, 2012 G E N E R A L P R E S E.
Presented by:- NAME : Sanjay Kumar Pani BRANCH : Electrical & Electronics GROUP : ‘B1’ ROLL NO. : E/04/14.
Hybrid Wind & Solar Generation Project
Diffuse Optical Tomography Optimization and Miniaturization ECE 4902-Spring 2014 Thomas Capuano (EE&BME), Donald McMenemy (EE), David Miller (EE), Dhinakaran.
AC vs. DC The production of and use of electricity is an expensive business.Therefore the most efficient use of the resource is required. The most efficient.
Introduction In 2008 President Geoffrey introduced the Live Green Program which called for environmentally conscious living. In light of this initiative,
SDMAY11-01 Advisor: Dr. Ajjarapu Team Members: Luke Rupiper Shonda Butler Andrew Nigro Ryan Semler Chad Hand.
Wind Turbine Simulation (Phase IV)
University of Tehran 1 Microprocessor System Design IO Applications Omid Fatemi
MICROPROCESSOR AND MICRO CONTROLLER LAB
Period 1 presentation. The ruins of a Persian windmill.
PRINCIPLES OF OPERATION
Wind Test Plan ●Test individual components, system in different conditions ●Calculate expected power under various conditions Wind block diagram.
Wind Turbine Design and Implementation. Team Members Members: Luke Donney Lindsay Short Nick Ries Dario Vazquez Chris Loots Advisor: Dr. Venkataramana.
Unit 3 REACTIVE POWER AND VOLTAGE CONTROL.  BASIC REQUIREMENTS OF EXCITATION CNTRL  Excitation Current up to 10’000 amps  Input frequency range from.
Using the wind to create electricity is great. By using windmills to create wind power is great because we are helping the Earth and the O-zone layer.
Forging new generations of engineers. AC Motors Instructional Plan.
Motors and Generators.
Period 7.   The more curved side generates low air pressures, due to more surface area. While high pressure air, pushes on the other side of the design.
Codey Lozier Christian Thompson Advisor: Dr. Mohammad Saadeh
Biomechanical Tissue Stimulator Group 1: Matt Brady (BME/EE) Ankeet Choxi (BME) Misha Kotov (CS) Steven Manuel (ME) Adviser: Dr. V. Prasad Shastri.
Diode Rectifier Circuits Section 4.5. In this Lecture, we will:  Determine the operation and characteristics of diode rectifier circuits, which is the.
ECET 340 Entire Course (All ilabs and Homework) For more classes visit ECET 340 Week 1 HomeWork 1 ECET 340 Week 1 iLab 1 ECET 340.
BLDC Motor Speed Control with RPM Display. Introduction BLDC Motor Speed Control with RPM Display  The main objective of this.
FSAE Engine Management System Adolfo Pereira Donald Zucaro Lee McDade Jeremy Belge Sun-Jet Liu Marcin Trelinski Advisor: Dr. Alan Nye Sponsor: FSAE Formula.
Prepared by:- Chandan pathak ( ) Utpal rathod( ) Hitendra vyas( )
TRANSMISSION LINE MULTIPLE FAULT DETECTION AND INDICATION TO EB
FOR MORE CLASSES VISIT   ECET 340 Week 1 HomeWork 1  ECET 340 Week 1 iLab 1  ECET 340 Week 2 HomeWork 2  ECET 340 Week 2 iLab.
Biomechanical Tissue Stimulator Matt Brady (BME/EE) Ankeet Choxi (BME) Misha Kotov (CS) Steven Manuel (ME) Adviser: Dr. V. Prasad Shastri.
Unit – IV Starting and Speed control of Three phase Induction motor
ANTI-COLLISON AND BRAKING SYSTEM
Tunnel Magnetic system power supply №1 HVM+Heat Power supply HVT SM
DC MOTOR SPEED CONTROL 1. Introduction
BY KAUSTUBH V GITAPATHI DIRECTOR VI AUTOMATION (P) LTD, PUNE
ECET 340 Competitive Success/snaptutorial.com
ECET 340 Education for Service-- snaptutorial.com.
ECET 340 Teaching Effectively-- snaptutorial.com.
Output Relay, Optoisolator, and Stepper motor interfacing with AVR
Experimental study of the wake regions in wind farms
Electric Machine Design Course
Presentation transcript:

01/21/2004By: Strobridge & Sulkoski1 G.U.S.T.E.R. Status Report

01/21/2004By: Strobridge & Sulkoski2 System Overview Anemometer Tubeaxial Fan HC08 Generator Wind Rotor DAC (Data Acquisition Card) User at PC

01/21/2004By: Strobridge & Sulkoski3 Functionality Breakdown ComponentSystem WillUsingTest Rotor & Hub Take student made blades for testing A standard rod/dowel & a custom made collet hub assembly Generator Calculate a rotors power output to wind speed A DC motor as a generator, an anemometer for finding wind speed, and a load resistor Done on generator for voltage output signals D.A.C. Collect input from various components and transfer to P.C. interface Data acquisition card and applicable software

01/21/2004By: Strobridge & Sulkoski4 Functionality Breakdown ComponentSystem WillUsingTest P.C. Interface Graphically represent data collected and provide a platform to change system parameters. Virtual instrument software to create a control system Micro Controller Vary speed of fan and output data to D.A.C. Anemometer and microcontroller to vary the frequency of the A.C. motor in the fan. Done on Anemometer for signal output Wind Rotor Assembly Turn wind rotor assembly in or out of the wind Stepper motor with control from P.C. to turn the whole assembly. Wind Tunnel Direct air flow towards wind rotor assembly Tubing/duct work.

01/21/2004By: Strobridge & Sulkoski5 Turbine & Flow Tubes

01/21/2004By: Strobridge & Sulkoski6 Hub Assembly

01/21/2004By: Strobridge & Sulkoski7 Timeline