Automated Antenna Controller. Our Team Sam Bryan – Team Leader Electrical Engineer LCD Hardware LCD Software Power Calculations Brandon Gray Electrical.

Slides:



Advertisements
Similar presentations
What is Arduino?  Arduino is a ATMEL 168 micro-controller kit designed specially for small projects  User friendly IDE(Integrated Development Environment)
Advertisements

Team: – Brad Jensen – Will Klema – Nate Schares Client: – PowerFilm, Inc. Advisor: – Dr. Ayman Fayed Solar-Powered Mobile Power Station (MPS)
DC-AC Power Inverter Design II, Spring 2004 Midterm Presentation.
1 Electrical and Computer Engineering Guitar Virtuos Justin D’Alessando (EE) Jacob Dionne (CSE) Adam Montalbano (CSE) Jeffrey Newton (EE) Team Kelly Preliminary.
P11016: Intra-building Navigation Shannon Carswell Dan Paris Tim Garvin Dan Stanley.
A.G.I.L.E Team Members: Brad Ramsey Derek Rodriguez Dane Wielgopolan Project Managers: Dr. Joel Schipper Dr. James Irwin Autonomously Guided Intelligent.
Bradley University Department of Electrical and Computer Engineering 2011 Wind Tunnel Control (WEBWIND) By: Adam Green Advisor: Dr. Aleksander Malinowski.
14 October 2004AME 470 – Team Unum PDR #6 – 14 October 2004 Electrical Components Chris Tilton Team UNUM.
Craig Chan & Mike Abidoye
Design of a Control Workstation for Controller Algorithm Testing Aaron Mahaffey Dave Tastsides Dr. Dempsey.
Mid Semester Presentation Senior Design II October 5, 2010.
MULTIPURPOSE DIGITAL CDMA FM REMOTE CONTROLLER FIRDOUS KAMAL MIZAN MIAH EE – 513 4/19/2005 COMMUNICATION ELECTRONICS.
Deon Blaauw Modular Robot Design University of Stellenbosch Department of Electric and Electronic Engineering.
Checking Antenna Systems
Engineering 1040: Mechanisms & Electric Circuits Fall 2011 Introduction to Embedded Systems.
Presents The MaxLife Team Members Dr Ray Winton Faculty Advisor Anthony Piro Software Implementation Web Design Todd Stringer Hardware Implementation.
Presents. Dr. Ray Winton Faculty Advisor Anthony Piro Software Implementation Web Design Todd Stringer Hardware Implementation Testing.
GROBI Gizmo Remote Operated Bluetooth Interface Sponsor: Calit 2 Mentors: Paul Blair & Javier Rodriguez Molina Team: Kristi Tsukida & Eldridge Alcantara.
Department of Electrical and Computer Engineering Theremi n THEREMIN.
Senior Design II Mid-Semester Presentation. Single Phase Inverter Team Members Team Leader Electrical Engineer Control System Design Power Electronics.
William Weeks Electrical Engineering Team Leader Hardware USB Host Research and Documentation Jesse Killough Electrical Engineering USB Host MP3 Decoder.
Smoke Notification System (SNS) Mid-Semester Presentation Senior Design 1 February 28, 2013.
Android Multi-Meter (AMM)
Mid-Semester Presentation Senior Design October 5, 2010
Senior Design II, Mid-semester Presentation October 5, 2010.
Trey Herrington Electrical Engineer - Backup Power Supply - Backup Power Supply - PCB Design - PCB Design Samantha Prine Electrical Engineer -Enclosure.
Final Presentation November 29, Team Members Duties: Real Time Clock Website Kevin Wellman Electrical Engineering Reginald Lott Adam Teague Matthew.
SEPTEMBER 25, 2008 Power Melder Midterm Presentation.
Hybrid Power Controller (HPC) Final Presentation Senior Design II.
Daredevil Robot Direction Module (DRDM) Senior Design II Midterm Presentation.
Powerpoint Templates Page Senior Design II Mid-Semester Presentation.
December 2nd, 2008 Power Melder Midterm Presentation.
An Automated RF Tuner for Silicon Carbide Electronic Device Processing
Joseph Ratliff EE Software Research PCB Design Obstacle Detection Motion Detection Ryan Crownover EE Coding Logic Motion System Software Design Website.
Mid – Semester Presentation Senior Design February 18, 2010.
Final Presentation April 20, Team Members Read Caver Hardware Design Microcontrollers Wireless Communication Technical Documentation Steven Price.
Voice-Activated Television Remote Control (VAR) Senior Design II Mid-Semester Presentation [1]
Mid Semester Presentation Draft February 17, 2011.
SEPTEMBER 25, 2008 Power Melder Midterm Presentation.
Impulse Generator Control Module Mid-Semester Presentation.
Mid-Term Presentation October 5, Team Members Charlie Mraz EE Team Leader Analog Design PCB Layout Allen Joiner EE Microprocessor Design Power Supply.
Strong as a Buck. Meet The Team Warn Wilson John Clark Dre Crumbly Electrical Engineering Computer Engineering.
Senior Design I Mid Semester Presentation October 9, 2014.
Automated Control System
Mid – Semester Presentation Senior Design February 25, 2010.
RFID AC SWITCH Mid-Semester Presentation February 21, 2008.
Automated Antenna Controller. Our Team Sam Bryan – Team Leader Electrical Engineer Hardware Prototyping LCD Communication Brandon Gray Electrical Engineer.
Smart Mattress Bryan Kuo, Priyen Patel, Dev Shah, Xitij Shah, Tim Stamm Georgia Institute of Technology October 23, 2008.
Daredevil Robot Direction Module (DRDM) Senior Design II Final Presentation.
Smoke Notification System (SNS) Final Presentation Senior Design II November 19, 2013.
Mid-Semester Presentation Design II March 4, 2014.
Hybrid Power Controller (HPC) Mid-Semester Presentation Senior Design II.
Smoke Notification System (SNS) Final Presentation Senior Design 1 April 18, 2013.
Impulse Generator Control Module
ECEN 4610 Capstone University of Colorado Boulder, CO January 29, 2009 School of Rock PDR Cheyenne Aberle Drew Veldhuizen Swain Brooks Dan Reed.
Sponsored By: Freescale Sponsor: Kevin Kemp Faculty Advisor: William Stapleton Project # 1.3.
Automated Antenna Controller
Mid Semester Presentation October 4, Team Members Duties: Real Time Clock Website Kevin Wellman Electrical Engineering Reginald Lott Adam Teague.
Automated Antenna Controller. Our Team Sam Bryan – Team Leader Electrical Engineer Hardware Prototyping LCD Communication Brandon Gray Electrical Engineer.
Final Presentation Glass Break Detection Team
Critical Air System Pressure Controller Senior Design Project, 2010 Morgan Hespe, Department of Electrical and Computer Engineering Mentor: Dr. Stanislaw.
Sound Source Location Stand Group 72: Hiroshi Fujii Chase Zhou Bill Wang TA: Katherine O’Kane.
DIGITAL SHOWER CONTROLLER BY NATHAN GARNER KASUN KUMARAGE.
Final Presentation April 19, 2010 Contactless Angular Position Sensor Team: Eugene Sandberg, Christine Bratton, Matt Landry, Aram Lee, Jeremy Lewis Faculty.
Power Budget Automation System Team #40 Hai Vo, Ho Chuen Tsang, Vi Tran ECE 445 Senior Design April 30 st, 2013.
FINAL DESIGN PRESENTATION UAV PROPULSION UAV Propulsion Control System For Commercial Applications.
Sponsor: Name & Affiliation Faculty Advisor: Name Put a picture of what was created here.
Home Automation Instructor: Dr. Gursel Serpen
Automated power Factor Correction and Energy Monitoring System
Antenna Tuners Do Not Tune Antennas
Presentation transcript:

Automated Antenna Controller

Our Team Sam Bryan – Team Leader Electrical Engineer LCD Hardware LCD Software Power Calculations Brandon Gray Electrical Engineer Hardware Prototyping Frequency Counting RF Coupler Jacob Edwards Computer Engineer LCD Software Frequency Counting Motor Control Software Ashley Stough Electrical Engineer Motor Control Hardware Frequency Counting Hardware Dr. Raymond Winton Academic Advisor Sponsor

Outline ProblemProblem SolutionSolution ConstraintsConstraints –Technical –Practical Special ConcernsSpecial Concerns –Manufacturability –Economics System OverviewSystem Overview Subsystem TestingSubsystem Testing System TestingSystem Testing GoalsGoals

What is the Automated Antenna Controller? –Microprocessor controlled version of MFJ Enterprises, Inc.’s user-managed loop antenna controller –Used with MFJ-1786 and MFJ-1788 Super Hi-Q Loop Antennas [1]

What is the Automated Antenna Controller? (cont’d) Unit controls a motor attached to a variable plate capacitor which adds capacitance to the impedance of the loadUnit controls a motor attached to a variable plate capacitor which adds capacitance to the impedance of the load Standing Wave Ratio (SWR)Standing Wave Ratio (SWR) –Ratio of power or impedance: Power reflected to source versus power transmitted from sourcePower reflected to source versus power transmitted from source Load impedance against source impedanceLoad impedance against source impedance

Problems with Existing Controller Operation is Time ConsumingOperation is Time Consuming Unit is Difficult to OperateUnit is Difficult to Operate Meter is Difficult to Read AccuratelyMeter is Difficult to Read Accurately Inaccurately controlledInaccurately controlled [2]

Solution Use microcontroller to allow more accurate tuningUse microcontroller to allow more accurate tuning Automate the tuning process to avoid user errorAutomate the tuning process to avoid user error Utilize digital display to allow easier output for userUtilize digital display to allow easier output for user

Technical Constraints NameConstraint Frequency Frequency must measure and display between 7 and 30MHz ± 30kHz. Standing Wave Ratio A maximum of 3:1 SWR must be achieved. Connector RF connection must be an SO-239 style connector. RF Power Forward and reflected power must be measured and displayed accurately to ± 1W. Power Supply Power supply must be the MFJ-1312D AC adapter.

Health and Safety Enclose the controllerEnclose the controller –Prevent electric shock –Prevent burns from hot components –Prevent RF burns

Economics: Manufacturing Cost Parts must already be in stock at MFJParts must already be in stock at MFJ –Reduces number of parts ordered –Limits design options

Visual System Overview

Testing Subsystem TestingSubsystem Testing –SWR and Power Measurement –Frequency Measurement –Antenna Tuning Circuit –Display System TestingSystem Testing

SWR and Power Measurement

[6]

Power Measurements Voltage from RF Coupler to ADC input

Power Measurements

SWR Measurements

Frequency Measurement

D Flip-Flop Input D Flip-Flop Output D Flip-Flop Input/128 = D Flip-Flop Output

Antenna Tuning Circuit H-Bridge Variable Capacitor

Antenna Tuning Circuit PWM Input H-Bridge Output Fast Tune and Slow Tune No feedback from MotorNo feedback from Motor Tune Down the Antenna to the lower limitTune Down the Antenna to the lower limit

Display Frequency SWRSWR Forward / Reflected PowerForward / Reflected Power

System Testing Testing with the Dummy LoadTesting with the Dummy Load Testing with the Loop AntennaTesting with the Loop Antenna

Prototype Performance Technical Constraint Constraint Met Frequency must measure and display between 7 and 30MHz ± 30kHz. Yes A maximum of 3:1 SWR must be achieved. Yes RF connection must be an SO- 239 style connector. Yes Forward and reflected power must be measured and displayed accurately to ± 1W. Yes Power supply must be the MFJ- 1312D AC adapter. Yes

Design II Goals Analog SWR/Power MeterAnalog SWR/Power Meter User Interface ButtonsUser Interface Buttons Capacitor Limitation SensingCapacitor Limitation Sensing PCB DesignPCB Design Product PackagingProduct Packaging

References [1] [Online]. Accessed: September 29, [2] [Online]. Accessed: September 27, [3]MFJ Enterprises, INC., MFJ Super Hi-Q Loop Antenna: Model MFJ 1786/1788 Instruction Manual, [4] 8f2520-i%20sp.JPG. [Online]. Accessed: September 30, [5] “PIC18F2420/2520/4420/4520 Datasheet”, Microchip Technology Inc. pg 326. [6] Owen Duffy 1995, 2006[Online]. Accessed: October 6, [6] Owen Duffy 1995, 2006 [Online]. Accessed: October 6, 2009.

Questions?