implementation of a MATLAB Graphical User Interface (GUI) based approach to wirelessly control the movement of a robotic car. The command to move the car in forward‚ reverse‚ right‚ and left direction are sent from the GUI and is processed by an Arduino present on the transmitter side. After processing the command‚ a code is sent wirelessly to the receiver. The receiver side decodes the code and makes the robot move accordingly. The MATLAB based GUI for wireless control of the robot is shown in Fig
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References: [1] “KROC Memphis” http://www.krocmemphis.org/about/ [2] Blum‚ Jeremy. Exploring Arduino. Indianapolis: John Wiley & Sons‚ Inc.‚ 2013. Print [3] “Tutorials” http://arduino.cc/en/Tutorial/HomePage [4] Roden‚ Carpenter‚ Wieserman. Electronic Design. Los Angeles: Discovery Press‚ 2002. Print. [5] Boxall‚ John. Arduino Workshop. San Francisco: No Starch Press‚ 2013. Print [6] National Fire Protection Agency. National Electrical Code. Quincy: NFPA‚ 2008
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Table of Contents: 1. Purpose/Introduction................... 2. Top Level Design and Testing..... 3. Subsystem Design and Testing... 4. Troubleshooting........................... 5. Conclusions.................................. Purpose It has been known for some time now that mechanical locks are becoming outdated. Mechanical locks are notoriously easy to lock pick‚ the quantity of keys limits their use‚ and they are not convenient to use. The goal of Team Open Sesame
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Power Electronic Project DC/AC Conversion using an H-Bridge Supervisor: Dr. Lutfi Al-Sharif Students: Samer Alshaer 201010997 Ayman Herzalla 200910124 Ala al shargabi 201020177 Abstract—In this document a DC (Direct Current) to AC (Alternating Current) conversion method using an H-Bridge will be introduced; components‚ simulation and hardware implementation will be presented. Index Terms— H-Bridge‚ DC to AC conversion‚ Power electronic application‚ Simulation. I. INTRODUCTION A
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“SixthSense ARDUINO Botz” India’s first “SixthSense Botz” vision robotics workshop designed by team ARK . In this workshop‚ we have tried to interface digital world with physical world. We as an organization feel the importance of the real world. We all sit in front of computer entire day for our daily activity and one hand is busy clicking the things on the computer‚ then we felt to design something that can interface the real human with the computer. We humans can see the things around us
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on screen. rId10 Measuring intensity of light For complicated instruments very sensitive light measure equipment Si photo detector is used To sense the intensity of light. Light sensor is exposed towards light whose intensity to be measured. Arduino board has calibrated as per requirement of the light sensor to record intensity of light rId11 Conclusion Development show that how microcontroller can be set for collect data from sensors and display result on screens. Android system help students
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AUTOMATIC GUITAR TUNER Malaysian Institute of Information Technology‚ Universiti Kuala Lumpur SEPTEMBER 2013 AUTOMATIC GUITAR TUNER NUR MUHAMAD BIN FADLULLAH TEY (52118211466) MOHAMMAD EZZAT BIN EDROS (52118211381) Report Submitted in Fulfilment of the Requirements For the Diploma of Engineering Technology in Engineering & Computing Malaysian Institute of Information Technology‚ Universiti Kuala Lumpur SEPTEMBER 2013
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developed and developing regions in maintaining safety‚ smooth traffic flow‚ and an environmental friendly and sustainable urban environment. Advanced systems for preventing accidents via vehicle-to-vehicle and vehicle-to- infrastructure communications are significant‚ but are being positioned in relation to growing cellular connectivity for vehicles. Intelligent transportation systems (ITS) are advanced applications which‚ without embodying intelligence as such‚ aim to provide innovative
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produce the desired output projection. II. MATERIALS REQUIRED: 2x16 Liquid Crystal Display (LCD) 4x4 keypad PC – 401 Connector wires Arduino mini AT328 microcontroller USB cable III. BACKGROUND INFORMATION: IV. PROCEDURE: Part A. Circuit Connection 1. Connect the LCD pins into the digital pins of the arduino using patching cords following the connection below. * LCD RS pin to digital pin 12 * LCD Enable pin to digital pin 11 * LCD D4 pin to digital
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cellular shield. The cellular shield is a device that enables text messaging services within the vehicle. The cellular shield then transmits the message to an Arduino microcontroller. The Arduino microcontroller is a small hardware device that runs a software application that is waiting for messages from the phone. The cellular shield and Arduino will be covered in greater detail in later sections. Once a valid
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