conventional postpaid billing systems. The PWC with Mobile Based Control System is implemented mainly using an arduino‚ GSM module and valve. Customers can avail from the server the amount of wattage that the customer wants. Then the arduino reads the wattage and cuts off the water by closing its valve when the credit ends‚ but when the consumer subscribe and reloads the credit in arduino by the server‚ the valve will reopen. The consumer can control the flow of water by sending a
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Android-Controlled Racecar via Bluetooth I. Objectives 1. To design and develop an android application in the form of a racecar remote control. 2. To develop a racecar using gizDuino (Arduino clone). 3. To control the racecar using the android application via Bluetooth technology. II. Intended Learning Outcomes At the end of the project‚ students shall be able to: 1. Incorporate the knowledge they have learned from the CPE532L1 Elective 2‚ Embedded Systems. 2. Develop critical thinking
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nine columns will connect to a pin on the Arduino through a current limiting resistor. Each of the three levels connects to ground via a NPN transistor when activated by an Arduino pin. We’ll be using 12 output pins total on the Arduino but there are 18 LEDs to power. The trick is that only a single level can be lit at a time. When a level is connected to ground‚ each of the LEDs on that level can be powered individually through one of the nine other Arduino pins. The first step is to prepare the nine
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3.1 – An Overview of the Project The idea for the Black Box project was inspired to me by seeing the Anti Procrastination Box project found on the web [3]. In this project‚ an Arduino board controls a 5V solenoid and an LCD to keep a box locked for a certain period of time which could be set up by the user using the buttons that are below the LCD. Figure 2 shows a picture of how the box looks like. Inspired by this project‚ I decided to make my own version of the project in which a procedure (rather
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The Arduino Mega 2560 is a microcontroller board based on the ATmega256 .It has 54 digital input/output pins‚ 16 analog inputs‚ 4 UARTs ‚ 16 MHz crystal oscillator‚ USB connection‚ power jack‚ ICSP header‚ and a reset button. It has everything needed to support the microcontroller. The USB connection can be used to power the Arduino Mega. The power source makes use of automatic connection. External power can come from an ADC adapter or battery. Leads from the battery can be inserted in the Ground
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KWAME NKRUMAH UNIVERSITY OF SCIENCE AND TECHNOLOGY COLLEGE OF ENGINEERING DEPARTMENT OF TELECOMMUNICATIONS ENGINEERING PROJECT TOPIC: GSM ALARM SYSTEM WITH VIDEO SURVEILLANCE OPOKU MEDAS SELASSIE: 3731109 BAFFOE-MENSAH NANA KWESI: 3728609 SUPERVISOR: REV. DR. J.K OPPONG ABSTRACT In light of theft cases where culprits steal valuables from homes‚ schools‚ hostels‚ etc and get away without being easily identified by victims and security officials‚ a GSM alarm system is
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Pic20m2 Sensors 5 V regulator 12v Battery L239d Specifications * Based on the ATmega328p microcontroller @ 16 MHz (the heart of the Arduino Uno DIP model) * Size: 5cm X 2.5cm. * Plugs into a breadboard with the help of 0.1" (2.54mm) male headers or you can solder female headers. * Arduino standard digital‚ analog‚ and special purpose pins exposed. * Digital I/O Pins: 14 (of which 6 provide PWM output) - Analog Input Pins: 6 * 2 X LED: one for
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Codes to the GizDuino Boards: Creating of Codes Using the software of arduino 1.6.1‚ generating codes from java-like codes or c++ like codes GSM/GPRS Module Serial Code This code serves as the monitor of destruction of the security. In this board‚ a SIM card is use to communicate to your device. In case of breaking this system‚ a censoring device will
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Using the Android Platform to control Robots Stephan G¨ bel‚ Ruben Jubeh‚ Simon-Lennert Raesch and Albert Z¨ ndorf o u Software Engineering Research Group Kassel University Wilhelmsh¨ her Allee 73 o 34121 Kassel‚ Germany Email: [sgoe jubeh lrae zuendorf]@cs.uni-kassel.de Abstract—The Android Mobile Phone Platform by Google becomes more and more popular among software developers‚ because of its powerful capabilities and open architecture. As its based on the java programming language
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out there). My flight controller implementation is based on a MK20DX128 chip (found in Teensy 3.0 dev board)‚ there is also an "older" outdated implementation of simple flight controller for ATmega328 (found in many Arduino boards‚ for this implementation i was using Arduino Nano). Step 1.: Hardware and parts Let me start by listing the essential components that will you be needing for a working quad (of course you can pick your own hardware from a scratch) but i will list just a few basic
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