Monday, October 21, 2013

Controlling AC lamp Dimmer through Mobile Phone (IEEE-2010).

Controlling of AC Lamp Dimmer through Mobile phone
 The project aims in designing a system which is capable of controlling the AC
lamp dimming operation through Mobile phone using DTMF technology. As the world
gets more and more technologically advanced, we find new technology coming in deeper
and deeper into our personal lives even at home. Home automation is becoming more and
more popular around the world and is becoming a common practice.
The process of home automation works by making everything in the house
automatically controlled using technology to control and do the jobs that we would
normally do manually. It is much easier to install home automation in a house while it is
still being built, since you have the ability to put things inside the walls to save space.
Though, people who have houses already built can still have home automation done in a
less intrusive ways.
The controlling device of the whole system is a Microcontroller. DTMF decoder
and Triac to which AC lamp is connected are interfaced to the Microcontroller. The user
need to call the mobile phone present in the system which will be in auto answer mode.
When the call got lifted, the user need to press the predefined intensity keys assigned to
control the lamp dimming operation of AC lamp. This system also has an LCD display
which shows the intensity level of the lamp. The Microcontroller used in the project is
programmed using Embedded C language.
A Triac and optically isolated diac based circuit controls the intensity of the high
voltage 230volts lamp. This system also employs a zero crossing detector for smooth
operation of lamp intensity. This project consists of a Microcontroller that takes input
from mobile phone and processes the request. Then it processes the data and takes
necessary action and updates the status on LCD. The optical isolation system safeguards
the microcontroller-based system from high voltages.
www.mycollegeproject.com Ph: +91 9490219339, 040-23731030
 Ameerpet : A-8, 2nd
 floor, Eureka court, beside Image hospital, Ameerpet, HYDERABAD 73.
 Santoshnagar: Opp: Magna Hypermarket, Santoshnagar X-Roads, HYDERABAD – 59.User can simply set the desired intensity with a mobile phone from anywhere in the
world. This system also provides security authentication to access this system. User has
to enter the password to get access this system.
Features:
1. Aims at energy conservation.
2. Provides user friendly graphical interface.
3. Provides fast access using mobile phone.
4. Device enable with zero crossing detector.
The project provides learning’s on the following advancements:
1. Characteristics of DTMF technology.
2. Conversion of AC supply to DC supply.
3. Interfacing DTMF decoder to Microcontroller.
4. Lamp dimmer circuitry.
5. Embedded C programming.
6. PCB designing.
The major building blocks of this project are:
1. Regulated Power Supply.
2. Microcontroller.
3. TRIAC.
4. LCD display with driver.
5. DIAC with optical isolation.
6. AC lamp.
7. DTMF decoder.
8. Crystal oscillators.
9. LED Indicators.
www.mycollegeproject.com Ph: +91 9490219339, 040-23731030
 Ameerpet : A-8, 2nd
 floor, Eureka court, beside Image hospital, Ameerpet, HYDERABAD 73.
 Santoshnagar: Opp: Magna Hypermarket, Santoshnagar X-Roads, HYDERABAD – 59.Software’s used:
1. PIC-C compiler for Embedded C programming.
2. PIC kit 2 programmer for dumping code into Micro controller.
3. Express SCH for Circuit design.
4. Proteus for hardware simulation.
Regulated Power Supply:
Block diagram:
www.mycollegeproject.com Ph: +91 9490219339, 040-23731030
 Ameerpet : A-8, 2nd
 floor, Eureka court, beside Image hospital, Ameerpet, HYDERABAD 73.
 Santoshnagar: Opp: Magna Hypermarket, Santoshnagar X-Roads, HYDERABAD – 59.

EEE Mobile Technology Final Year Project

GSM Based Automatic Energy Meter Reading
The purpose of this project is to remote monitoring and control of the Domestic
Energy meter. This system enables the Electricity Department to read the meter readings
regularly without the person visiting each house. This can be achieved by the use of
Microcontroller unit that continuously monitors and records the Energy Meter readings in
its permanent (non-volatile) memory location. This system also makes use of a GSM
modem for remote monitoring and control of Energy Meter.
The Microcontroller based system continuously records the readings and the live
meter reading can be sent to the Electricity department on request. This system also can
be used to disconnect the power supply to the house in case of non-payment of electricity
bills. A dedicated GSM modem with SIM card is required for each energ



GSM Based Automatic Energy Meter Reading
The purpose of this project is to remote monitoring and control of the Domestic
Energy meter. This system enables the Electricity Department to read the meter readings
regularly without the person visiting each house. This can be achieved by the use of
Microcontroller unit that continuously monitors and records the Energy Meter readings in
its permanent (non-volatile) memory location. This system also makes use of a GSM
modem for remote monitoring and control of Energy Meter.
The Microcontroller based system continuously records the readings and the live
meter reading can be sent to the Electricity department on request. This system also can
be used to disconnect the power supply to the house in case of non-payment of electricity
bills. A dedicated GSM modem with SIM card is required for each energy meter.
The major building blocks of this project are:

1. Microcontroller based control system with regulated power supply.
2. GSM Modem for remote communication
3. Electromagnetic Relay and Relay Driver for Power Supply Control.
4. Digital Energy Meter.
5. LCD Display to display the meter readings.
Features:
1. Provides user friendly remote energy meter monitoring.
2. Supports controlling of meter.
3. Can be controlled any where in the world.
4. Non-volatile memory based energy-reading storing.
5. Auto disconnect feature.Applications:
1. Electricity departments.
2. Household Energy meter monitoring.
3. Railway electrical systems.
4. Industrial Energy remote monitoring.
5. Remote controlling systems.
Block Diagram: