Saturday 4 January 2014

LATEST_INNOVATIVE_SVSEMBEDDED_FINAL YEAR_M.TECH_PROJECT_IEEE-2013



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INNOVATIVE & APPLICATION ORIENTED PROJECTS
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IEEE -- 2013 PROJECTS (ARMCoretex M3/MSP430/AUDRINO/ARM7-LPC2148/AVRATMEGA32/8051)
1.     A CHILD-LEFT-BEHIND WARNING SYSTEM BASED ON CAPACITIVE SENSING PRINCIPLE.
2.     A LOCALIZATION AND AN IDENTIFICATION SYSTEM OF PERSONNEL IN AREAS PERSONNEL IN AREAS AT RISK USING A WSN
3.     A METHOD OF REMOTE CONTROL FOR HOME APPLIANCEUSING FREE HAND GESTURE
4.     A RECONFIGURABLE SNAKE ROBOT BASED ON CAN-BUS
5.     A RELIABLE TRANSMISSION PROTOCOL FOR ZIGBEE-BASEDWIRELESS PATIENT MONITORING
6.     A SECURE APPLICATION INVOCATION MECHANISM IN MOBILE PHONES FOR NEAR FIELD COMMUNICATION.
7.     A SYSTEM FOR MOBILE ASSISTED LIVING
8.     A WI-FI BASED SMART WIRELESS SENSOR NETWORK FOR MONITORING AN AGRICULTURAL ENVIRONMENT
9.     A WIRELESS SURVEILLANCE AND SAFETY SYSTEM FOR MINE WORKERS BASED ON ZIGBEE
10.            A ZIGBEE BASED WEARABLE PHYSIOLOGICAL PARAMETERS MONITORING SYSTEM
11.            A ZIGBEE SMS ALERT SYSTEM WITH TRUST MECHANISM IN WIRELESS SENSOR NETWORKS
12.            ACCESSIBLE DISPLAY DESIGN TO CONTROL HOME AREA NETWORKS.
13.            AN ANALYSIS, DESIGN AND PRECAUTIONARY MEASURE FOR MOBILE PHONE ACCIDENTS WHILE DRIVING AND COSTEFFECTIVE FATALITIES.
14.            AN APPARATUS IN MONITORING THE ENERGY CHARGING SYSTEM
15.            AN EFFICIENT SMS-BASED FRAMEWORK FOR PUBLIC HEALTH SURVEILLANCE
16.            AN EMBEDDED REAL-TIME FINGER-VEIN RECOGNITION SYSTEM FOR MOBILE DEVICES.
17.            AN INTELLIGENT SELF-ADJUSTING SENSOR FOR SMART HOME SERVICES BASED ON ZIGBEE COMMUNICATIONS.
18.            AN ONLINE EXAMINATION SYSTEM USING WIRELESS SECURITY APPLICATION.
19.            AN RC HELICOPTER AUTONOMOUS CONTROL SYSTEM WITHSINGLE WEB CAMERA
20.            AN RFID-BASED POSITION AND ORIENTATION MEASUREMENT SYSTEM FOR MOBILE OBJECTS IN INTELLIGENT ENVIRONMENTS
21.            ARM 7 BASED ACCIDENT ALERT AND VEHICLE TRACKING SYSTEM.
22.            ARM7 HARDWARE PLATFORM FOR VEHICULAR MONITORING AND TRACKING.
23.            ASSEMBLY OF SUPER COMPACT WIRELESS SENSOR NODES FOR ENVIRONMENTAL MONITORING APPLICATIONS
24.            AUTOMATED CONTROL SYSTEM FOR AIR POLLUTION DETECTION IN VEHICLES.
25.            AUTOMATIC BROKEN TRACK DETECTION USING LED-LDR ASSEMBLY.
26.            BLUETOOTH REMOTE HOME AUTOMATION SYSTEM USING ANDROID APPLICATION.
27.            BUILDING A SMART HOME SYSTEM WITH WSN AND SERVICE ROBOT.
28.            BUS MONITORING SYSTEM BASED ON ZIGBEE AND GPRS
29.            CAPACITIVE SEAT SENSORS FOR MULTIPLE OCCUPANCY
30.            CENTRALIZED HEART RATE MONITORING TELEMETRY SYSTEM USING ZIGBEE WIRELESS SENSOR NETWORK
31.            CHILD ACTIVITY RECOGNITION BASED ON COOPERATIVE FUSION MODEL OF A TRIAXIAL ACCELEROMETER.
32.            COAL MINE DETECTION USING EMBEDDED SYSTEM.
33.            DESIGN AND IMPLEMENTATION OF A FALL MONITOR SYSTEM BY USING A 3-AXIS ACCELEROMETER IN A SMART PHONE
34.            DESIGN AND IMPLEMENTATION OF HIGH SECURITY MOBILE PAYMENT SYSTEM.
35.            DESIGN AND IMPLEMENTATION OF LOCATION BASED MOBILE HEALTH SYSTEM.
36.            DESIGN AND REALIZATION OF A FRAMEWORK FOR HUMAN-SYSTEM INTERACTION IN SMART HOMES
37.            DESIGN ISSUES IN ZIGBEE-BASED SENSOR NETWORK FOR HEALTHCARE APPLICATIONS
38.            DESIGN OF DISTRIBUTED GREENHOUSE BIG AWNING MONITORING SYSTEM BASED ON FIELD-BUS
39.            DESIGN OF ELECTRONIC BLOOD PRESSURE MONITORING SYSTEM BASED ON MOBILE TELEMEDICINE SYSTEM
40.            DESIGN OF ELECTRONIC VOTING SYSTEMS FOR REDUCING ELECTION PROCESS
41.            DESIGN OF EMERGENCY REMOTE SECURITY MONITORING AND CONTROL SYSTEM BASED ON ARM
42.            DESIGN OF INTEGRATED MINE SAFETY MONITOR SYSTEM BASED ON ZIGBEE
43.            DESIGN OF INTELLIGENT AMBULANCE AND TRAFFIC CONTROL
44.            DESIGN OF INTELLIGENT HOME APPLIANCE CONTROL SYSTEM BASED ON ARM AND ZIGBEE
45.            DESIGN OF INTELLIGENT TRAFFIC SIGNAL CONTROLLER
46.            DESIGN OF REMOTE AUTOMATIC METER READING SYSTEM BASED ON ZIGBEE AND GPRS
47.            DESIGN OF REMOTE INTELLIGENT HOME SYSTEM BASED ON ZIGBEE AND GPRS TECHNOLOGY
48.            DESIGN OF REMOTE INTELLIGENT SMART HOME SYSTEM BASED ON ZIGBEE AND GSM TECHNOLOGY
49.            DESIGN OF THE AUTOMATIC ACQUISITION SYSTEM BASED ON GPS
50.            DESIGN OF VEHICLE BUS DATA ACQUISITION AND FAULT DIAGNOSIS SYSTEM USING CAN
51.            DETECTING AND WARNING SYSTEM FOR FIREWORKS WAREHOUSE BASED ON WIRELESS SENSOR NETWORKS
52.            EFFICIENT IMPLEMENTATION OF ADVANCED ENCRYPTION STANDARD (AES) FOR ARM BASED PLATFORMS
53.            ENVIRONMENT MONITORING AND DEVICE CONTROL USING ARM BASED EMBEDDED CONTROLLED SENSOR NETWORK.
54.            ENVIRONMENT SENSING USING SMARTPHONE
55.            ETHERNET ENABLED DIGITAL I/O CONTROL IN EMBEDDED SYSTEMS
56.            EVALUATION OF BLUETOOTH HANDS-FREE PROFILE FOR SENSORS APPLICATIONS IN SMARTPHONE PLATFORMS
57.            EXPLOITING BLUETOOTH ON ANDROID MOBILE DEVICES FOR HOME SECURITY APPLICATION
58.            FALL DETECTION BY BUILT-IN TRI-ACCELEROMETER OF SMARTPHONE
59.            FALL DETECTION SYSTEM FOR ELDERLY WITH GSM COMMUNICATION AND GPS LOCALIZATION.
60.            GASMON: A SENSOR NETWORK SYSTEM FOR RESIDENTIAL BUILDING GAS LEAK MONITORING
61.            GSM BASED AUTOMATIC ENERGY METER READING SYSTEM WITH INSTANT BILLING.
62.            GSM MOBILE PHONE BASED LED SCROLLING MESSAGE DISPLAY SYSTEM.
63.            HAND GESTURE RECOGNITION USING MEMS FOR SPECIALLY CHALLENGED PEOPLE
64.            HOME APPLIANCES MANAGEMENT SYSTEM USING CONTROLLER AREA NETWORK
65.            HOME AUTOMATION USING CLOUD NETWORK AND MOBILE DEVICES.
66.            INTEGRATED MULTIFUNCTIONAL ENVIRONMENTAL SENSORS
67.            INTELLECTUAL CLIMATE SYSTEM FOR MONITORING INDUSTRIAL ENVIRONMENT
68.            LOBOT-LOW-COST, SELF-CONTAINED LOCALIZATION OF SMALL-SIZED GROUND ROBOTIC
69.            LOCKING AND UNLOCKING OF THEFT VEHICLES USING CAN.
70.            MULTI LEVEL ANTI THEFT SECURITY SYSTEM USING GSM TECHNOLOGY
71.            MULTIFUNCTION MONITORING SYSTEM FOR VEHICLES.
72.            PERFORMANCE EVALUATION OF HETEROGENEOUS WIRELESS SENSOR NETWORKS FOR FOREST FIRE DETECTION
73.            PREPAID ENERGY METER WITH GSM TECHNOLOGY.
74.            PRINTED HUMIDITY SENSOR WITH MEMORY
75.            RECOGNITION OF DIRECTION OF FALL BY SMARTPHONE.
76.            REMOTE CONTROL SYSTEM OF SMART APPLIANCES BASED ON WIRELESS SENSOR NETWORK
77.            REMOTE-CONTROL SYSTEM OF HIGH EFFICIENCY AND INTELLIGENT STREET LIGHTING USING A ZIGBEE NETWORK OF DEVICES AND SENSORS.
78.            RESERVATION BASED VEHICLE PARKING SYSTEM USING GSM AND RFID TECHNOLOGY
79.            ROBOT CONTROL DESIGN BASED ON SMARTPHONE.
80.            SAFE DRIVING USING MOBILE PHONES AND ZIGBEE.
81.            SENSOR NETWORK FOR MONITORING AND NATURAL-RISK MANAGEMENT IN THE QUINDIO-COLOMBIA AREA
82.            SENSORS TO ENHANCE THE SENSING RELIABILITY OF AN EMBEDDED SURVEILLANCE SYSTEM.
83.            SIMPLIFIED SECURE RESERVATION FOR RAILWAY PUBLIC TRANSPORT.
84.            TELEMETRIC SYSTEM, MEASURING AMBIENTAL VARIABLES THROUGH ETHERNET
85.            THE DESIGN AND IMPLEMENTATION OF WIRELESS GATEWAY USING ZIGBEE WI-FI.
86.            THE NEW APPROACH TO RFID ASSISTED NAVIGATION SYSTEMS FOR VANETS
87.            TOUCH SCREEN AND ZIGBEE BASED WIRELESS COMMUNICATION ASSISTANT.
88.            TOWARDS THE IMPLEMENTATION OF IOT FORENVIRONMENTAL CONDITION MONITORING IN HOMES
89.            VEHICLE HEALTH MONITORING SYSTEM USING CAN.
90.            VEHICLE THEFT ALERT SYSTEM USING GSM.
91.            VEHICLES. LOCATION RECOGNITION FOR CHECK IN APPLICATION BASED ON FP, ZIGBEE, AND GPS.
92.            WIFI FOR VEHICULAR COMMUNICATION SYSTEMS.
93.            WIRELESS BASED LOAD CONTROL AND POWER MONITORING SYSTEM
94.            WIRELESS REMOTE MONITOR AND CONTROL SYSTEM BASED ON ZIGBEE AND WEB.
95.            ZIGBEE BASED FARMING MANAGEMENT SYSTEM.
96.            ZIGBEE BASED VANETS FOR ACCIDENT RESCUE MISSIONS IN 2G GSM NETWORKS

Sunday 29 December 2013

TOUCH SCREEN BASED HOME - INDUSTRIAL DIGITAL DEVICES CONTROL SYSTEM USING MSP430G2553 LANCHPAD


TOUCH SCREEN BASED HOME / INDUSTRIAL DIGITAL DEVICES CONTROL SYSTEM USING MSP430G2553 LANCHPAD

touch screen based HOME / INDUSTRIAL digital devices control system using   msp430g2553 lanchpad
AIM:

The main aim of the system is to monitor and control devices automatically using touch screen.

PURPOSE: 

The purpose of the system is to control the appliances which are connected to the controller by touch panel.
DESCRIPTION:

In this system devices are controlled through the touch panel which is interfaced with controller. Using this method we can control any device. Here we are controlling i.e., ON/OFF the devices through the touch panel. Whenever we touch the touch panel it will sense and fetches this information to the microcontroller. Microcontroller will process this information and accordingly ON/OFF the devices. Order of switching the devices will be programmed predefined in the IC.

TECHNOLOGY:
TOUCH PANEL:
A touch panel is a display that can detect the presence and location of a touch within the display area. The term generally refers to touch or contact to the display of the device by a finger or hand. Touchpanels can also sense other passive objects, such as a stylus. However, if the object sensed is active, as with a light pen, the term touchpanel is generally not applicable. The ability to interact directly with a display typically indicates the presence of a touchpanel.
The touch panel has two main attributes. First, it enables one to interact with what is displayed directly on the screen, where it is displayed, rather than indirectly with a mouse or touchpad. Secondly, it lets one do so without requiring any intermediate device, again, such as a stylus that needs to be held in the hand. Such displays can be attached to computers or, as terminals, to networks. They also play a prominent role in the design of digital appliances such as the personal digital assistant (PDA), satellite navigation devices, mobile phones, and video games.

There are a number of types of touchscreen technology.

Resistive:
A resistive touch screen panel is composed of several layers, the most important of which are two thin, metallic, electrically conductive layers separated by a narrow gap. When an object, such as a finger, presses down on a point on the panel's outer surface the two metallic layers become connected at that point: the panel then behaves as a pair of voltage dividers with connected outputs. This causes a change in the electrical current which is registered as a touch event and sent to the controller for processing.
HARDWARE USED:
  • Microcontroller MSP430 G 2553
  • Power supply
  • Touch panel
  • Device drivers
  • Devices
  • Leds



SOFTWARE USED:
  • CCS STUDIO
  • Express SCH
  • Embedded-C

RESULT:
              Thus using this project device automation is done through touch panel.

 


TOUCH SCREEN BASED HOME -INDUSTRIAL DIGITAL DEVICES CONTROL SYSTEM USING MSP430G2553 LANCHPAD

touch screen based HOME / INDUSTRIAL digital devices control system using   msp430g2553 lanchpad
AIM:

The main aim of the system is to monitor and control devices automatically using touch screen.

PURPOSE: 

The purpose of the system is to control the appliances which are connected to the controller by touch panel.


DESCRIPTION:

In this system devices are controlled through the touch panel which is interfaced with controller. Using this method we can control any device. Here we are controlling i.e., ON/OFF the devices through the touch panel. Whenever we touch the touch panel it will sense and fetches this information to the microcontroller. Microcontroller will process this information and accordingly ON/OFF the devices. Order of switching the devices will be programmed predefined in the IC.

TECHNOLOGY:
TOUCH PANEL:
A touch panel is a display that can detect the presence and location of a touch within the display area. The term generally refers to touch or contact to the display of the device by a finger or hand. Touchpanels can also sense other passive objects, such as a stylus. However, if the object sensed is active, as with a light pen, the term touchpanel is generally not applicable. The ability to interact directly with a display typically indicates the presence of a touchpanel.
The touch panel has two main attributes. First, it enables one to interact with what is displayed directly on the screen, where it is displayed, rather than indirectly with a mouse or touchpad. Secondly, it lets one do so without requiring any intermediate device, again, such as a stylus that needs to be held in the hand. Such displays can be attached to computers or, as terminals, to networks. They also play a prominent role in the design of digital appliances such as the personal digital assistant (PDA), satellite navigation devices, mobile phones, and video games.

There are a number of types of touchscreen technology.

Resistive:
A resistive touch screen panel is composed of several layers, the most important of which are two thin, metallic, electrically conductive layers separated by a narrow gap. When an object, such as a finger, presses down on a point on the panel's outer surface the two metallic layers become connected at that point: the panel then behaves as a pair of voltage dividers with connected outputs. This causes a change in the electrical current which is registered as a touch event and sent to the controller for processing.
HARDWARE USED:
  • Microcontroller MSP430 G 2553
  • Power supply
  • Touch panel
  • Device drivers
  • Devices
  • Leds



SOFTWARE USED:
  • CCS STUDIO
  • Express SCH
  • Embedded-C

RESULT:
              Thus using this project device automation is done through touch panel.



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