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OBJECTIVE
 To avoid severe problem for manual parking system
 To park vehicles automatically
INTRODUCTION
 All vehicles enter into the parking and waste
time for searching for parking slot.
 Use of automated system for car parking
monitoring will reduce the human efforts
 Display unit is installed on entrance of
parking lot which will show LEDs for all
Parking slot and for all parking lanes. Empty
slot is indicated by the respective glowing
LED.
BLOCK DIAGRAM
Features of ATmega32
 32K bytes of In-System Programmable Flash Program
memory with Read-While-Write capabilities
 1024 bytes EEPROM
 2K byte SRAM
 32 general purpose I/O lines
 32 general purpose working registers
 On-chip Debugging support and programming
 3 flexible Timer/Counters with compare modes
 Internal and External Interrupts
 a serial programmable USART
 an 8-channel, 10-bit ADC
 an SPI serial port
IR SENSOR
 Infrared waves are
invisible to human
eyes.
 A Physical quantity
that converts
electrical signal using
a device is called
sensor
 The output of the
sensor is either
voltage or current
LCD
 LCD Modules can present textual information to user.
 The most popular one can display 2 lines of 16
characters
LCD Module Pin Configuration
 1 VSS (GND Supply)
 2 VCC (+5V)
 3 VEE (Contrast Adjust)
 4 RS
 5 R/W
 6 E
 7 DB0
 8 DB1
 9 DB2
 10 DB3
 11 DB4
 12 DB5
 13 DB6
 14 DB7
 15 LED +
 16 LED -

LCD Connection TO
MICROCONTROLLER
The LCD module can be
easily connected to MCU
WORKING
 Infra Red transmitters and Receivers
for each parking slot.
 The IR Receivers are connected to
AVR microcontroller.
 Thus AVR will come to know that
which slot is empty and which slot is
full.
WORKING contd…
 For transmitter section we are going to use IR LEDs
driven by a 555 timer IC. Timer IC will generate a
frequency of 38 KHz, which will be given to IR LEDs.
 Display unit is installed on entrance of parking lot
which will show LEDs for all Parking slot and for all
parking lanes.
 Empty slot is indicated by the respective glowing LED.
Power supply
 It uses a simple 7805 voltage regulator and just 3 caps and a rectifier. A
"power on" LED has also been added:
ADVANTAGES
• Saves time for
searching
parking slot
• Saves manpower
APPLICATION
This project can be used for parking system in any
shopping mall.
Can be used for industries, commercial offices and
educational institutes.
Future Development:
1. This can be expanded in the sense of security. Using
metal detectors and CCTV cameras security of the
parking area can be enhanced.
CONCLUSION
 Use of automated system for car parking monitoring
will reduce the human efforts.

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Automatic car parking system using avr.pptx

  • 1.
  • 2. OBJECTIVE  To avoid severe problem for manual parking system  To park vehicles automatically
  • 3. INTRODUCTION  All vehicles enter into the parking and waste time for searching for parking slot.  Use of automated system for car parking monitoring will reduce the human efforts  Display unit is installed on entrance of parking lot which will show LEDs for all Parking slot and for all parking lanes. Empty slot is indicated by the respective glowing LED.
  • 5. Features of ATmega32  32K bytes of In-System Programmable Flash Program memory with Read-While-Write capabilities  1024 bytes EEPROM  2K byte SRAM  32 general purpose I/O lines  32 general purpose working registers  On-chip Debugging support and programming  3 flexible Timer/Counters with compare modes  Internal and External Interrupts  a serial programmable USART  an 8-channel, 10-bit ADC  an SPI serial port
  • 6. IR SENSOR  Infrared waves are invisible to human eyes.  A Physical quantity that converts electrical signal using a device is called sensor  The output of the sensor is either voltage or current
  • 7. LCD  LCD Modules can present textual information to user.  The most popular one can display 2 lines of 16 characters
  • 8. LCD Module Pin Configuration  1 VSS (GND Supply)  2 VCC (+5V)  3 VEE (Contrast Adjust)  4 RS  5 R/W  6 E  7 DB0  8 DB1  9 DB2  10 DB3  11 DB4  12 DB5  13 DB6  14 DB7  15 LED +  16 LED - 
  • 9. LCD Connection TO MICROCONTROLLER The LCD module can be easily connected to MCU
  • 10. WORKING  Infra Red transmitters and Receivers for each parking slot.  The IR Receivers are connected to AVR microcontroller.  Thus AVR will come to know that which slot is empty and which slot is full.
  • 11. WORKING contd…  For transmitter section we are going to use IR LEDs driven by a 555 timer IC. Timer IC will generate a frequency of 38 KHz, which will be given to IR LEDs.  Display unit is installed on entrance of parking lot which will show LEDs for all Parking slot and for all parking lanes.  Empty slot is indicated by the respective glowing LED.
  • 12. Power supply  It uses a simple 7805 voltage regulator and just 3 caps and a rectifier. A "power on" LED has also been added:
  • 13. ADVANTAGES • Saves time for searching parking slot • Saves manpower
  • 14. APPLICATION This project can be used for parking system in any shopping mall. Can be used for industries, commercial offices and educational institutes. Future Development: 1. This can be expanded in the sense of security. Using metal detectors and CCTV cameras security of the parking area can be enhanced.
  • 15. CONCLUSION  Use of automated system for car parking monitoring will reduce the human efforts.