M.L.V. Textile & Engineering. College , Bhilwara
SAMINAR
on
Solar Powered Led Street Light with Auto Intensity Control
Submitted to:- Seminar Incharge:- Submitted by:-
MR. RITESH SARASWAT ANNAPURNA CHOUBEY KANHAIYA LAL DIDWANIA
(H.O.D of ECE Department) (13EMBEC031)
DEPARTMENT OF ELECTRONICS & COMMUNICATION ENGINEERING
M.L.V.T.E.COLLEGE,BHILWARA (RAJ).
Solar Powered Led Street Light with Auto
Intensity Control
 Introduction
 Hardware specification
 Software specification
 Circuit diagram
 Working
 Advantage
 Disadvantage
 Application
 Feature
 Conclusion
 Future scope
CANTENTS
Solar energy is nothing but the radiant energy emitted by
sun. We may convert this solar energy into electricity
either directly using photo voltaic (PV), or indirectly
using concentrated solar power (CSP) with the help of
lenses or mirrors and tracking systems to focus a large
area of sunlight.
This solar energy is mainly useful in solar street lights,
auto solar irrigation system, traffic junction signal
lighting etc.
Introduction
Photovoltaic panels are used for charging batteries by
converting the sunlight into electricity. A charge
controller circuit is used to control the charging.
Intensity of street lights is required to be kept high
during the peak hours. The street lights switch ON at
the dusk and then switch OFF at the dawn
automatically. The process repeats every day.
 Controller
 Solar panel
Voltage regulator
MOSFET
 White led
Rechargeable battery
Pole
Hardware specification
Block Diagram
working
This system is mainly designed for LED based street lights with auto
intensity control. This is done using solar power from photovoltaic
cells. Due to the many benefits of using solar energy, many institutions
are opting to make use of solar energy. For converting the sunlight to
electricity, photovoltaic panels are used for charging the batteries. In
order to control charging, charge controller is used.
Intensity of street lights is required to be kept high during the peak
hours. As the traffic on the roads tends to decrease slowly in late nights,
the intensity can be reduced progressively till morning to save energy.
Thus, the street lights switch ON at the dusk and then switch OFF at
the dawn automatically. The process repeats every day.
High Intensity Discharge lamps (HID) used for urban street light are
based on principle of gas discharge, thus the intensity is not
controllable by any voltage reduction method as the discharge path is
broken. LED lights are the future of lighting, because of their low
energy consumption and long life they are fast replacing conventional
lights world over. White Light Emitting Diode (LED) can replace the
HID lamps where intensity control is possible by pulse width
modulation. The intensity control helps in saving energy during late
nights while traffic density on the streets is low.
 Controller is also very important for solar street
light.
 A controller will usually decide to switch on /off
charging and lighting.
 Some modern controllers are programmable so that
user can decide the appropriate chance of charging,
lighting and dimming.
Controller
CPU
General-
Purpose
Micro-
processor
RAM ROM I/O
Port
Timer
Serial
COM
Port
Data Bus
Address Bus
General-Purpose Microprocessor System
Microprocessors:
 CPU for Computers
 No RAM, ROM, I/O on CPU chip itself
 Example:Intel’s x86, Motorola’s 680x0
Many chips on mother’s board
General-purpose microprocessor
RAM ROM
I/O
Port
Timer
Serial
COM
Port
Microcontroller
CPU
 A smaller computer
 On-chip RAM, ROM, I/O ports...
 Example:Motorola’s 6811, Intel’s 8051, Zilog’s Z8 and PIC 16X
A single chip
Microcontroller :
Microprocessor
 CPU is stand-alone, RAM,
ROM, I/O, timer are separate
 designer can decide on the
amount of ROM, RAM and I/O
ports.
 expansive
 versatility
 general-purpose
Microcontroller
• CPU, RAM, ROM, I/O and
timer are all on a single chip
• fix amount of on-chip ROM,
RAM, I/O ports
• for applications in which cost,
power and space are critical
• single-purpose
Microprocessor vs. Microcontroller
8051 Serial Microcontroller
 8051 is a single chip microcontroller which is used for
taking input from any device or giving
output to any device.
 It is 8 bit microcontroller
Four port
Total content 40 pins
32 input /output pin
Pin Description of the 8051
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
40
39
38
37
36
35
34
33
32
31
30
29
28
27
26
25
24
23
22
21
P1.0
P1.1
P1.2
P1.3
P1.4
P1.5
P1.6
P1.7
RST
(RXD)P3.0
(TXD)P3.1
(T0)P3.4
(T1)P3.5
XTAL2
XTAL1
GND
(INT0)P3.2
(INT1)P3.3
(RD)P3.7
(WR)P3.6
Vcc
P0.0(AD0)
P0.1(AD1)
P0.2(AD2)
P0.3(AD3)
P0.4(AD4)
P0.5(AD5)
P0.6(AD6)
P0.7(AD7)
EA/VPP
ALE/PROG
PSEN
P2.7(A15)
P2.6(A14)
P2.5(A13)
P2.4(A12)
P2.3(A11)
P2.2(A10)
P2.1(A9)
P2.0(A8)
8051

 Embedded system means the processor is embedded into that application.
 An embedded product uses a microprocessor or microcontroller to do
one task only.
 In an embedded system, there is only one application software that is
typically burned into ROM.
 Example:printer, keyboard, video game player
Embedded system
Solar panel is one of the most important parts of solar
street lights, as solar panel will convert solar energy into
electricity.
Solar Panel
There Are 2 Types Of Solar Panel:
• Mono-crystalline
• Poly-crystalline.
Conversion rate of mono-crystalline solar panel is
much higher than poly-crystalline.
Voltage regulator
 A voltage regulator is designed to automatically maintain
a constant voltage level. A voltage regulator may be a
simple "feed-forward" design or may include negative
feedback control loops. It may use an electromechanical
mechanism, or electronic components.
MOSFET
 The metal–oxide–semiconductor field-effect
transistor (MOSFET, MOS-FET, or MOS FET) is a type
of field-effect transistor (FET). It has an insulated gate,
whose voltage determines the conductivity of the device.
MOSFET showing gate (G), body (B), source (S) and drain
(D) terminals. The gate is separated from the body by an
insulating layer (white)
LED stands light emitting diode. It is convert by electrical
energy into light.
It is a semiconductor device.
White LED
Battery will store the electricity from solar panel during the
day and provide energy to the fixture during night.
The life cycle of the battery is very important to the lifetime
of the light and the capacity of the battery will affect the
backup days of the lights.
Rechargeable Battery
Strong poles are necessary to all street lights, especially
to solar street lights as there are components mounted on
the top of the pole: fixtures, panels and sometime
batteries. And wind resistance should also be taken into
consideration when choosing the pole.
Pole
Keil µVision IDE
MC Programming Language: Embedded C
Software specification
Keli µvision IDE
The µVision IDE combines project management, run-
time environment, build facilities, source code editing,
and program debugging in a single powerful
environment. µVision is easy-to-use and accelerates
your embedded software development. µVision
supports multiple screens and allows you to create
individual window layouts anywhere on the visual
surface.
Keil uvision software
MC Programming Language
Circuit Diagram
Advantages
• Solar street lights are independent of the utility grid.
Hence, the operation costs are minimized.
• Solar street lights require much less maintenance
compared to conventional street lights.
• Since external wires are eliminated, risk of accidents is
minimized.
• This is a non-polluting source of electricity.
• Separate parts of solar system can be easily carried to
the remote areas.
Initial investment is higher compared to
conventional street lights
Snow or dust, combined with moisture can
accumulate on horizontal pv-panels and reduce or
even stop energy production.
Rechargeable batteries will need to be replaced
several times over the lifetime of the fixtures
adding to the total lifetime cost of the light.
The batteries have to be replaced from time to
time.
Disadvantages
Application
 This system is designed for outdoor application in un-electrified remote
rural areas. This system is an ideal application for campus and village street
lighting.
 Solar Street Lighting System is an ideal lighting system for Roads, Yards,
Residential Colonies, Townships, Corporate Offices, Hospitals,
Educational Institutions and Rural Electrification.
 Street Lighting
 Pathway Lighting
 Private Road Lighting
 Sidewalk Lighting
 Farm & Ranch Lighting
 Perimeter Security Lighting
 Campus Lighting
 Gate Lighting
 Park Lighting
 Wildlife Area
 Remote Area Lighting
 Jogging and Bike Path Lighting
Most solar panels turn on and turn off automatically by
sensing outdoor light using a light source. Solar
streetlights are designed to work throughout the night.
Many can stay lit for more than one night if the sun is not
available for a couple of days.
Older models included lamps that were not fluorescent or
led. Solar lights installed in windy regions are generally
equipped with flat panels to better cope with the winds.
Latest designs use wireless technology and fuzzy control
theory for battery management. The street lights using this
technology can operate as a network with each light
having the capability of performing on or off the network.
Features
The solar energy is one of the important and major renewable
sources of energy and has also proven it useful in functioning
of applications like street lights.
The charge control is necessary in order to achieve safety and
increase the capacity of the battery. In cities, currently
thousands of street lights are operated and the yearly electricity
maintenance cost is very high.
The initial cost and maintenance can be the draw backs of this
project. With the advances in technology and good resource
planning the cost of the project can be cut down and also with
the use of good equipment the maintenance can also be reduced
in terms of periodic checks.
Conclusion
The Solar Powered LED Streetlight With Auto Intensity
Control can control the electric charge and intensity of lights.
This project can be enhanced by using dusk to drawn switch
with an advanced technology to overcome the flows of
existing timer based products and photo sensor based
products.
Future Scope
References
 http://www.ijireeice.com/upload/2015/june-
15/IJIREEICE%206.pdf
 http://www.kslubiwmp.com/docs/Watershed%20
works/SolarStreetLight.pdf
 http://www.timeanddate.com/astronomy/india/a
hmadabad
 https://www.sparkfun.com/datasheets/Componen
ts/DS1307.pdf
 http://www.ti.com/lit/ds/symlink/lm317.pdf
Solar powered led street light with auto intensity control

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Solar powered led street light with auto intensity control

  • 1. M.L.V. Textile & Engineering. College , Bhilwara SAMINAR on Solar Powered Led Street Light with Auto Intensity Control Submitted to:- Seminar Incharge:- Submitted by:- MR. RITESH SARASWAT ANNAPURNA CHOUBEY KANHAIYA LAL DIDWANIA (H.O.D of ECE Department) (13EMBEC031) DEPARTMENT OF ELECTRONICS & COMMUNICATION ENGINEERING M.L.V.T.E.COLLEGE,BHILWARA (RAJ).
  • 2. Solar Powered Led Street Light with Auto Intensity Control
  • 3.  Introduction  Hardware specification  Software specification  Circuit diagram  Working  Advantage  Disadvantage  Application  Feature  Conclusion  Future scope CANTENTS
  • 4. Solar energy is nothing but the radiant energy emitted by sun. We may convert this solar energy into electricity either directly using photo voltaic (PV), or indirectly using concentrated solar power (CSP) with the help of lenses or mirrors and tracking systems to focus a large area of sunlight. This solar energy is mainly useful in solar street lights, auto solar irrigation system, traffic junction signal lighting etc. Introduction
  • 5. Photovoltaic panels are used for charging batteries by converting the sunlight into electricity. A charge controller circuit is used to control the charging. Intensity of street lights is required to be kept high during the peak hours. The street lights switch ON at the dusk and then switch OFF at the dawn automatically. The process repeats every day.
  • 6.  Controller  Solar panel Voltage regulator MOSFET  White led Rechargeable battery Pole Hardware specification
  • 8. working This system is mainly designed for LED based street lights with auto intensity control. This is done using solar power from photovoltaic cells. Due to the many benefits of using solar energy, many institutions are opting to make use of solar energy. For converting the sunlight to electricity, photovoltaic panels are used for charging the batteries. In order to control charging, charge controller is used. Intensity of street lights is required to be kept high during the peak hours. As the traffic on the roads tends to decrease slowly in late nights, the intensity can be reduced progressively till morning to save energy. Thus, the street lights switch ON at the dusk and then switch OFF at the dawn automatically. The process repeats every day. High Intensity Discharge lamps (HID) used for urban street light are based on principle of gas discharge, thus the intensity is not controllable by any voltage reduction method as the discharge path is broken. LED lights are the future of lighting, because of their low energy consumption and long life they are fast replacing conventional lights world over. White Light Emitting Diode (LED) can replace the HID lamps where intensity control is possible by pulse width modulation. The intensity control helps in saving energy during late nights while traffic density on the streets is low.
  • 9.  Controller is also very important for solar street light.  A controller will usually decide to switch on /off charging and lighting.  Some modern controllers are programmable so that user can decide the appropriate chance of charging, lighting and dimming. Controller
  • 10. CPU General- Purpose Micro- processor RAM ROM I/O Port Timer Serial COM Port Data Bus Address Bus General-Purpose Microprocessor System Microprocessors:  CPU for Computers  No RAM, ROM, I/O on CPU chip itself  Example:Intel’s x86, Motorola’s 680x0 Many chips on mother’s board General-purpose microprocessor
  • 11. RAM ROM I/O Port Timer Serial COM Port Microcontroller CPU  A smaller computer  On-chip RAM, ROM, I/O ports...  Example:Motorola’s 6811, Intel’s 8051, Zilog’s Z8 and PIC 16X A single chip Microcontroller :
  • 12. Microprocessor  CPU is stand-alone, RAM, ROM, I/O, timer are separate  designer can decide on the amount of ROM, RAM and I/O ports.  expansive  versatility  general-purpose Microcontroller • CPU, RAM, ROM, I/O and timer are all on a single chip • fix amount of on-chip ROM, RAM, I/O ports • for applications in which cost, power and space are critical • single-purpose Microprocessor vs. Microcontroller
  • 13. 8051 Serial Microcontroller  8051 is a single chip microcontroller which is used for taking input from any device or giving output to any device.  It is 8 bit microcontroller Four port Total content 40 pins 32 input /output pin
  • 14. Pin Description of the 8051 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26 25 24 23 22 21 P1.0 P1.1 P1.2 P1.3 P1.4 P1.5 P1.6 P1.7 RST (RXD)P3.0 (TXD)P3.1 (T0)P3.4 (T1)P3.5 XTAL2 XTAL1 GND (INT0)P3.2 (INT1)P3.3 (RD)P3.7 (WR)P3.6 Vcc P0.0(AD0) P0.1(AD1) P0.2(AD2) P0.3(AD3) P0.4(AD4) P0.5(AD5) P0.6(AD6) P0.7(AD7) EA/VPP ALE/PROG PSEN P2.7(A15) P2.6(A14) P2.5(A13) P2.4(A12) P2.3(A11) P2.2(A10) P2.1(A9) P2.0(A8) 8051 
  • 15.  Embedded system means the processor is embedded into that application.  An embedded product uses a microprocessor or microcontroller to do one task only.  In an embedded system, there is only one application software that is typically burned into ROM.  Example:printer, keyboard, video game player Embedded system
  • 16. Solar panel is one of the most important parts of solar street lights, as solar panel will convert solar energy into electricity. Solar Panel
  • 17. There Are 2 Types Of Solar Panel: • Mono-crystalline • Poly-crystalline. Conversion rate of mono-crystalline solar panel is much higher than poly-crystalline.
  • 18. Voltage regulator  A voltage regulator is designed to automatically maintain a constant voltage level. A voltage regulator may be a simple "feed-forward" design or may include negative feedback control loops. It may use an electromechanical mechanism, or electronic components.
  • 19. MOSFET  The metal–oxide–semiconductor field-effect transistor (MOSFET, MOS-FET, or MOS FET) is a type of field-effect transistor (FET). It has an insulated gate, whose voltage determines the conductivity of the device. MOSFET showing gate (G), body (B), source (S) and drain (D) terminals. The gate is separated from the body by an insulating layer (white)
  • 20. LED stands light emitting diode. It is convert by electrical energy into light. It is a semiconductor device. White LED
  • 21. Battery will store the electricity from solar panel during the day and provide energy to the fixture during night. The life cycle of the battery is very important to the lifetime of the light and the capacity of the battery will affect the backup days of the lights. Rechargeable Battery
  • 22. Strong poles are necessary to all street lights, especially to solar street lights as there are components mounted on the top of the pole: fixtures, panels and sometime batteries. And wind resistance should also be taken into consideration when choosing the pole. Pole
  • 23. Keil µVision IDE MC Programming Language: Embedded C Software specification
  • 24. Keli µvision IDE The µVision IDE combines project management, run- time environment, build facilities, source code editing, and program debugging in a single powerful environment. µVision is easy-to-use and accelerates your embedded software development. µVision supports multiple screens and allows you to create individual window layouts anywhere on the visual surface.
  • 28. Advantages • Solar street lights are independent of the utility grid. Hence, the operation costs are minimized. • Solar street lights require much less maintenance compared to conventional street lights. • Since external wires are eliminated, risk of accidents is minimized. • This is a non-polluting source of electricity. • Separate parts of solar system can be easily carried to the remote areas.
  • 29. Initial investment is higher compared to conventional street lights Snow or dust, combined with moisture can accumulate on horizontal pv-panels and reduce or even stop energy production. Rechargeable batteries will need to be replaced several times over the lifetime of the fixtures adding to the total lifetime cost of the light. The batteries have to be replaced from time to time. Disadvantages
  • 30. Application  This system is designed for outdoor application in un-electrified remote rural areas. This system is an ideal application for campus and village street lighting.  Solar Street Lighting System is an ideal lighting system for Roads, Yards, Residential Colonies, Townships, Corporate Offices, Hospitals, Educational Institutions and Rural Electrification.  Street Lighting  Pathway Lighting  Private Road Lighting  Sidewalk Lighting  Farm & Ranch Lighting  Perimeter Security Lighting  Campus Lighting  Gate Lighting  Park Lighting  Wildlife Area  Remote Area Lighting  Jogging and Bike Path Lighting
  • 31. Most solar panels turn on and turn off automatically by sensing outdoor light using a light source. Solar streetlights are designed to work throughout the night. Many can stay lit for more than one night if the sun is not available for a couple of days. Older models included lamps that were not fluorescent or led. Solar lights installed in windy regions are generally equipped with flat panels to better cope with the winds. Latest designs use wireless technology and fuzzy control theory for battery management. The street lights using this technology can operate as a network with each light having the capability of performing on or off the network. Features
  • 32. The solar energy is one of the important and major renewable sources of energy and has also proven it useful in functioning of applications like street lights. The charge control is necessary in order to achieve safety and increase the capacity of the battery. In cities, currently thousands of street lights are operated and the yearly electricity maintenance cost is very high. The initial cost and maintenance can be the draw backs of this project. With the advances in technology and good resource planning the cost of the project can be cut down and also with the use of good equipment the maintenance can also be reduced in terms of periodic checks. Conclusion
  • 33. The Solar Powered LED Streetlight With Auto Intensity Control can control the electric charge and intensity of lights. This project can be enhanced by using dusk to drawn switch with an advanced technology to overcome the flows of existing timer based products and photo sensor based products. Future Scope
  • 34. References  http://www.ijireeice.com/upload/2015/june- 15/IJIREEICE%206.pdf  http://www.kslubiwmp.com/docs/Watershed%20 works/SolarStreetLight.pdf  http://www.timeanddate.com/astronomy/india/a hmadabad  https://www.sparkfun.com/datasheets/Componen ts/DS1307.pdf  http://www.ti.com/lit/ds/symlink/lm317.pdf