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 Electricity generation is the process of creating electricity from otherforms
of energy.
 At present situation there is always power fluctuations and failure
frequently and to overcome the hurdles we have to find out the alternate
solution to solve the power crisis.
 The main aim of this project is to produce additional power energy and so
we have found out a new concept of foot path in power production system.
 In this Project here we produce electrical energy just by Vibrating platform
and the working principal of this system based on faraday’s law.
 Walking is the most common activity in day to day life. When a person
walks, he loses energy to the road surface in the form of impact, vibration,
sound etc, due to the transfer of his weight on to the road surface,
through foot falls on the ground during every step.
PROCESS FOR FOOT PATH
PRODUCTION SYSTEM
 At first the foot path platform is
disturbed to generate power.
Power generated is minimum
and it is boost up by a step up
transformer.
 Later it is rectified from ac to dc
to make the power to utilize
 The glow of LED shows the
generation of power from the
platform
 Now if we disturb the plat form
.it shows the value of power
generated
Proposed System
 In our Project here we produce electrical energy just by
Vibrating platform and the working principal of this
system based on faraday’s law.
 To overcome the power Demand.
 Implementation is simple.
Low cost
Simple design procedure
Eco friendly
Does not depend on whether condition
BLOCK DIAGRAM:
 Merits of LEDs over other
types of Lamps:
 Here we use the LED as indicator lamp.
The LED glowing only at the time of
pressing the Platform.
 Low working voltage and current.
 Less power consumption and very fast
action.
 No warm-up time like monochromatic
lamp.
 Small size and less weight. Externally
long life.
3. Digital meter
4. Booster Unit
 In this project we use the digital meter to measure the out put
voltage that coming from platform while pressing.
 This unit consists of step up transformer to step up the voltage
level. By pressing the platform
Here we use the battery to store the energy that coming out from
platform. And then it will be discharged by changing mode of switch.
A transformer is a device that transfers electrical
energy from one circuit to another through inductively
coupled conductors—the transformer's coils.
A varying current in the first or primary winding
creates a varying magnetic flux in the transformer's
core, and thus a varying magnetic field through the
secondary winding.
This varying magnetic field induces a varying
electromotive force (EMF) or "voltage" in the
secondary winding.
This effect is called mutual induction.
6. Rectifier circuits
 Rectification is the conversion of alternating current
(AC) to direct current (DC). This involves a device that
only allows one-way flow of electrons.
 Here we use Rectification circuit for converting AC to
DC then we store the electrical energy in battery.
Advantages
 Cost of implementation is very cheap,
 Implementation is simple.
 Simple design procedure
 Prevention of shortage of power
 Over come all the disadvantages of other power
generation methods
Applications
 Can be applied in free space before the house to get
power without spending money
 Can be placed at the street side to utilize power for the
street lights etc. to save lot of power wastage.
FUTURE ENHANCEMENT
 In future, the system can be modified and we can
implement this system where ever the vibration is
accure and by arranging the strong platform we can
implement in walking area.
CONCLUSION
 “Thus the proposed system is well suited for today’s
situation
 To overcome all the disadvantages of other system.”
Foot path

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Foot path

  • 1.
  • 2.  Electricity generation is the process of creating electricity from otherforms of energy.  At present situation there is always power fluctuations and failure frequently and to overcome the hurdles we have to find out the alternate solution to solve the power crisis.  The main aim of this project is to produce additional power energy and so we have found out a new concept of foot path in power production system.  In this Project here we produce electrical energy just by Vibrating platform and the working principal of this system based on faraday’s law.  Walking is the most common activity in day to day life. When a person walks, he loses energy to the road surface in the form of impact, vibration, sound etc, due to the transfer of his weight on to the road surface, through foot falls on the ground during every step.
  • 3. PROCESS FOR FOOT PATH PRODUCTION SYSTEM  At first the foot path platform is disturbed to generate power. Power generated is minimum and it is boost up by a step up transformer.  Later it is rectified from ac to dc to make the power to utilize  The glow of LED shows the generation of power from the platform  Now if we disturb the plat form .it shows the value of power generated
  • 4. Proposed System  In our Project here we produce electrical energy just by Vibrating platform and the working principal of this system based on faraday’s law.  To overcome the power Demand.  Implementation is simple. Low cost Simple design procedure Eco friendly Does not depend on whether condition
  • 6.
  • 7.  Merits of LEDs over other types of Lamps:  Here we use the LED as indicator lamp. The LED glowing only at the time of pressing the Platform.  Low working voltage and current.  Less power consumption and very fast action.  No warm-up time like monochromatic lamp.  Small size and less weight. Externally long life.
  • 8. 3. Digital meter 4. Booster Unit  In this project we use the digital meter to measure the out put voltage that coming from platform while pressing.  This unit consists of step up transformer to step up the voltage level. By pressing the platform Here we use the battery to store the energy that coming out from platform. And then it will be discharged by changing mode of switch.
  • 9. A transformer is a device that transfers electrical energy from one circuit to another through inductively coupled conductors—the transformer's coils. A varying current in the first or primary winding creates a varying magnetic flux in the transformer's core, and thus a varying magnetic field through the secondary winding. This varying magnetic field induces a varying electromotive force (EMF) or "voltage" in the secondary winding. This effect is called mutual induction.
  • 10. 6. Rectifier circuits  Rectification is the conversion of alternating current (AC) to direct current (DC). This involves a device that only allows one-way flow of electrons.  Here we use Rectification circuit for converting AC to DC then we store the electrical energy in battery.
  • 11. Advantages  Cost of implementation is very cheap,  Implementation is simple.  Simple design procedure  Prevention of shortage of power  Over come all the disadvantages of other power generation methods
  • 12. Applications  Can be applied in free space before the house to get power without spending money  Can be placed at the street side to utilize power for the street lights etc. to save lot of power wastage.
  • 13. FUTURE ENHANCEMENT  In future, the system can be modified and we can implement this system where ever the vibration is accure and by arranging the strong platform we can implement in walking area.
  • 14. CONCLUSION  “Thus the proposed system is well suited for today’s situation  To overcome all the disadvantages of other system.”