Hybrid Bicycle
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Transcript of Hybrid Bicycle
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PROJECT REPORTON
HYBRID BICYCLESUBMITTED BY :-
NIKITA PAL 18 AKASH
48
ANUJ SHRIVASTAVA 55 NAVEE
95
GUIDE:- PROF. ANISH GOEL
DEPARTMENT OF ELECTRONICS & COMMUNICATION ENGINEERING
SHRI RAMDEOBABA COLLEGE OF ENGINEERING AND MANAGEMENT
NAGPUR-440013.
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CONTENTS
1. ABSTRACT
2. BLOCK DIAGRAM
3. WORKING
4. ADVANTAGES
5. APPLICATIONS
6. REFERENCES
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ABSTRACT
Our goal for this project is to design and implement hybrid bicywill be beneficial to the planet. Looking at the growing statistics
pollution and fuel consumption we decided to work on this. The hybrid bicycle offers a cleaner alternative to travel short-to-
distances rather than driving a gasoline-powered car.
The DC power generated by dynamo can be stored via batteriesto drive a motor. Whenever there is a uphill, the motor can be tand thus the bicycle will act as electric vehicle.
Hybrid Bicycle is not a new idea, with many created by hobbyisresidential use with small scale energy in mind. We are looking upon these designs and build a modified hybrid bicycle that wilhuman power into electrical power. The objective is to build a dis safer and more power efficient.
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DESIGN OF PROJECT
THEHYBRIDBICYCLECONSISTSOF: 1) DRIVERCIRCUIT2) D
MOTOR3) REGULATIONCIRCUIT4)CHARGINGCIRCUIT5)CONTROLCIRCUIT6)DYNAMO7) ACCELEROMETER
When we pedal the bicycle, the rotational motion of the
tyre will be used to convert mechanical energy produced
directly into a DC voltage through a dynamo and regulatcircuit. Initially voltage produced from dynamo is passed
through a full wave bridge rectifier to get pure DC voltag
This DC voltage can then be stored in a lead acid batter
later it can be discharged to drive the motor.
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BLOCK DIAGRAM
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WORKING
The working of the hybrid bicycle can be explained as follo
1) Dynamo :- Dynamo will act as the dc power generator.The dynamo
coils of wire and magnetic fields to convert mechanical rotation into electric current through Faraday's law of induction. A dynamo machi
stationary structure, called the stator, which provides a constant mag
a set of rotating windings called the armature which turn within that f
of the wire within the magnetic field causes the field to push on the e
metal, creating an electric current in the wire. The output(7 V, 700 m
the dynamo is connected to the charging circuit.
2) Regulation circuit :- The regulation circuit takes the varying input frregulates it to give a constant output of (7 V, 700 mA). The circuit co
317(regulator ic), 10 micro farad capacitor, potentiometer (10 K-Ohm
resistor(383 ohm). The output of this circuit is given to the charging c
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3) Charging circuit :- The output of regulation circuit is given to the lead
Diodes are connected to avoid the backflow of current. The rating of the
, 4.5 ampere. The output of battery is given to the DC motor.
4) Control circuit :- This circuit consists of ARM based microcontroller .
triggering of the motor for hilly region. Whenever a hill is encountered, thwill give signal to the microcontroller which in turn will activate the motor
will drive the bicycle until a flat surface is sensed by the accelerometer.
5)DC Motor :- The DC motor will rotate via the batterys output power an
bicycle will act as electric vehicle.
6)Driver circuit :- Normal DC motors require current greater than 250 m
Microcontroller ICs cannot supply this amount of current. Hence, we us
abridge between them. Driver circuit will incorporate L293D IC.
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WHY HYBRID BICYCLE?The power crisis will not be getting better in the future. The U.S. Ener
Administration stated in their International Energy Outlook Report for
world energy consumption will increase by 49 percent, or 1.4 percent
495 quadrillion Btu in 2007 to 739 quadrillion Btu by 2035, as shown any growth in the worlds energy supply and infrastructure is to occur
is likely the majority of this energy will go to these developed countrie
developing or third world country. This will only exasperate the needs
of these developing and third world countries. Oil is by far the most u
product in the worlds energy supply .
According to the International Energy Agency, oil products make up o
worlds energy supply.
The amount of CO2 produced due to burning of fuel is the major sou
in pollution.
This hybrid bicycle is an alternative to use more sustainable and ene
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INTERNATIONAL ENERGY OUTLOOK REPORT2014
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IMPROVEMENTS MADE IN THE PROJE
Mobile charging USB cable.
High efficient brakes will be used.
GPS will be used to locate the position of theperson.
Front and rear headlights.
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COMPONENTS REQUIRED
1.Bicycle
2.ARM based microcontroller.
3.Dynamo
4.LM317 Regulator IC, Resistor(383 Ohm),
Potentiometer(10KiloOhm), Capacitor(10MicroFarad)
PCB.
5.Lead Acid Battery.
6.Mobile charging by USB cable.
7. IC L293D
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SCHEDULE PLAN
1.Testing of Dynamo.
2.Implementation of Regulation circuit to produce a consta
of 6V & 700mA to charge the battery.
3.Rotate the D.C Motor via batterys output power.
4.To design a code that will control the triggering of Motor v
accelerometer.
5.GPS module to predict the present location.
6.Incorporate USB cable for charging mobiles.
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ADVANTAGES
The electrical power generated through dynamo is eco-friendly w
any fuels or release of toxic fumes that may cause global warmin
This would give less fortunate people many of the comforts and
self-sustainable.
Low Production Cost
High Safety
High Energy Efficiency
Low Upkeep
High Product Durability
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REFRENCES
California Polytechnic State Universitys Senior Proj
electric bicycle system.
Basic electronics textbook(XII standard)