SlideShare uma empresa Scribd logo
1 de 18
VISVESVARAYA TECHNOLOGICAL UNIVERSITY
JNANA SANGAMA, BELGAUM-590018, KARNATAKA
Project Presentation
On
REGENERATIVE BRAKING SYSTEM
Bachelor of Engineering
in
Mechanical Engineering
by
SAMARTH M V 1DB18ME052
RITHWIK RANJAN SHETTY 1DB18ME048
VISHNU RAJ B Y 1DB18ME071
LEO RUBAN 1DB19ME010
Under the Guidance of
Prof K M Kiran Kumar
DEPARTMENT OF MECHANICAL ENGINEERING
DON BOSCO INSTITUTE OF TECHNOLOGY
KUMBALAGODU, MYSORE ROAD, BANGALORE- 560074
2022-2023
Presentation on
Regenerative
Braking system
Samarth M V - 1DB18ME052
Rithwik Ranjan Shetty - 1DB18ME048
Leo Ruban - 1DB19ME010
Vishnu Raj B Y - 1DB18ME071
Guide:
K.M KIRAN KUMAR
Our Team
Table of
contents
Introduction
Objective
01
02
Literature review
methodology
04
05
06
07
08
Scope of project
Cost Estimation
Present Status
03 concept
conclusion
09
Introduction
• In recent years, there has been a lack of reliable alternative energy
sources. Increasing efficiency and reducing exhaust gas emissions
has become one of the key areas of focus in modern automotive
research.
• Regenerative energy technology is one of the key features of
electrified vehicles. It allows the vehicle to capture a tremendous
amount of the kinetic energy lost during braking or decelerating
for reuse.
• Energy recovery technology can significantly bring down the
energy consumption of electrified vehicles particularly in urban
operated routes.
• Regenerative braking recovers some of the kinetic energy that
would otherwise turn into heat and instead converts it into
electricity. In this system, the motor drives the wheels during
acceleration or cruising, but the wheels drive the motor while
decelerating.
Objective
• Demonstrate the use and general working principle of
regenerative braking system using a 4 wheel system.
• To control the speed of the vehicle as well as to stop it
quickly and efficiently without sticking.
• To show how regenerative braking behaves at
different speeds and show how it is more efficient at
high speed conditions.
• To demonstrate the various advantages of
regenerative braking like less wear on brake
components, increased fuel economy, efficiency,
environment friendly nature and its use outside the
automotive industry.
CONCEPT
• Regenerative braking technology funnels
the energy created by the braking process
back into the system in the form of
charging the battery for further use.
• In a regenerative braking system the
energy normally lost in the braking
process is transferred to the generator
from the rotating axel and then transferred
to the battery, thus saving energy
Literature Review
Authors Title Key Highlights
Sayed Nashit, Sufiyan Adhikari, Shaikh
Farhan, Srivastava Avinash and
Amruta Gambhire
Design, Fabrication and
Testing of Regenerative
Braking Test Rig for BLDC
Motor (2016)
• Regenerative braking is efficient at higher
speeds.
• Regenerative braking cant be used as the
only brakes.
Khushboo Rahim and Tanveer Regenerative Braking System:
Review Paper (2018)
• Regenerative Braking can work at high
temperature range.
• The more frequently a vehicle stops, the
more it can benefits from regenerative
braking.
Tushar L. Patil, Rohit S. Yadav,
Abhishek D. are, Mahesh Saggam,
Ankul Pratap
Performance
Improvement of Regenerative
braking system (2018)
• Reducing weight of automobile increases
regenerative braking efficiency.
• Super capacitors improve conversion rate of
energy in regenerative braking.
C. Jagadeesh Vikram, D. Mohan
Kumar, Dr. P. Naveen Chandra
Fabrication of Regenerative
Braking System (2018)
• Prescribed measures for fabrication.
• Future enhancements
A. Eswaran, S Ajith, V Karthikeyan, P
Kavin, S Loganandh
Design and Fabrication of
Regenerative Braking System
(2018)
• Explained benefits of regenerative braking over
conventional braking.
Methodology
Final Result
Make changes if necessary
Test and note down results
Fabrication and Assembly
Procurement of Components
Selection of Components
Design and Drawing
Literature Review
Selection of Topic
Block Diagram
• In ‘Fig a’ we can see drive condition. Here the
battery(energy sink) is powering the Motor which
drives the vehicle. Energy is moving in forward
direction.
• In ‘Fig b’ we can see regenerative braking system in
action. Here the kinetic energy produced under
braking is converted to electric energy and fed back
to the battery for future use. Here the motor is
working in reverse condition making it a generator.
Energy is moving in reverse direction.
Fig a
Fig b
Components
Name Function/Specification
Main Frame We are using L angle Mild steel bars for the main frame. Main frame
will support all the other components and act as chassis.
Shaft We are using 16mm Mild Steel bar as shaft which will act as the
driving axle.
Wheel We will be using 14 inch wheels.
Motor/Generator We will be using 12v DC motor which will be used to drive the
vehicle in forward direction and generate energy in reverse direction
Power Supply We will be using 12v, 4.5 AH battery to match the power
requirements of the motor. Battery will be used as the energy sink. It
will power the vehicle in forward direction and store energy in
reverse direction.
Components
Name Function/Specification
Braking Mechanism We will be using pedal brakes to perform the braking action
Rectifier We will be using a bridge wave rectifier to convert AC current
produced by the generator into DC current. It is a part of the control
electronics.
Diode We will be using a IN4007 3 amp diode. It is also a part of the
control electronics. Function diode is to make sure current flows in
one direction.
Successfully demonstrate the
working of regenerative
braking system using 4 wheel
system.
Explain the various uses of
regenerative braking in
automotive industry and
outside it.
Successfully demonstrate
how regenerative braking
improves efficiency and
saves energy.
Scope of Project
Make a more efficient system
that can save more wasted
kinetic energy.
Use ultracapacitors and
complex flywheels as energy
sink for much higher
efficiency
Make a regenerative braking
system that can function
independently without
friction braking.
Future Scope of
Project
Cost Estimation
Name Price in ₹
Main Frame, Shaft, Brakes and
Wheels
6000
Battery and Motor 3500-4000
Control Electronics and Wiring 1500
Labour(welding and cutting) and
Travelling
2000
Miscellaneous and Safety Budgeting 2000-2500
Total 15000-16000
● We are currently finalizing the design.
● We have acquired most of the necessary
parts which are design independent.
● We have found a few prospective places for
cutting and welding processes to make the
mainframe.
Present status
● The energy efficiency of a conventional brake is only about
● 20 percent with the remaining 80 percent of its energy being
converted to heat through friction.
● The important thing about regenerative braking is that it may
be able to capture as much as half of that wasted energy and
put it back to work.
● This reduces fuel consumption by 10 to 25 percent ,
● Hence regenerative braking system plays an important role in
fuel consumption and also in the fuel of speed.
conclusion
Thank You

Mais conteúdo relacionado

Semelhante a sam_report.pptx

IRJET- Design and Development of Kinetic Energy Recovery System (KERS) for Ut...
IRJET- Design and Development of Kinetic Energy Recovery System (KERS) for Ut...IRJET- Design and Development of Kinetic Energy Recovery System (KERS) for Ut...
IRJET- Design and Development of Kinetic Energy Recovery System (KERS) for Ut...IRJET Journal
 
A COMPARATIVE STUDY AND ANALYSIS OF THE PERFORMANCE OF VARIOUS REGENERATIVE B...
A COMPARATIVE STUDY AND ANALYSIS OF THE PERFORMANCE OF VARIOUS REGENERATIVE B...A COMPARATIVE STUDY AND ANALYSIS OF THE PERFORMANCE OF VARIOUS REGENERATIVE B...
A COMPARATIVE STUDY AND ANALYSIS OF THE PERFORMANCE OF VARIOUS REGENERATIVE B...IAEME Publication
 
IRJET- Conversion of IC Engine Vehicle to Electric Vehicle
IRJET- Conversion of IC Engine Vehicle to Electric VehicleIRJET- Conversion of IC Engine Vehicle to Electric Vehicle
IRJET- Conversion of IC Engine Vehicle to Electric VehicleIRJET Journal
 
IRJET- Conversion of IC Engine Vehicle to Electric Vehicle
IRJET- Conversion of IC Engine Vehicle to Electric VehicleIRJET- Conversion of IC Engine Vehicle to Electric Vehicle
IRJET- Conversion of IC Engine Vehicle to Electric VehicleIRJET Journal
 
power generating shock absorber
power generating shock absorberpower generating shock absorber
power generating shock absorbersanthosh kumar
 
IRJET- A Review: Design, Analysis & Optimization of E-Bike
IRJET- A Review: Design, Analysis & Optimization of E-BikeIRJET- A Review: Design, Analysis & Optimization of E-Bike
IRJET- A Review: Design, Analysis & Optimization of E-BikeIRJET Journal
 
Implementation on Regenerative Braking System Electric Vehicle
Implementation on Regenerative Braking System Electric VehicleImplementation on Regenerative Braking System Electric Vehicle
Implementation on Regenerative Braking System Electric VehicleIRJET Journal
 
A Review on Electric Vehicles and Their Components
A Review on Electric Vehicles and Their ComponentsA Review on Electric Vehicles and Their Components
A Review on Electric Vehicles and Their ComponentsIRJET Journal
 
IRJET- Smart Shock Absorber
IRJET- Smart Shock AbsorberIRJET- Smart Shock Absorber
IRJET- Smart Shock AbsorberIRJET Journal
 
IRJET- Study, Development & Modifications of Series Hybrid Electro-Petrol...
IRJET-  	  Study, Development & Modifications of Series Hybrid Electro-Petrol...IRJET-  	  Study, Development & Modifications of Series Hybrid Electro-Petrol...
IRJET- Study, Development & Modifications of Series Hybrid Electro-Petrol...IRJET Journal
 
Regenerative braking system
Regenerative braking systemRegenerative braking system
Regenerative braking systemMohit Singh
 
Free-Piston 4th Generation Engine Range Extender
Free-Piston 4th Generation Engine Range ExtenderFree-Piston 4th Generation Engine Range Extender
Free-Piston 4th Generation Engine Range ExtenderIRJET Journal
 
IRJET- Design Optimisation and Fabrication of Hybrid Two-Wheel Drive Motorcycle
IRJET- Design Optimisation and Fabrication of Hybrid Two-Wheel Drive MotorcycleIRJET- Design Optimisation and Fabrication of Hybrid Two-Wheel Drive Motorcycle
IRJET- Design Optimisation and Fabrication of Hybrid Two-Wheel Drive MotorcycleIRJET Journal
 
Power Production in Electricle Vehicle using Self Generation and Regeneration
Power Production in Electricle Vehicle using Self Generation and RegenerationPower Production in Electricle Vehicle using Self Generation and Regeneration
Power Production in Electricle Vehicle using Self Generation and RegenerationIRJET Journal
 
IRJET- Cost Effective Improvement in the Design of E- Mobility
IRJET- Cost Effective Improvement in the Design of E- MobilityIRJET- Cost Effective Improvement in the Design of E- Mobility
IRJET- Cost Effective Improvement in the Design of E- MobilityIRJET Journal
 
IRJET- Energy Generation from Flywheel using Magnet
IRJET- 	  Energy Generation from Flywheel using MagnetIRJET- 	  Energy Generation from Flywheel using Magnet
IRJET- Energy Generation from Flywheel using MagnetIRJET Journal
 
IRJET- Footstep Power Generation
IRJET-  	  Footstep Power GenerationIRJET-  	  Footstep Power Generation
IRJET- Footstep Power GenerationIRJET Journal
 
Design of Gear For Hg13 Gear Box used in Marine Engine
Design of Gear  For Hg13 Gear Box used in Marine EngineDesign of Gear  For Hg13 Gear Box used in Marine Engine
Design of Gear For Hg13 Gear Box used in Marine EngineIRJET Journal
 

Semelhante a sam_report.pptx (20)

IRJET- Design and Development of Kinetic Energy Recovery System (KERS) for Ut...
IRJET- Design and Development of Kinetic Energy Recovery System (KERS) for Ut...IRJET- Design and Development of Kinetic Energy Recovery System (KERS) for Ut...
IRJET- Design and Development of Kinetic Energy Recovery System (KERS) for Ut...
 
A COMPARATIVE STUDY AND ANALYSIS OF THE PERFORMANCE OF VARIOUS REGENERATIVE B...
A COMPARATIVE STUDY AND ANALYSIS OF THE PERFORMANCE OF VARIOUS REGENERATIVE B...A COMPARATIVE STUDY AND ANALYSIS OF THE PERFORMANCE OF VARIOUS REGENERATIVE B...
A COMPARATIVE STUDY AND ANALYSIS OF THE PERFORMANCE OF VARIOUS REGENERATIVE B...
 
IRJET- Conversion of IC Engine Vehicle to Electric Vehicle
IRJET- Conversion of IC Engine Vehicle to Electric VehicleIRJET- Conversion of IC Engine Vehicle to Electric Vehicle
IRJET- Conversion of IC Engine Vehicle to Electric Vehicle
 
IRJET- Conversion of IC Engine Vehicle to Electric Vehicle
IRJET- Conversion of IC Engine Vehicle to Electric VehicleIRJET- Conversion of IC Engine Vehicle to Electric Vehicle
IRJET- Conversion of IC Engine Vehicle to Electric Vehicle
 
power generating shock absorber
power generating shock absorberpower generating shock absorber
power generating shock absorber
 
IRJET- A Review: Design, Analysis & Optimization of E-Bike
IRJET- A Review: Design, Analysis & Optimization of E-BikeIRJET- A Review: Design, Analysis & Optimization of E-Bike
IRJET- A Review: Design, Analysis & Optimization of E-Bike
 
HyBrid Motor Cycle...
HyBrid Motor Cycle...HyBrid Motor Cycle...
HyBrid Motor Cycle...
 
Implementation on Regenerative Braking System Electric Vehicle
Implementation on Regenerative Braking System Electric VehicleImplementation on Regenerative Braking System Electric Vehicle
Implementation on Regenerative Braking System Electric Vehicle
 
A Review on Electric Vehicles and Their Components
A Review on Electric Vehicles and Their ComponentsA Review on Electric Vehicles and Their Components
A Review on Electric Vehicles and Their Components
 
IRJET- Smart Shock Absorber
IRJET- Smart Shock AbsorberIRJET- Smart Shock Absorber
IRJET- Smart Shock Absorber
 
IRJET- Study, Development & Modifications of Series Hybrid Electro-Petrol...
IRJET-  	  Study, Development & Modifications of Series Hybrid Electro-Petrol...IRJET-  	  Study, Development & Modifications of Series Hybrid Electro-Petrol...
IRJET- Study, Development & Modifications of Series Hybrid Electro-Petrol...
 
Regenerative braking
Regenerative brakingRegenerative braking
Regenerative braking
 
Regenerative braking system
Regenerative braking systemRegenerative braking system
Regenerative braking system
 
Free-Piston 4th Generation Engine Range Extender
Free-Piston 4th Generation Engine Range ExtenderFree-Piston 4th Generation Engine Range Extender
Free-Piston 4th Generation Engine Range Extender
 
IRJET- Design Optimisation and Fabrication of Hybrid Two-Wheel Drive Motorcycle
IRJET- Design Optimisation and Fabrication of Hybrid Two-Wheel Drive MotorcycleIRJET- Design Optimisation and Fabrication of Hybrid Two-Wheel Drive Motorcycle
IRJET- Design Optimisation and Fabrication of Hybrid Two-Wheel Drive Motorcycle
 
Power Production in Electricle Vehicle using Self Generation and Regeneration
Power Production in Electricle Vehicle using Self Generation and RegenerationPower Production in Electricle Vehicle using Self Generation and Regeneration
Power Production in Electricle Vehicle using Self Generation and Regeneration
 
IRJET- Cost Effective Improvement in the Design of E- Mobility
IRJET- Cost Effective Improvement in the Design of E- MobilityIRJET- Cost Effective Improvement in the Design of E- Mobility
IRJET- Cost Effective Improvement in the Design of E- Mobility
 
IRJET- Energy Generation from Flywheel using Magnet
IRJET- 	  Energy Generation from Flywheel using MagnetIRJET- 	  Energy Generation from Flywheel using Magnet
IRJET- Energy Generation from Flywheel using Magnet
 
IRJET- Footstep Power Generation
IRJET-  	  Footstep Power GenerationIRJET-  	  Footstep Power Generation
IRJET- Footstep Power Generation
 
Design of Gear For Hg13 Gear Box used in Marine Engine
Design of Gear  For Hg13 Gear Box used in Marine EngineDesign of Gear  For Hg13 Gear Box used in Marine Engine
Design of Gear For Hg13 Gear Box used in Marine Engine
 

Mais de RithwikRanjan

A1771937735_21789_14_2018__16_ Nested Classes.ppt
A1771937735_21789_14_2018__16_ Nested Classes.pptA1771937735_21789_14_2018__16_ Nested Classes.ppt
A1771937735_21789_14_2018__16_ Nested Classes.pptRithwikRanjan
 
INTERNSHIP PRESENTATION.pptx
INTERNSHIP PRESENTATION.pptxINTERNSHIP PRESENTATION.pptx
INTERNSHIP PRESENTATION.pptxRithwikRanjan
 
4_A1208223655_21789_2_2018_04. Operators.ppt
4_A1208223655_21789_2_2018_04. Operators.ppt4_A1208223655_21789_2_2018_04. Operators.ppt
4_A1208223655_21789_2_2018_04. Operators.pptRithwikRanjan
 
sam_technical_seminar.pptx
sam_technical_seminar.pptxsam_technical_seminar.pptx
sam_technical_seminar.pptxRithwikRanjan
 
A2003822018_21789_17_2018_09. ArrayList.ppt
A2003822018_21789_17_2018_09. ArrayList.pptA2003822018_21789_17_2018_09. ArrayList.ppt
A2003822018_21789_17_2018_09. ArrayList.pptRithwikRanjan
 
0_A1590026209_21789_20_2018_0 Lecture.ppt
0_A1590026209_21789_20_2018_0 Lecture.ppt0_A1590026209_21789_20_2018_0 Lecture.ppt
0_A1590026209_21789_20_2018_0 Lecture.pptRithwikRanjan
 
A457405934_21789_26_2018_Inheritance.ppt
A457405934_21789_26_2018_Inheritance.pptA457405934_21789_26_2018_Inheritance.ppt
A457405934_21789_26_2018_Inheritance.pptRithwikRanjan
 
6_A1944859510_21789_2_2018_06. Branching Statements.ppt
6_A1944859510_21789_2_2018_06. Branching Statements.ppt6_A1944859510_21789_2_2018_06. Branching Statements.ppt
6_A1944859510_21789_2_2018_06. Branching Statements.pptRithwikRanjan
 
A1869984431_21789_28_2018_Abstract Class.ppt
A1869984431_21789_28_2018_Abstract Class.pptA1869984431_21789_28_2018_Abstract Class.ppt
A1869984431_21789_28_2018_Abstract Class.pptRithwikRanjan
 

Mais de RithwikRanjan (13)

A1771937735_21789_14_2018__16_ Nested Classes.ppt
A1771937735_21789_14_2018__16_ Nested Classes.pptA1771937735_21789_14_2018__16_ Nested Classes.ppt
A1771937735_21789_14_2018__16_ Nested Classes.ppt
 
INTERNSHIP PRESENTATION.pptx
INTERNSHIP PRESENTATION.pptxINTERNSHIP PRESENTATION.pptx
INTERNSHIP PRESENTATION.pptx
 
internship.pptx
internship.pptxinternship.pptx
internship.pptx
 
AM.pptx
AM.pptxAM.pptx
AM.pptx
 
4_A1208223655_21789_2_2018_04. Operators.ppt
4_A1208223655_21789_2_2018_04. Operators.ppt4_A1208223655_21789_2_2018_04. Operators.ppt
4_A1208223655_21789_2_2018_04. Operators.ppt
 
sam_technical_seminar.pptx
sam_technical_seminar.pptxsam_technical_seminar.pptx
sam_technical_seminar.pptx
 
TQM-Module 5.pptx
TQM-Module 5.pptxTQM-Module 5.pptx
TQM-Module 5.pptx
 
CIM MODULE 2.pptx
CIM MODULE 2.pptxCIM MODULE 2.pptx
CIM MODULE 2.pptx
 
A2003822018_21789_17_2018_09. ArrayList.ppt
A2003822018_21789_17_2018_09. ArrayList.pptA2003822018_21789_17_2018_09. ArrayList.ppt
A2003822018_21789_17_2018_09. ArrayList.ppt
 
0_A1590026209_21789_20_2018_0 Lecture.ppt
0_A1590026209_21789_20_2018_0 Lecture.ppt0_A1590026209_21789_20_2018_0 Lecture.ppt
0_A1590026209_21789_20_2018_0 Lecture.ppt
 
A457405934_21789_26_2018_Inheritance.ppt
A457405934_21789_26_2018_Inheritance.pptA457405934_21789_26_2018_Inheritance.ppt
A457405934_21789_26_2018_Inheritance.ppt
 
6_A1944859510_21789_2_2018_06. Branching Statements.ppt
6_A1944859510_21789_2_2018_06. Branching Statements.ppt6_A1944859510_21789_2_2018_06. Branching Statements.ppt
6_A1944859510_21789_2_2018_06. Branching Statements.ppt
 
A1869984431_21789_28_2018_Abstract Class.ppt
A1869984431_21789_28_2018_Abstract Class.pptA1869984431_21789_28_2018_Abstract Class.ppt
A1869984431_21789_28_2018_Abstract Class.ppt
 

Último

Vip Model Call Girls (Delhi) Karol Bagh 9711199171✔️Body to body massage wit...
Vip Model  Call Girls (Delhi) Karol Bagh 9711199171✔️Body to body massage wit...Vip Model  Call Girls (Delhi) Karol Bagh 9711199171✔️Body to body massage wit...
Vip Model Call Girls (Delhi) Karol Bagh 9711199171✔️Body to body massage wit...shivangimorya083
 
Carero dropshipping via API with DroFx.pptx
Carero dropshipping via API with DroFx.pptxCarero dropshipping via API with DroFx.pptx
Carero dropshipping via API with DroFx.pptxolyaivanovalion
 
Delhi Call Girls CP 9711199171 ☎✔👌✔ Whatsapp Hard And Sexy Vip Call
Delhi Call Girls CP 9711199171 ☎✔👌✔ Whatsapp Hard And Sexy Vip CallDelhi Call Girls CP 9711199171 ☎✔👌✔ Whatsapp Hard And Sexy Vip Call
Delhi Call Girls CP 9711199171 ☎✔👌✔ Whatsapp Hard And Sexy Vip Callshivangimorya083
 
Best VIP Call Girls Noida Sector 39 Call Me: 8448380779
Best VIP Call Girls Noida Sector 39 Call Me: 8448380779Best VIP Call Girls Noida Sector 39 Call Me: 8448380779
Best VIP Call Girls Noida Sector 39 Call Me: 8448380779Delhi Call girls
 
{Pooja: 9892124323 } Call Girl in Mumbai | Jas Kaur Rate 4500 Free Hotel Del...
{Pooja:  9892124323 } Call Girl in Mumbai | Jas Kaur Rate 4500 Free Hotel Del...{Pooja:  9892124323 } Call Girl in Mumbai | Jas Kaur Rate 4500 Free Hotel Del...
{Pooja: 9892124323 } Call Girl in Mumbai | Jas Kaur Rate 4500 Free Hotel Del...Pooja Nehwal
 
Call Girls 🫤 Dwarka ➡️ 9711199171 ➡️ Delhi 🫦 Two shot with one girl
Call Girls 🫤 Dwarka ➡️ 9711199171 ➡️ Delhi 🫦 Two shot with one girlCall Girls 🫤 Dwarka ➡️ 9711199171 ➡️ Delhi 🫦 Two shot with one girl
Call Girls 🫤 Dwarka ➡️ 9711199171 ➡️ Delhi 🫦 Two shot with one girlkumarajju5765
 
Market Analysis in the 5 Largest Economic Countries in Southeast Asia.pdf
Market Analysis in the 5 Largest Economic Countries in Southeast Asia.pdfMarket Analysis in the 5 Largest Economic Countries in Southeast Asia.pdf
Market Analysis in the 5 Largest Economic Countries in Southeast Asia.pdfRachmat Ramadhan H
 
Accredited-Transport-Cooperatives-Jan-2021-Web.pdf
Accredited-Transport-Cooperatives-Jan-2021-Web.pdfAccredited-Transport-Cooperatives-Jan-2021-Web.pdf
Accredited-Transport-Cooperatives-Jan-2021-Web.pdfadriantubila
 
Capstone Project on IBM Data Analytics Program
Capstone Project on IBM Data Analytics ProgramCapstone Project on IBM Data Analytics Program
Capstone Project on IBM Data Analytics ProgramMoniSankarHazra
 
Best VIP Call Girls Noida Sector 22 Call Me: 8448380779
Best VIP Call Girls Noida Sector 22 Call Me: 8448380779Best VIP Call Girls Noida Sector 22 Call Me: 8448380779
Best VIP Call Girls Noida Sector 22 Call Me: 8448380779Delhi Call girls
 
(PARI) Call Girls Wanowrie ( 7001035870 ) HI-Fi Pune Escorts Service
(PARI) Call Girls Wanowrie ( 7001035870 ) HI-Fi Pune Escorts Service(PARI) Call Girls Wanowrie ( 7001035870 ) HI-Fi Pune Escorts Service
(PARI) Call Girls Wanowrie ( 7001035870 ) HI-Fi Pune Escorts Serviceranjana rawat
 
Midocean dropshipping via API with DroFx
Midocean dropshipping via API with DroFxMidocean dropshipping via API with DroFx
Midocean dropshipping via API with DroFxolyaivanovalion
 
BPAC WITH UFSBI GENERAL PRESENTATION 18_05_2017-1.pptx
BPAC WITH UFSBI GENERAL PRESENTATION 18_05_2017-1.pptxBPAC WITH UFSBI GENERAL PRESENTATION 18_05_2017-1.pptx
BPAC WITH UFSBI GENERAL PRESENTATION 18_05_2017-1.pptxMohammedJunaid861692
 
Al Barsha Escorts $#$ O565212860 $#$ Escort Service In Al Barsha
Al Barsha Escorts $#$ O565212860 $#$ Escort Service In Al BarshaAl Barsha Escorts $#$ O565212860 $#$ Escort Service In Al Barsha
Al Barsha Escorts $#$ O565212860 $#$ Escort Service In Al BarshaAroojKhan71
 
Zuja dropshipping via API with DroFx.pptx
Zuja dropshipping via API with DroFx.pptxZuja dropshipping via API with DroFx.pptx
Zuja dropshipping via API with DroFx.pptxolyaivanovalion
 
Smarteg dropshipping via API with DroFx.pptx
Smarteg dropshipping via API with DroFx.pptxSmarteg dropshipping via API with DroFx.pptx
Smarteg dropshipping via API with DroFx.pptxolyaivanovalion
 
April 2024 - Crypto Market Report's Analysis
April 2024 - Crypto Market Report's AnalysisApril 2024 - Crypto Market Report's Analysis
April 2024 - Crypto Market Report's Analysismanisha194592
 

Último (20)

Vip Model Call Girls (Delhi) Karol Bagh 9711199171✔️Body to body massage wit...
Vip Model  Call Girls (Delhi) Karol Bagh 9711199171✔️Body to body massage wit...Vip Model  Call Girls (Delhi) Karol Bagh 9711199171✔️Body to body massage wit...
Vip Model Call Girls (Delhi) Karol Bagh 9711199171✔️Body to body massage wit...
 
Carero dropshipping via API with DroFx.pptx
Carero dropshipping via API with DroFx.pptxCarero dropshipping via API with DroFx.pptx
Carero dropshipping via API with DroFx.pptx
 
Delhi Call Girls CP 9711199171 ☎✔👌✔ Whatsapp Hard And Sexy Vip Call
Delhi Call Girls CP 9711199171 ☎✔👌✔ Whatsapp Hard And Sexy Vip CallDelhi Call Girls CP 9711199171 ☎✔👌✔ Whatsapp Hard And Sexy Vip Call
Delhi Call Girls CP 9711199171 ☎✔👌✔ Whatsapp Hard And Sexy Vip Call
 
Best VIP Call Girls Noida Sector 39 Call Me: 8448380779
Best VIP Call Girls Noida Sector 39 Call Me: 8448380779Best VIP Call Girls Noida Sector 39 Call Me: 8448380779
Best VIP Call Girls Noida Sector 39 Call Me: 8448380779
 
{Pooja: 9892124323 } Call Girl in Mumbai | Jas Kaur Rate 4500 Free Hotel Del...
{Pooja:  9892124323 } Call Girl in Mumbai | Jas Kaur Rate 4500 Free Hotel Del...{Pooja:  9892124323 } Call Girl in Mumbai | Jas Kaur Rate 4500 Free Hotel Del...
{Pooja: 9892124323 } Call Girl in Mumbai | Jas Kaur Rate 4500 Free Hotel Del...
 
Call Girls 🫤 Dwarka ➡️ 9711199171 ➡️ Delhi 🫦 Two shot with one girl
Call Girls 🫤 Dwarka ➡️ 9711199171 ➡️ Delhi 🫦 Two shot with one girlCall Girls 🫤 Dwarka ➡️ 9711199171 ➡️ Delhi 🫦 Two shot with one girl
Call Girls 🫤 Dwarka ➡️ 9711199171 ➡️ Delhi 🫦 Two shot with one girl
 
CHEAP Call Girls in Saket (-DELHI )🔝 9953056974🔝(=)/CALL GIRLS SERVICE
CHEAP Call Girls in Saket (-DELHI )🔝 9953056974🔝(=)/CALL GIRLS SERVICECHEAP Call Girls in Saket (-DELHI )🔝 9953056974🔝(=)/CALL GIRLS SERVICE
CHEAP Call Girls in Saket (-DELHI )🔝 9953056974🔝(=)/CALL GIRLS SERVICE
 
Market Analysis in the 5 Largest Economic Countries in Southeast Asia.pdf
Market Analysis in the 5 Largest Economic Countries in Southeast Asia.pdfMarket Analysis in the 5 Largest Economic Countries in Southeast Asia.pdf
Market Analysis in the 5 Largest Economic Countries in Southeast Asia.pdf
 
Accredited-Transport-Cooperatives-Jan-2021-Web.pdf
Accredited-Transport-Cooperatives-Jan-2021-Web.pdfAccredited-Transport-Cooperatives-Jan-2021-Web.pdf
Accredited-Transport-Cooperatives-Jan-2021-Web.pdf
 
Capstone Project on IBM Data Analytics Program
Capstone Project on IBM Data Analytics ProgramCapstone Project on IBM Data Analytics Program
Capstone Project on IBM Data Analytics Program
 
Best VIP Call Girls Noida Sector 22 Call Me: 8448380779
Best VIP Call Girls Noida Sector 22 Call Me: 8448380779Best VIP Call Girls Noida Sector 22 Call Me: 8448380779
Best VIP Call Girls Noida Sector 22 Call Me: 8448380779
 
Sampling (random) method and Non random.ppt
Sampling (random) method and Non random.pptSampling (random) method and Non random.ppt
Sampling (random) method and Non random.ppt
 
(PARI) Call Girls Wanowrie ( 7001035870 ) HI-Fi Pune Escorts Service
(PARI) Call Girls Wanowrie ( 7001035870 ) HI-Fi Pune Escorts Service(PARI) Call Girls Wanowrie ( 7001035870 ) HI-Fi Pune Escorts Service
(PARI) Call Girls Wanowrie ( 7001035870 ) HI-Fi Pune Escorts Service
 
Midocean dropshipping via API with DroFx
Midocean dropshipping via API with DroFxMidocean dropshipping via API with DroFx
Midocean dropshipping via API with DroFx
 
Abortion pills in Doha Qatar (+966572737505 ! Get Cytotec
Abortion pills in Doha Qatar (+966572737505 ! Get CytotecAbortion pills in Doha Qatar (+966572737505 ! Get Cytotec
Abortion pills in Doha Qatar (+966572737505 ! Get Cytotec
 
BPAC WITH UFSBI GENERAL PRESENTATION 18_05_2017-1.pptx
BPAC WITH UFSBI GENERAL PRESENTATION 18_05_2017-1.pptxBPAC WITH UFSBI GENERAL PRESENTATION 18_05_2017-1.pptx
BPAC WITH UFSBI GENERAL PRESENTATION 18_05_2017-1.pptx
 
Al Barsha Escorts $#$ O565212860 $#$ Escort Service In Al Barsha
Al Barsha Escorts $#$ O565212860 $#$ Escort Service In Al BarshaAl Barsha Escorts $#$ O565212860 $#$ Escort Service In Al Barsha
Al Barsha Escorts $#$ O565212860 $#$ Escort Service In Al Barsha
 
Zuja dropshipping via API with DroFx.pptx
Zuja dropshipping via API with DroFx.pptxZuja dropshipping via API with DroFx.pptx
Zuja dropshipping via API with DroFx.pptx
 
Smarteg dropshipping via API with DroFx.pptx
Smarteg dropshipping via API with DroFx.pptxSmarteg dropshipping via API with DroFx.pptx
Smarteg dropshipping via API with DroFx.pptx
 
April 2024 - Crypto Market Report's Analysis
April 2024 - Crypto Market Report's AnalysisApril 2024 - Crypto Market Report's Analysis
April 2024 - Crypto Market Report's Analysis
 

sam_report.pptx

  • 1. VISVESVARAYA TECHNOLOGICAL UNIVERSITY JNANA SANGAMA, BELGAUM-590018, KARNATAKA Project Presentation On REGENERATIVE BRAKING SYSTEM Bachelor of Engineering in Mechanical Engineering by SAMARTH M V 1DB18ME052 RITHWIK RANJAN SHETTY 1DB18ME048 VISHNU RAJ B Y 1DB18ME071 LEO RUBAN 1DB19ME010 Under the Guidance of Prof K M Kiran Kumar DEPARTMENT OF MECHANICAL ENGINEERING DON BOSCO INSTITUTE OF TECHNOLOGY KUMBALAGODU, MYSORE ROAD, BANGALORE- 560074 2022-2023
  • 3. Samarth M V - 1DB18ME052 Rithwik Ranjan Shetty - 1DB18ME048 Leo Ruban - 1DB19ME010 Vishnu Raj B Y - 1DB18ME071 Guide: K.M KIRAN KUMAR Our Team
  • 4. Table of contents Introduction Objective 01 02 Literature review methodology 04 05 06 07 08 Scope of project Cost Estimation Present Status 03 concept conclusion 09
  • 5. Introduction • In recent years, there has been a lack of reliable alternative energy sources. Increasing efficiency and reducing exhaust gas emissions has become one of the key areas of focus in modern automotive research. • Regenerative energy technology is one of the key features of electrified vehicles. It allows the vehicle to capture a tremendous amount of the kinetic energy lost during braking or decelerating for reuse. • Energy recovery technology can significantly bring down the energy consumption of electrified vehicles particularly in urban operated routes. • Regenerative braking recovers some of the kinetic energy that would otherwise turn into heat and instead converts it into electricity. In this system, the motor drives the wheels during acceleration or cruising, but the wheels drive the motor while decelerating.
  • 6. Objective • Demonstrate the use and general working principle of regenerative braking system using a 4 wheel system. • To control the speed of the vehicle as well as to stop it quickly and efficiently without sticking. • To show how regenerative braking behaves at different speeds and show how it is more efficient at high speed conditions. • To demonstrate the various advantages of regenerative braking like less wear on brake components, increased fuel economy, efficiency, environment friendly nature and its use outside the automotive industry.
  • 7. CONCEPT • Regenerative braking technology funnels the energy created by the braking process back into the system in the form of charging the battery for further use. • In a regenerative braking system the energy normally lost in the braking process is transferred to the generator from the rotating axel and then transferred to the battery, thus saving energy
  • 8. Literature Review Authors Title Key Highlights Sayed Nashit, Sufiyan Adhikari, Shaikh Farhan, Srivastava Avinash and Amruta Gambhire Design, Fabrication and Testing of Regenerative Braking Test Rig for BLDC Motor (2016) • Regenerative braking is efficient at higher speeds. • Regenerative braking cant be used as the only brakes. Khushboo Rahim and Tanveer Regenerative Braking System: Review Paper (2018) • Regenerative Braking can work at high temperature range. • The more frequently a vehicle stops, the more it can benefits from regenerative braking. Tushar L. Patil, Rohit S. Yadav, Abhishek D. are, Mahesh Saggam, Ankul Pratap Performance Improvement of Regenerative braking system (2018) • Reducing weight of automobile increases regenerative braking efficiency. • Super capacitors improve conversion rate of energy in regenerative braking. C. Jagadeesh Vikram, D. Mohan Kumar, Dr. P. Naveen Chandra Fabrication of Regenerative Braking System (2018) • Prescribed measures for fabrication. • Future enhancements A. Eswaran, S Ajith, V Karthikeyan, P Kavin, S Loganandh Design and Fabrication of Regenerative Braking System (2018) • Explained benefits of regenerative braking over conventional braking.
  • 9. Methodology Final Result Make changes if necessary Test and note down results Fabrication and Assembly Procurement of Components Selection of Components Design and Drawing Literature Review Selection of Topic
  • 10. Block Diagram • In ‘Fig a’ we can see drive condition. Here the battery(energy sink) is powering the Motor which drives the vehicle. Energy is moving in forward direction. • In ‘Fig b’ we can see regenerative braking system in action. Here the kinetic energy produced under braking is converted to electric energy and fed back to the battery for future use. Here the motor is working in reverse condition making it a generator. Energy is moving in reverse direction. Fig a Fig b
  • 11. Components Name Function/Specification Main Frame We are using L angle Mild steel bars for the main frame. Main frame will support all the other components and act as chassis. Shaft We are using 16mm Mild Steel bar as shaft which will act as the driving axle. Wheel We will be using 14 inch wheels. Motor/Generator We will be using 12v DC motor which will be used to drive the vehicle in forward direction and generate energy in reverse direction Power Supply We will be using 12v, 4.5 AH battery to match the power requirements of the motor. Battery will be used as the energy sink. It will power the vehicle in forward direction and store energy in reverse direction.
  • 12. Components Name Function/Specification Braking Mechanism We will be using pedal brakes to perform the braking action Rectifier We will be using a bridge wave rectifier to convert AC current produced by the generator into DC current. It is a part of the control electronics. Diode We will be using a IN4007 3 amp diode. It is also a part of the control electronics. Function diode is to make sure current flows in one direction.
  • 13. Successfully demonstrate the working of regenerative braking system using 4 wheel system. Explain the various uses of regenerative braking in automotive industry and outside it. Successfully demonstrate how regenerative braking improves efficiency and saves energy. Scope of Project
  • 14. Make a more efficient system that can save more wasted kinetic energy. Use ultracapacitors and complex flywheels as energy sink for much higher efficiency Make a regenerative braking system that can function independently without friction braking. Future Scope of Project
  • 15. Cost Estimation Name Price in ₹ Main Frame, Shaft, Brakes and Wheels 6000 Battery and Motor 3500-4000 Control Electronics and Wiring 1500 Labour(welding and cutting) and Travelling 2000 Miscellaneous and Safety Budgeting 2000-2500 Total 15000-16000
  • 16. ● We are currently finalizing the design. ● We have acquired most of the necessary parts which are design independent. ● We have found a few prospective places for cutting and welding processes to make the mainframe. Present status
  • 17. ● The energy efficiency of a conventional brake is only about ● 20 percent with the remaining 80 percent of its energy being converted to heat through friction. ● The important thing about regenerative braking is that it may be able to capture as much as half of that wasted energy and put it back to work. ● This reduces fuel consumption by 10 to 25 percent , ● Hence regenerative braking system plays an important role in fuel consumption and also in the fuel of speed. conclusion