SUMMARY: The basic idea of our project ( IOT BASED BATTERY MANAGMENT SYSTEM FOR AN ELECTRICAL VEHICLE ) is to design a such type of system which can effeciently manage the battery pack of an electrical veh
IOT Based Smart Battery Management System For An Electric Vehicle.
SUMMARY:
When the concept of electric vehicle arises there is need to have system for its battery that can efficiently manage and monitor the different parameters of battery regarding its charging, discharging, its temperature and other physical and chemical parameters, and to access them from different places wirelessly..
Reason to implement Project Idea:
OBJECTIVES:
Our main objectives are:
Calculating the different parameters of battery of an electric vehicles
Estimating its remaining life based upon cycles used.
Accessing its real time data using cloud platform regardless of having any wired medium.
Last but not least and main objective of this project is to provide an efficient battery monitoring system using the above-mentioned things for the better performance and long life of the battery of an electric vehicle.
In Our Project:
Specifications Of a Battery :
| Rated Capacity | Min. 2700 mAh |
| Capacity | Min. 2750 mAh Typ. 2900 mAh |
| Nominal voltage | 3.6 V |
| Charging | CC-CV, Std. 1925 mA, 4.20 V, 3.0 hrs |
| Weight ( max ) | 46.5 g |
| Temperature | Charge: 0 to +45 °C Discharge: -20 to +60 °C |
| Energy Density | Volumetric: 577 Wh/l Gravimetric: 214 Wh/kg |
Flow Chart:
(Data Monitoring)

Flow Chart:
(Data Transmission)

Block Diagram:

Hardware Modules:

Benefits:
Battery Management Controls:
•Fail-Safe Response to Faulted Conditions
•Diagnostics/Prognostics
•Cell Voltage
•Cell Temperature
•Cell Balancing
•SOC,SOH

A battery management system (BMS) is any electronic system that manages a rechargeable battery (cell or battery pack), such as by protecting the battery from operating outside its safe operating area, monitoring its state, calculating secondary data, reporting that data, controlling its environment, authenticating it
Charge/Discharge Management.
Data Management and Assessment.
Ensuring an Efficient Operational State of the Peripheral Control Units and the Power Converters.
Real time data computing.
Accessing data from different places
Fault determination.
So Final Deliverable of our project ( IOT BASED BATTERY MANAGMENT SYSTEM FOR AN ELECTRIC VEHICLE ) will be Software (Simulation) as well as Hardware.
| Elapsed time in (days or weeks or month or quarter) since start of the project | Milestone | Deliverable |
|---|---|---|
| Month 1 | Literature Review & Proposal Submission | Understanding |
| Month 2 | Circuitry and designing | Simulations |
| Month 3 | Programming and Interfacing Modules | Components required and Coding |
| Month 4 | Programming and Interfacing Modules | Some prepared Modules |
| Month 5 | Implementation and combining Modules | Some more prepared modules |
| Month 6 | Testing and Debugging | Hardware not presentable |
| Month 7 | Documentation & Final Presentation | Both Hardware prepared & FYP Presented |
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