Electric vehicles are the future with the advancing technology. Conventional battries have high energy densities but low power densties. The solution for that is hybridization with super capacitors. It increases the efficiency and solves the problem of less battery life.
Flash charged EV(electric vehicle)
Electric vehicles are the future with the advancing technology. Conventional battries have high energy densities but low power densties. The solution for that is hybridization with super capacitors. It increases the efficiency and solves the problem of less battery life.
Implementation of Charging system:
Investigation of behavior of Super capacitors when hybrid with battery in EV
Implementation and design of inverter and Converter.
AC Inverter Design
AC Inverter that Converts DC output from battery into AC, which drives our motor.
Battery Charging
We will build a Two Stage Battery charger (CC and CV) that could be used as to charge Lithium ion, lithium polymer or lead Acid batteries. The battery charger circuit is designed for 12V.
The first mode to get into operation will be the CC mode. Here the amount of charging current that should enter the battery is fixed. To maintain this current the voltage will be varied accordingly. This gives fast charging.
Once the CC mode is completed the CV mode will kick in. Here the Voltage will be kept fixed and the current will be allowed to vary as per the charging requirement of the battery for trickle charging.
Super Capacitor charging circuit
Here we design a Super capacitor charging circuit. Compared to batteries the super capacitors have very low ESR (Equivalent series resistance) value this allows higher value of current to flow in or out the capacitor enabling it to get charged faster or discharge with high current. But because of this capability of handling high current, a super capacitor should be charged and discharged safely to prevent thermal runaway. When it comes to charging a super-capacitor there are two golden rules, the capacitor should be charged with correct polarity and with a voltage not exceeding 90% of its total voltage capacity.
Integration of Battery and Super Capacitor
Here we use some controller which will be programmed accordingly for motor to take initial inrush curent from super capacitor bank and switch to battery for smooth running later.
Environmen Friendly.
Cheaper than ICE Vehicles.
Maintenance is less frequent and less expensive.
Can be upgraded for regenerative braking.
Provides efficient solution for less battery life.
The project is based on synchronized working of battery and ultra capacitors for meeting the required voltage of motor. The battery is to be efficiently charged with fully controlled two mode CCCV charger. Super capacitors are to be charged in a flash as per their requirement and used to provide the large thrust of current to meet the requirement.
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| battery | Equipment | 1 | 10000 | 10000 |
| pcb board | Equipment | 3 | 600 | 1800 |
| inverter components | Equipment | 1 | 500 | 500 |
| converter components | Equipment | 1 | 800 | 800 |
| super capacitors | Equipment | 10 | 700 | 7000 |
| motor | Equipment | 1 | 8000 | 8000 |
| car chasis | Equipment | 1 | 10000 | 10000 |
| panaflex | Miscellaneous | 2 | 500 | 1000 |
| Broceure | Miscellaneous | 50 | 70 | 3500 |
| Controller | Miscellaneous | 1 | 5000 | 5000 |
| printing | Miscellaneous | 1 | 500 | 500 |
| Total in (Rs) | 48100 |
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