Design and control of excitation system for synchronous Genrator
Energy conversion in synchronous generator is possible only, if there exists an excitation system for generator. The purpose of excitation system is not only to control the output voltage of generator but also the reactive power. This project involves the design and control of excitation system for
2025-06-28 16:31:18 - Adil Khan
Design and control of excitation system for synchronous Genrator
Project Area of Specialization Electrical/Electronic EngineeringProject SummaryEnergy conversion in synchronous generator is possible only, if there exists an excitation system for generator. The purpose of excitation system is not only to control the output voltage of generator but also the reactive power. This project involves the design and control of excitation system for 3-phase synchronous generator. The system is based on DC-DC buck converter, in which PWM signal is controlled by using Microcontroller, measuring the generator output terminal voltage. For maintaining constant terminal voltage with load variation, a specific duty cycle is provided to buck converter. Moreover, a protection scheme is also being designed to limit the voltage and current of field winding.
Project Objectives- To design and implement an automatic voltage regulator (AVR) for 3-phase synchronous generator.
- Design of AVR by using power electronic components and microcontroller.
- Implementation of static excitation system.
- Implementation of protection scheme for field winding.
To provide 120V AC terminal voltage, our sync generator requires almost 72V DC at its field winding, which are initially provided by an external 24V battery. Then battery is disconnected by means of a switching relay and buck converter’s output is connected to the field winding that provides field voltages. Initially the duty cycle of PWM wave is kept high so that enough voltages are developed to generate required AC voltages by generator. Then as system stabilizes to its required state, the duty cycle regulates itself according to need i.e: if terminal voltages drop due to addition of load, duty cycle will increase in order to increase the buck converter’s output to increase field voltages. The terminal voltages will increase. If terminal voltages increase due to sudden reduction in load then duty cycle will automatically reduce itself in order to decrease buck converter’s output to decrease field voltages and decrease terminal voltages.
Benefits of the ProjectThese systems are based on mechanical working principal for that reason the system is very slow, expensive, and less efficient and need maintenance. Usually maintenance cost is very high. To make it cost effective, cheap and more efficient we are working on a new concept and bring a revolutionary innovation to industry level which works on electronic mechanism.
Technical Details of Final DeliverableAn automatic excitation system is implemented successfully using DC-DC buck converter. The implemented system provides the voltage to field winding and automatically regulates the output voltage of the generator in order to keep the terminal voltage of the generator at its rated value under varying load conditions. Its voltage regulation response is quite impressive. The designed excitation system has ability to provide the 1A current to the field winding within the protection range. The charging circuit is also being implemented for charging the batteries that are used provide the initial excitation to field winding. The output is successfully maintained and stabilized by the system.
Final Deliverable of the Project HW/SW integrated systemCore Industry Energy Other Industries Others Core Technology Artificial Intelligence(AI)Other Technologies Clean TechSustainable Development Goals Responsible Consumption and ProductionRequired Resources| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| Total in (Rs) | 63910 | |||
| synchronous motor | Equipment | 1 | 44500 | 44500 |
| inductor | Equipment | 2 | 1500 | 3000 |
| LCD | Equipment | 4 | 400 | 1600 |
| Ardiuno | Equipment | 2 | 1200 | 2400 |
| Transformer | Equipment | 1 | 450 | 450 |
| Transformer | Equipment | 1 | 1200 | 1200 |
| Batteries | Equipment | 1 | 2000 | 2000 |
| Microcontroller | Equipment | 2 | 200 | 400 |
| Capacitor | Equipment | 12 | 30 | 360 |
| wires,resistors, | Equipment | 1 | 1200 | 1200 |
| pcb sheet,Solder, | Miscellaneous | 1 | 1500 | 1500 |
| connectors,jumpers | Miscellaneous | 1 | 300 | 300 |
| other expenditure | Miscellaneous | 1 | 5000 | 5000 |