Highlights
The idea of the project is to take the knowledge and background you are learning this semester about power system protection and put it to good use in a creative manner. Take the projects from the following and develop a working prototype with a suitable user interface based on a microprocessor/microcontroller/PLC;
o Overcurrent (o/c) relay
o Overvoltage relay
o Under voltage relay
o Differential protection (current)
No matter what project you choose, a high-quality implementation is expected.
You will have five stages or deliverables
1. Must form a team and settle on a project.
2. We will hold a poster session in class in which you can display your different project ideas to get feedback.
3. Shortly after the poster session you will submit a detailed design document.
4. You will give demonstration of your project to the instructor and TA during last two weeks of classes.
5. Submit a detailed report of the project from design to final implementation including figures, your observations and measurements, equations, graphs, pictures, simulations, hardware descriptions (with cost) and working. The format of the report is attached as Annex-A.
The students are advised to avoid plagiarism/similarity. All the reports will be checked for similarity; if any report exceeds 19% similarity index, will be marked zero.
Grading
Grades for project deliverables are weighted so that the final project presentation and final project report constitute the majority. The final project presentation is worth 35% of the project grade, the final project report is worth an equal amount of the grade (35%), and the remaining deliverables (proposal presentation, proposal write-up, project update presentation(s), any code updates, etc.) are weighted equally and are collectively worth 30% of grade.
For example, here is the spreadsheet formula used in a typical semester for the project grade:
J2 = proposal presentation
K2 = proposal write-up
L2 = project update presentation
M2 = final project presentation
N2 = final project report
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