SES # | TOPICS | KEY DATES |
---|---|---|
1 | Introduction | Problem set 1 out |
2 | Review of network theory: power | |
3 | Inductance, capacitance, first and second order transients | Problem set 1 due Problem set 2 out |
4 | Simple ordinary differential equations (ODE's): buck and boost converters | |
5 | Sinusoidal steady state: complex impedance | Problem set 2 due Problem set 3 out |
6 | Two-ports and transformers | |
7 | Polyphase circuit | Problem set 3 due Problem set 4 out |
8 | Transmission lines | |
9 | Unbalanced circuits: symmetrical components | Problem set 4 due Problem set 5 out |
10 | Faults and network protection | |
11 | Load flow | Problem set 5 due Problem set 6 out |
12 | Load flow example | Quiz 1 two days after Ses #12 |
13 | Forces in electromagnetic systems, Maxwell stress tensor | Problem set 6 due Problem set 7 out |
14 | Induction and principal of virtual work, Poynting's theorem | |
15 | Multiply excited systems and synchronous machines | |
16 | Operation of synchronous machines | Problem set 7 due Problem set 8 out |
17 | Magnetic circuits, materials, losses, and variable reluctance machines | Problem set 8 due Problem set 9 out |
18 | Induction machine theory | Problem set 9 due Problem set 10 out two days after Ses #18 |
19 | Induction machine operation: torque/speed curves | |
20 | Drive systems: inverters, field oriented control | Problem set 10 due Problem set 11 out |
21 | Faraday's Law again: direct current (DC) machines | |
22 | DC machine connections and operations | Problem set 11 due |
23 | Permanent magnets and brushless DC machines | Quiz 2 two days after Ses #23 |