| Type of Document |
Master's Thesis |
| Author |
Huynh, Phuong
|
| URN |
etd-10062009-020238 |
| Title |
Analysis and design of microprocessor-controlled peak-power-tracking system |
| Degree |
Master of Science |
| Department |
Electrical Engineering |
| Advisory Committee |
| Advisor Name |
Title |
| Cho, Bo H. |
Committee Chair |
| Chen, Dan Y. |
Committee Member |
| Lee, Fred C. |
Committee Member |
|
| Keywords |
|
| Date of Defense |
1992-05-14 |
| Availability |
restricted |
Abstract
Analyses and designs of a peak-power tracking system using microprocessor control
are performed. Large-signal stability of the system for various modes of operation
is analyzed to predict system dynamics. The stability analysis is supported
mainly by qualitative graphical representations of different component blocks of
the system. Small-signal stability analysis around the equilibrium points is done
to assure proper performance and operation of this particular peak-power tracking
system. Specific design details and procedures are discussed, and predictions from
the analyses are verified through hardware.
|
| Files |
| Filename |
Size |
Approximate Download Time
(Hours:Minutes:Seconds) |
| 28.8 Modem |
56K Modem |
ISDN (64 Kb) |
ISDN (128 Kb) |
Higher-speed Access |
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LD5655.V855_1992.H896.pdf |
3.03 Mb |
00:14:01 |
00:07:13 |
00:06:18 |
00:03:09 |
00:00:16 |
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