IP Library Granted Patent US 7,504,852
Granted Patent B2
US 7,504,852 · App. 11/673,934 · Granted Mar 17, 2009

Line reflection reduction with energy-recovery driver

Assignee: University of Southern California
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Quick Facts
Patent No.
US 7,504,852
App. No.
11/673,934
Granted
Mar 17, 2009
Kind
B2
Abstract

A system and method for reducing reflections in a transmission line and for recovering energy from the load in the transmission during the process. At least three drive signal levels are utilized. The transition from the second level to the third level during a rising transition and the transition from the second level to the first level during a falling transition is timed to coincide with the arrival of the reflected signal from the immediately-preceding transition. A capacitor is advantageously used as the source for the intermediate drive signal levels and advantageously facilitates energy recovery and conservation.

Claims (11)

1. A method of reducing energy loss due to ringing on a transmission line that has one end connected to a driver having an energy storage system and another end connected to a load, the driver and the load having impedances different than the impedance of the transmission line, the method comprising driving the transmission line with a plurality of drive signals that are timed so as to cause energy in the ringing to be recovered by the energy storage system whereby the timing is controlled by a controller driving at least one electronic switch.

2. The method of reducing energy loss due to ringing in a transmission line of claim 1 wherein the plurality of drive signals are dined so as to cause recovered energy in the energy storage system to be recycled back into the transmission line.

3. The method of reducing energy loss due to ringing in a transmission line of claim 2 wherein the plurality of drive signals are timed so as to cause the recovery of energy by the energy storage system and the recycling of energy back into the transmission line to cyclically repeat in substantial synchronism with the ringing.

4. The method of reducing energy loss due to ringing in a transmission line of claim 3 wherein the plurality of drive signals are dined so as to cause the magnitude of the ringing on the transmission line to be reduced.

5. A driver for reducing energy loss due to ringing on a transmission line that has one end connected to the driver and another end connect to a load, the driver and the load having impedances different than the impedances of the transmission line, comprising:

an energy storage system configured to store energy; and

a signal generation system configured to deliver a plurality of drive signals to the transmission line that are timed to cause energy in the ringing to be recovered by the energy storage system whereby the timing is controlled by a controller driving at least one electronic switch.

6. The driver of claim 5 wherein the plurality of drive signals are timed so as to cause recovered energy in the energy storage system to be recycled back into the transmission line.

7. The driver of claim 6 wherein the plurality of drive signals are timed so as to cause the recovery of energy by the energy storage system and the recycling of energy back into the transmission line to cyclically repeat in substantial synchronism with the ringing.

8. The driver of claim 7 wherein the plurality of drive signals are timed so as to cause the magnitude of the ringing on the transmission line to be reduced.

9. The driver of claim 5 wherein the signal generation system is configured to generate signals having at least three different levels.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jun 16, 2010
From: UNIVERSITY OF SOUTHERN CALIFORNIA
To: NATIONAL SECURITY AGENCY
Reel/Frame 024547/0361 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 23, 2008
From: SVENSSON, LARS G.; ATHAS, WILLIAM C.
To: UNIVERSITY OF SOUTHERN CALIFORNIA
Reel/Frame 022025/0439 →
Continuity (6)
Continuation 1119689200 · Aug 4, 2005
Continuation 1077692700 · Feb 10, 2004
Continuation 1027085100 · Oct 14, 2002
Continuation 0953279800 · Mar 21, 2000
Provisional Application 6012558000 · Mar 22, 1999
Related Publication 20070126472A1 · Jun 7, 2007