Claims
- 1. A power control system for a satellite comprising:
at least one high power amplifier circuit receiving a saturated power output adjustment signal and comprising; at least one programmable circuit; an electronic power conditioner coupled to said at least one programmable circuit and configured to reset an operating set-point of said high power amplifier circuit in response to said saturated power output adjustment signal; a high power amplifier having a variable output power range and amplifying a received signal in response to change in said operating set-point; and a channel amplifier coupled to said at least one programmable circuit and configured to gain offset said received signal in response to change in said operating set-point.
- 2. A system as in claim 1 wherein said electronic power conditioner in resetting said operating set-point resets set-point of a cathode current.
- 3. A system as in claim 1 wherein said electronic power conditioner in resetting said operating set-point resets set-point of an anode voltage.
- 4. A system as in claim 1 wherein said electronic power conditioner supplies power to said high power amplifier.
- 5. A system as in claim 1 wherein said electronic power conditioner maintains a constant cathode current through said high power amplifier via a servo loop.
- 6. A system as in claim 1 further comprising a cathode current sense circuit electrically coupled to said electronic power conditioner and adjusting an anode voltage of said high power amplifier to maintain a constant cathode current.
- 7. A system as in claim 1 wherein said electronic power conditioner maintains a constant cathode current through said high power amplifier at a predetermined level.
- 8. A system as in claim 1 wherein said high power amplifier has an anode voltage operating range.
- 9. A system as in claim 1 wherein said high power amplifier has an output power range that is approximately equal to 3 dB.
- 10. A system as in claim 1 wherein said at least one programmable circuit comprises at least one look-up table.
- 11. A system as in claim 10 wherein said at least one look-up table comprises at least one parameter selected from at least one of gain, offset, set-point, anode voltage, cathode current, and phase for a plurality of complementary states.
- 12. A system as in claim 1 wherein said at least one programmable circuit is selected from at least one of a programmable read only memory, a field programmable gate array, an application specific integrated circuit, and a programmable logic device.
- 13. A system as in claim 1 wherein said channel amplifier is coupled to a linearizer that compensates for phase and gain compression changes of said received signal in response to change is said operating set-point.
- 14. A system as in claim 1 wherein said channel amplifier in gain offsetting said received signal maintains an approximately constant overall gain of the said least one high power amplifier circuit.
- 15. A satellite system comprising:
a receiver receiving at least one command signal; a controller generating a saturated power output adjustment signal in response to said at least one command signal; and a power control system having at least one high power amplifier circuit receiving a saturated power output adjustment signal and comprising;
at least one programmable circuit; an electronic power conditioner coupled to said at least one programmable circuit and configured to reset an operating set-point of said high power amplifier circuit in response to said saturated power output adjustment signal; a high power amplifier having a variable output power range and amplifying a received signal in response to change in said operating set-point; and a channel amplifier coupled to said at least one programmable circuit and configured to gain offset said received signal in response to change in said operating set-point.
- 16. A system as in claim 15 wherein said controller adjusts effective saturated power output of said high power amplifier to a minimum effective isotropic radiated power in response to said command signal.
- 17. A system as in claim 15 wherein said controller flexes an output power range of said high power amplifier by adjusting a cathode current of said high power amplifier within an anode voltage range.
- 18. A circuit as in claim 15 wherein said channel amplifier is coupled to a linearizer that compensates for phase and gain compression changes of said received signal in response to change in said operating set-point.
- 19. A circuit as in claim 15 wherein said channel amplifier in gain offsetting said received signal maintains an approximately constant overall gain of said at least one high power amplifier circuit.
- 20. A method of operating a satellite having a plurality of high power amplifier circuits, each of which having a high power amplifier, the method comprising:
receiving a command signal and generating a saturated power output adjustment signal for at least one of the high power amplifiers; resetting an operating set-point of at least one high power amplifier circuit in response to said saturated power output adjustment signal through use of a at least one programmable circuit within the high power amplifier circuits; and gain offsetting said received signal in response to change in said operating set-point through use of said at least one programmable circuit within the high power amplifier circuits.
- 21. A method as in claim 20 wherein resetting an operating set-point of at least one high power amplifier circuit and wherein gain offsetting said received signal are performed through use of at least one look-up table.
RELATED APPLICATION
[0001] The present invention is related to U.S. patent application Ser. No. 10/365,359 (Attorney Docket Number 02-1150) entitled “ON ORBIT VARIABLE POWER HIGH POWER AMPLIFIERS FOR A SATELLITE COMMUNICATIONS SYSTEM”, which is incorporated by reference herein.