Claims
- 1. A method, comprising:
receiving uplink communication signals from a plurality of antenna array elements; selecting an operating condition of an environment; and estimating downlink beamforming weights used in downlink communication signals in response to the selected operation condition of the environment.
- 2. The method of claim 1 wherein the operating condition of the environment is selected in response to the uplink communication signals received from the plurality of antenna array elements.
- 3. The method of claim 2 wherein estimating the downlink beamforming weights comprises using channel information derived from the uplink communication signals received from the plurality of antenna array elements if a low clutter environment is the selected operating condition.
- 4. The method of claim 3 wherein estimating the downlink beamforming weights comprises using angles of arrival (AOAs) estimated from the uplink communication signals received from the plurality of antenna array elements.
- 5. The method of claim 2 wherein the downlink beamforming weights are estimated in response to an uplink spatial signature of the uplink communication signals received from the plurality of antenna array elements if a high clutter low interference environment is the selected operating condition.
- 6. The method of claim 5 wherein estimating the uplink spatial signature comprises estimating a correlation between the received uplink communication signals and the reference signal.
- 7. The method of claim 2 wherein the downlink beamforming weights are estimated in response to uplink optimal weights of the uplink communication signals received from the plurality of antenna array elements if a high clutter high interference environment is the selected operating condition.
- 8. The method of claim 7 wherein estimating the downlink beamforming weights comprises:
estimating the uplink optimal weights from uplink communication signals received from the plurality of antenna array elements; estimating angles of arrival (AOAs) corresponding to desired remote terminals and interferers; and broadening nulls directed towards the interferers.
- 9. An apparatus, comprising:
a plurality of antenna elements; a receiver coupled to receive uplink communication signals from the plurality of antenna elements; and a signal processor coupled to estimate downlink beamforming weights used in downlink communication signals in response to a selected operating condition of the environment.
- 10. The apparatus of claim 9 wherein the signal processor is coupled to receive the uplink communication signals, the signal process to select the operating condition of the environment in response to the uplink communication signals received from the plurality of antenna elements.
- 11. The apparatus of claim 10 further comprising a memory coupled to the plurality of antenna elements to store the uplink communication signals received from the plurality of antenna elements.
- 12. The apparatus of claim 10 wherein the signal processor is coupled to estimate the downlink beamforming weights using channel information derived from the uplink communication signals received from the plurality of antenna array elements if a low clutter environment is the selected operating condition.
- 13. The apparatus of claim 10 wherein the signal processor is coupled to estimate the downlink beamforming weights in response to an uplink spatial signature of the uplink communication signals received from the plurality of antenna array elements if a high clutter low interference environment is the selected operating condition.
- 14. The apparatus of claim 10 wherein the signal processor is coupled to estimate the downlink beamforming weights in response to uplink optimal weights of the uplink communication signals received from the plurality of antenna array elements if a high clutter high interference environment is the selected operating condition.
- 15. A machine-readable medium comprising machine readable instructions stored thereon to:
receive uplink communication signals from a plurality of antenna array elements; select an operating condition of an environment; and estimate downlink beamforming weights used in downlink communication signals in response to the selected operation condition of the environment.
- 16. The machine-readable medium of claim 15, further comprising machine-readable instructions thereon to:
store the uplink communication signals from the plurality of antenna array elements.
- 17. The machine-readable medium of claim 16, further comprising machine-readable instructions thereon to:
estimate the downlink beamforming weights using channel information derived from the uplink communication signals received from the plurality of antenna array elements if a low clutter environment is the selected operating condition.
- 18. The machine-readable medium of claim 16, further comprising machine-readable instructions thereon to:
estimate the downlink beamforming weights in response to an uplink spatial signature of the uplink communication signals received from the plurality of antenna array elements if a high clutter low interference environment is the selected operating condition.
- 19. The machine-readable medium of claim 16, further comprising machine-readable instructions thereon to:
estimate the downlink beamforming weights in response to uplink optimal weights of the uplink communication signals received from the plurality of antenna array elements if a high clutter high interference environment is the selected operating condition.
- 20. An apparatus, comprising:
means for receiving uplink communication signals from a plurality of antenna elements; means for storing the received uplink communication signals; means for selecting an operating condition of an environment; and signal processing means for estimating downlink beamforming weights in response to the selected operation condition of the environment.
- 21. The apparatus of claim 20 wherein the means for selecting an operating condition of the environment is responsive to the uplink communication signals received from the plurality of antenna elements.
- 22. The apparatus of claim 20 further comprising means for storing the uplink communication signals received from the plurality of antenna elements.
- 23. The apparatus of claim 20 wherein the signal processing means is further coupled to estimate the downlink beamforming weights using channel information derived from the uplink communication signals received from the plurality of antenna array elements if a low clutter environment is the selected operating condition.
- 24. The apparatus of claim 20 wherein the signal processing means is further coupled to estimate the downlink beamforming weights in response to an uplink spatial signature of the uplink communication signals received from the plurality of antenna array elements if a high clutter low interference environment is the selected operating condition.
- 25. The apparatus of claim 20 wherein the signal processing means is further coupled to estimate the downlink beamforming weights in response to uplink optimal weights of the uplink communication signals received from the plurality of antenna array elements if a high clutter high interference environment is the selected operating condition.
RELATED APPLICATION
[0001] This application is related to co-pending application Ser. No. 09/668,664, filed Sep. 22, 2000, entitled “Method and Apparatus For Determining An Operating Condition In A Communications System,” and assigned to the Assignee of the present application.