Claims
- 1. A method for a communication system receiver for processing a multi-carrier signal, comprising:
determining a first number of bits for quantization of said multi-carrier signal at an outer loop automatic gain control for said processing; operating said outer loop automatic gain control at said first number of bits in an inactive mode by fixing an attenuation level of said outer loop to a fixed value, and at a second number of bits in an active state when a power estimate of said multi-carrier signal reaches an ON threshold; operating said outer loop automatic gain control to switch from said second number of bits in said active state to said first number of bits in said inactive state when said power estimate of said received signal reaches an OFF threshold.
- 2. The method as recited in claim 1 further comprising:
an inner loop digital signal processing for rejecting undesired signal passed through an outer loop signal processing including said outer loop automatic gain control.
- 3. An apparatus for a communication system receiver for processing a multi-carrier signal, comprising:
an outer loop automatic gain control configured for operating at a first number of bits in an inactive mode by fixing an attenuation level of said outer loop to a fixed value, at a second number of bits in an active state when a power estimate of said multi-carrier signal reaches an ON threshold, and to switch from said second number of bits in said active state to said first number of bits in said inactive state when said power estimate of said received signal reaches an OFF threshold.
- 4. The apparatus as recited in claim 3 further comprising:
an inner loop digital signal processor for rejecting undesired signal passed through an outer loop signal processing including said outer gain automatic control.
- 5. A method for a communication system, comprising:
controlling gain of a multi carrier signal in accordance with operation of an outer loop automatic gain control quantizing said multi carrier signal at a first number of bits in an inactive mode by fixing an attenuation level of said outer loop to a fixed value and at a second number of bits in an active state when a power estimate of said multi-carrier signal reaches an ON threshold.
- 6. The method as recited in claim 5 wherein said controlling gain of a multi carrier signal further comprising switching from said second number of bits in said active state to said first number of bits in said inactive state when said power estimate of said received signal reaches an OFF threshold.
- 7. The method as recited in claim 5 further comprising:
rejecting, via an inner loop digital signal processing, undesired signal passed through an outer loop signal processing including said outer loop automatic gain control.
- 8. An apparatus for processing a multi carrier signal, comprising:
an outer loop automatic gain control for controlling gain of said multi carrier signal, including means for quantizing said multi carrier signal at a first number of bits in an inactive mode by fixing an attenuation level of said outer loop to a fixed value and at a second number of bits in an active state when a power estimate of said multi-carrier signal reaches an ON threshold and means for switching from said second number of bits in said active state to said first number of bits in said inactive state when said power estimate of said received signal reaches an OFF threshold.
- 9. The apparatus as recited in claim 8 further comprising:
an inner loop digital signal processor for rejecting undesired signal passed through an outer loop signal processing including said outer loop automatic gain control of each carrier of said multi carrier signal.
CROSS-REFERENCE
[0001] This present application claims priority from U.S. provisional application Serial No. 60/444,283, filed on Jan. 31, 2003, entitled “Improving Demodulation Performance at Low Geometries With Few Adjacent Cells”.
Provisional Applications (1)
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Number |
Date |
Country |
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60444283 |
Feb 2003 |
US |