IP Library Granted Patent US 8,027,646
Granted Patent B1
US 8,027,646 · App. 12/251,657 · Granted Sep 27, 2011

Communication system and method for filtering and attenuating a signal between an antenna system and a base station

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Quick Facts
Patent No.
US 8,027,646
App. No.
12/251,657
Granted
Sep 27, 2011
Kind
B1
Abstract

A communication system is supplied for filtering and attenuating a receive signal in between a bi-directional antenna system and a bi-directional base station system. In the communication system, a first circulator is configured to receive a receive signal from a first bi-directional link coupled to the bi-directional antenna system and circulate the receive signal to a first uni-directional link. A signal processing system is configured to receive the receive signal from the first uni-directional link, filter and attenuate the receive signal, and transfer the receive signal to a second uni-directional link. A second circulator is configured to receive the receive signal from the second uni-directional link, circulate the receive signal to a second bi-directional link coupled to the bi-directional base station system, receive a transmit signal from the second bi-directional link, and circulate the transmit signal to a third uni-directional link. Additionally, the first circulator is configured to receive the transmit signal from the third uni-directional link and circulate the transmit signal to the first bi-directional link coupled to the bi-directional antenna system.

Claims (30)

1. A communication system for filtering and attenuating a receive signal in between a bi-directional antenna system and a bi-directional base station system, the communication system comprising:

a first circulator configured to receive the receive signal from a first bi-directional link coupled to the bi-directional antenna system and circulate the receive signal to a first uni-directional link;

a signal processing system configured to receive the receive signal from the first uni-directional link, filter and attenuate the receive signal, and transfer the receive signal to a second uni-directional link;

a second circulator configured to receive the receive signal from the second uni-directional link, circulate the receive signal to a second bi-directional link coupled to the bi-directional base station system, receive a transmit signal from the second bi-directional link, and circulate the transmit signal to a third uni-directional link;

the first circulator configured to receive the transmit signal from the third uni-directional link and circulate the transmit signal to the first bi-directional link coupled to the bi-directional antenna system.

2. The communication system of claim 1 wherein the signal processing system comprises a band-pass filter configured to filter the receive signal.

3. The communication system of claim 2 wherein the signal processing system comprises a gain element configured to attenuate the receive signal.

4. The communication system of claim 3 further comprising a bypass circuit configured to receive a bypass signal, and in response, to transfer the receive signal from the band-pass filter to the second uni-directional link to bypass the gain element.

5. The communication system of claim 4 wherein the gain element is configured to receive a user input and attenuate the receive signal at a gain level corresponding to the user input.

6. The communication system of claim 5 wherein the gain level balances gain and loss within the communication system.

7. The communication system of claim 1 further comprising the bi-directional antenna system configured to wirelessly receive the receive signal, transfer the receive signal to the first bi-directional link, receive the transmit signal from the first bi-directional link, and wirelessly transmit the transmit signal.

8. The communication system of claim 7 wherein the bi-directional antenna system comprises:

a low-noise amplifier configured to amplify the receive signal and pass through the transmit signal; and

a band-pass filter configured to filter the receive signal and the transmit signal.

9. The communication system of claim 1 further comprising the bi-directional base station system configured to receive the receive signal from the second bi-directional link and transfer the transmit signal to the second bi-directional link.

10. The communication system of claim 9 wherein the first and second bi-directional links comprise DC power and signaling bypass circuitry.

11. A method of operating a communication system to filter and attenuate a receive signal in between a bi-directional antenna system and a bi-directional base station system, the method comprising:

receiving at a first circulator the receive signal from a first bi-directional link coupled to the bi-directional antenna system and circulating in the first circulator the receive signal to a first uni-directional link;

receiving at a signal processing system the receive signal from the first uni-directional link, filtering and attenuating at the signal processing system the receive signal, and transferring from the signal processing system the receive signal to a second uni-directional link;

receiving at a second circulator the receive signal from the second uni-directional link, circulating in the second circulator the receive signal to a second bi-directional link coupled to the bi-directional base station system, receiving at the second circulator a transmit signal from the second bi-directional link, and circulating in the second circulator the transmit signal to a third uni-directional link;

receiving at the first circulator the transmit signal from the third uni-directional link and circulating in the first circulator the transmit signal to the first bi-directional link coupled to the bi-directional antenna system.

12. The method of claim 11 wherein the signal processing system comprises a band-pass filter and wherein filtering the receive signal comprises filtering the receive signal at the band-pass filter.

13. The method of claim 12 wherein the signal processing system comprises a gain element and wherein attenuating the receive signal comprises attenuating the receive signal at the gain element.

14. The method of claim 13 further comprising receiving at a bypass circuit a bypass signal, and in response, transferring from the band-pass filter the receive signal to the second uni-directional link to bypass the gain element.

15. The method of claim 14 further comprising receiving at the gain element a user input and wherein attenuating the receive signal at the gain element comprises attenuating the receive signal at a gain level corresponding to the user input.

16. The method of claim 15 wherein attenuating the receive signal at the gain element comprises attenuating the receive signal at a gain level corresponding to the user input, wherein the gain level balances gain and loss within the communication system.

17. The method of claim 11 further comprising wirelessly receiving at the bi-directional antenna system the receive signal, transferring from the bi-directional antenna system the receive signal to the first bi-directional link, receiving at the bi-directional antenna system the transmit signal from the first bi-directional link, and wirelessly transmitting from the bi-directional antenna system the transmit signal.

18. The method of claim 17 wherein the bi-directional antenna system comprises a low-noise amplifier and a band-pass filter, and further comprising amplifying at the low-noise amplifier the receive signal and passing through the transmit signal and filtering at the band-pass filter the receive signal and the transmit signal.

19. The method of claim 11 further comprising receiving at the bi-directional base station system the receive signal from the second bi-directional link and transferring from the bi-directional base station system the transmit signal to the second bi-directional link.

20. The method of claim 19 wherein the first and second bi-directional links comprise DC power and signaling bypass circuitry.

Assignments (10)
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Apr 3, 2020
From: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS SUCCESSOR BY MERGER TO WILMINGTON TRUST FSB
To: CLEARWIRE LEGACY LLC; CLEAR WIRELESS LLC
Reel/Frame 053182/0700 →
TERMINATION AND RELEASE OF FIRST PRIORITY AND JUNIOR PRIORITY SECURITY INTEREST IN PATENT RIGHTS Recorded Apr 1, 2020
From: DEUTSCHE BANK TRUST COMPANY AMERICAS
To: CLEARWIRE IP HOLDINGS LLC
Reel/Frame 052291/0439 →
GRANT OF FIRST PRIORITY AND JUNIOR PRIORITY SECURITY INTEREST IN PATENT RIGHTS Recorded Mar 3, 2017
From: CLEARWIRE IP HOLDINGS LLC
To: DEUTSCHE BANK TRUST COMPANY AMERICAS
Reel/Frame 041882/0875 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 27, 2011
From: CLEAR WIRELESS LLC
To: CLEARWIRE COMMUNICATIONS LLC
Reel/Frame 027134/0837 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 27, 2011
From: CLEARWIRE COMMUNICATIONS LLC
To: CLEARWIRE IP HOLDINGS LLC
Reel/Frame 027134/0855 →
SECURITY AGREEMENT Recorded Nov 30, 2009
From: CLEARWIRE LEGACY LLC; CLEAR WIRELESS LLC
To: WILMINGTON TRUST FSB, AS COLLATERAL AGENT
Reel/Frame 023574/0539 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENT RIGHTS Recorded Nov 24, 2009
From: MORGAN STANLEY & CO., INC., AS COLLATERAL AGENT
To: CLEAR WIRELESS LLC
Reel/Frame 023567/0236 →
SECURITY AGREEMENT Recorded Jun 11, 2009
From: CLEAR WIRELESS LLC
To: MORGAN STANLEY & CO., INC., AS COLLATERAL AGENT
Reel/Frame 022815/0429 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 30, 2009
From: SPRINT WIRELESS BROADBAND COMPANY LLC
To: CLEAR WIRELESS LLC
Reel/Frame 022184/0875 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 15, 2008
From: RAUSCH, WALTER F.; PERLOW, HARRY W.; RIAZI, HABIB
To: SPRINT WIRELESS BROADBAND COMPANY LLC
Reel/Frame 021684/0183 →