Claims
- 1. For use in a wireless access network comprising a plurality of base stations, each of said plurality of base stations capable of bidirectional time division duplex (TDD) communication with wireless access devices disposed at a plurality of subscriber premises in an associated cell site of said wireless access network, a transceiver associated with a first of said plurality of base stations comprising:
transmit path circuitry associated with a beam forming network capable of transmitting directed scanning beam signals in a sector of a cell site associated with said first base station, wherein said transmit path circuitry transmits at a start of a TDD frame a broadcast beam signal comprising a start of frame field and subsequently transmits downlink data traffic in a downlink portion of said TDD frame to at least one of said wireless access devices using at least one directed scanning beam signal.
- 2. The transceiver as set forth in claim 1 wherein said broadcast beam signal further comprises a first beam map containing scanning beam information usable by said at least one wireless access device to detect said least one directed scanning beam signal.
- 3. The transceiver as set forth in claim 2 wherein said scanning beam information identifies a downlink time slot in said downlink portion during which said at least one directed scanning beam signal transmits said downlink data traffic.
- 4. The transceiver as set forth in claim 3 wherein said scanning beam information identifies at least one modulation format associated with said at least one directed scanning beam signal.
- 5. The transceiver as set forth in claim 3 wherein said scanning beam information identifies at least one forward error correction code level associated with said at least one directed scanning beam signal.
- 6. The transceiver as set forth in claim 2 further comprising receive path circuitry associated with said beam forming network capable of receiving uplink data traffic transmitted by said at least one wireless access device in an uplink portion of said TDD frame.
- 7. The transceiver as set forth in claim 6 wherein said first beam map further contains uplink transmission information identifying an uplink time slot in said uplink portion during which said at least one wireless access device transmits said uplink data traffic.
- 8. The transceiver as set forth in claim 7 wherein said uplink transmission information further identifies at least one modulation format used by said at least one wireless access device to transmit said uplink data traffic.
- 9. The transceiver as set forth in claim 8 wherein said uplink transmission information further identifies at least one at least one forward error correction code level used by said at least one wireless access device to transmit said uplink data traffic.
- 10. A fixed wireless access network comprising:
a plurality of base stations, each of said base stations capable of bidirectional time division duplex (TDD) communication with wireless access devices disposed at a plurality of subscriber premises in a cell site associated with said each base station, wherein said each base station comprises:
transmit path circuitry associated with a beam forming network capable of transmitting directed scanning beam signals in a sector of said cell site associated with said each station, wherein said transmit path circuitry transmits at a start of a TDD frame a broadcast beam signal comprising a start of frame field and subsequently transmits downlink data traffic in a downlink portion of said TDD frame to at least one of said wireless access devices using at least one directed scanning beam signal.
- 11. The fixed wireless access network as set forth in claim 10 wherein said broadcast beam signal further comprises a first beam map containing scanning beam information usable by said at least one wireless access device to detect said least one directed scanning beam signal.
- 12. The fixed wireless access network as set forth in claim 11 wherein said scanning beam information identifies a downlink time slot in said downlink portion during which said at least one directed scanning beam signal transmits said downlink data traffic.
- 13. The fixed wireless access network as set forth in claim 12 wherein said scanning beam information identifies at least one modulation format associated with said at least one directed scanning beam signal.
- 14. The fixed wireless access network as set forth in claim 12 wherein said scanning beam information identifies at least one forward error correction code level associated with said at least one directed scanning beam signal.
- 15. The fixed wireless access network as set forth in claim 11 wherein said each base station further comprises receive path circuitry associated with said beam forming network capable of receiving uplink data traffic transmitted by said at least one wireless access device in an uplink portion of said TDD frame.
- 16. The fixed wireless access network as set forth in claim 15 wherein said first beam map further contains uplink transmission information identifying an uplink time slot in said uplink portion during which said at least one wireless-access device transmits said uplink data traffic.
- 17. The fixed wireless access network as set forth in claim 16 wherein said uplink transmission information further identifies at least one modulation format used by said at least one wireless access device to transmit said uplink data traffic.
- 18. The fixed wireless access network as set forth in claim 17 wherein said uplink transmission information further identifies at least one at least one forward error correction code level used by said at least one wireless access device to transmit said uplink data traffic.
- 19. For use in a wireless access network comprising a plurality of base stations, each of said plurality of base stations capable of bidirectional time division duplex (TDD) communication with wireless access devices disposed at a plurality of subscriber premises in an associated cell site of said wireless access network, a method of communicating with a first of said plurality of base stations comprising the steps of:
transmitting at a start of a TDD frame a broadcast beam signal comprising a start of frame field capable of synchronizing receivers in said wireless access devices; and transmitting downlink data traffic in a downlink portion of said TDD frame to at least one of said wireless access devices in a sector of a cell site associated with said first base station using at least one directed scanning beam signal.
- 20. The method as set forth in claim 19 wherein said broadcast beam signal further comprises a first beam map containing scanning beam information usable by said at least one wireless access device to receive said least one directed scanning beam signal.
- 21. The method as set forth in claim 20 wherein said scanning beam information identifies a downlink time slot in said downlink portion during which said at least one directed scanning beam signal transmits said downlink data traffic.
- 22. The method as set forth in claim 21 wherein said scanning beam information identifies at least one modulation format associated with said at least one directed scanning beam signal.
- 23. The method as set forth in claim 21 wherein said scanning beam information identifies at least one forward error correction code level associated with said at least one directed scanning beam signal.
- 24. The method as set forth in claim 20 further the step of receiving uplink data traffic transmitted by said at least one wireless access device in an uplink portion of said TDD frame.
- 25. The method as set forth in claim 24 wherein said first beam map further contains uplink transmission information identifying an uplink time slot in said uplink portion during which said at least one wireless access device transmits said uplink data traffic.
- 26. The method as set forth in claim 25 wherein said uplink transmission information further identifies at least one modulation format used by said at least one wireless access device to transmit said uplink data traffic.
- 27. The method as set forth in claim 26 wherein said uplink transmission information further identifies at least one at least one forward error correction code level used by said at least one wireless access device to transmit said uplink data traffic.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present invention is related to those disclosed in the following United States Provisional and Non-Provisional Patent Applications:
[0002] 1) Ser. No. 09/713,684, filed on Nov. 15, 2000, entitled “SUBSCRIBER INTEGRATED ACCESS DEVICE FOR USE IN WIRELESS AND WIRELINE ACCESS SYSTEMS” [Docket No. WEST14-00004];
[0003] 2) Ser. No. 09/838,810, filed Apr. 20, 2001, entitled “WIRELESS COMMUNICATION SYSTEM USING BLOCK FILTERING AND FAST EQUALIZATION-DEMODULATION AND METHOD OF OPERATION” [Docket No. WEST14-00005];
[0004] 3) Ser. No. 09/839,726, filed Apr. 20, 2001, entitled “APPARATUS AND ASSOCIATED METHOD FOR OPERATING UPON DATA SIGNALS RECEIVED AT A RECEIVING STATION OF A FIXED WIRELESS ACCESS COMMUNICATION SYSTEM” [Docket No. WEST14-00014];
[0005] 4) Ser. No. 09/839,729, filed Apr. 20, 2001, entitled “APPARATUS AND METHOD FOR OPERATING A SUBSCRIBER INTERFACE IN A FIXED WIRELESS SYSTEM” [Docket No. WEST14-00015];
[0006] 5) Ser. No. 09/839,719, filed Apr. 20, 2001, entitled “APPARATUS AND METHOD FOR CREATING SIGNAL AND PROFILES AT A RECEIVING STATION” [Docket No. WEST14-00016];
[0007] 6) Ser. No. 09/838,910, filed Apr. 20, 2001, entitled “SYSTEM AND METHOD FOR INTERFACE BETWEEN A SUBSCRIBER MODEM AND SUBSCRIBER PREMISES INTERFACES” [Docket No. WEST14-00017];
[0008] 7) Ser. No. 09/839,509, filed Apr. 20, 2001, entitled “BACKPLANE ARCHITECTURE FOR USE IN WIRELESS AND WIRELINE ACCESS SYSTEMS” [Docket No. WEST14-00018];
[0009] 8) Ser. No. 09/839,514, filed Apr. 20, 2001, entitled “SYSTEM AND METHOD FOR ON-LINE INSERTION OF LINE REPLACEABLE UNITS IN WIRELESS AND WIRELINE ACCESS SYSTEMS” [Docket No. WEST14-00019];
[0010] 9) Ser. No. 09/839,512, filed Apr. 20, 2001, entitled “SYSTEM FOR COORDINATION OF TDD TRANSMISSION BURSTS WITHIN AND BETWEEN CELLS IN A WIRELESS ACCESS SYSTEM AND METHOD OF OPERATION” [Docket No. WEST14-00020];
[0011] 10) Ser. No. 09/839,259, filed Apr. 20, 2001, entitled “REDUNDANT TELECOMMUNICATION SYSTEM USING MEMORY EQUALIZATION APPARATUS AND METHOD OF OPERATION” [Docket No. WEST14-00021];
[0012] 11) Ser. No. 09/839,457, filed Apr. 20, 2001, entitled “WIRELESS ACCESS SYSTEM FOR ALLOCATING AND SYNCHRONIZING UPLINK AND DOWNLINK OF TDD FRAMES AND METHOD OF OPERATION” [Docket No. WEST14-00022];
[0013] 12) Ser. No. 09/839,075, filed Apr. 20, 2001, entitled “TDD FDD AIR INTERFACE” [Docket No. WEST14-00023];
[0014] 13) Ser. No. 09/839,499, filed Apr. 20, 2001, entitled “APPARATUS, AND AN ASSOCIATED METHOD, FOR PROVIDING WLAN SERVICE IN A FIXED WIRELESS ACCESS COMMUNICATION SYSTEM” [Docket No. WEST14-00024];
[0015] 14) Ser. No. 09/839,458, filed Apr. 20, 2001, entitled “WIRELESS ACCESS SYSTEM USING MULTIPLE MODULATION” [Docket No. WEST14-00026];
[0016] 15) Ser. No. 09/839,456, filed Apr. 20, 2001, entitled “WIRELESS ACCESS SYSTEM AND ASSOCIATED METHOD USING MULTIPLE MODULATION FORMATS IN TDD FRAMES ACCORDING TO SUBSCRIBER SERVICE TYPE” [Docket No. WEST14-00027];
[0017]16) Ser. No. 09/838,924, filed Apr. 20, 2001, entitled “APPARATUS FOR ESTABLISHING A PRIORITY CALL IN A FIXED WIRELESS ACCESS COMMUNICATION SYSTEM” [Docket No. WEST14-00028];
[0018] 17) Ser. No. 09/839,858, filed Apr. 20, 2001, entitled “APPARATUS FOR REALLOCATING COMMUNICATION RESOURCES TO ESTABLISH A PRIORITY CALL IN A FIXED WIRELESS ACCESS COMMUNICATION SYSTEM” [Docket No. WEST14-00029];
[0019] 18) Ser. No. 09/839,734, filed Apr. 20, 2001, entitled “METHOD FOR ESTABLISHING A PRIORITY CALL IN A FIXED WIRELESS ACCESS COMMUNICATION SYSTEM” [Docket No. WEST14-00030];
[0020] 19) Ser. No. 09/839,513, filed Apr. 20, 2001, entitled “SYSTEM AND METHOD FOR PROVIDING AN IMPROVED COMMON CONTROL BUS FOR USE IN ON-LINE INSERTION OF LINE REPLACEABLE UNITS IN WIRELESS AND WIRELINE ACCESS SYSTEMS” [Docket No. WEST14-00033];
[0021] 20) Serial No. 60/262,712, filed on Jan. 19, 2001, entitled “WIRELESS COMMUNICATION SYSTEM USING BLOCK FILTERING AND FAST EQUALIZATION-DEMODULATION AND METHOD OF OPERATION” [Docket No. WEST14-00005];
[0022] 21) Serial No. 60/262,825, filed on Jan. 19, 2001, entitled “APPARATUS AND ASSOCIATED METHOD FOR OPERATING UPON DATA SIGNALS RECEIVED AT A RECEIVING STATION OF A FIXED WIRELESS ACCESS COMMUNICATION SYSTEM” [Docket No. WEST14-00014];
[0023] 22) Serial No. 60/262,698, filed on Jan. 19, 2001, entitled “APPARATUS AND METHOD FOR OPERATING A SUBSCRIBER INTERFACE IN A FIXED WIRELESS SYSTEM” [Docket No. WEST14-00015];
[0024] 23) Serial No. 60/262,827, filed on Jan. 19, 2001, entitled “APPARATUS AND METHOD FOR CREATING SIGNAL AND PROFILES AT A RECEIVING STATION” [Docket No. WEST14-00016];
[0025] 24) Serial No. 60/262,826, filed on Jan. 19, 2001, entitled “SYSTEM AND METHOD FOR INTERFACE BETWEEN A SUBSCRIBER MODEM AND SUBSCRIBER PREMISES INTERFACES” [Docket No. WEST14-00017];
[0026] 25) Serial No. 60/262,951, filed on Jan. 19, 2001, entitled “BACKPLANE ARCHITECTURE FOR USE IN WIRELESS AND WIRELINE ACCESS SYSTEMS” [Docket No. WEST14-00018];
[0027] 26) Serial No. 60/262,824, filed on Jan. 19, 2001, entitled “SYSTEM AND METHOD FOR ON-LINE INSERTION OF LINE REPLACEABLE UNITS IN WIRELESS AND WIRELINE ACCESS SYSTEMS” [Docket No. WEST14-00019];
[0028] 27) Serial No. 60/263,101, filed on Jan. 19, 2001, entitled “SYSTEM FOR COORDINATION OF TDD TRANSMISSION BURSTS WITHIN AND BETWEEN CELLS IN A WIRELESS ACCESS SYSTEM AND METHOD OF OPERATION” [Docket No. WEST14-00020];
[0029] 28) Serial No. 60/263,097, filed on Jan. 19, 2001, entitled “REDUNDANT TELECOMMUNICATION SYSTEM USING MEMORY EQUALIZATION APPARATUS AND METHOD OF OPERATION” [Docket No. WEST14-00021];
[0030] 29) Serial No. 60/273,579, filed Mar. 5, 2001, entitled “WIRELESS ACCESS SYSTEM FOR ALLOCATING AND SYNCHRONIZING UPLINK AND DOWNLINK OF TDD FRAMES AND METHOD OF OPERATION” [Docket No. WEST14-00022];
[0031] 30) Serial No. 60/262,955, filed Jan. 19, 2001, entitled “TDD FDD AIR INTERFACE” [Docket No. WEST14-00023];
[0032] 31) Serial No. 60/262,708, filed on Jan. 19, 2001, entitled “APPARATUS, AND AN ASSOCIATED METHOD, FOR PROVIDING WLAN SERVICE IN A FIXED WIRELESS ACCESS COMMUNICATION SYSTEM” [Docket No. WEST14-00024];
[0033] 32) Serial No. 60/273,689, filed Mar. 5, 2001, entitled “WIRELESS ACCESS SYSTEM USING MULTIPLE MODULATION” [Docket No. WEST14-00026];
[0034] 33) Serial No. 60/273,757, filed Mar. 5, 2001, entitled “WIRELESS ACCESS SYSTEM AND ASSOCIATED METHOD USING MULTIPLE MODULATION FORMATS IN TDD FRAMES ACCORDING TO SUBSCRIBER SERVICE TYPE” [Docket No. WEST14-00027];
[0035] 34) Serial No. 60/270,378, filed Feb. 21, 2001, entitled “APPARATUS FOR ESTABLISHING A PRIORITY CALL IN A FIXED WIRELESS ACCESS COMMUNICATION SYSTEM” [Docket No. WEST14-15 00028];
[0036] 35) Serial No. 60/270,385, filed Feb. 21, 2001, entitled “APPARATUS FOR REALLOCATING COMMUNICATION RESOURCES TO ESTABLISH A PRIORITY CALL IN A FIXED WIRELESS ACCESS
[0037] COMMUNICATION SYSTEM” [Docket No. WEST14-00029]; and 20 36) Serial No. 60/270,430, filed February 21, 2001, entitled “METHOD FOR ESTABLISHING A PRIORITY CALL IN A FIXED WIRELESS ACCESS COMMUNICATION SYSTEM” [Docket No. WEST14-00030].
Provisional Applications (17)
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Number |
Date |
Country |
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60262712 |
Jan 2001 |
US |
|
60262825 |
Jan 2001 |
US |
|
60262698 |
Jan 2001 |
US |
|
60262827 |
Jan 2001 |
US |
|
60262826 |
Jan 2001 |
US |
|
60262951 |
Jan 2001 |
US |
|
60262824 |
Jan 2001 |
US |
|
60263101 |
Jan 2001 |
US |
|
60263097 |
Jan 2001 |
US |
|
60273579 |
Mar 2001 |
US |
|
60262955 |
Jan 2001 |
US |
|
60262708 |
Jan 2001 |
US |
|
60273689 |
Mar 2001 |
US |
|
60273757 |
Mar 2001 |
US |
|
60270378 |
Feb 2001 |
US |
|
60270385 |
Feb 2001 |
US |
|
60270430 |
Feb 2001 |
US |