METHOD AND SYSTEM FOR OPTIMIZING A TRAFFIC CHANNEL IN A WIRELESS COMMUNICATIONS SYSTEM

    公开(公告)号:CA2274065C

    公开(公告)日:2003-05-13

    申请号:CA2274065

    申请日:1997-10-27

    Applicant: MOTOROLA INC

    Abstract: In a wireless communications system (20), a beacon having a first radiation pattern (28) covering a portion of a subscriber service area (34) covered by a base station is transmitted. A subscriber (36) reception quality is then measured to produce a first beacon quality measurement (210). Thereafter, th e first radiation pattern is changed to a second radiation pattern (32, 212), and a subscriber reception quality of the beacon transmitted with a second radiation pattern is measured to produce a second beacon quality measurement (214). In response to the first and second beacon quality measurements, a traffic channel radiation pattern (32) is selected (218), wherein such radiation pattern covers a portion of the subscriber service area. In a preferred embodiment, the beacon carrier frequency is the same as the traffi c channel carrier frequency.

    2.
    发明专利
    未知

    公开(公告)号:FI991274A

    公开(公告)日:1999-06-03

    申请号:FI991274

    申请日:1999-06-03

    Applicant: MOTOROLA INC

    Abstract: In a wireless communications system (20), a beacon having a first radiation pattern (28) covering a portion of a subscriber service area (34) covered by a base station is transmitted. A subscriber (36) reception quality is then measured to produce a first beacon quality measurement (210). Thereafter, the first radiation pattern is changed to a second radiation pattern (32, 212), and a subscriber reception quality of the beacon transmitted with a second radiation pattern is measured to produce a second beacon quality measurement (214). In response to the first and second beacon quality measurements, a traffic channel radiation pattern (32) is selected (218), wherein such radiation pattern covers a portion of the subscriber service area. In a preferred embodiment, the beacon carrier frequency is the same as the traffic channel carrier frequency.

    método para otimização de um canal de trafégo em um sistema de comunicação sem fio

    公开(公告)号:BRPI9713676B1

    公开(公告)日:2016-05-17

    申请号:BR9713676

    申请日:1997-10-27

    Abstract: método e sistema para otimização de um canal de tráfego em um sistema de comunicação sem fio em sistema de comunicação sem fio (20), um farol possuindo um primeiro patamar de radiação (28) cobrindo uma uma porção de uma área de serviço (34) por uma estação base ser transmitida. a qualidade da recepção do subscritor (36) é então medida para produzir uma primeira medição da qualidade do farol (210). desta forma, o primeiro patamar de radiação é modificado para um segundo patamar de radiação (32, 212), e uma qualidade de recepção do subscritor do farol transmitido com um segundo patamar de radiação é medido para produzir uma segunda medição de qualidade de farol (214). em resposta a primeira e a segunda medições de qualidade de farol, um patamar de radiação de canal de tráfego (32) é selecionado (218) onde tal patamar de radiação cobrir uma porção da área de serviço do subscritor. em uma modalidade preferida, a freqüência carreada do farol é a mesma da freqüência carreada do canal de tráfego.

    Method and system for optimizing a traffic channel in a wireless communications system

    公开(公告)号:AU5160998A

    公开(公告)日:1998-06-29

    申请号:AU5160998

    申请日:1997-10-27

    Applicant: MOTOROLA INC

    Abstract: In a wireless communications system (20), a beacon having a first radiation pattern (28) covering a portion of a subscriber service area (34) covered by a base station is transmitted. A subscriber (36) reception quality is then measured to produce a first beacon quality measurement (210). Thereafter, the first radiation pattern is changed to a second radiation pattern (32, 212), and a subscriber reception quality of the beacon transmitted with a second radiation pattern is measured to produce a second beacon quality measurement (214). In response to the first and second beacon quality measurements, a traffic channel radiation pattern (32) is selected (218), wherein such radiation pattern covers a portion of the subscriber service area. In a preferred embodiment, the beacon carrier frequency is the same as the traffic channel carrier frequency.

    5.
    发明专利
    未知

    公开(公告)号:SE9902067D0

    公开(公告)日:1999-06-04

    申请号:SE9902067

    申请日:1999-06-04

    Applicant: MOTOROLA INC

    Abstract: In a wireless communications system (20), a beacon having a first radiation pattern (28) covering a portion of a subscriber service area (34) covered by a base station is transmitted. A subscriber (36) reception quality is then measured to produce a first beacon quality measurement (210). Thereafter, the first radiation pattern is changed to a second radiation pattern (32, 212), and a subscriber reception quality of the beacon transmitted with a second radiation pattern is measured to produce a second beacon quality measurement (214). In response to the first and second beacon quality measurements, a traffic channel radiation pattern (32) is selected (218), wherein such radiation pattern covers a portion of the subscriber service area. In a preferred embodiment, the beacon carrier frequency is the same as the traffic channel carrier frequency.

    6.
    发明专利
    未知

    公开(公告)号:FI991274A0

    公开(公告)日:1999-06-03

    申请号:FI991274

    申请日:1999-06-03

    Applicant: MOTOROLA INC

    Abstract: In a wireless communications system (20), a beacon having a first radiation pattern (28) covering a portion of a subscriber service area (34) covered by a base station is transmitted. A subscriber (36) reception quality is then measured to produce a first beacon quality measurement (210). Thereafter, the first radiation pattern is changed to a second radiation pattern (32, 212), and a subscriber reception quality of the beacon transmitted with a second radiation pattern is measured to produce a second beacon quality measurement (214). In response to the first and second beacon quality measurements, a traffic channel radiation pattern (32) is selected (218), wherein such radiation pattern covers a portion of the subscriber service area. In a preferred embodiment, the beacon carrier frequency is the same as the traffic channel carrier frequency.

    7.
    发明专利
    未知

    公开(公告)号:FI117778B

    公开(公告)日:2007-02-15

    申请号:FI991274

    申请日:1999-06-03

    Applicant: MOTOROLA INC

    Abstract: In a wireless communications system (20), a beacon having a first radiation pattern (28) covering a portion of a subscriber service area (34) covered by a base station is transmitted. A subscriber (36) reception quality is then measured to produce a first beacon quality measurement (210). Thereafter, the first radiation pattern is changed to a second radiation pattern (32, 212), and a subscriber reception quality of the beacon transmitted with a second radiation pattern is measured to produce a second beacon quality measurement (214). In response to the first and second beacon quality measurements, a traffic channel radiation pattern (32) is selected (218), wherein such radiation pattern covers a portion of the subscriber service area. In a preferred embodiment, the beacon carrier frequency is the same as the traffic channel carrier frequency.

    8.
    发明专利
    未知

    公开(公告)号:FR2757004B1

    公开(公告)日:2000-07-21

    申请号:FR9714495

    申请日:1997-11-19

    Applicant: MOTOROLA INC

    Abstract: In a wireless communications system (20), a beacon having a first radiation pattern (28) covering a portion of a subscriber service area (34) covered by a base station is transmitted. A subscriber (36) reception quality is then measured to produce a first beacon quality measurement (210). Thereafter, the first radiation pattern is changed to a second radiation pattern (32, 212), and a subscriber reception quality of the beacon transmitted with a second radiation pattern is measured to produce a second beacon quality measurement (214). In response to the first and second beacon quality measurements, a traffic channel radiation pattern (32) is selected (218), wherein such radiation pattern covers a portion of the subscriber service area. In a preferred embodiment, the beacon carrier frequency is the same as the traffic channel carrier frequency.

    METHOD AND SYSTEM FOR OPTIMIZING A TRAFFIC CHANNEL IN A WIRELESS COMMUNICATIONS SYSTEM

    公开(公告)号:CA2274065A1

    公开(公告)日:1998-06-11

    申请号:CA2274065

    申请日:1997-10-27

    Applicant: MOTOROLA INC

    Abstract: In a wireless communications system (20), a beacon having a first radiation pattern (28) covering a portion of a subscriber service area (34) covered by a base station is transmitted. A subscriber (36) reception quality is then measured to produce a first beacon quality measurement (210). Thereafter, the first radiation pattern is changed to a second radiation pattern (32, 212), and a subscriber reception quality of the beacon transmitted with a second radiation pattern is measured to produce a second beacon quality measurement (214). In response to the first and second beacon quality measurements, a traffic channel radiation pattern (32) is selected (218), wherein such radiation pattern covers a portion of the subscriber service area. In a preferred embodiment, the beacon carrier frequency is the same as the traffic channel carrier frequency.

    10.
    发明专利
    未知

    公开(公告)号:DE19782178T1

    公开(公告)日:1999-11-18

    申请号:DE19782178

    申请日:1997-10-27

    Applicant: MOTOROLA INC

    Abstract: In a wireless communications system (20), a beacon having a first radiation pattern (28) covering a portion of a subscriber service area (34) covered by a base station is transmitted. A subscriber (36) reception quality is then measured to produce a first beacon quality measurement (210). Thereafter, the first radiation pattern is changed to a second radiation pattern (32, 212), and a subscriber reception quality of the beacon transmitted with a second radiation pattern is measured to produce a second beacon quality measurement (214). In response to the first and second beacon quality measurements, a traffic channel radiation pattern (32) is selected (218), wherein such radiation pattern covers a portion of the subscriber service area. In a preferred embodiment, the beacon carrier frequency is the same as the traffic channel carrier frequency.

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