METHOD AND DEVICE FOR CANCELING A BIAS OF A RADIO CHANNEL SEQUENCE
    1.
    发明申请
    METHOD AND DEVICE FOR CANCELING A BIAS OF A RADIO CHANNEL SEQUENCE 审中-公开
    消除无线电频道序列偏移的方法和装置

    公开(公告)号:US20160248612A1

    公开(公告)日:2016-08-25

    申请号:US14993157

    申请日:2016-01-12

    Abstract: A method (200) of bias cancellation for a radio channel sequence includes: receiving (201) a radio signal, the radio signal comprising a radio channel sequence coded by a first signature, the first signature belonging to a set of orthogonal signatures; decoding (202) the radio channel sequence based on the first signature to generate a decoded radio channel sequence; decoding (203) the radio channel sequence based on a second signature, wherein the second signature is orthogonal to the signatures of the set of orthogonal signatures, to generate a bias of the radio channel sequence; and canceling (204) the bias of the radio channel sequence from the decoded radio channel sequence.

    Abstract translation: 一种用于无线电信道序列的偏置消除的方法(200)包括:接收(201)无线电信号,所述无线电信号包括由第一签名编码的无线电信道序列,所述第一签名属于一组正交签名; 基于所述第一签名解码(202)所述无线电信道序列以生成解码的无线电信道序列; 基于第二签名解码(203)所述无线电信道序列,其中所述第二签名与所述正交签名集合的签名正交,以产生所述无线电信道序列的偏差; 并从解码的无线电信道序列中取消(204)无线信道序列的偏置。

    Method and device for canceling a bias of a radio channel sequence

    公开(公告)号:US10044533B2

    公开(公告)日:2018-08-07

    申请号:US14993157

    申请日:2016-01-12

    Abstract: A method (200) of bias cancellation for a radio channel sequence includes: receiving (201) a radio signal, the radio signal comprising a radio channel sequence coded by a first signature, the first signature belonging to a set of orthogonal signatures; decoding (202) the radio channel sequence based on the first signature to generate a decoded radio channel sequence; decoding (203) the radio channel sequence based on a second signature, wherein the second signature is orthogonal to the signatures of the set of orthogonal signatures, to generate a bias of the radio channel sequence; and canceling (204) the bias of the radio channel sequence from the decoded radio channel sequence.

    Communication terminal and method for communicating data

    公开(公告)号:US10405171B2

    公开(公告)日:2019-09-03

    申请号:US15758740

    申请日:2016-08-24

    Abstract: A communication terminal is described with a controller configured to receive, from applications, respective requests for an exchange of application layer data over a communication network associated with the respective application, to select a first application, to control a communication circuit to perform an exchange according to the request received from the first application, to initiate, for a second application, a buffering of application layer data requested to be exchanged according to the request received from the second application, to control the communication circuit to release the first network layer communication connection based on a duration of the buffering and to establish a second network layer communication connection to a communication network associated with the second application and perform an exchange according to the request received from the second application over the second network layer communication connection after release of the first network layer communication connection.

    METHOD FOR MITIGATING INTERFERENCE AND INTERFERENCE MITIGATING RECEIVER

    公开(公告)号:US20190319665A1

    公开(公告)日:2019-10-17

    申请号:US15738468

    申请日:2016-05-23

    Abstract: A method (200) for mitigating interference includes: receiving (201) a first signal (y1) comprising a first plurality of multipath transmissions from at least one radio cell at a first antenna port (A) and a second signal (y2) comprising a second plurality of multipath transmissions from the at least one radio cell at a second antenna port (B); generating (202) a first spatial component (h1A) of a first channel coefficient (h1) based on the first signal (y1) and a second spatial component (h1B) of the first channel coefficient (h1) based on the second signal (y2); generating (203) a covariance measure (Ry) based on the first signal (y1) and the second signal (y2); and generating (204) a first spatial component (w1A) of a first weight (w1) for interference mitigation based on the covariance measure (Ry), the first and second spatial components (h1A, h1B) of the first channel coefficient (h1) and a scalar correction value (C).

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