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    • 2. 发明授权
    • System and method of dynamically optimizing a transmission mode of wirelessly transmitted information
    • 动态优化无线传输信息传输模式的系统和方法
    • US06802035B2
    • 2004-10-05
    • US10072359
    • 2002-04-01
    • Severine CatreuxDavid GesbertManish Airy
    • Severine CatreuxDavid GesbertManish Airy
    • G06F1100
    • H04L1/0003H04L1/0001H04L1/0002H04L1/0009H04L1/0016H04L1/0021H04L1/0026H04L1/0033H04L1/06H04L1/20H04L27/2601H04W24/00H04W28/06
    • The present invention includes a method of optimizing a transmission mode of wirelessly transmitted data. The method includes selecting a first transmission mode based on a predetermined channel database and a first channel characterization. The first channel characterization can be based upon signals transmitted in an initial mode. An error factor is generated based on a difference between an estimated performance characteristic, and an expected performance characteristic. A subsequent transmission mode is selected based upon the predetermined channel database, the error factor and a subsequent channel characterization. The predetermined channel database can include a predetermined look-up-table that provides transmission mode selections based upon the channel characterizations. The look-up-table generally includes a plurality of quality parameter thresholds that determine the selection of a transmission mode. Another method includes receiving transmission signals that include data encoded in an initial transmission mode. A first quality parameter of the received transmission signals is measured. A subsequent transmission mode is selected based upon the quality parameter. Transmission signals are received having data encoded in the subsequent transmission mode. A second quality parameter is measured. A parameter is adjusted within selection criteria of another subsequent transmission mode based upon the second quality parameter.
    • 本发明包括优化无线发送数据的发送模式的方法。 该方法包括基于预定信道数据库和第一信道表征来选择第一传输模式。 第一通道特性可以基于在初始模式下传输的信号。 基于估计性能特性和预期性能特性之间的差异产生误差因子。 基于预定的信道数据库,误差因子和随后的信道表征来选择随后的传输模式。 预定信道数据库可以包括基于信道特征提供传输模式选择的预定查找表。 查找表通常包括确定传输模式的选择的多个质量参数阈值。 另一种方法包括接收包括以初始传输模式编码的数据的传输信号。 测量所接收的传输信号的第一质量参数。 基于质量参数选择随后的传输模式。 接收具有在后续传输模式中编码的数据的传输信号。 测量第二个质量参数。 基于第二质量参数,在另一后续传输模式的选择标准内调整参数。
    • 3. 发明授权
    • System and method of dynamically optimizing a transmission mode of wirelessly transmitted information
    • 动态优化无线传输信息传输模式的系统和方法
    • US07920483B2
    • 2011-04-05
    • US12491634
    • 2009-06-25
    • Severine CatreuxDavid GesbertManish Airy
    • Severine CatreuxDavid GesbertManish Airy
    • G06F11/00H04J3/22
    • H04L1/0003H04L1/0001H04L1/0002H04L1/0009H04L1/0016H04L1/0021H04L1/0026H04L1/0033H04L1/06H04L1/20H04L27/2601H04W24/00H04W28/06
    • The present invention includes a method of optimizing a transmission mode of wirelessly transmitted data. The method includes selecting a first transmission mode based on a predetermined channel database and a first channel characterization. The first channel characterization can be based upon signals transmitted in an initial mode. An error factor is generated based on a difference between an estimated performance characteristic, and an expected performance characteristic. A subsequent transmission mode is selected based upon the predetermined channel database, the error factor and a subsequent channel characterization. The predetermined channel database can include a predetermined look-up-table that provides transmission mode selections based upon the channel characterizations. The look-up-table generally includes a plurality of quality parameter thresholds that determine the selection of a transmission mode. Another method includes receiving transmission signals that include data encoded in an initial transmission mode. A first quality parameter of the received transmission signals is measured. A subsequent transmission mode is selected based upon the quality parameter. Transmission signals are received having data encoded in the subsequent transmission mode. A second quality parameter is measured. A parameter is adjusted within selection criteria of another subsequent transmission mode based upon the second quality parameter.
    • 本发明包括优化无线发送数据的发送模式的方法。 该方法包括基于预定信道数据库和第一信道表征来选择第一传输模式。 第一通道特性可以基于在初始模式下传输的信号。 基于估计性能特性和预期性能特性之间的差异产生误差因子。 基于预定的信道数据库,误差因子和随后的信道表征来选择随后的传输模式。 预定信道数据库可以包括基于信道特征提供传输模式选择的预定查找表。 查找表通常包括确定传输模式的选择的多个质量参数阈值。 另一种方法包括接收包括以初始传输模式编码的数据的传输信号。 测量所接收的传输信号的第一质量参数。 基于质量参数选择随后的传输模式。 接收具有在后续传输模式中编码的数据的传输信号。 测量第二个质量参数。 基于第二质量参数,在另一后续传输模式的选择标准内调整参数。
    • 4. 发明申请
    • System and Method of Dynamically Optimizing a Transmission Mode of Wirelessly Transmitted Information
    • 动态优化无线传输信息传输模式的系统与方法
    • US20090262850A1
    • 2009-10-22
    • US12491634
    • 2009-06-25
    • Severine CatreuxDavid GesbertManish Airy
    • Severine CatreuxDavid GesbertManish Airy
    • H04L27/28H04B1/04
    • H04L1/0003H04L1/0001H04L1/0002H04L1/0009H04L1/0016H04L1/0021H04L1/0026H04L1/0033H04L1/06H04L1/20H04L27/2601H04W24/00H04W28/06
    • The present invention includes a method of optimizing a transmission mode of wirelessly transmitted data. The method includes selecting a first transmission mode based on a predetermined channel database and a first channel characterization. The first channel characterization can be based upon signals transmitted in an initial mode. An error factor is generated based on a difference between an estimated performance characteristic, and an expected performance characteristic. A subsequent transmission mode is selected based upon the predetermined channel database, the error factor and a subsequent channel characterization. The predetermined channel database can include a predetermined look-up-table that provides transmission mode selections based upon the channel characterizations. The look-up-table generally includes a plurality of quality parameter thresholds that determine the selection of a transmission mode. Another method includes receiving transmission signals that include data encoded in an initial transmission mode. A first quality parameter of the received transmission signals is measured. A subsequent transmission mode is selected based upon the quality parameter. Transmission signals are received having data encoded in the subsequent transmission mode. A second quality parameter is measured. A parameter is adjusted within selection criteria of another subsequent transmission mode based upon the second quality parameter.
    • 本发明包括优化无线发送数据的发送模式的方法。 该方法包括基于预定信道数据库和第一信道表征来选择第一传输模式。 第一通道特性可以基于在初始模式下传输的信号。 基于估计性能特性和预期性能特性之间的差异产生误差因子。 基于预定的信道数据库,误差因子和随后的信道表征来选择随后的传输模式。 预定信道数据库可以包括基于信道特征提供传输模式选择的预定查找表。 查找表通常包括确定传输模式的选择的多个质量参数阈值。 另一种方法包括接收包括以初始传输模式编码的数据的传输信号。 测量所接收的传输信号的第一质量参数。 基于质量参数选择随后的传输模式。 接收具有在后续传输模式中编码的数据的传输信号。 测量第二个质量参数。 基于第二质量参数,在另一后续传输模式的选择标准内调整参数。
    • 5. 发明申请
    • System and method of dynamically optimizing a transmission mode of wirelessly transmitted information
    • 动态优化无线传输信息传输模式的系统和方法
    • US20050099975A1
    • 2005-05-12
    • US10990676
    • 2004-11-16
    • Severine CatreuxDavid GesbertManish Airy
    • Severine CatreuxDavid GesbertManish Airy
    • H04J99/00H04B7/04H04B7/06H04B7/26H04L1/00H04L1/06H04L1/20H04L12/56H04L27/26H04W24/00H04W28/04H04W28/06
    • H04L1/0003H04L1/0001H04L1/0002H04L1/0009H04L1/0016H04L1/0021H04L1/0026H04L1/0033H04L1/06H04L1/20H04L27/2601H04W24/00H04W28/06
    • The present invention includes a method of optimizing a transmission mode of wirelessly transmitted data. The method includes selecting a first transmission mode based on a predetermined channel database and a first channel characterization. The first channel characterization can be based upon signals transmitted in an initial mode. An error factor is generated based on a difference between an estimated performance characteristic, and an expected performance characteristic. A subsequent transmission mode is selected based upon the predetermined channel database, the error factor and a subsequent channel characterization. The predetermined channel database can include a predetermined look-up-table that provides transmission mode selections based upon the channel characterizations. The look-up-table generally includes a plurality of quality parameter thresholds that determine the selection of a transmission mode. Another method includes receiving transmission signals that include data encoded in an initial transmission mode. A first quality parameter of the received transmission signals is measured. A subsequent transmission mode is selected based upon the quality parameter. Transmission signals are received having data encoded in the subsequent transmission mode. A second quality parameter is measured. A parameter is adjusted within selection criteria of another subsequent transmission mode based upon the second quality parameter.
    • 本发明包括优化无线发送数据的发送模式的方法。 该方法包括基于预定信道数据库和第一信道表征来选择第一传输模式。 第一通道特性可以基于在初始模式下传输的信号。 基于估计性能特性和预期性能特性之间的差异产生误差因子。 基于预定的信道数据库,误差因子和随后的信道表征来选择随后的传输模式。 预定信道数据库可以包括基于信道特征提供传输模式选择的预定查找表。 查找表通常包括确定传输模式的选择的多个质量参数阈值。 另一种方法包括接收包括以初始传输模式编码的数据的传输信号。 测量所接收的传输信号的第一质量参数。 基于质量参数选择随后的传输模式。 接收具有在后续传输模式中编码的数据的传输信号。 测量第二个质量参数。 基于第二质量参数,在另一后续传输模式的选择标准内调整参数。
    • 9. 发明授权
    • Method and transmitter for iteratively modifying beamforming vector
    • 用于迭代修改波束形成向量的方法和发射机
    • US08824576B2
    • 2014-09-02
    • US13060897
    • 2009-08-06
    • Choongil YehDong Seung KwonJi Hyung KimDavid Gesbert
    • Choongil YehDong Seung KwonJi Hyung KimDavid Gesbert
    • H04K1/10
    • H04B7/0617H04B7/0626H04B7/0641H04B7/065
    • The present invention provides data transmission capacity that is optimized in a communication environment by iteratively modifying a beamforming vector by linearly coupling selfish beamforming with unselfish beamforming using feedback information. The transmitter for modifying the beamforming vector iteratively includes: a feedback receiving module that receives feedback information from a receiver: and a vector determination module that determines an initial beamforming vector by coupling a first vector for the selfish beamforming with a second vector for the unselfish beamforming at the time of initial beamforming, and corrects a coupling ratio of the first vector and the second vector of the beamforming vector with reference to the received feedback information whenever the beamforming is modified.
    • 本发明提供了在通信环境中优化的数据传输能力,通过使用反馈信息通过使用无私波束成形线性耦合自私波束成形来迭代地修改波束形成向量。 用于修改波束形成向量的发射机迭代地包括:反馈接收模块,其从接收机接收反馈信息;以及矢量确定模块,其通过将用于自私波束形成的第一矢量与用于无私波束形成的第二矢量相耦合来确定初始波束形成向量 在初始波束形成时,并且每当修改波束形成时,参照所接收的反馈信息来校正波束形成矢量的第一矢量和第二矢量的耦合比。
    • 10. 发明申请
    • METHOD AND TRANSMITTER FOR ITERATIVELY MODIFYING BEAMFORMING VECTOR
    • 用于迭代变形矢量的方法和发射机
    • US20110158347A1
    • 2011-06-30
    • US13060897
    • 2009-08-06
    • Choongil YehDong Seung KwonJi Hyung KimDavid Gesbert
    • Choongil YehDong Seung KwonJi Hyung KimDavid Gesbert
    • H04L25/03
    • H04B7/0617H04B7/0626H04B7/0641H04B7/065
    • The present invention provides data transmission capacity that is optimized in a communication environment by iteratively modifying a beamforming vector by linearly coupling selfish beamforming with unselfish beamforming using feedback information. The transmitter for modifying the beamforming vector iteratively includes: a feedback receiving module that receives feedback information from a receiver: and a vector determination module that determines an initial beamforming vector by coupling a first vector for the selfish beamforming with a second vector for the unselfish beamforming at the time of initial beamforming, and corrects a coupling ratio of the first vector and the second vector of the beamforming vector with reference to the received feedback information whenever the beamforming is modified.
    • 本发明提供了在通信环境中优化的数据传输能力,通过使用反馈信息通过使用无私波束成形线性耦合自私波束成形来迭代地修改波束形成向量。 用于修改波束形成向量的发射机迭代地包括:反馈接收模块,其从接收机接收反馈信息;以及矢量确定模块,其通过将用于自私波束形成的第一矢量与用于无私波束形成的第二矢量相耦合来确定初始波束形成向量 在初始波束形成时,并且每当修改波束形成时,参照所接收的反馈信息来校正波束形成矢量的第一矢量和第二矢量的耦合比。