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    • 1. 发明授权
    • Multi-path timing tracking and impairment modeling for improved grake receiver performance in mobility scenarios
    • 多路径定时跟踪和损伤建模,以改善移动场景中的接收器性能
    • US08254325B2
    • 2012-08-28
    • US12829093
    • 2010-07-01
    • Jaroslaw NiewczasKarsten Brueninghaus
    • Jaroslaw NiewczasKarsten Brueninghaus
    • H04W4/00
    • H04B1/712H04B1/7085H04B1/7117H04B2201/709727
    • Methods and wireless receivers (5) are disclosed for estimating a propagation channel response that includes two closely spaced delays. An exemplary method comprises selecting (720) a plurality of receiver processing delays for sampling the received signal so that that the receiver processing delays span two closely spaced channel response delays, and calculating (730) an average channel coefficient magnitude over at least a first number of time slots of the received signal, for each of the receiver processing delays. The exemplary method further comprises estimating (740) delay timing for each of the two channel response delays, based on the average channel coefficient magnitudes and a multi-delay superposition model for the channel response, and calculating (750) complex channel gains for each of the two channel response delays, based on the estimated delay timings and channel response measurements taken over a second number of time slots that is less than the first number of time slots.
    • 公开了用于估计包括两个紧密间隔的延迟的传播信道响应的方法和无线接收器(5)。 一种示例性方法包括:选择(720)多个接收机处理延迟以对接收到的信号进行采样,使得接收机处理延迟跨越两个紧密间隔的信道响应延迟,并且计算(730)至少第一数量的平均信道系数幅度 的接收信号的时隙,用于每个接收机处理延迟。 该示例性方法还包括:基于平均信道系数幅度和用于信道响应的多延迟叠加模型来估计(740)两个信道响应延迟中的每一个的延迟定时,并且计算(750)每个信道响应的复信道增益 基于估计的延迟定时和通过小于第一数量的时隙的第二数量的时隙进行的信道响应测量的两个信道响应延迟。
    • 3. 发明申请
    • Technique for determining a sub-frame configuration
    • 确定子帧配置的技术
    • US20090207853A1
    • 2009-08-20
    • US12369633
    • 2009-02-11
    • Stefan Mueller-WeinfurtnerKarsten BrueninghausUdo Wachsmann
    • Stefan Mueller-WeinfurtnerKarsten BrueninghausUdo Wachsmann
    • H04L29/06
    • H04L27/2647H04J11/0069H04L27/2607
    • A technique is provided for determining the configuration of a sub-frame having data symbols including cyclic-prefixes. In some communication standards such as the Long Term Evolution (LTE) standard, a plurality of possible configurations exist for a sub-frame, with each configuration being identifiable by a certain cyclic-prefix length. In an exemplary method realization, the technique includes receiving a data signal comprising the sub-frame, evaluating one or more hypotheses of the cyclic prefix length to produce one or more corresponding evaluation results, and, based on the evaluation results, deciding on a most-likely cyclic prefix length, according to which the sub-frame configuration is determined. The hypothesis evaluation may involve autocorrelation and cyclic accumulation of samples of the received data signal.
    • 提供了一种用于确定具有包括循环前缀的数据符号的子帧的配置的技术。 在诸如长期演进(LTE)标准的某些通信标准中,对于子帧存在多个可能的配置,每个配置可以通过一定的循环前缀长度来识别。 在示例性方法实现中,该技术包括接收包括子帧的数据信号,评估循环前缀长度的一个或多个假设以产生一个或多个相应的评估结果,并且基于评估结果,决定最多 类似循环前缀长度,根据该长度确定子帧配置。 假设评估可以涉及接收数据信号的样本的自相关和循环累加。
    • 7. 发明申请
    • MULTI-PATH TIMING TRACKING AND IMPAIRMENT MODELING FOR IMPROVED GRAKE RECEIVER PERFORMANCE IN MOBILITY SCENARIOS
    • 多路径时序跟踪和改进模型,用于改善移动性场景中的格雷接收机性能
    • US20110002232A1
    • 2011-01-06
    • US12829093
    • 2010-07-01
    • Jaroslaw NiewczasKarsten Brueninghaus
    • Jaroslaw NiewczasKarsten Brueninghaus
    • H04L12/26
    • H04B1/712H04B1/7085H04B1/7117H04B2201/709727
    • Methods and wireless receivers (5) are disclosed for estimating a propagation channel response that includes two closely spaced delays. An exemplary method comprises selecting (720) a plurality of receiver processing delays for sampling the received signal so that that the receiver processing delays span two closely spaced channel response delays, and calculating (730) an average channel coefficient magnitude over at least a first number of time slots of the received signal, for each of the receiver processing delays. The exemplary method further comprises estimating (740) delay timing for each of the two channel response delays, based on the average channel coefficient magnitudes and a multi-delay superposition model for the channel response, and calculating (750) complex channel gains for each of the two channel response delays, based on the estimated delay timings and channel response measurements taken over a second number of time slots that is less than the first number of time slots.
    • 公开了用于估计包括两个紧密间隔的延迟的传播信道响应的方法和无线接收器(5)。 一种示例性方法包括:选择(720)多个接收机处理延迟以对接收到的信号进行采样,使得接收机处理延迟跨越两个紧密间隔的信道响应延迟,并且计算(730)至少第一数量的平均信道系数幅度 的接收信号的时隙,用于每个接收机处理延迟。 该示例性方法还包括:基于平均信道系数幅度和用于信道响应的多延迟叠加模型来估计(740)两个信道响应延迟中的每一个的延迟定时,并且计算(750)每个信道响应的复信道增益 基于估计的延迟定时和通过小于第一数量的时隙的第二数量的时隙进行的信道响应测量的两个信道响应延迟。