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    • 13. 发明申请
    • BEAM FORMING WITH DOUBLE-NULL-STEERING FOR IN-BAND ON-CHANNEL RECEPTION
    • 用于带内通道接收的双向无效转换的波束形成
    • US20160142119A1
    • 2016-05-19
    • US14546576
    • 2014-11-18
    • NXP B.V.
    • Wim van Houtum
    • H04B7/06H04B7/08
    • H04B7/0617H04B1/1036
    • Various exemplary embodiments relate to a method for improving reception of transmissions with first adjacent interference signals, the method including selecting one or more time samples from each of two or more antennas; generating a lower first adjacent interference (LFAI) signal, a desired signal, and an upper first adjacent interference (UFAI) signal for each of the time samples; calculating a lower weighting co-efficient based on the LFAI signal; calculating a middle weighting co-efficient based on the desired signal; calculating a upper weighting co-efficient based on the UFAI signal; combining the lower weighting co-efficient with a filtered LFAI signal into a weighted lower signal; combining the middle weighting co-efficient with a filtered desired signal into a weighted middle signal; combining the upper weighting co-efficient with a filtered UFAI signal into a weighted upper signal; and combining the weighted lower signal, the weighted middle signal, and the weighted upper signal.
    • 各种示例性实施例涉及一种用于利用第一相邻干扰信号改善传输的接收的方法,所述方法包括从两个或更多个天线中的每一个选择一个或多个时间采样; 为每个时间样本产生较低的第一相邻干扰(LFAI)信号,期望信号和较高的第一相邻干扰(UFAI)信号; 基于LFAI信号计算较低的加权系数; 基于所需信号计算中间加权系数; 基于UFAI信号计算上加权系数; 将较低加权系数与经滤波的LFAI信号组合成加权较低信号; 将中间加权系数与滤波的期望信号组合成加权中间信号; 将上加权系数与滤波的UFAI信号组合成加权的上信号; 并加权加权信号,加权中间信号和加权上位信号。
    • 14. 发明授权
    • Beam forming for first adjacent cancellation
    • US10581476B2
    • 2020-03-03
    • US15982029
    • 2018-05-17
    • NXP B.V.
    • Wim van Houtum
    • H04B1/10H04L5/00H04B7/06H04W72/08
    • A communications device includes aspects for improving reception of transmissions with first-adjacent co-channel interference signals corresponding to digitally-modulated side-bands of in-band on-channel (IBOC) broadcasted signals. The communications device may include a radio frequency (RF) signal-reception circuit including two RF-signal paths driven in response to signals received via at least two respective antennas, and configured to respond to signals carried in the respective RF-signal paths by providing pre-processed RF output signals. The communications device may further include a beam-forming circuit driven in response to signals received at the at least two respective antennas and configured and arranged to facilitate first-adjacent interference cancellation (FAC). The communications device can also include an interference-cancelling circuit configured and arranged to reduce the first-adjacent co-channel interference signals by combining a beam-forming output signal provided by the beam-forming circuit with the pre-processed RF output signals as part of a maximum ratio combining (MRC) process.