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    • 2. 发明授权
    • Receiver circuit
    • US10003440B2
    • 2018-06-19
    • US15403887
    • 2017-01-11
    • NXP B.V.
    • Wim van Houtum
    • H04L5/00H04B1/10H04B1/16H04B1/12
    • H04L5/0007H04B1/1027H04B1/123H04B1/16
    • A receiver circuit comprising: an input terminal configured to receive an input-signal; an interfering-signal-strength-calculator configured to determine an interfering-signal-strength-indicator based on the input signal; a compensation-block configured to apply a co-channel-interference compensation operation to the input-signal in order to generate a compensated-input-signal; a compensation-weighting-component configured to apply a compensation-weighting-factor to the compensated-input-signal in order to generate a weighted-compensated-input-signal, wherein the compensation-weighting-factor is based on the interfering-signal-strength-indicator; a delay-block configured to apply a delay to the input-signal in order to generate a delayed-input-signal; a delayed-weighting-component configured to apply a delayed-weighting-factor to the delayed-input-signal in order to generate a weighted-delayed-input-signal, wherein the delayed-weighting-factor is based on the interfering-signal-strength-indicator; and a signal-combiner configured to combine the weighted-delayed-input-signal and the weighted-compensated-input-signal in order to provide a combined-input-signal for demodulation.
    • 4. 发明申请
    • RECEIVER CIRCUIT
    • US20170214499A1
    • 2017-07-27
    • US15403887
    • 2017-01-11
    • NXP B.V.
    • Wim van Houtum
    • H04L5/00H04B1/10H04B1/16
    • H04L5/0007H04B1/1027H04B1/123H04B1/16
    • A receiver circuit comprising: an input terminal configured to receive an input-signal; an interfering-signal-strength-calculator configured to determine an interfering-signal-strength-indicator based on the input signal; a compensation-block configured to apply a co-channel-interference compensation operation to the input-signal in order to generate a compensated-input-signal; a compensation-weighting-component configured to apply a compensation-weighting-factor to the compensated-input-signal in order to generate a weighted-compensated-input-signal, wherein the compensation-weighting-factor is based on the interfering-signal-strength-indicator; a delay-block configured to apply a delay to the input-signal in order to generate a delayed-input-signal; a delayed-weighting-component configured to apply a delayed-weighting-factor to the delayed-input-signal in order to generate a weighted-delayed-input-signal, wherein the delayed-weighting-factor is based on the interfering-signal-strength-indicator; and a signal-combiner configured to combine the weighted-delayed-input-signal and the weighted-compensated-input-signal in order to provide a combined-input-signal for demodulation.
    • 5. 发明申请
    • COMMUNICATIONS WITH INTERFERENCE SUPPRESSION
    • 具有干扰抑制的通信
    • US20150358040A1
    • 2015-12-10
    • US14296046
    • 2014-06-04
    • NXP B.V.
    • Wim van HoutumKave Kianush
    • H04B1/10
    • H04B1/10H04B1/109H04B1/406H04B7/0848
    • Various aspects of the disclosure are directed to steering antennas for receiving signals. As may be implemented in accordance with one or more embodiments, an apparatus includes two or more antennas that receive radio signals, a first circuit that directs the antennas and a second circuit that combines signals received by the antennas. The first circuit operates in a first mode by electronically directing the antennas using an analog portion of received signals to modify a radiation pattern of the receive antennas, based on estimated phase-shifts and/or estimated amplitude of the signals. In a second mode, the first circuit uses a digitally-modulated portion of the signals to electronically direct the antennas by modifying the radiation pattern of the receive antennas based on at least one of estimated phase-shifts and estimated amplitude of the signals. Accordingly, null-steering can be effected to eliminate interference.
    • 本公开的各个方面涉及用于接收信号的转向天线。 如可以根据一个或多个实施例实现的,装置包括接收无线电信号的两个或更多个天线,引导天线的第一电路和组合由天线接收的信号的第二电路。 第一电路以第一模式工作,通过使用接收信号的模拟部分电子地引导天线,以基于估计的相移和/或信号的估计幅度来修改接收天线的辐射图。 在第二模式中,第一电路使用信号的数字调制部分来基于估计的相移和信号的估计幅度中的至少一个,通过修改接收天线的辐射模式来电子地引导天线。 因此,可以进行零转向以消除干扰。
    • 6. 发明申请
    • BEAM FORMING FOR FIRST ADJACENT CANCELLATION
    • US20190356347A1
    • 2019-11-21
    • US15982029
    • 2018-05-17
    • NXP B.V.
    • Wim van Houtum
    • H04B1/10H04L5/00H04B7/06
    • 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.