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    • 3. 发明申请
    • SIGNAL PROCESSING USING QUANTIZED SYMBOLS
    • 信号处理使用量化符号
    • US20160344435A1
    • 2016-11-24
    • US15139457
    • 2016-04-27
    • NXP B.V.
    • Andries HekstraAlessio FilippiSemih SerbetliArie Koppelaar
    • H04B1/16H04L1/00H04L25/02
    • H04B1/16H04L1/0052H04L1/0061H04L1/0071H04L25/0202H04L25/067
    • According to the present disclosure, there is provided methods of processing a signal using quantized symbols. More particularly, in one example, the method comprises the steps of processing a signal (206), said method comprising the steps of: receiving a signal (206) comprising a plurality of raw symbols, each raw symbol having a plurality of bits and being conveyed in a channel; estimating a channel state information value (206) of the channel used to convey each raw symbol to generate a corresponding plurality of channel state information values; quantizing the plurality of raw symbols based on their channel state information values to generate a sequence of quantized symbols (214); and quantizing the channel state information values to generate a sequence of quantized channel state values (216).
    • 根据本公开,提供了使用量化符号处理信号的方法。 更具体地,在一个示例中,该方法包括处理信号(206)的步骤,所述方法包括以下步骤:接收包括多个原始符号的信号(206),每个原始符号具有多个位,并且是 在渠道中传达; 估计用于传送每个原始符号以生成相应的多个信道状态信息值的信道的信道状态信息值(206); 基于其信道状态信息值对多个原始符号进行量化以产生量化符号序列(214); 以及量化所述信道状态信息值以产生量化信道状态值的序列(216)。
    • 5. 发明申请
    • COMMUNICATIONS WITH DISTANCE AUTHENTICATION
    • 具有距离认证的通信
    • US20160234684A1
    • 2016-08-11
    • US14615738
    • 2015-02-06
    • NXP B.V.
    • Andries HekstraArie KoppelaarStefan DrudeFrank Leong
    • H04W12/06H04L29/08
    • H04W12/06G06F21/30G06F21/35H04K1/02H04K3/86H04L67/1095
    • Distance-based authentication is provided for mitigating undesirable interaction and/or attacks upon ranging systems, such as those involving vehicle entry or secure payment. As may be implemented in accordance with one or more embodiments, a leading edge of one or more pulses in a waveform of a signal is obscured as part of distance-based authentication. For instance, noise may be generated via a noise modulation circuit and combined with some or all of a leading edge of a pulse. Distance-based authentication is provided by transmitting a signal with a waveform having the obscured portion of the leading edge, which operates to mitigate detection of the polarity of the leading edge or otherwise of the leading edge itself.
    • 提供了基于距离的身份验证,以减轻对测距系统(例如涉及车辆进入或安全支付)的不期望的交互和/或攻击。 如可以根据一个或多个实施例来实现的,作为基于距离的认证的一部分,信号波形中的一个或多个脉冲的前沿被遮蔽。 例如,可以通过噪声调制电路产生噪声,并与脉冲的前沿中的一些或全部组合。 通过发送具有前沿的遮蔽部分的波形的信号来提供基于距离的认证,其操作以减轻前缘本身的前沿或其他方面的极性的检测。
    • 10. 发明申请
    • COMMUNICATION SYNCHRONIZATION
    • 通信同步
    • US20160056950A1
    • 2016-02-25
    • US14468317
    • 2014-08-25
    • NXP B.V.
    • Frank LeongAndries HekstraArie KoppelaarStefan Drude
    • H04L7/00H04L12/26
    • H04L7/0037G06K7/10237G06K19/07766H04B5/00H04J3/0682H04L7/0012H04L43/0864H04W4/023H04W4/80H04W56/00
    • Aspects of the present disclosure provide communications between local and remote devices having low-frequency (LF) and high-frequency (HF) circuits. As may be implemented in accordance with one or more embodiments, the local device transmits an LF signal to the remote device, which synchronizes its clock based on the LF signal. Another LF signal is communicated from the local device to the remote device using a reduced quality factor, which can be implemented to facilitate synchronization. The clock is resynchronized based on the second LF signal and used to transmit an HF signal with a time delay. The local device synchronizes its clock based on the HF signal, and transmits another HF signal to the remote device using the clock and another time delay. The remote device re-synchronizes its clock based on the second HF signal while accounting for a trip time for communicating the first and/or second HF signals.
    • 本公开的方面提供具有低频(LF)和高频(HF)电路的本地和远程设备之间的通信。 如可以根据一个或多个实施例来实现的,本地设备向远程设备发送LF信号,该远程设备基于LF信号同步其时钟。 另一个LF信号使用降低的品质因子从本地设备传送到远程设备,这可以被实现以促进同步。 基于第二LF信号重新同步时钟,并用于以时间延迟发送HF信号。 本地设备基于HF信号同步其时钟,并使用时钟和另一个时间延迟将另一个HF信号发送到远程设备。 远程设备基于第二HF信号重新同步其时钟,同时考虑用于传送第一和/或第二HF信号的跳闸时间。