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    • 1. 发明申请
    • SYSTEM AND METHOD FOR DETECTING AND PROCESSING RECEIVED SIGNAL WITH PULSE SEQUENCE
    • 用脉冲序列检测和处理接收信号的系统和方法
    • US20110261862A1
    • 2011-10-27
    • US12766361
    • 2010-04-23
    • Petru Cristian BudianuJun ShiAmal EkbalDavid Jonathan Julian
    • Petru Cristian BudianuJun ShiAmal EkbalDavid Jonathan Julian
    • H04B1/69H04L27/06
    • H04B1/7183H04B2001/6908
    • Methods of detecting a pulse sequence in a received signal are disclosed, each of which entails operating on samples of the received signal. One method entails determining a correlation of samples with a reference sequence, and detecting the pulse sequence based on the correlation. Another method entails selecting a reference sample associated with a pulse, and detecting the pulse sequence by analyzing samples based on one or more lengths of a time hopping interval and the reference sample. Another method entails selecting a reference sample associated with non-restricted time hopping intervals, and detecting the pulse sequence by analyzing samples that are based on substantially one or more lengths of a half pulse interval and the reference sample. Further, disclosed is a method of determining a timing drift by selecting samples, determining a time delay between the selected samples, and determining the timing drift based on the determined time delay and an expected time delay.
    • 公开了在接收信号中检测脉冲序列的方法,其中每个都需要对接收信号的样本进行操作。 一种方法需要确定样本与参考序列的相关性,并且基于相关性来检测脉冲序列。 另一种方法需要选择与脉冲相关联的参考样本,并且通过基于时间跳跃间隔的一个或多个长度和参考样本分析样本来检测脉冲序列。 另一种方法需要选择与非限制性跳频间隔相关联的参考样本,并且通过分析基于半脉冲间隔的基本上一个或多个长度和参考样本的样本来检测脉冲序列。 此外,公开了一种通过选择样本来确定定时漂移的方法,确定所选样本之间的时间延迟,并且基于所确定的时间延迟和预期时间延迟来确定定时漂移。
    • 2. 发明授权
    • Two-way ranging messaging scheme
    • 双向测距消息传输方案
    • US08879407B2
    • 2014-11-04
    • US12875278
    • 2010-09-03
    • Amal EkbalDavid Jonathan JulianPetru Cristian Budianu
    • Amal EkbalDavid Jonathan JulianPetru Cristian Budianu
    • H04W64/00G01S5/14G01S13/76
    • G01S13/765G01S5/14
    • In a two-way ranging scheme where a first apparatus (e.g., device) determines a distance to a second apparatus (e.g., device), specified packets are sent between these apparatuses at specified times to facilitate the determination of the distance. In some aspects, these packets may be defined and/or sent in a manner that enables the apparatuses to detect a leading edge of a received packet with a high degree of accuracy. For example, an apparatus may transmit a packet a defined period of time after transmitting or receiving another packet. In addition, a packet may comprise a defined symbol sequence that is used by an apparatus that receives the packet to identify a leading edge of the packet.
    • 在第一设备(例如,设备)确定到第二设备(例如,设备)的距离的双向测距方案中,在指定时间在这些设备之间发送指定的分组,以便于确定距离。 在一些方面,这些分组可以以能够使设备以高精度检测接收分组的前沿的方式被定义和/或发送。 例如,设备可以在发送或接收另一个分组之后在限定的时间段内发送分组。 此外,分组可以包括由接收分组以识别分组的前沿的装置使用的定义的符号序列。
    • 4. 发明申请
    • SIGNAL CHARACTERISTIC-BASED LEADING EDGE DETECTION
    • 基于信号特征的引导边缘检测
    • US20110294450A1
    • 2011-12-01
    • US12890076
    • 2010-09-24
    • Petru Cristian BudianuDavid Jonathan JulianAmal Ekbal
    • Petru Cristian BudianuDavid Jonathan JulianAmal Ekbal
    • H04B1/16
    • H03K5/082H03K5/1534H04B1/71637
    • In a signal-based gain control scheme, one or more gain levels used for processing signals are selected based on characteristics of previously received signals. For example, different gain levels may be used to receive sets of signals whereupon certain characteristics of the received sets of signals are determined. One or more gain levels are then selected based on these characteristics whereby another signal is processed based on the selected gain level(s). In some aspects, the signal-based gain control scheme may be employed to facilitate two-way ranging operations between two devices. For example, leading edge detection may involve determining a characteristic of a received signal, determining a threshold based on the characteristic, and identifying a leading edge associated with the received signal based on the threshold. In some aspects, the signal-based gain control scheme may be employed in an ultra-low power pulse-based communication system (e.g., in ultra-wideband communication devices).
    • 在基于信号的增益控制方案中,基于先前接收到的信号的特性来选择用于处理信号的一个或多个增益电平。 例如,可以使用不同的增益电平来接收信号集合,从而确定所接收的信号组的某些特性。 然后基于这些特征选择一个或多个增益电平,由此基于所选择的增益电平处理另一个信号。 在一些方面,可以采用基于信号的增益控制方案来促进两个设备之间的双向测距操作。 例如,前沿检测可以涉及确定接收信号的特性,基于特性确定阈值,以及基于阈值来识别与接收信号相关联的前沿。 在一些方面,基于信号的增益控制方案可以用于基于超低功率脉冲的通信系统(例如,在超宽带通信设备中)。
    • 6. 发明申请
    • TWO-WAY RANGING MESSAGING SCHEME
    • 两路测距消息传输方案
    • US20110292820A1
    • 2011-12-01
    • US12875278
    • 2010-09-03
    • Amal EkbalDavid Jonathan JulianPetru Cristian Budianu
    • Amal EkbalDavid Jonathan JulianPetru Cristian Budianu
    • H04W24/00
    • G01S13/765G01S5/14
    • In a two-way ranging scheme where a first apparatus (e.g., device) determines a distance to a second apparatus (e.g., device), specified packets are sent between these apparatuses at specified times to facilitate the determination of the distance. In some aspects, these packets may be defined and/or sent in a manner that enables the apparatuses to detect a leading edge of a received packet with a high degree of accuracy. For example, an apparatus may transmit a packet a defined period of time after transmitting or receiving another packet. In addition, a packet may comprise a defined symbol sequence that is used by an apparatus that receives the packet to identify a leading edge of the packet.
    • 在第一设备(例如,设备)确定到第二设备(例如,设备)的距离的双向测距方案中,在指定时间在这些设备之间发送指定的分组,以便于确定距离。 在一些方面,这些分组可以以能够使设备以高精度检测接收分组的前沿的方式被定义和/或发送。 例如,设备可以在发送或接收另一个分组之后在限定的时间段内发送分组。 此外,分组可以包括由接收分组以识别分组的前沿的装置使用的定义的符号序列。
    • 8. 发明授权
    • Signal based gain control
    • 基于信号的增益控制
    • US08886148B2
    • 2014-11-11
    • US12890004
    • 2010-09-24
    • Petru Cristian BudianuDavid Jonathan JulianAmal Ekbal
    • Petru Cristian BudianuDavid Jonathan JulianAmal Ekbal
    • H04B1/16G01S13/76H03G3/30
    • H03G3/3052G01S13/765
    • In a signal-based gain control scheme, one or more gain levels used for processing signals are selected based on characteristics of previously received signals. For example, different gain levels may be used to receive sets of signals whereupon certain characteristics of the received sets of signals are determined. One or more gain levels are then selected based on these characteristics whereby another signal is processed based on the selected gain level(s). In some aspects, the signal-based gain control scheme may be employed to facilitate two-way ranging operations between two devices. For example, leading edge detection may involve determining a characteristic of a received signal, determining a threshold based on the characteristic, and identifying a leading edge associated with the received signal based on the threshold. In some aspects, the signal-based gain control scheme may be employed in an ultra-low power pulse-based communication system (e.g., in ultra-wideband communication devices).
    • 在基于信号的增益控制方案中,基于先前接收到的信号的特性来选择用于处理信号的一个或多个增益电平。 例如,可以使用不同的增益电平来接收信号集合,从而确定所接收的信号组的某些特性。 然后基于这些特征选择一个或多个增益电平,由此基于所选择的增益电平处理另一个信号。 在一些方面,可以采用基于信号的增益控制方案来促进两个设备之间的双向测距操作。 例如,前沿检测可以包括确定接收信号的特性,基于特性确定阈值,以及基于阈值来识别与接收信号相关联的前沿。 在一些方面,基于信号的增益控制方案可以用于基于超低功率脉冲的通信系统(例如,在超宽带通信设备中)。
    • 9. 发明授权
    • Signal characteristic-based leading edge detection
    • 基于信号特征的前沿检测
    • US08812063B2
    • 2014-08-19
    • US12890076
    • 2010-09-24
    • Petru Cristian BudianuDavid Jonathan JulianAmal Ekbal
    • Petru Cristian BudianuDavid Jonathan JulianAmal Ekbal
    • H04L7/02H04B17/00H03K5/08H03K5/1534H04B1/7163
    • H03K5/082H03K5/1534H04B1/71637
    • In a signal-based gain control scheme, one or more gain levels used for processing signals are selected based on characteristics of previously received signals. For example, different gain levels may be used to receive sets of signals whereupon certain characteristics of the received sets of signals are determined. One or more gain levels are then selected based on these characteristics whereby another signal is processed based on the selected gain level(s). In some aspects, the signal-based gain control scheme may be employed to facilitate two-way ranging operations between two devices. For example, leading edge detection may involve determining a characteristic of a received signal, determining a threshold based on the characteristic, and identifying a leading edge associated with the received signal based on the threshold. In some aspects, the signal-based gain control scheme may be employed in an ultra-low power pulse-based communication system (e.g., in ultra-wideband communication devices).
    • 在基于信号的增益控制方案中,基于先前接收到的信号的特性来选择用于处理信号的一个或多个增益电平。 例如,可以使用不同的增益电平来接收信号集合,从而确定所接收的信号组的某些特性。 然后基于这些特征选择一个或多个增益电平,由此基于所选择的增益电平处理另一个信号。 在一些方面,可以采用基于信号的增益控制方案来促进两个设备之间的双向测距操作。 例如,前沿检测可以涉及确定接收信号的特性,基于特性确定阈值,以及基于阈值来识别与接收信号相关联的前沿。 在一些方面,基于信号的增益控制方案可以用于基于超低功率脉冲的通信系统(例如,在超宽带通信设备中)。