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    • 1. 发明申请
    • METHOD AND SYSTEM FOR MULTI-PATH VIDEO AND NETWORK CHANNELS
    • 多路径视频和网络通道的方法和系统
    • US20130120665A1
    • 2013-05-16
    • US13674008
    • 2012-11-10
    • Anand AnandakumarSheng YeCurtis Ling
    • Anand AnandakumarSheng YeCurtis Ling
    • H04N5/44H04N5/50
    • H04N21/4263H04N5/44H04N5/50H04N21/4383H04N21/4436H04N21/4622H04N21/6143
    • Methods and systems for multi-path video and network channels may comprise a communication device comprising a wideband path (WB) and a narrowband path (NB), wherein the WB may be operable to receive a plurality of channels and the NB may be operable to receive a single channel. Video channels and a network channel may be received in the WB when the device is operating in a first stage. Video channels and a network channel may be received in the WB and the network channel may also be received in the NB when the device is operating in a second stage. The network channel may be received in the NB when the device is operating in a third stage. The reception of the network channel from both the WB and the NB may enable a continuous reception of the network channel in a transition between the first and third stages.
    • 用于多路径视频和网络信道的方法和系统可以包括包括宽带路径(WB)和窄带路径(NB)的通信设备,其中,所述WB可以可操作以接收多个信道,并且所述NB可操作为 接收单个频道。 当设备在第一阶段中操作时,可以在WB中接收视频通道和网络通道。 在WB中可以接收视频信道和网络信道,并且当设备在第二阶段中操作时,也可以在NB中接收网络信道。 当设备在第三阶段中操作时,可以在NB中接收网络信道。 来自WB和NB的网络信道的接收可以使得能够在第一和第三级之间的转换中连续接收网络信道。
    • 7. 发明申请
    • GPS BASEBAND CONTROLLER ARCHITECTURE
    • GPS基带控制器架构
    • US20110102257A1
    • 2011-05-05
    • US12939543
    • 2010-11-04
    • Ioannis SpyropoulosAnand AnandakumarMaxime LeclercqYves Rasse
    • Ioannis SpyropoulosAnand AnandakumarMaxime LeclercqYves Rasse
    • G01S19/48G01S19/42G01S19/34
    • G01S19/34
    • A GPS receiver includes an RF front end for acquiring and tracking a satellite signal and a baseband processor configured to preserve power. The baseband processor includes a GPS engine configured to process the satellite signal and generate a PVT fix, a power supervisory module for receiving the PVT fix, and a user state module that determines an environmental state, wherein the power supervisory module may power down the GPS receiver for a period of time based on a result of the determined environment state. The baseband processor also includes a time-based management module that adjusts the TCXO in response to the determined environmental state. The GPS receiver includes a plurality of operation modes, each of which is associated with a plurality of tracking profiles.
    • GPS接收机包括用于获取和跟踪卫星信号的RF前端和配置成保持功率的基带处理器。 基带处理器包括配置成处理卫星信号并产生PVT固定的GPS引擎,用于接收PVT定位的电力监控模块以及确定环境状态的用户状态模块,其中电力监控模块可以关闭GPS 接收器基于所确定的环境状态的结果一段时间。 基带处理器还包括一个基于时间的管理模块,可根据确定的环境状态调整TCXO。 GPS接收机包括多个操作模式,每个操作模式与多个跟踪简档相关联。
    • 9. 发明申请
    • METHOD AND SYSTEM FOR RECEIVER CONFIGURATION BASED ON A PRIORI KNOWLEDGE OF NOISE
    • 基于先验知识的接收机配置方法与系统
    • US20130332968A1
    • 2013-12-12
    • US13916130
    • 2013-06-12
    • Anand AnandakumarIoannis SpyropoulosMeetul Parikh
    • Anand AnandakumarIoannis SpyropoulosMeetul Parikh
    • H04N21/647
    • H04N21/64738H04N21/438H04N21/44209H04N21/6143
    • A signal receiver may be configured to determine when signal generation changes affecting signals being received by the signal receiver may cause performance related changes; and to modify its (the signal receiver) configuration to handle the performance related changes. In this regard, the modifying of configuration may comprise determining characteristics of performance related changes, and controlling operations of the signal receiver based on the determined characteristics of the performance related changes. The performance related changes may comprise amplitude glitches, phase glitches, and/or bit or packet errors. The signal generation changes may comprise channel-to-frequency re-assignment. Controlling operations of the signal receiver based on determined characteristics of the performance related changes may comprise adjusting such parameters as amplification gain and/or tracking loop bandwidth, and/or determining whether (or not) to ignore bit/packet errors—i.e. not reacquire (e.g., based on determination that tracking loops used in the signal receiver remain locked).
    • 信号接收机可以被配置为确定何时影响由信号接收器接收的信号的信号产生改变可能导致性能相关的变化; 并修改其(信号接收器)配置以处理性能相关的更改。 在这方面,配置的修改可以包括确定性能相关变化的特性,以及基于所确定的性能相关变化的特性来控制信号接收机的操作。 性能相关的变化可能包括幅度毛刺,相位毛刺和/或位或分组错误。 信号产生改变可以包括频率 - 频率重新分配。 基于性能相关变化的确定特性来控制信号接收机的操作可以包括调整诸如放大增益和/或跟踪环路带宽之类的参数,和/或确定是否(或不))忽略比特/分组错误 - 即, 不重新获取(例如,基于在信号接收器中使用的跟踪环路保持锁定的确定)。
    • 10. 发明授权
    • Method and system for repurposing of a global navigation satellite system receiver for receiving low-earth orbit communication satellite signals
    • 一种用于接收低地球轨道通信卫星信号的全球导航卫星系统接收机的再利用方法和系统
    • US09077429B2
    • 2015-07-07
    • US13413916
    • 2012-03-07
    • Maxime LeclercqIoannis SpyropoulosNishant KumarAnand Anandakumar
    • Maxime LeclercqIoannis SpyropoulosNishant KumarAnand Anandakumar
    • H04B7/185
    • G01S19/46H04B7/1853H04B7/18547H04W64/006
    • Methods and systems for repurposing of a global navigation satellite system receiver for receiving low-earth orbit (LEO) communication satellite timing signals may comprise receiving medium Earth orbit (MEO) satellite signals and/or LEO signals in a receiver of the communication device. A radio frequency (RF) path may be configured to down-convert either of the signals, and a position of the communication device may be calculated utilizing the down-converted signals. The signals may be down-converted utilizing a local oscillator signal generated by a phase locked loop (PLL), which may be delta-sigma modulated via a fractional-N divider. A clock signal may be communicated to the PLL utilizing a temperature-compensated crystal oscillator. The signals may be down-converted to an intermediate frequency or down-converted directly to baseband frequencies. The signals may be processed utilizing surface acoustic wave (SAW) filters. In-phase and quadrature signals may be processed in the RF path utilizing a two-stage polyphase filter.
    • 用于重新利用用于接收低地球轨道(LEO)通信卫星定时信号的全球导航卫星系统接收机的方法和系统可以包括在通信设备的接收机中接收介质地球轨道(MEO)卫星信号和/或LEO信号。 射频(RF)路径可以被配置为下变频信号中的任一个,并且可以利用下变频信号来计算通信设备的位置。 信号可以利用由锁相环(PLL)产生的本地振荡器信号进行下变频,锁相环(PLL)可经由分数N分频器进行Δ-Σ调制。 可以使用温度补偿晶体振荡器将时钟信号传送到PLL。 信号可以被下变频到中频或者直接下变频到基带频率。 可以使用表面声波(SAW)滤波器来处理信号。 可以使用两级多相滤波器在RF路径中处理同相和正交信号。