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    • 2. 发明授权
    • Method and apparatus for managing remote unit increased power
transmission during location
    • 用于管理远程单元的方法和装置在位置增加了电力传输
    • US5905961A
    • 1999-05-18
    • US795528
    • 1997-02-05
    • Stephen H. Sanders, IIIJay P. Jayapalan
    • Stephen H. Sanders, IIIJay P. Jayapalan
    • H04B1/04G01S5/14G01S19/34H04B7/26H04W64/00H04Q7/34
    • H04W64/00G01S5/14
    • Remote units (113) that require locating are managed by a queue controller (180) such that the number and location of remote units (113) that are transmitting at increased power at any given time is limited. In particular, a queue controller (180) places identification information for remote units (113) requiring location onto queues (203) associated with base stations supplying reference pilots to the remote units (113). Additionally, identification (ID) information for the remote units (113) requiring location is placed onto queues (203) associated with base stations neighboring the base stations supplying the reference pilot to the remote units (113). The queues (203) operate on a first-in-first-out (FIFO) basis, that output remote unit ID at periodic intervals. Once all queues (203) have been emptied of the ID of a particular remote unit (113), location takes place for that remote unit (113).
    • 需要定位的远程单元(113)由队列控制器(180)管理,使得在任何给定时间以增加的功率发送的远程单元(113)的数量和位置受到限制。 特别地,队列控制器(180)将需要位置的远程单元(113)的标识信息放置在与向远程单元(113)提供参考导频的基站相关联的队列(203)上。 此外,要求位置的远程单元(113)的识别(ID)信息被放置到与向远程单元(113)提供参考导频的基站相邻的基站相关联的队列(203)上。 队列(203)以先进先出(FIFO)为基础,以周期性间隔输出远程单元ID。 一旦所有队列(203)已经被清空了特定的远程单元(113)的ID,则对该远程单元(113)进行位置。
    • 5. 发明授权
    • Digital voice transmission having improved echo suppression
    • 数字语音传输具有改善的回声抑制
    • US4652703A
    • 1987-03-24
    • US471137
    • 1983-03-01
    • Chun C. LuWilliam J. MillerJack E. StephensonJay P. Jayapalan
    • Chun C. LuWilliam J. MillerJack E. StephensonJay P. Jayapalan
    • H04B3/20
    • H04B3/20
    • A digital voice communication apparatus having improved echo suppression includes a transmission gain detection circuit for detecting a near talker signal and a receiver gain detection circuit for detecting a far talker signal. An echo detecting circuit detects which of the near talker and far talker signals has a lesser value and suppresses the gain of the one detected to have the lesser value. A far talker suppressing circuit detects whether the most recent peak gain in this near talker signal is greater than a threshold and is greater than the gain of the far talker signal. If this condition exists the far talker signal is suppressed. A near talker signal suppressing circuit detects whether the most recent gain of the far talker signal is greater than a threshold and is greater than the gain of the near talker signal. If so, the gain of the near talker signal is suppressed.
    • 具有改善的回波抑制的数字语音通信装置包括用于检测近距离讲话者信号的发送增益检测电路和用于检测远扬声器信号的接收机增益检测电路。 回波检测电路检测近旁话者和远谈话者信号中的哪一个具有较小的值,并且抑制检测到的那些增益具有较小的值。 远扬声器抑制电路检测该近距离讲话者信号中最近的峰值增益是否大于阈值,并且大于远扬声器信号的增益。 如果这种情况存在,则说话人信号被抑制。 近距离讲话者信号抑制电路检测远扬声器信号的最近的增益是否大于阈值,并且大于近旁话者信号的增益。 如果是这样,则抑制近旁话者信号的增益。
    • 7. 发明授权
    • Method and apparatus for routing a bearer path in an internet protocol multimedia subsystem based communication system
    • 在基于互联网协议多媒体子系统的通信系统中路由承载路径的方法和装置
    • US08625582B2
    • 2014-01-07
    • US12510496
    • 2009-07-28
    • Harsha HegdeJay P. Jayapalan
    • Harsha HegdeJay P. Jayapalan
    • G01R31/08H04L12/66H04W72/00G06F15/173H04M3/00
    • H04L65/1016H04L65/1063H04L65/1069H04W40/02H04W76/12H04W76/32H04W92/20
    • A communication system is provided that routes a bearer path of a communication session between an originating Node B and a terminating Node B via an X2 interface, bypassing an IMS core network, while continuing to route the signaling path to an IMS network, thereby allowing the IMS network to retain control of the bearer path while avoiding delay, potential for data loss and jitter to the bearer stream, and additional backhaul capacity requirements that result from routing the bearer path between the originating and terminating Node Bs via the IMS core network. In determining whether the bearer path may bypass the IMS core network, the communication system determines whether IMS core network bearer associated services are required for the communication session such that a bearer path of the call will need to be routed to the IMS core network in order to provide such services.
    • 提供了一种通信系统,其通过绕过IMS核心网络的X2接口在始发节点B和终止节点B之间路由通信会话的承载路径,同时继续将信令路由路由到IMS网络,从而允许 IMS网络保持对承载路径的控制,同时避免延迟,承载流的数据丢失和抖动的可能性,以及通过经由IMS核心网路由发起端和终止节点B之间的承载路径产生的额外回程容量要求。 在确定承载路径是否可以绕过IMS核心网络的情况下,通信系统确定是否需要IMS核心网络承载相关联的业务来进行通信会话,使得呼叫的承载路径将按顺序路由到IMS核心网络 提供这样的服务。
    • 9. 发明授权
    • System and method for dynamically selecting wireless information communication modes for a wireless communication device
    • 用于动态选择无线通信设备的无线信息通信模式的系统和方法
    • US07558587B2
    • 2009-07-07
    • US11301301
    • 2005-12-12
    • Nandakishore A. AlbalPeter J. ArmbrusterJay P. Jayapalan
    • Nandakishore A. AlbalPeter J. ArmbrusterJay P. Jayapalan
    • H04B7/00
    • H04W72/005
    • A system, method, and wireless device for dynamically selecting a wireless information communication mode for wireless communication of information to at least one wireless device (104). The method includes receiving at least one request for wireless communication of information to at least one wireless device (104). The method further comprises selecting, based at least in part on a total number of wireless devices to receive the wireless communication of information, a mode of wireless communication of information to the at least one wireless device (104). The mode of wireless communication being selected from at least one of a wireless information broadcast communication mode, a wireless information multicast communication mode, and a wireless information unicast communication mode. The at least one wireless device (104) is wireless notified to set its current wireless communication mode to the selected mode of wireless communication to receive the wireless communication of the information.
    • 一种系统,方法和无线设备,用于动态地选择用于将信息无线地传送到至少一个无线设备的无线信息通信模式(104)。 该方法包括:向至少一个无线设备(104)接收至少一个无线信息通信请求。 该方法还包括至少部分地基于用于接收信息的无线通信的无线设备的总数来选择向至少一个无线设备(104)进行无线信息通信的模式。 从无线信息广播通信模式,无线信息多播通信模式和无线信息单播通信模式中的至少一个中选择无线通信的模式。 至少一个无线设备(104)被无线通知以将其当前的无线通信模式设置为所选择的无线通信模式,以接收信息的无线通信。