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    • 1. 发明申请
    • Method for soft switch call control and soft switch device using the same
    • 软交换呼叫控制方法和使用该软交换设备的软交换设备
    • US20060133353A1
    • 2006-06-22
    • US11225038
    • 2005-09-14
    • Sihai WangZhikun WanWeihong ChenHong ShenJie Weng
    • Sihai WangZhikun WanWeihong ChenHong ShenJie Weng
    • H04L12/66
    • H04Q3/0025
    • A method for soft switch call control and a soft switch device therefore are provided. The soft switch device acquires an initial address message (IAM) at a calling side, analyzes information of the calling party and the called party based on the acquired initial address message (IAM), and informs the media gateways to create a context and to add TDM semi-permanent physical terminations of time slots corresponding to the calling party and the called party into the context when the calling party and the called party are controlled by the same media gateway. Thus, it can implement a local loop of TDM voice, reduce IP loop of RTP streams and efficiently reduces network resources such as steps for digital signal processing, echo elimination and etc.
    • 因此,提供了软开关呼叫控制的方法和软开关装置。 软交换设备在主叫侧获取初始地址消息(IAM),根据所获取的初始地址消息(IAM)分析主叫方和被叫方的信息,通知媒体网关创建上下文并添加 当呼叫方和被叫方由相同的媒体网关控制时,与呼叫方和被叫方对应的时隙的TDM半永久物理终端进入上下文。 因此,可以实现TDM语音的本地环路,减少RTP流的IP环路,有效减少数字信号处理,回波消除等步骤的网络资源。
    • 2. 发明授权
    • Method for soft switch call control and soft switch device using the same
    • 软交换呼叫控制方法和使用该软交换设备的软交换设备
    • US07656863B2
    • 2010-02-02
    • US11225038
    • 2005-09-14
    • Sihai WangZhikun WanWeihong ChenHong ShenJie Weng
    • Sihai WangZhikun WanWeihong ChenHong ShenJie Weng
    • H04L12/66H04M7/00
    • H04Q3/0025
    • A method for soft switch call control and a soft switch device therefore are provided. The soft switch device acquires an initial address message (IAM) at a calling side, analyzes information of the calling party and the called party based on the acquired initial address message (IAM), and informs the media gateways to create a context and to add TDM semi-permanent physical terminations of time slots corresponding to the calling party and the called party into the context when the calling party and the called party are controlled by the same media gateway. Thus, it can implement a local loop of TDM voice, reduce IP loop of RTP streams and efficiently reduces network resources such as steps for digital signal processing, echo elimination and etc.
    • 因此,提供了软开关呼叫控制的方法和软开关装置。 软交换设备在主叫侧获取初始地址消息(IAM),根据所获取的初始地址消息(IAM)分析主叫方和被叫方的信息,通知媒体网关创建上下文并添加 当呼叫方和被叫方由相同的媒体网关控制时,与呼叫方和被叫方对应的时隙的TDM半永久物理终端进入上下文。 因此,可以实现TDM语音的本地环路,减少RTP流的IP环路,有效减少数字信号处理,回波消除等步骤的网络资源。
    • 4. 发明授权
    • Exception reduction and event reordering in an item tracking system
    • 项目跟踪系统中的异常减少和事件重新排序
    • US07331527B2
    • 2008-02-19
    • US11025839
    • 2004-12-30
    • Brian S. MoTao LinRama GurramRichard J. SwanJie Weng
    • Brian S. MoTao LinRama GurramRichard J. SwanJie Weng
    • G06K7/10
    • G06Q10/087G06Q20/382G06Q20/40G06Q20/401G06Q40/025G06Q40/08
    • A current state of an item being tracked by an item-tracking system may be determined using prior state information about the item. To ensure proper temporal order of the state information, software events triggered by physical events associated with the item are received from a reader at an event interpretation system. A database or queue within the event interpretation system holds the software events for a delay time determined by a maximum transmission delay time of the software events. A sorter within the event interpretation system orders the software events relative to one another so as to correspond to an order of the physical events. An association model of the event interpretation system may determine state information related to the item for storage in a state information database. Accordingly, system exceptions in the item tracking system may be reduced, and an accuracy and reliability of the system may be improved.
    • 项目跟踪系统跟踪的项目的当前状态可以使用关于该项目的先前状态信息来确定。 为了确保状态信息的适当时间顺序,在事件解释系统从读取器接收与物品相关联的物理事件触发的软件事件。 事件解释系统内的数据库或队列保存由软件事件的最大传输延迟时间确定的延迟时间的软件事件。 事件解释系统内的分拣机相对于彼此订购软件事件,以对应于物理事件的顺序。 事件解释系统的关联模型可以确定与用于存储在状态信息数据库中的项目有关的状态信息。 因此,可以减少项目跟踪系统中的系统异常,并且可以提高系统的准确性和可靠性。
    • 5. 发明申请
    • Method and Apparatus for Transferring a Communicaton Session
    • US20070153794A1
    • 2007-07-05
    • US11685614
    • 2007-03-13
    • Aaron SmithJeffrey EschbachSenaka BalasuriyaJie WengWalter Johnson
    • Aaron SmithJeffrey EschbachSenaka BalasuriyaJie WengWalter Johnson
    • H04L12/56
    • H04L63/0414H04L63/061H04W8/26H04W80/04H04W80/10
    • Session Inter-Device (SD) mobility networks (50, 100, 150) ate described in which a seamless transfer of a communication session from a first device (56, 106, 116) to a second device (66, 116, 166) can be achieved without interrupting the active session. According to the SID mobility network (50), the transfer can be accomplished by transferring away from the Transferring Node or first device (56) the IP address associated with the active session (58) so that the network (50) will route the session to the desired Target Node or second device (66). The Transferring Node (56) transfers its IP address (58) to the Agent (60) and stops requesting data packets addressed to its IP address (58). The Agent (60) then begins to request and eventually receive the packets addressed to the Transferring Node's IP address (58). The Agent (60) then transfers the packets to the Target Node (66). In an alternate SD mobility network (100), the Transferring Node (106) transfers a session specific IP address (114) to the Agent (110). The Agent (110) then transfers packets sent to the session specific IP address (114) to the Target Node (120). In another SID mobility network (150), the Transferring Node (162) obtains a temporary IP address (170) and transfers its IP address (164) to a Session Agent (166). The Session Agent (166) begins to request and eventually receive the packets addressed to the Transferring Node's IP address (164), and for each received packet determines if it belongs to the session the Transferring Node (162) requested to transfer to the Target Node (176). If it does, the Session Agent (166) will transfer the packet to the Target Node (176) at the Target Node's IP address (178). If it does not, the Session Agent (166) will transfer the packet to the Transferring Node (162) at its temporary IP address (170). In each SID mobility network, the session with respect to the Correspondent Node continues without interruption throughout the transfer, thereby providing a seamless transfer of the session from a first device to a second device.
    • 6. 发明授权
    • Method and apparatus for transferring a communication session
    • US07228414B2
    • 2007-06-05
    • US10002306
    • 2001-11-02
    • Aaron M. SmithJeffrey T. EschbachSenaka BalasuriyaJie WengWalter Johnson
    • Aaron M. SmithJeffrey T. EschbachSenaka BalasuriyaJie WengWalter Johnson
    • H04L9/00
    • H04L63/0414H04L63/061H04W8/26H04W80/04H04W80/10
    • Session Inter-Device (SID) mobility networks (50, 100, 150) are described in which a seamless transfer of a communication session from a first device (56,106, 116) to a second device (66, 116, 166) can be achieved without interrupting the active session. According to the SID mobility network (50), the transfer can be accomplished by transferring away from the Transferring Node or first device (56) the IP address associated with the active session (58) so that the network (50) will route the session to the desired Target Node or second device (66). The Transferring Node (56) transfers its IP address (58) to the Agent (60) and stops requesting data packets addressed to its IP address (58). The Agent (60) then begins to request and eventually receive the packets addressed to the Transferring Node's IP address (58). The Agent (60) then transfers the packets to the Target Node (66). In an alternate SID mobility network (100), the Transferring Node (106) transfers a session specific IP address (114) to the Agent (110). The Agent (110) then transfers packets sent to the session specific IP address (114) to the Target Node (120). In another SID mobility network (150), the Transferring Node (162) obtains a temporary IP address (170) and transfers its IP address (164) to a Session Agent (166). The Session Agent (166) begins to request and eventually receive the packets addressed to the Transferring Node's IP address (164), and for each received packet determines if it belongs to the session the Transferring Node (162) requested to transfer to the Target Node (176). If it does, the Session Agent (166) will transfer the packet to the Target Node (176) at the Target Node's IP address (178). If it does not, the Session Agent (166) will transfer the packet to the Transferring Node (162) at its temporary IP address (170). In each SID mobility network, the session with respect to the Correspondent Node continues without interruption throughout the transfer, thereby providing a seamless transfer of the session from a first device to a second device.
    • 10. 发明申请
    • Exception reduction and event reordering in an item tracking system
    • 项目跟踪系统中的异常减少和事件重新排序
    • US20060149605A1
    • 2006-07-06
    • US11025839
    • 2004-12-30
    • Brian MoTao LinRama GurramRichard SwanJie Weng
    • Brian MoTao LinRama GurramRichard SwanJie Weng
    • G06F17/50
    • G06Q10/087G06Q20/382G06Q20/40G06Q20/401G06Q40/025G06Q40/08
    • A current state of an item being tracked by an item-tracking system may be determined using prior state information about the item. To ensure proper temporal order of the state information, software events triggered by physical events associated with the item are received from a reader at an event interpretation system. A database or queue within the event interpretation system holds the software events for a delay time determined by a maximum transmission delay time of the software events. A sorter within the event interpretation system orders the software events relative to one another so as to correspond to an order of the physical events. An association model of the event interpretation system may determine state information related to the item for storage in a state information database. Accordingly, system exceptions in the item tracking system may be reduced, and an accuracy and reliability of the system may be improved.
    • 项目跟踪系统跟踪的项目的当前状态可以使用关于该项目的先前状态信息来确定。 为了确保状态信息的适当时间顺序,在事件解释系统从读取器接收与物品相关联的物理事件触发的软件事件。 事件解释系统内的数据库或队列保存由软件事件的最大传输延迟时间确定的延迟时间的软件事件。 事件解释系统内的分拣机相对于彼此订购软件事件,以对应于物理事件的顺序。 事件解释系统的关联模型可以确定与用于存储在状态信息数据库中的项目有关的状态信息。 因此,可以减少项目跟踪系统中的系统异常,并且可以提高系统的准确性和可靠性。