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    • 15. 发明授权
    • Techniques for marking and manipulating voice message segments through a telephone user interface
    • 通过电话用户界面标记和操纵语音消息段的技术
    • US08358756B2
    • 2013-01-22
    • US13206746
    • 2011-08-10
    • Joseph KhouriLabhesh PatelMukul JainSanjeev KumarShmuel Shaffer
    • Joseph KhouriLabhesh PatelMukul JainSanjeev KumarShmuel Shaffer
    • H04M1/64
    • H04M3/53383H04M2203/303H04M2203/4554
    • In one embodiment, techniques for manipulating a voice message using a telephone user interface are provided. The telephone user interface receives a mark begin segment command from a telephonic device through a voice modality. The mark begin segment command indicates a beginning point for a voice message segment in the voice message. The telephone user interface then receives a mark end segment command from the telephonic device through the voice modality. The mark segment command indicates an ending point for the voice message segment in the voice message. An action command from the telephonic device is received and an action based on the action command for the voice message segment is performed. The voice message segment is a portion of the voice message determined based on the indicated beginning point of the voice message segment and the indicated ending point of the voice message segment in the voice message.
    • 在一个实施例中,提供了使用电话用户界面来操纵语音消息的技术。 电话用户界面通过语音模式从电话设备接收标记开始段命令。 标记开始段命令指示语音消息中的语音消息段的起始点。 电话用户界面然后通过语音模式从电话设备接收标记结束段命令。 标记段命令指示语音消息中的语音消息段的结束点。 接收到来自电话设备的动作命令,并且执行基于语音消息段的动作命令的动作。 语音消息段是基于语音消息段的所指示的起始点和语音消息中语音消息段的所指示的终点确定的语音消息的一部分。
    • 17. 发明授权
    • Ad-hoc mobile IP network for intelligent transportation system
    • 智能交通系统专用移动IP网络
    • US08311726B2
    • 2012-11-13
    • US13241966
    • 2011-09-23
    • Labhesh PatelSanjeev KumarShmuel ShafferMukul JainRandall Paul Joseph Ethier
    • Labhesh PatelSanjeev KumarShmuel ShafferMukul JainRandall Paul Joseph Ethier
    • G06F7/00G08G1/00
    • G08G1/00G08G1/20
    • A method for intelligently managing a transportation network is provided. The method may include providing a roadside apparatus 18 to communicate with nodes 14A to 14D associated with vehicles 12A to 12D in a transportation network, the vehicle nodes being in a neighborhood range of the roadside apparatus. The roadside apparatus may dynamically detect the presence of a node 14A associated with a first vehicle 12A, and establish a mobile Internet Protocol (IP) network between the roadside apparatus and the first vehicle's node. The roadside apparatus 18 receives, in real-time, from the first vehicle's node 14A event data of events associated with the first vehicle 12A over the mobile IP network. The roadside apparatus 18 or nodes 14A to 14D may further receive or transmit real-time command data to control subsystems of a vehicle.
    • 提供了一种智能管理交通网络的方法。 该方法可以包括提供路侧设备18与运输网络中与车辆12A至12D相关联的节点14A至14D通信,车辆节点位于路边设备的邻近范围内。 路侧设备可以动态地检测与第一车辆12A相关联的节点14A的存在,并且在路侧设备和第一车辆的节点之间建立移动因特网协议(IP)网络。 路边设备18通过移动IP网络实时地从第一车辆节点14A接收与第一车辆12A相关联的事件的事件数据。 路侧设备18或节点14A至14D可以进一步接收或发送实时命令数据到车辆的控制子系统。
    • 18. 发明授权
    • Call centers with image or video based priority
    • 呼叫中心以图像或视频为主
    • US07792277B2
    • 2010-09-07
    • US11485053
    • 2006-07-11
    • Shmuel ShafferLabhesh PatelMukul JainSanjeev Kumar
    • Shmuel ShafferLabhesh PatelMukul JainSanjeev Kumar
    • H04M3/00
    • H04M3/42187H04M3/42357H04M3/5232H04M7/0039H04M2201/50H04M2242/04H04M2242/14
    • Disclosed are apparatus and methods for utilizing the camera or video capability of particular communication devices, such as cell phones, to enhance handling of calls, such as emergency calls. In one implementation, when a call is made to an emergency response center (ERC) using an image/video capable communication device is queued until an agent is available for handling the call, one or more images or video may be collected from such caller by utilizing the image/video capability of the caller's communication device. The images collected from a plurality of different callers may then be sorted into different event groups. For instance, all the images/video that relate to a same emergency event, such as a traffic accident, are grouped together into a same event group. The different groups can then be prioritized for handling by an available agent. Additionally, the individual callers for each group may also be prioritized based on the collected images/video, e.g., the caller that is closest to the emergency event may be called first.
    • 公开了用于利用诸如蜂窝电话的特定通信设备的相机或视频能力的装置和方法,以增强诸如紧急呼叫的呼叫的处理。 在一个实现中,当使用具有图像/视频能力的通信设备对紧急响应中心(ERC)进行呼叫排队等待直到代理可用于处理呼叫时,可以通过以下方式从这样的呼叫者收集一个或多个图像或视频: 利用呼叫者的通信设备的图像/视频能力。 然后可以将从多个不同的呼叫者收集的图像分类成不同的事件组。 例如,与相同的紧急事件(例如交通事故)相关的所有图像/视频被分组在一起成为相同的事件组。 然后可以将不同的组优先于可用代理进行处理。 另外,也可以基于所收集的图像/视频对每个组的各个呼叫者进行优先排序,例如,可以首先调用最接近紧急事件的呼叫者。
    • 19. 发明申请
    • FLOOR CONTROL IN MULTI-POINT CONFERENCE SYSTEMS
    • 多点会议系统中的地面控制
    • US20100013905A1
    • 2010-01-21
    • US12174145
    • 2008-07-16
    • Sanjeev KumarShmuel ShafferLabhesh PatelMukul Jain
    • Sanjeev KumarShmuel ShafferLabhesh PatelMukul Jain
    • H04N7/14
    • H04N7/15
    • In one embodiment, a conference with multiple end points is provided. At the locations, multiple screens may be configured to display video from a portion of the multiple end points. Video from multiple locations is output onto the multiple screens, such as video streams from N different segments are output on N different screens. The video output may be determined based on a first dimension of the floor control algorithm. A push-to-talk input may then be received from a button. A video segment associated with the push-to-talk button is then determined and the video segment is output on one of the multiple screens in response to receiving the push-to-talk input. The push-to-talk input may be used by users that cannot actively participate in the first dimension of the floor control algorithm. For example, users using sign language cannot speak louder and thus by using the push to talk button or hand gestures can indicate their desire to be switched in as one of the displayed segments.
    • 在一个实施例中,提供具有多个端点的会议。 在这些位置,多个屏幕可被配置为从多个端点的一部分显示视频。 来自多个位置的视频被输出到多个屏幕上,例如来自N个不同段的视频流在N个不同屏幕上输出。 可以基于楼层控制算法的第一维度来确定视频输出。 然后可以从按钮接收一键通输入。 随后响应于接收一键通输入,确定与一键通按钮相关联的视频片段,并且视频片段在多个屏幕之一上输出。 即按即说输入可能不能主动参与楼层控制算法的第一维度的用户使用。 例如,使用手语的用户不能说更大声,因此通过使用按键通话按钮或手势可以指示他们作为显示的段之一被切换的愿望。