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    • 1. 发明申请
    • COMMUNICATING ALERT TO ADDITIONAL CONTACTS
    • 传播警报到附加联系人
    • WO2017028166A1
    • 2017-02-23
    • PCT/CN2015/087275
    • 2015-08-17
    • ARRIS ENTERPRISES, INC.WU, Jinghui
    • WU, Jinghui
    • H04W4/22
    • H04L67/26H04L67/306H04W4/90
    • Methods, systems, and computer readable media can be operable to facilitate the output of communications to additional emergency contacts upon the occurrence of an alarm triggering event. A central device may be configured with one or more data profiles associated with one or more emergency contacts, and each data profile may include emergency contact information associated with one or more methods for communicating a message to each respective emergency contact. When the device identifies an alert trigger within one or more communications passing through the device, the device may output one or more emergency messages to one or more of the emergency contacts according to the one or more stored data profiles.
    • 方法,系统和计算机可读介质可操作以便于在发生报警触发事件时将通信输出到附加的紧急联系人。 中央设备可以配置有与一个或多个紧急联系人相关联的一个或多个数据简档,并且每个数据简档可以包括与用于将消息传送到每个相应的紧急联系人的一种或多种方法相关联的紧急联系人信息。 当设备在通过设备的一个或多个通信中识别警报触发器时,设备可以根据一个或多个存储的数据简档向一个或多个紧急联系人输出一个或多个紧急消息。
    • 4. 发明申请
    • ADAPTIVE BITRATE STREAMING LATENCY REDUCTION
    • 适应性双边条约流失减免
    • WO2016064728A1
    • 2016-04-28
    • PCT/US2015/056208
    • 2015-10-19
    • ARRIS ENTERPRISES, INC.
    • SUN, Wendell
    • H04N21/2343H04N21/262H04N21/845H04N21/2187
    • H04N21/23406H04L65/608H04L65/80H04N21/2187H04N21/23418H04N21/23439H04N21/2353H04N21/2383H04N21/26258H04N21/6118H04N21/643H04N21/8456
    • A method of transmitting media content is provided that provides for a significantly reduced chunk size. The method includes receiving one or more adaptive transport streams into a memory buffer at a HTTP streamer from a media preparation unit. The received transport streams include a plurality of switchable segments each comprising one or more delivery chunks, the switchable segments being marked with segment boundary points and the delivery chunks being marked with chunk boundary points. One or more of the delivery chunks are then transmitted from a requested switchable segment to a requesting client device until a terminating segment boundary point is reached, wherein each delivery chunk is independently decodable, and a client device can begin decoding and rendering received delivery chunks even when the HTTP streamer has not yet completely received the entire requested switchable segment from the media preparation unit.
    • 提供了传输媒体内容的方法,其提供显着减小的块大小。 该方法包括从媒体准备单元在HTTP流分发器处将一个或多个自适应传输流接收到存储器缓冲器中。 所接收的传输流包括多个可切换段,每个可转换段包括一个或多个传送块,可切换段标记有段边界点,并且传送块被标记为块边界点。 然后将一个或多个传送块从所请求的可切换段发送到请求客户端设备,直到到达终止段边界点,其中每个传递块可以独立解码,并且客户端设备可以开始解码和渲染接收到的传递块,甚至 当HTTP流传送器尚未完全从媒体准备单元接收到整个所请求的切换段时。
    • 5. 发明申请
    • UPSTREAM INTERFERENCE ELIMINATING TRANSMISSION OF DIGITAL BASEBAND SIGNAL IN AN OPTICAL NETWORK
    • 数字基带信号在光网络中的上行干扰消除传输
    • WO2016053618A1
    • 2016-04-07
    • PCT/US2015/050187
    • 2015-09-15
    • ARRIS ENTERPRISES, INC.
    • MARICEVIC, ZoranSTONEBACK, DeanSCHEMMANN, Marcel F.VIEIRA, AmarildoMUTALIK, Venkatesh G.
    • H04B10/2575
    • H04B10/2575
    • Particular embodiments provide a method for delivering data in the upstream direction without the need for upstream radio frequency (RF) modulation. For example, in some embodiments, an optical network may reach to a gateway associated with a user device. The gateway may receive digital baseband data from the user device in the upstream direction. The gateway can then send the digital baseband data through the optical network without modulating the digital baseband signal via radio frequency. At the headend, because no modulation is performed in the upstream direction, there is no need for de-modulation in the headend. In one embodiment, a scheduler-based approach is used to avoid instances of optical beat interference in the upstream direction as only one upstream device that may interfere with other devices may be able to send data at one time.
    • 具体实施例提供了一种用于在上行方向传送数据而不需要上行射频(RF)调制的方法。 例如,在一些实施例中,光网络可以到达与用户设备相关联的网关。 网关可以在上游方向从用户设备接收数字基带数据。 然后,网关可以通过光网络发送数字基带数据,而无需通过射频调制数字基带信号。 在前端,因为在上游方向上没有进行调制,所以不需要在前端进行去调制。 在一个实施例中,使用基于调度器的方法来避免在上游方向上的光学差拍干扰的实例,因为只有一个可能与其他设备干扰的上游设备可能能够一次发送数据。