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    • 32. 发明授权
    • Systems and methods for providing resource allocation meeting communication constraints for multi-hop network data flows
    • 用于提供满足多跳网络数据流的通信约束的资源分配的系统和方法
    • US08619756B2
    • 2013-12-31
    • US12638193
    • 2009-12-15
    • Soumya DasKrishnan RajamaniSamir S Soliman
    • Soumya DasKrishnan RajamaniSamir S Soliman
    • H04L12/28
    • H04L47/724H04L45/302
    • Systems and methods identify a multi-hop network data path with sufficient available resources at each node along the data path to facilitate desired end-to-end data flow. Embodiments operate to identify resource constraints for meeting QoS or other communication requirements at each node of a multi-hop data path and propagate the resource constraint information within the network for use in identifying data paths suitable for supporting a desired end-to-end data flow. A resource allocation algorithm operable to allocate resources to achieve an end-to-end data flow meeting the communication requirements is implemented according to embodiments. A resource allocation algorithm of embodiments operates to ensure efficient use of the available resources so that desired conditions are satisfied when the resource requirements are met at each intermediate node for the upstream and downstream links and also both links simultaneously.
    • 系统和方法在数据路径的每个节点处识别具有足够可用资源的多跳网络数据路径,以便于期望的端到端数据流。 实施例操作以识别用于在多跳数据路径的每个节点处满足QoS或其他通信需求的资源约束,并在网络内传播资源约束信息,以用于识别适合于支持期望的端到端数据流的数据路径 。 根据实施例,实现了可用于分配资源以实现满足通信要求的端到端数据流的资源分配算法。 实施例的资源分配算法操作以确保可用资源的有效使用,以便当在上游和下游链路的每个中间节点以及同时两个链路满足资源需求时满足期望的条件。
    • 33. 发明申请
    • METHODS AND DEVICES FOR SERVING AS A PROXY BEACON FOR A TRACKING DEVICE
    • 用于作为跟踪装置的代用信标服务的方法和装置
    • US20130099920A1
    • 2013-04-25
    • US13279575
    • 2011-10-24
    • Bongyong SongSoumya DasKaushik ChakrabortySamir S. Soliman
    • Bongyong SongSoumya DasKaushik ChakrabortySamir S. Soliman
    • G08B1/08
    • G08B21/0277G01S1/68G01S5/0009G08B21/023G08B21/0261G08B25/004
    • One feature includes a mobile device being used as a mobile beacon and proxy for a tracking device that may track an object, such as a pet. The mobile device may act as a beacon that transmits messages over a short range communications link to the tracking device. If the tracking device fails to receive the messages transmitted by the mobile device, it may be assumed that the pet has gone missing, and in response the tracking device may contact a tracking server with its location information via a wireless wide area network (WWAN). Additionally, the mobile device may act as a proxy of the tracking device by transmitting and receiving data to/from the tracking server using its own communication interface on behalf of the tracking device. This helps conserve the battery power of the tracking device because the tracking device does not use its own WWAN interface.
    • 一个特征包括用作移动信标的移动设备和用于跟踪诸如宠物的对象的跟踪设备的代理。 移动设备可以充当通过短距离通信链路向跟踪设备发送消息的信标。 如果跟踪装置不能接收到移动装置发送的消息,则可以假设宠物已经丢失,并且作为响应,跟踪装置可以经由无线广域网(WWAN)与跟踪服务器及其位置信息联系, 。 此外,移动设备可以通过使用其自己的代表跟踪设备的通信接口向/从跟踪服务器发送和接收数据来充当跟踪设备的代理。 这有助于节省跟踪设备的电池电量,因为跟踪设备不使用自己的WWAN接口。
    • 39. 发明授权
    • Out-of band radio for supporting compressed mode in a femto deployment
    • 用于在毫微微部署中支持压缩模式的带外无线电
    • US08427975B2
    • 2013-04-23
    • US12983576
    • 2011-01-03
    • Soumya DasSamir S. Soliman
    • Soumya DasSamir S. Soliman
    • G01R31/08G06F11/00G08B15/00H04J1/16H04J3/14H04L1/00H04L12/26
    • H04W24/10H04W36/0083H04W88/06
    • Systems, methods, devices, and computer program products are described for using communications over an out-of-band (OOB) link to support compressed mode communications by user equipment (UE) in a femto deployment. Typically, UEs must tune away from an active communications channel to make inter-frequency and/or inter-RAT measurements. When making these measurements, data communications may be compressed to allow time to tune away for those measurements. Embodiments integrate an OOB proxy with the femtocell to provide OOB link capability to supplement WWAN link resources. According to various techniques, the OOB link is used to compensate for reductions in data rate and/or quality resulting from compressed mode operation. For example, the OOB link is used to communicate compressed mode signaling data, retransmissions, and/or other compensatory data.
    • 描述了系统,方法,设备和计算机程序产品,用于通过带外(OOB)链路进行通信,以支持毫微微部署中的用户设备(UE)的压缩模式通信。 通常,UE必须调出远离活动通信信道以进行频间和/或RAT间测量。 进行这些测量时,可能会压缩数据通信,以便为这些测量节省时间。 实施例将OOB代理与毫微微小区集成以提供OOB链路能力来补充WWAN链路资源。 根据各种技术,OOB链路用于补偿压缩模式操作导致的数据速率和/或质量的降低。 例如,OOB链路用于传送压缩模式信令数据,重传和/或其他补偿数据。