Abstract:
Technology for content distribution in wireless mesh network is described. In one embodiment, a cloud computing system includes one or more computing devices running a media provider service and a content management service. The media provider service is configured to select a subset of a plurality of media titles having a highest relative popularity available from one or more media content providers for distribution to one or more mesh nodes in a wireless mesh network. The content management service is configured to retrieve media content files corresponding to the subset of the plurality of media titles, divide each of the media content files into a plurality of smaller segments, send at least a portion of the plurality of smaller segments to the one or more mesh nodes in the wireless mesh network.
Abstract:
Network hardware devices organized in a wireless mesh network (WMN). A first mesh network device performs a three-stage discovery protocol; in a first stage, a discovery scan uses a first radio to find a set of neighbor devices in proximity; in a second stage, a discovery locate probe process is performed on a secondary discovery channel that is from a same frequency band group as a first DFS channel; in a third stage, a CAC is performed via the first DFS channel and, after the CAC, a neighbor peering request is sent and a neighbor peering response is received from a second mesh network device via a second radio. The neighbor peering response confirms establishment of a first communication channel between the second radio of the first mesh network device and a radio of the second mesh network device over the first DFS channel.
Abstract:
Technology for event propagation and action coordination in a mesh network is described. In one embodiment, a master mesh node for a first communication channel in a mesh network receives a first event notification message from a first dependent mesh node associated with the master mesh node. The first event notification message pertains to a first event detected by the first dependent mesh node. In response, the master mesh node generates a first action message specifying a first action associated with the first event and sends the first action message to the first dependent mesh node and to a second dependent mesh node associated with the master mesh node. The master mesh node, the first dependent mesh node, and the second dependent mesh node all exchange communications with each other using the first communication channel in the mesh network.
Abstract:
Approaches are described which enable a user equipment (UE) device (e.g., mobile phone, tablet computer) to measure signal strength of neighboring cells in a cellular network based at least in part on direction and/or location information of the UE device. The computing device may determine, based on location and/or direction information, that the device is moving away from a neighboring cell and either stop measuring the signal strength or reduce the rate of measuring the signal strength of that neighboring cell. This selective measuring can enable computing devices to conserve battery power and reduce processing overhead when moving between cells of a cellular network.
Abstract:
Sending short message service (SMS) messages and receiving a response report based at least in part on the sent SMS message, even if a communicative connection with the mobile communications network had been severed, so that duplication of the SMS message is avoided is disclosed. In this case, a communicative connection may be re-established and used to receive an acknowledgment from the mobile communications network and subsequently send another acknowledgement to the mobile communications network. The UE may also be configured to send an information element to the one or more elements of the mobile communications network to indicate that a communicative connection with the network is to remain established so that acknowledgements may be reconciled between the UE and the network. Additionally, the mobile communications network may be configured to transmit the SMS message only after receiving the acknowledgement from the UE, to avoid sending duplicate SMS messages.
Abstract:
Provided are systems and methods for establishing, by a user device, a connection with a cellular network, transmitting, by the user device to a cellular network server, a first message comprising an indication of a connection to a wireless network, receiving, by the user device from the cellular network server, a second message comprising wireless network measurement parameters, acquiring, by the user device from the cellular phone device, wireless network measurements in accordance with the wireless network measurement parameters, and transmitting, by the user device to the cellular network server, a wireless network measurement report comprising an indication of the wireless network measurements, wherein the cellular network server is configured to determine whether a cellular device is proximate to an access point for the wireless network using the wireless network measurements.
Abstract:
A method for customizing a device during order fulfillment is described. A processing device receives an order for an electronic device, the order comprising customization information that is stored in a memory. The processing device wirelessly transmits the customization information into an electronic tag embedded in the electronic device while the electronic device is enclosed in associated packaging.
Abstract:
A method for customizing a device during order fulfillment is described. A radio frequency identification (RFID) tag of an electronic device is wirelessly loaded with customization information at an order fulfillment center without disturbing packaging surrounding the electronic device or without powering up the electronic device.
Abstract:
Disclosed are various embodiments for extending cloud-based virtual private networks to radio-based networks. In one embodiment, a subnet of a virtual private cloud network of a cloud provider network is created in a radio-based network. An identifier of a subscriber identity module of a client device is registered in the virtual private cloud network. The subscriber identity module is assigned to a security group of the virtual private cloud network. A request from the client device to connect to the radio-based network is received, and the request presents the identifier. The virtual private cloud network to which the client device is permitted access is determined. The client device is provided with access to a resource on the virtual private cloud network through the radio-based network.
Abstract:
Disclosed are various embodiments for integrating multiple access technologies in a radio-based network. In one embodiment, first data is received from a first wireless device connected to a radio-based network via a first access technology. Second data is received from a second wireless device connected to the radio-based network via a second access technology. The first access technology and the second access technology use a different physical layer and a different media access control layer but use a network layer that is in common. The first data and the second data are processed at the network layer in the radio-based network using a common processing element.