Abstract:
A method and system for data transmission is provided. Compressed payload packets are transmitted on one or more payload channels. On a header restoration channel, header restoration packets are transmitted for restoring headers of at least some of the compressed payload packets.
Abstract:
A method and services network element are provided that provide for queued admissions control in a wireless communication system by receiving a bearer establishment request associated with a user equipment, determining that a cell where the user equipment is located is congested, in response to determining that the cell is congested, creating a bearer establishment request record (BERR) associated with the user equipment and the bearer establishment request, wherein the BERR comprises priority information associated with the BERR, and adding the BERR to a queue, wherein the queue is associated with a cell serving the user equipment, wherein the BERR is positioned in the queue based on the priority information, and wherein bearer establishment requests associated with BERRs in the queue are submitted based on a position of the BERRs in the queue.
Abstract:
Method and system for capturing signals in accordance with allocated resources. One method includes receiving, from a server by a network interface of a first communication device located in a cell, identification information of a second communication device located in the cell. The method further includes receiving, from a base station by the network interface of the first communication device, a resource allocation message destined for the second communication device. The resource allocation message indicates a resource allocation for the second communication device on an uplink channel of the base station. The method further includes decoding, by an electronic processor of the first communication device, the resource allocation message using the identification information of the second communication device. The method further includes capturing, by the network interface of the first communication device, signals based on the resource allocation for the second communication device.
Abstract:
Methods and systems for merging isolated networks. One method includes determining that a second network is located within a predetermined distance of a first network. The method also includes exchanging content between a first network core of the first network and a second network core of the second network over a side haul communication channel. The exchange of content results in a first base station transceiver of the first network being capable of communicating with first network components of the first network core and with mirrored instances of second network components of the second network core within the first network core. The method also includes controlling, with the first network core, communications through the first base station transceiver using the second content included in the mirrored instances of the second network components.
Abstract:
A method and apparatus are provided for positioning an unmanned robotic vehicle (URV). The URV captures a set of one or more of image and non-image information of an object while positioned at a first position, provides the set of image/non-image information to a server entity, in response to providing the set of image/non-image information, receives a three-dimensional (3D) model associated with the object, autonomously determines a second position based on the 3D model, and autonomously navigates to the second position. At the second position, the URV may capture further image and/or non-image information and, based on the further captured image/non-image information, autonomously determine, and navigate to, a third position. The steps of capturing further image and/or non-image information and, based on the captured image and/or non-image information, autonomously determining and navigating to further positions may be repeated indefinitely, or until otherwise instructed.
Abstract:
Methods, devices, and systems for generating a plurality of network addresses for a plurality of communication devices communicating over a network. One method includes receiving, with an electronic processor included in a server, geographical coordinates of the network, generating, with the electronic processor, a first set of bits based on the geographical coordinates, generating, with the electronic processor, a second set of bits based on a random number, and generating, with the electronic processor, a baseline address including the first set of bits and the second set of bits. The method also includes generating the plurality of network addresses, wherein each of the plurality of network addresses includes the baseline address and a unique offset. In addition, the method includes assigning one of the plurality of network addresses to one of the plurality of communication devices.
Abstract:
Systems and methods for extending coverage of a communication network. In one embodiment, a system includes a first base station configured to communicate with a first mobile communication device and to generate a core interface message. The system also includes a second mobile communication device and an application level server. The second mobile communication device is connected to the first base station and is configured to obtain the core interface message from the first base station, generate a message including the core interface message in an application layer of the message, address the message to the application level server, and transmit the message to the application level server. The application level server is configured to receive the message, extract the core interface message from the message, and transfer the core interface message to a network core to emulate an interface between the first base station and the network core.
Abstract:
A method and apparatus for a method and apparatus for correlation canceller for interference mitigation with adaptive DC offset cancellation for a dual mode communication device includes detecting an active signal transmitting in one mode; configuring integrators associated with the adaptive correlation canceller into gain amplifiers; detecting DC offset utilizing the gain amplifiers and comparators; and configuring the integrators from the gain amplifiers back to integrators with the DC offset applied thereto. The active signal transmitting in one mode can be Long Term Evolution (LTE) which is adjacent to a signal in another mode.