Abstract:
Novel tools and techniques are provided for implementing wireless communications, and, more particularly, to methods, systems, and apparatuses for implementing ad hoc wireless capacity modification. In various embodiments, a computing system might identify at least one geographic area having at least one of weak wireless communications coverage or non-existent wireless communications coverage, might deploy one or more vehicles to the identified at least one geographic area, each of the one or more vehicles comprising a mobile wireless base station, and might establish wireless network communications between the mobile wireless base station of at least one vehicle of the one or more vehicles and at least one wireless network node of a telecommunications network that is one of proximate to or within the at least one geographic area. The one or more vehicles might comprise manned and/or unmanned vehicles, including drones.
Abstract:
An automated data center management system includes one or more equipment racks housing at least one server farm equipment, each of the at least one server farm equipment having a respective attachment point, a spare equipment repository having at least one replacement equipment, and a hardware management robot. The hardware management robot includes a robotic arm having an interface point, the interface point configured to couple to the attachment point. A hardware management controller is communicates with the hardware management robot, the hardware management controller including at least one processor, and non-transitory computer readable media having encoded thereon computer software comprising a set of instructions to receive a service request indicating a server farm equipment needing service, determine a location of the server farm equipment, generate a path to the location of the server farm equipment, and transmit the path to the hardware management robot.
Abstract:
A system and method for tracking a wireless communications device of a user may include, in response to receiving a request to track the wireless communications device, notifying a plurality of wireless networks of different communications carriers to collect geographic coordinates at which a wireless communications device is located. Geographic coordinates of the wireless communications device may be collected from at least one of the wireless networks and communicated to a requestor for tracking the wireless communications device.
Abstract:
An automated data center management system includes one or more equipment racks housing at least one server farm equipment, each of the at least one server farm equipment having a respective attachment point, a spare equipment repository having at least one replacement equipment, and a hardware management robot. The hardware management robot includes a robotic arm having an interface point, the interface point configured to couple to the attachment point. A hardware management controller is communicates with the hardware management robot, the hardware management controller including at least one processor, and non-transitory computer readable media having encoded thereon computer software comprising a set of instructions to receive a service request indicating a server farm equipment needing service, determine a location of the server farm equipment, generate a path to the location of the server farm equipment, and transmit the path to the hardware management robot.
Abstract:
This document discloses novel conduits for telecommunications lines, such as optical fibers. In an aspect, a conduit might have a body defining one or more channels into which optical fibers can be inserted. In another aspect, the body might have a first face that is substantially planar and a second face opposing the first face. The second face might a low-rise arc profile and/or might be configured to be installed into a depression in a material. Also disclosed are methods and tools for installing, using, and/or removing such conduit.
Abstract:
Embodiments of the present invention include a method for configuring a femtocell. In one embodiment, the method includes identifying a cellular device within near-field communication range of the femtocell. The method identifies a carrier network associated with the cellular device and automatically configures the femtocell to operate on the carrier network associated with the cellular device.
Abstract:
An automated data center management system includes one or more equipment racks housing at least one server farm equipment, each of the at least one server farm equipment having a respective attachment point, a spare equipment repository having at least one replacement equipment, and a hardware management robot. The hardware management robot includes a robotic arm having an interface point, the interface point configured to couple to the attachment point. A hardware management controller is communicates with the hardware management robot, the hardware management controller including at least one processor, and non-transitory computer readable media having encoded thereon computer software comprising a set of instructions to receive a service request indicating a server farm equipment needing service, determine a location of the server farm equipment, generate a path to the location of the server farm equipment, and transmit the path to the hardware management robot.
Abstract:
A system and method for selecting a data delivery network. A determination is made of user information associated with a communication from a user. A determination is made of performance information for multiple data delivery networks. The data delivery network is selected for the communication from the multiple data delivery networks.
Abstract:
The disclosed embodiments include system and method for routing communications over a communications network. In one embodiment, a determination is made as to whether to establish a communication along a communication path based on network performance information. The disclosed embodiments provide several alternatives for establishing the communication and improving communications along the communication path in response to a determination that at least one network node along the communication path is impaired or congested.
Abstract:
The disclosed embodiments include a computer implemented method for routing data packets. In one embodiment, the method includes storing network usage information of a packet network managed by a communications carrier including network usage information associated with communications by subscribers of other communications carrier that communicate data packets over the packet network, the network usage information distinguishing between data packets associated with a first service and data packets associated with a second service; determining pricing information for communicating the data packets via a plurality of networks, wherein each network is associated with a different communications carrier; and selecting one of the plurality of networks for routing the data packets based on cost, wherein the cost includes a first cost for communicating the data packets that are associated with the first service and a second cost for communicating the data packets that are associated with the second service.