Abstract:
A method includes generating a first schedule at a first electronic device associated with a first user. The first schedule is generated based on a first relationship strength of a relationship of the first user and a second user. The method further includes sending, from the first electronic device to a second electronic device associated with the second user, a first capability request. The first capability request is sent based on the first schedule.
Abstract:
Concepts and technologies are disclosed herein for acoustic representations of environments. A processor can execute an acoustic representation service. The processor can receive a request to provide acoustic representation data to a device. The processor can obtain input data from the device. The input data can include captured data. The processor can analyze the input data to recognize an object represented in or by the input data and a path associated with the object. The processor can generate acoustic representation data representing the object and the path, and provide the acoustic representation data to the device.
Abstract:
An architecture is provided that can facilitate and/or transmit notifications based upon device presence techniques in connection with a wireless communications network. For example, when certain mobile devices register with a particular network entity (e.g., a femtocell) that services a particular target location (e.g., place of residence), then such registration can be leveraged to indicate presence at the target location. Accordingly, notifications can be delivered to custodian devices that indicate the presence information if certain predetermined conditions or criteria are satisfied.
Abstract:
System(s) and method(s) are provided to configure access rights to wireless resources and telecommunication service(s) supplied through a set of access points (APs). Access to wireless resources is authorized by access attributes in access control list(s) (ACL(s)) while a profile of service attributes linked to the ACL(s) regulate provision of telecommunication service(s). Access and service attributes can be automatically or dynamically configured, at least in part, in response to changes in data that directly or indirectly affects an operation environment in which the set of APs is deployed. Automatic or dynamic configuration of access or service attributes enable control or coordination of wireless service provided through the set of APs; degree of control or coordination is determined at least in part by enablement or disablement of disparate services for disparate devices at disparate access points at disparate times and with disparate service priority.
Abstract:
Femtocell access is provisioned based on social network, presence and/or user preference information. In particular, the disclosed system can include a femto access manager that can identify a list of ‘close friends’, to which the femtocell owner is likely to grant femtocell access, based on an analysis of access data (e.g., data from social networks, communication logs, calendars, address books, websites and/or blogs, transaction related data, and the like). Further, an access priority associated with each of the close friends can be determined based in part on location data, availability data, and/or predefined policies. Furthermore, the femto access control list, within the femto access point (FAP), can be populated, dynamically and/or automatically, with the highest priority friends from the close friends list.
Abstract:
Methods, apparatus and articles of manufacture (e.g., physical storage media) to perform service specific route selection in communication networks are disclosed. Example route selection methods disclosed herein include: mapping performance measurements corresponding to network components to performance parameters to form mapped performance parameters, the network components being in at least one of a first candidate path and a second candidate path between a first network node and a second network node; calculating, based on the mapped performance parameters, first relative performance parameters for the network components, the first relative performance parameters corresponding to one or more services; calculating, based on the first relative performance parameters, second relative performance parameters for the respective candidate paths, the second relative performance parameters corresponding to one or more of the services; and, based on the second relative performance parameters, routing first service data corresponding to a first of the services on the first candidate path and routing second service data corresponding to a second of the services on the second candidate path.
Abstract:
Concepts and technologies are disclosed herein for acoustic representations of environments. A processor can execute an acoustic representation service. The processor can receive a request to provide acoustic representation data to a device. The processor can obtain input data from the device. The input data can include captured data. The processor can analyze the input data to recognize an object represented in or by the input data and a path associated with the object. The processor can generate acoustic representation data representing the object and the path, and provide the acoustic representation data to the device.
Abstract:
Concepts and technologies are disclosed herein for acoustic representations of environments. A processor can execute an acoustic representation service. The processor can receive a request to provide acoustic representation data to a device. The processor can obtain input data from the device. The input data can include captured data. The processor can analyze the input data to recognize an object represented in or by the input data and a path associated with the object. The processor can generate acoustic representation data representing the object and the path, and provide the acoustic representation data to the device.
Abstract:
A computer-implemented method includes determining, based on first information received from a first mobile device within a vehicle, that the first mobile device is associated with a first person. The method includes determining first in-vehicle display preference information and a first vehicle occupant position of a plurality of vehicle occupant positions for the first person. The method also includes selecting, based on the first vehicle occupant position, a first projector of a plurality of projectors within the vehicle. The method further includes providing data representing display information to the first projector to enable the first projector to project the display information onto a display associated with a first window of the vehicle. The display information is determined based on the first in-vehicle display preference information for the first person.
Abstract:
An incoming communication (e.g., a voice call, a data call) can be routed to a wireless devices or a wireline device, based in part on a routing preference and a presence condition of a mobile device in a confined wireless environment served by a confined-coverage access point (AP). The routing preference can be subscriber-specific and configurable by the subscriber linked to the mobile device, whereas the presence condition reveals whether the mobile device is attached to the confined-coverage AP and is automatically detected. A routing server acquires the routing preference and the presence condition for the mobile device. Based on routing logic applied to the routing preference and the presence information, the routing server directs the incoming communication to a set of wireline devices, a set of wireless devices, or a combination thereof.