Abstract:
A capability for controlling access by a mobile device to venue-related items associated with a venue is presented. A server may be configured to detect a presence of the mobile device at the venue and send a venue token toward the mobile device based on detection of the presence of the mobile device at the venue, where the venue token includes an indication of a venue-related item that the mobile device is permitted to access independent of a location of the mobile device. A mobile device may be configured to receive a venue token based on a presence of the mobile device at the venue where the venue token includes an indication of a venue-related item that the mobile device is permitted to access independent of a location of the mobile device, and send a request for the venue-related item toward a server based on the venue token.
Abstract:
A capability for controlling access by a mobile device to venue-related items associated with a venue is presented. A server may be configured to detect a presence of the mobile device at the venue and send a venue token toward the mobile device based on detection of the presence of the mobile device at the venue, where the venue token includes an indication of a venue-related item that the mobile device is permitted to access independent of a location of the mobile device. A mobile device may be configured to receive a venue token based on a presence of the mobile device at the venue where the venue token includes an indication of a venue-related item that the mobile device is permitted to access independent of a location of the mobile device, and send a request for the venue-related item toward a server based on the venue token.
Abstract:
Various exemplary embodiments relate to a method performed by a network platform, the method comprising: receiving a subscriber ID and associated base station ID and application IDs from a user equipment; receiving network congestion information from a network monitor; identifying an application affected by the network congestion; calculating a cost to the identified application due to the network congestion; and notifying the identified application of the calculated cost.
Abstract:
The present invention relates to a system and method for controlling parameters for applications serviced in a best effort (BE) communication link. The system includes a protocol specific processor configured to acquire at least one of (i) an application identifier and (ii) type of protocol associated with at least one layer higher than an internet layer for a packet to be transmitted in the BE communication link. The protocol specific processor is also configured to determine parameters for the packet according to the acquired at least one of (i) application identifier and (ii) the type of protocol associated with the at least one layer such that the packet receives quality of service (QoS) treatment in a Radio Access Network.
Abstract:
This disclosure generally discloses an anchor mobility mechanism. The anchor mobility mechanism is configured to support migration of flows between mobility anchors within a wireless communication system. The anchor mobility mechanism may be configured to support migration of flows between mobility anchors within a wireless communication system in a highly seamless manner. The anchor mobility mechanism may be configured to support migration of a flow of a wireless device between mobility anchors within a wireless communication system using functions performed by a control element (CE) and one or more forwarding elements (FEs) within the data plane of the flow of the wireless device. The functions may include identifying a time at which to initiate migration of the flow, initiating migration of the flow based on identification of the time at which to initiate migration of the flow, or the like, as well as various combinations thereof.
Abstract:
In a cellular system, channels are assigned for new calls using a flexible channel allocation algorithm that is a hybrid of a measurement-based dynamic channel assignment (MBDCA) algorithm and a reuse-distance criterion algorithm, such as a cost-function-based DCA (CFBDCA). In one embodiment, the MBDCA algorithm is implemented at each cell site in the cellular system and generates a list of candidate channels for each new call. The list is transmitted to the mobile switching center (MSC), which implements the CFBDCA algorithm to select a particular channel from the list of candidate channels for the new call.
Abstract:
In a cellular system, channels are assigned for new calls using a cost-function-based dynamic channel assignment (CFBDCA) algorithm. In one embodiment, the CFBDCA algorithm is implemented in the cellular system's mobile switching center (MSC), which maintains a database containing one or more cost tables and a busy channel table. The entries in the cost tables reflect the costs of using a candidate channel in one particular cell of the cellular system, assuming that the channel is already being used in another particular cell. The entries in the busy channel table identify which channels are currently being used in which cells. The CFBDCA algorithm uses the cost tables and the busy channel table to generate cost of reusing the channel (CORC) values. Depending on the implementation, the CFBDCA algorithm of the present invention may or may not be used in conjunction with a measurement-based DCA (MBDCA) algorithm. If so, then the CFBDCA algorithm may be applied to a list of candidate channels generated using the MBDCA algorithm.
Abstract:
The present invention relates to a system and method for controlling parameters for applications serviced in a best effort (BE) communication link. The system includes a protocol specific processor configured to acquire at least one of (i) an application identifier and (ii) type of protocol associated with at least one layer higher than an internet layer for a packet to be transmitted in the BE communication link. The protocol specific processor is also configured to determine parameters for the packet according to the acquired at least one of (i) application identifier and (ii) the type of protocol associated with the at least one layer such that the packet receives quality of service (QoS) treatment in a Radio Access Network.
Abstract:
In a cellular system, a new cell measures signal strengths of different channels being used by existing cells. The new cell generates a list of candidate channels corresponding to the channels with the greatest signal strength and transmits the list to the mobile switching center (MSC) of the cellular system. The MSC determines which of the candidate channels correspond to beacons in existing cells and transmits configuration information to the new cell for those corresponding existing cells. In this way, the new cell automatically receives configuration information on its neighbor cells. If the MSC determines that the number of candidate channels that are beacons is too small, the MSC will ask the new cell to transmit additional candidate channels (i.e., those having even lower signal strength).
Abstract:
Various exemplary embodiments relate to a method performed by a messaging server in a wireless network, the method including: establishing a messaging connection with an intelligent presence server; establishing a messaging connection with a user equipment; receiving a message from the intelligent presence server; and pushing the message to the user equipment.