Abstract:
Techniques are provided which can allow a host to determine whether to send a DNS request via a distributed Domain Name Service (DNS) protocol or a regular DNS protocol.
Abstract:
Techniques are provided which can allow a host to determine whether to send a DNS request via a distributed Domain Name Service (DNS) protocol or a regular DNS protocol.
Abstract:
An electronic device detects a change in its physical configuration and automatically performs an application function in response to such detection. By one approach this can comprise detecting a change in configuration as regards a native component of the electronic device (such as, for example, whether the component is configured in a deployed position or a non-deployed position). The nature of the performed application function can vary with the application setting. As one example, this activity can comprise moving at least a portion of the application's user interface to the aforementioned component. As another example, this activity can comprise accessing preferences information (by, for example, accessing stored information that maps particular application functions to corresponding physical configurations of the electronic device).
Abstract:
Detection of a change in physical configuration of a discrete device with respect to an electronic device leads to responsively changing application functionality of the electronic device as a function, at least in part, of information provided by the discrete device. By one approach the detected change can pertain to movement of the discrete device with respect to the electronic device or orientation of a coupling of the discrete device to the electronic device. This information can comprise at least a unique identification code. In such a case these teachings will accommodate using the unique identification code to access a corresponding profile for the discrete device where the profile specifies at least one application to be presently made available using the discrete device.
Abstract:
A wireless communication system 200 comprises a connectionless packet network 201 coupled to a plurality of sites 203-208 that are in location areas 260, 261. The sites join respective location area multicast addresses to receive messages from other sites in their location area. Communication units desiring to participate in talkgroup calls need only to register affiliation with a first site of the location area. Upon the first site receiving an affiliation message, it joins a payload multicast group address to receive payload for the talkgroup. In alternative embodiments, the first site sends, via the location area multicast address, either control message(s) or tunneled payload associated with the talkgroup call to secondary site(s) of the location area. The sites initiate paging sequences to determine whether communication units at their sites desire to participate in the call and, based on the responses, the sites may deliver stored payload and/or join the payload multicast group address to receive payload for the call. In this manner, a centralized entity such as a VLR is not needed to keep track of communication units in the location area.
Abstract:
Detection of a physical interaction between a first device that is logically coupled to a second device, wherein the physical interaction comprises one of a plurality of physical interactions that involve movement of one of the first device and the second device, results in automatically performing a function that corresponds to the physical interaction. The detected physical interaction can comprise one or more of a physical reorientation of the first device, a pivoting movement between the first device and the second device, a sliding movement between the first device and the second device, and a momentary change in physical proximity of the first device with respect to the second device. This activity can also include determining whether the physical interaction occurs within a predetermined period of time, and when the physical interaction does not occur within the predetermined period of time, prohibiting the automatic performing of the function.
Abstract:
A communication system comprises network elements (103, 105, 107, 109) and user equipments (101), at least some of which comprise a charging proxy (205). The system further comprises a charging server (111) which includes a topic controller (305) for initializing charging topics where each charging topic is associable with charging data. The charging server (111) furthermore comprises functionality for registering proxies as subscribing proxies or publishing proxies (or both) for the different charging topics. A receiver (301, 311) receives charging data messages from charging proxies and validates a first set of charging data belonging to a first charging topic in response to a first set of charging proxies registered as publishing proxies for the first charging topic. A charging data transmitter (313) transmits the first set of charging data to a second set of charging proxies registered as subscribing proxies for the first charging topic.
Abstract:
A method and system for routing a data packet, intended for a destination node, from a source node to a first intermediate node in a network is useful for improving the efficiency of the network. The method includes determining a priority level for a user of the source node and a priority level for a user of the destination node (step 505). A priority level is also determined for each of the following: a device associated with the source node, a device associated with the destination node, and a device associated with the first intermediate node (step 510). A routing path is then selected that routes the data packet from the source node to the first intermediate node based on a comparison of the priority level for the device associated with the first intermediate node, the priority levels for the users of the source and destination nodes, and the priority levels for the devices associated with the source and destination nodes (step 515).
Abstract:
A method is provided for enabling an over the top (OTT) service over a broadband network. The method includes receiving a registration request from a mobile User Equipment (UE) over a femto cell to register with a cellular operator of a cellular network. The registration request is forwarded to an authentication, authorization, and accounting (AAA) server associated with the cellular operator to register the mobile UE therewith. A rendition of the registration request is forwarded to an AAA server associated with a broadband operator of a broadband network to register the mobile UE therewith.
Abstract:
Techniques are provided which can allow a host to determine whether to send a DNS request via a distributed Domain Name Service (DNS) protocol or a regular DNS protocol.