摘要:
A method, apparatus and computer program products are provided for facilitating coordinated content delivery in multicast/broadcast networks. One example method includes receiving content from a service provider during a content service period, identifying a content service break period, the content service break period characterized by a break in transmission of content from the service provider intended for user devices, fetching localized content, and causing delivery of the localized content during the content service break period, the delivery of the localized content being performed via Xcast to determine a most radio resource efficient delivery mechanism.
摘要:
To efficiently use uplink resources while fulfilling latency requirements of low latency services, an access node, a resource pool allocated for contention based transmissions of low latency communication services may be used for transmissions of data services, since an access node providing the resource pool, is caused to send, in response to not being able to decode terminal device identification information from a sensed scheduling request, a stop instruction to terminal devices that are using the resource pool to transmissions of the data services. Further, the terminal device that sent the scheduling request is caused to use the resource pool for transmissions of the low latency service if a response is not received within predetermined time.
摘要:
A user equipment (UE) selects first and second radio resources from respective first and second pools of radio resources. In one example these are primarily allocated for contention-free and scheduling-based channel access, respectively. Content to duplicate in parallel communications is selected based at least on a characteristic of uplink data waiting to be sent (such as size) and/or on the selected first and second radio resources (such as timing difference between them). The UE transmits the selected content on each of the selected first and second radio resources. In the examples the content to duplicate was selected from among the uplink data to send and a scheduling request message. In various embodiments one of these transmissions indicates it's a duplicate, and the duplicated scheduling request message is transmitted on the first resource with the uplink data. These teachings are particularly useful for URLLC data.
摘要:
Methods and apparatuses are provided for providing augmented reality client application content to be enabled for one or more nodes. A method may include specifying a bounded area of a mesh network and associating content with the bounded area. The method may additionally include causing, at least in part, a peer-to-peer transmission of the content to one or more nodes within the bounded area over the mesh network. Corresponding apparatuses are also provided.
摘要:
An approach is provided for providing optimized privacy in cognitive radio information sharing. A cognitive radio privacy optimization platform determines cognitive radio connectivity information provided by at least one device. The cognitive radio privacy optimization platform also processes and/or facilitates a processing of the cognitive radio connectivity information to determine a quality, an amount, or a combination thereof of the cognitive radio connectivity information. The cognitive radio privacy optimization platform further determines at least one service class for providing cognitive radio connectivity to the at least one device based, at least in part, on the quality, the amount, or a combination thereof of the cognitive radio information.
摘要:
A user equipment (UE) selects first and second radio resources from respective first and second pools of radio resources. In one example these are primarily allocated for contention-free and scheduling-based channel access, respectively. Content to duplicate in parallel communications is selected based at least on a characteristic of uplink data waiting to be sent (such as size) and/or on the selected first and second radio resources (such as timing difference between them). The UE transmits the selected content on each of the selected first and second radio resources. In the examples the content to duplicate was selected from among the uplink data to send and a scheduling request message. In various embodiments one of these transmissions indicates it's a duplicate, and the duplicated scheduling request message is transmitted on the first resource with the uplink data. These teachings are particularly useful for URLLC data.
摘要:
A technique includes transmitting, by a user device to a base station, an initial uplink transmission; receiving, by the user device from the base station, feedback indicating a continuing transmission mode to be used by the user device to perform a further transmission to the base station, the indicated continuing transmission mode being at least one of a grant-free uplink transmission mode and a grant-based uplink transmission mode that are both supported by the user device; and transmitting, by the user device to the base station, a further transmission via the indicated continuing transmission mode.
摘要:
The disclosure relates to a method comprising: using information associated with a first application in a first device, said first application being configured to communicate with a corresponding second application in a second device via a communication link, and information associated with said communication link to determine a modified output; and causing said modified output to be provided to said corresponding second application via said communication link.
摘要:
Various communication systems may benefit from optimized transmissions. A method can include receiving data to be forwarded to a first wireless device. The method can also include determining the data as delay tolerant data. Moreover, the method can include defining a role of at least one second wireless device for forwarding the delay tolerant data. Also, the method can include transmitting the delay tolerant data to the second wireless device to be forwarded to the first wireless device.
摘要:
An approach is described for providing an architecture for delivering mixed reality content. A mixed reality platform determines one or more requests for one or more digital objects. The one or more digital objects aggregate location-based data, one or more computations, or a combination for supporting at least one mixed reality application. The mixed reality platform also determines one or more densities of the one or more requests with respect to one or more geographical boundaries defined by one or more clusters of the one or more digital objects. The mixed reality platform then processes and/or facilitates a processing of the one or more densities to cause, at least in part, a provisioning of one or more computational resources, one or more storage resources, one or more connectivity resources, or a combination thereof across one or more architectural layers of at least one cloud computing infrastructure for delivering the one or more digital objects, the at least one mixed reality application, or a combination thereof.