Patent classifications
H04L12/917
METHOD AND APPARATUS FOR DELEGATING RESOURCES BETWEEN DEVICES
A system performs operations including detecting a request to present a game application, receiving a resources identifier from a second communication device, determining from the resources identifier that the second communication device has one of a computing resource, a presentation resource, or both, selecting a configuration from a plurality of configurations according to an identity of the gaming application and the resources identifier, selecting according to the configuration at least one resource from one of the computing resource, the presentation resource, or both of the second communication device, and delegating processing by the first communication device of a portion of the gaming application according to the at least one resource of the second communication device.
Elastic compute cloud based on underutilized server resources using a distributed container system
Described are computer-based methods and apparatuses, including computer program products, for leveraging available compute resources from a plurality of computing devices using containers. Each computing device from the plurality of computing devices executes a container that virtualizes a portion of an operating system executing on the computing device such that the container can execute one or more secondary applications in isolation from any incumbent applications being executed by the operating system on the computing device that have priority over the one or more secondary applications.
DETERMINING BANDWIDTH REQUIREMENTS FOR NETWORK SERVICES
Methods and systems for identifying the amount of a network's traffic that is attributable to each service running over the network. The method comprises generating a set of candidate demand vectors (each candidate demand vector comprising a predicted bandwidth value for each service) from the topology of the network, bandwidth utilization information for the network and routing information for the network; evaluating each of the candidate demand vectors against the bandwidth utilization information; and, determining if a stop condition is satisfied. If the stop condition is not satisfied then the set of candidate demand vectors is evolved. If, however, the stop condition is satisfied then the best candidate demand vector based on the evaluation is selected and output as the demand vector for the services.
Architected protocol for changing link operating mode
In one embodiment, a device having a link training state machine including a reconfiguration logic to perform a dynamic link reconfiguration of a physical link coupled between the device and a second device during a run-time in which the physical link does not enter a link down state, including transmission of a plurality of bandwidth change requests to the second device, each of the plurality of bandwidth change requests to request a bandwidth change from a first bandwidth to a second bandwidth. Other embodiments are described and claimed.
METHOD AND APPRATUS FOR RELOCATING PACKET PROCESSING FUNCTIONS
The invention relates to a method for enabling relocation of a function for processing data packets of a flow associated with a device. The method is performed in an arrangement of a communication system, which is allocated as a proxy for control messages exchanged between an instance of the function for processing the data packets of the flow and a control instance controlling how the function processes the data packets of the flow. The method comprises obtaining (920) information indicating that the function for processing the data packets is relocated from a first instance to a second instance. The method further comprises forwarding (930) control messages received from the control instance to the second instance of the function for processing the data packets and vice versa, in response to the obtained information.
CONVERGENCE OF CLOUD AND MOBILE ENVIRONMENTS
In an approach for converging a cloud computing environment and a mobile device into an integrated environment, a processor receives a request to complete a computing task on a first device. A processor identifies capabilities of the first device. A processor monitors resource utilization on the first device. A processor determines that the computing task should be offloaded based, at least in part, on the capabilities of the first device and resource utilization on the first device. A processor offloads the computing task. A processor receives a result of the computing task.
MULTI-MODE REMOTE COLLABORATION
Generally discussed herein are systems and apparatuses for multi-mode collaboration between entities in different jurisdictions. According to an example a technique can include determining a location of a remote communication device by at least one of a global positioning system (GPS), low frequency (LF) atomic time radio, earth magnetic signature, internet protocol (IP) address, and cell phone tower triangulation, determine regulations regarding communication from an internal network to the remote device based on the determined location, and configure the remote device to transmit and receive communications in a manner compliant with the determined regulations including one of voice over internet protocol (VOIP) communication, hypertext transfer protocol (HTTP) communication, text communication, voice communication, video communication, and augmented reality communication.
INSTANT NOTIFICATION OF LOAD BALANCE AND RESOURCE SCHEDULING BASED ON RESOURCE CAPACITIES AND EVENT RECOGNITION
Systems, computer-implemented methods, and computer-readable media for facilitating resource balancing based on resource capacities and resource assignments are disclosed. Electronic communications, received via interfaces, from monitoring devices to identify resource descriptions of resources may be monitored. A resource descriptions data store may be updated to associate each entity of the entities and resource capacities of each resource type of resource types. A first electronic communication, from resource-controlling systems, may be detected. Model data from a model data store may be accessed based on the identified resource descriptions. A first model may be identified based on the model data. A resources assessment corresponding may be generated based on whether a threshold is satisfied based on the first model, a first resource capacity of a first resource type, and the first electronic communication. An electronic notification may be transmitted to the client devices to identify the resources assessment.
SYSTEM AND METHODOLOGY FOR IMPLEMENTING THE SAFE DE-PROVISIONING OF POOLED CLOUD RESOURCES
A system and method of implementing safe deprovisioning of pooled cloud resources in response to physical resource shut down, comprises a cluster of computer system devices. At least one memory device among the one or more memory devices stores a set of program modules, and an Advanced Configuration and Power Interface (ACPI) open-standard specification. A set of program modules comprises an input module, a shutdown module, and a data transfer module. The input module receives from a first computer system device among the cluster, a first signal. The first signal comprises information regarding a power-off event triggered in the first computer system device. The data transfer module implements the ACPI open-standard specification in the first computer system device, and migrate data comprised in the first computer system device into a second computer system device. The shutdown module to de-power the first computer system device.
Bandwidth management for content delivery
A service platform for a content delivery network indicates a transmission rate cap to be imposed when streaming data to a data requesting device over an access network. Means are provided for receiving a service request for delivery of data from a requesting device as the result of which the requested data is delivered as a prioritised traffic stream over an access link to the requesting device. The service platform processes the service request to determine one or more performance characteristics of said access link and uses this to determine the maximum transmission rate for the requested data to be streamed at over the access link during its delivery to the requesting device. This information is included in a source address for the requested data which the service platform generates, typically as a URL. The maximum transmission rate set is provided as a prefix to the URL (or in some other meta-data format) to the requesting device, and the content delivery platform is configured to ensure that requests for media assets which are received at the logical or virtual ports associated with the URL pre-fixes are responded to by transmissions limited to the maximum bandwidth cap indicated by the URL pre-fix.