Patent classifications
H04L47/826
INDICATING WHETHER A USER DEVICE CAN ACCESS A COMPUTING RESOURCE BASED ON WHETHER A CURRENT TIME FALLS WITHIN ONE OR MORE TIME SLOTS ASSOCIATED WITH THE COMPUTING RESOURCE
Disclosed are methods, systems and computer-readable media involving data that associates a computing resource with at least one time slot. Based at least in part on the data and a current time being within the at least one time slot, a device may be caused to display an indication that the computing resource can be accessed using the device. Based at least in part on the data and a current time being outside the at least one time slot, the device may be caused to cease displaying the indication.
Dynamic resizing of webserver connection pool size
The present disclosure relates to systems, non-transitory computer-readable media, and methods for dynamically updating the connection pool for a web server without any interruption to the resource. In particular, in one or more embodiments, the disclosed systems can continuously monitor load data for various web servers. Further, the disclosed systems can utilize load data, historical load data, and/or user settings to predict a number of connections over a future time period and can determine an updated connection pool size for a web server based on that predicted number of connections. The disclosed systems can also dynamically modify the connection pool size for the web server based on the updated connection pool size without interrupting the resource or any of its ongoing connections in any way.
Domain name bandwidth adjustment method and apparatus
Disclosed is a domain name bandwidth adjustment method and apparatus, wherein the method includes: determining whether a CDN system triggers a bandwidth speed limiting policy, if yes, determining a to-be-limited domain name from domain names served by the CDN system, and executing the bandwidth speed limiting policy on the target domain name; when the bandwidth speed limiting policy is being executed, determining an initial reference bandwidth of the target domain name, and comparing the initial reference bandwidth with an actual bandwidth of the target domain name within a specified observation duration, to determine whether to perform step adjustment on the initial reference bandwidth and determine whether to release the bandwidth speed limiting policy. In the technical solutions provided in the present disclosure, the bandwidth of the target domain name can be effectively controlled, and the bandwidth of the target domain name can be prevented from rising again.
Processing streaming content requests
Systems and methods for tracking and identifying of a series of user requests in media streaming applications. Traditional media streaming requires a set of sequential, stateless user requests for content and do not support cookies or other user identification methods. The present application provides a framework for associating sequences of user media requests falling within a prescribed time window using multiple inputs to download requests for purposes of identifying and reconciling individual downloads.
Robot control system and control method
A robot control system includes a first control device including a first communication unit and one or more second control devices connected to the first control device through a network. Each of the second control devices includes a second communication unit that exchanges data with the first communication unit of the first control device using a communication resource of a network allocated thereto, and a command value generation unit that sequentially generates a command value for driving the robot, in accordance with a command from the first control device. The robot control system includes a communication resource setting unit that allocates the communication resource to each second control device.
Time sensitive networking in a microservice environment
A cloud orchestration platform obtains from a policy controller, application flow requirements for an application to be deployed in a container network that includes a plurality of microservices. The cloud orchestration platform determines a path through at least a subset of the plurality of microservices based on the application flow requirements, and computes information describing compute resources for workloads associated with the path through the plurality of microservices needed to support the application flow requirements. The cloud orchestration platform creates and/or reserves the workloads among the plurality of microservices. The cloud orchestration platform communicates scheduling requirements to a scheduling driver function associated with the plurality of microservices, the scheduling deriver function using the scheduling requirements to coordinate scheduling of workloads based on the path. The cloud orchestration platform directs traffic associated with the application into the container network.
GENERATING A SCALING PLAN FOR EXTERNAL SYSTEMS DURING CLOUD TENANT ONBOARDING/OFFBOARDING
An approach is provided for generating a scaling plan. Plans for onboarding first tenant(s) a cloud computing environment and offboarding second tenant(s) of the cloud computing environment are received. Historical data about behavior of tenants of the cloud computing environment is received. Based on the received plans and the historical data, a scaling plan for scaling computer resources of external systems during the onboarding and the offboarding is generated. The scaling plan specifies a timeline indicating dates and times at which changes in workloads associated with the external systems are required for the onboarding and the offboarding. Based on the scaling plan, a scaling is determined to be needed for computer resource(s) of one of the external systems. Responsive to determining that the scaling is needed, the scaling for the computer resource(s) is triggered at a date and a time indicated by the timeline.
Generating a scaling plan for external systems during cloud tenant onboarding/offboarding
An approach is provided for generating a scaling plan. Plans for onboarding first tenant(s) a cloud computing environment and offboarding second tenant(s) of the cloud computing environment are received. Historical data about behavior of tenants of the cloud computing environment is received. Based on the received plans and the historical data, a scaling plan for scaling computer resources of external systems during the onboarding and the offboarding is generated. The scaling plan specifies a timeline indicating dates and times at which changes in workloads associated with the external systems are required for the onboarding and the offboarding. Based on the scaling plan, a scaling is determined to be needed for computer resource(s) of one of the external systems. Responsive to determining that the scaling is needed, the scaling for the computer resource(s) is triggered at a date and a time indicated by the timeline.
INTEGRATED ENVIRONMENT MONITOR FOR DISTRIBUTED RESOURCES
Resource metrics are obtained for resources from distributed resources associated with operations of an enterprise. Metric types from the distributed resources defined in the metrics are grouped and aggregated into aggregated metric types within a data model. Each aggregated metric type data value of the data model is weighed. The weighted aggregated data values are used to calculate an overall service health value of the enterprise. A current instance of the data model is processed to render one or more single views within an interface to a user of the enterprise. Each single view includes the overall service health value along with a custom-level of detail for each aggregated metric type and the corresponding aggregated metric data values.
METHOD AND DEVICE FOR TRANSMITTING SYNCHRONIZATION SIGNAL BLOCK, AND STORAGE MEDIUM
Disclosed are a method and device for transmitting a synchronization signal block (SSB), and a storage medium. The method comprises: when an SSB is to be transmitted in an unlicensed band, lengthening a time window for transmission of an SSB; and transmitting the SSB in the lengthened time window. Implementing the solution of the present invention can increase a success rate of SSB transmission.