Abstract:
Systems and methods described herein provide deployment optimization service. A network device in a network receives an order for virtual network function (VNF) deployments at network edge locations. The network device maps a radio access network (RAN) topology for the network edge locations. The network device identifies time windows to perform the VNF deployments, based on the order, historical transport and RAN utilization data, and the RAN topology. The network device selects an optimal time window to perform the VNF deployments based on stored policy rules and pushes software images for the VNF deployments to an image repository in a geographical region near the network edge locations. The network device analyzes, for the optimal time window, real-time network data for a pre-emptive condition. The network device pre-empts the VNF deployments when a pre-emptive condition is identified and initiates the VNF deployments when no pre-emptive condition is identified.
Abstract:
A system and method for determining adverse/dangerous road conditions based on sensor data received from a vehicle and generating alerts for other vehicles which may encounter the same condition. The system receives sensor data from a vehicle and evaluates the data to determine if the vehicle encountered a potentially dangerous road condition. The system may apply one or more thresholds to the data, where the thresholds are designed to detect various sudden movements of the vehicle. The system may monitor the location associated with the potentially dangerous road condition and evaluate sensor data from one or more other vehicles that drive near the same location to determine whether they encounter a similar condition. The system may generate one or more alerts and transmit those alerts to vehicles that are approaching the location of the dangerous condition using location data provided by the approaching vehicles.
Abstract:
Systems and methods described herein provide deployment optimization service. A network device in a network receives an order for virtual network function (VNF) deployments at network edge locations. The network device maps a radio access network (RAN) topology for the network edge locations. The network device identifies time windows to perform the VNF deployments, based on the order, historical transport and RAN utilization data, and the RAN topology. The network device selects an optimal time window to perform the VNF deployments based on stored policy rules and pushes software images for the VNF deployments to an image repository in a geographical region near the network edge locations. The network device analyzes, for the optimal time window, real-time network data for a pre-emptive condition. The network device pre-empts the VNF deployments when a pre-emptive condition is identified and initiates the VNF deployments when no pre-emptive condition is identified.
Abstract:
A system and method for determining adverse/dangerous road conditions based on sensor data received from a vehicle and generating alerts for other vehicles which may encounter the same condition. The system receives sensor data from a vehicle and evaluates the data to determine if the vehicle encountered a potentially dangerous road condition. The system may apply one or more thresholds to the data, where the thresholds are designed to detect various sudden movements of the vehicle. The system may monitor the location associated with the potentially dangerous road condition and evaluate sensor data from one or more other vehicles that drive near the same location to determine whether they encounter a similar condition. The system may generate one or more alerts and transmit those alerts to vehicles that are approaching the location of the dangerous condition using location data provided by the approaching vehicles.
Abstract:
Systems and methods described herein provide deployment optimization service. A network device in a network receives an order for virtual network function (VNF) deployments at network edge locations. The network device maps a radio access network (RAN) topology for the network edge locations. The network device identifies time windows to perform the VNF deployments, based on the order, historical transport and RAN utilization data, and the RAN topology. The network device selects an optimal time window to perform the VNF deployments based on stored policy rules and pushes software images for the VNF deployments to an image repository in a geographical region near the network edge locations. The network device analyzes, for the optimal time window, real-time network data for a pre-emptive condition. The network device pre-empts the VNF deployments when a pre-emptive condition is identified and initiates the VNF deployments when no pre-emptive condition is identified.
Abstract:
A method includes transmitting first data causing a client device to display a webpage including a panel and an action access icon; transmitting second data to the client device causing, in response to a selection of the action access icon, the client device to display multiple action icons within or adjacent to the panel; receiving, from the client device, an indication that one of the multiple action icons was selected; obtaining a context identifier associated with the panel based on the indication; obtaining a user interface configured to allow submitting a developer work item for the context identifier; in response to the indication, transmitting third data to the client device causing the client device to display the user interface; receiving, via the user interface on the client device, the developer work item; and storing the developer work item in association with the context identifier.
Abstract:
A method, a device, and a non-transitory storage medium having instructions to deploy files of a web-based application, wherein a deploying includes: receive an upload of the files from a user device via a web browser, and store the files; receive from the user device via the web browser, a first request to run the web-based application that has been deployed; run the web-based application in response to the first request, and wherein during a running of the web-based application: determine a type of a second request for data to be used to generate a user interface of the web-based application; obtain the data based on the type of the second request; and render the user interface based on the obtained data.
Abstract:
A method, a device, and a non-transitory storage medium having instructions to deploy files of a web-based application, wherein a deploying includes: receive an upload of the files from a user device via a web browser, and store the files; receive from the user device via the web browser, a first request to run the web-based application that has been deployed; run the web-based application in response to the first request, and wherein during a running of the web-based application: determine a type of a second request for data to be used to generate a user interface of the web-based application; obtain the data based on the type of the second request; and render the user interface based on the obtained data.
Abstract:
An approach for providing vehicle accident prevention service is described. A user device in motion is detected. An alert message indicating that the user device is in motion is generated. A determination is made whether to establish a communication session with the user device in response to the generated alert message.
Abstract:
Systems and methods described herein provide deployment optimization service. A network device in a network receives an order for virtual network function (VNF) deployments at network edge locations. The network device maps a radio access network (RAN) topology for the network edge locations. The network device identifies time windows to perform the VNF deployments, based on the order, historical transport and RAN utilization data, and the RAN topology. The network device selects an optimal time window to perform the VNF deployments based on stored policy rules and pushes software images for the VNF deployments to an image repository in a geographical region near the network edge locations. The network device analyzes, for the optimal time window, real-time network data for a pre-emptive condition. The network device pre-empts the VNF deployments when a pre-emptive condition is identified and initiates the VNF deployments when no pre-emptive condition is identified.