Abstract:
A device can receive, from a user device, a hypertext transfer protocol (HTTP) CONNECT request associated with a toll-free data service. The user device can establish a first transmission control protocol (TCP) connection with a proxy server. The HTTP CONNECT request can request the proxy server to establish a second TCP connection with a content provider server. The device can determine, based on the HTTP CONNECT request, that an authorization condition is satisfied. The device can store information associated with a flow between the user device and the content provider server. The user device and the content provider server can establish a transport layer security (TLS) connection based on the first TCP connection and the second TCP connection. The device can provide the information associated with the flow to permit an account of an entity to be adjusted in association with the toll-free data service.
Abstract:
A device may receive preferences related to performing cellular data testing in a cellular network. The preferences may identify one or more target network addresses. The device may receive location information identifying a testing location. The device may configure a component of the device to set a location of the device based on the location information. The device may perform a cellular data test by transmitting network traffic to the one or more target network addresses via a gateway associated with the testing location. The device may determine a result of the cellular data testing based on transmitting the network traffic. The device may selectively provide a notification based on the result.
Abstract:
A system may receive tag information, associated with media content, that includes a tag and a tag time. The system may generate, based on the tag information, clip information that includes a start time and an end time for a media content clip associated with the media content. The system may determine, based on the tag information, advertisement information that identifies an advertisement to be displayed with the media content clip, and indicates how the advertisement is to be displayed. The system may provide the tag information for display via a social media application, and may receive, via the social media application, an indication that the media content clip is to be provided for display to a user. The system may provide the advertisement information and the clip information such that the advertisement and the media content clip are provided for display to the user based on the advertisement information.
Abstract:
A device may receive information associated with media content that is capable of being provided by a first content delivery network and a second content delivery network. The first content delivery network may include a first host device and a second host device. The device may determine scores associated with the first content delivery network and the second content delivery network. The device may provide, based on the scores, information regarding the first content delivery to a user device to cause the user device to request the media content from the first content delivery network. The device may determine scores associated with the first host device and the second host device. The device may provide information regarding the first host device to a network device to cause the network device to route requests for the media content to the first host device.
Abstract:
A device can be configured to receive a transmission control protocol (TCP) packet from a user device and determine, based on data included in a header portion of the TCP packet, that the TCP packet includes a toll-free token. The toll-free token included in the TCP packet can be identified, an entity associated with the toll-free token can be identified, and an action can be performed based on the entity.
Abstract:
A device can determine a set of average vehicle entry rates using traffic data associated with an intersection and can determine a set of average vehicle wait time values. The device can generate one or more data structures that include a set of state values that include the set of average vehicle entry rates and a set of transition values. The device can determine a set of customer satisfaction rating values. The device can generate a prediction data structure that associates the set of state values with a set of traffic light cycle time values and one or more customer satisfaction rating values. The device can determine a current state value. The device can identify a state value and a traffic light cycle time value that is associated with a highest customer satisfaction rating. The device can provide the traffic light cycle time value to a traffic controller.
Abstract:
A device can receive, from a set of storage devices, first information relating to one or more pilot data plans that are associated with one or more first groups of user devices. The device can receive, from the set of storage devices, second information relating to one or more live data plans that are associated with one or more second groups of user devices. The device can analyze the first information and/or the second information to identify one or more patterns of information. The one or more patterns can include a data usage pattern, a demographic information pattern, a revenue generation pattern, and/or a user interest pattern. The device can perform one or more actions, including generating a new data plan, identifying one or more user accounts as candidates for a new data plan, and/or transmitting, via a network, information relating to the new data plan.
Abstract:
A device may receive, from a user device, a hypertext transfer protocol (HTTP) CONNECT request that includes a uniform resource locator (URL). The device may determine, using a data structure, whether the URL is a sponsored URL or a non-sponsored URL. The data structure may include one or more sponsored URLs associated with a toll-free data service campaign. The device may establish an HTTP CONNECT tunnel for transferring traffic, associated with the URL, between the user device and another device. The device may monitor data use, associated with the HTTP CONNECT tunnel, based on determining whether the URL is a sponsored URL or a non-sponsored URL. The device may generate a traffic information record based on monitoring the data use, and the device may provide the traffic information record to the user device.
Abstract:
A first device may receive a toll-free data request that includes an application signature. The toll-free data request may request that a first entity be billed for data usage by a second device associated with a second entity, and may be received from an application. The first device may decrypt the application signature to obtain a device identifier and an application identifier. The first device may validate the application signature based on the device identifier and the application identifier. The first device may selectively cause the first entity or the second entity to be billed for data usage associated with the toll-free data request based on a result of validating the application signature.
Abstract:
A device may receive first information. The first information may be based on traffic associated with usage of a toll-free data service. The device may receive an identifier for a user device. The user device may be using the toll-free data service. The device may generate second information. The second information may correspond to usage, by the user device, of the toll-free data service. The second information may be generated based on the first information and the identifier. The device may send the second information to another device to support providing a notification of toll-free data service usage. The notification of toll-free data service usage may be based on the second information.