Patent classifications
H04L41/00
Accelerated network reconnect using previous connection parameters
A Wi-Fi device includes a controller coupled to a writeable memory implementing a MAC and PHY layer and to a transceiver. Connection data stored in the writeable memory includes Wi-Fi connection parameters including≥1 router MAC level information or a most recently utilized (MRU) channel used, and IP addresses including≥1 of an IP address of the Wi-Fi device, IP address of the MRU router, an IP address of a MRU target server, and an IP address of a network connected device. An accelerated reconnecting to a Wi-Fi network algorithm is implemented by the processor is for starting from being in a network disconnected state, establishing current connection parameters for a current Wi-Fi network connection using the Wi-Fi connection parameters for at least one MAC layer parameter for the MAC layer.
Scriptlets
Embodiments disclosed herein are related to a method that can include displaying first content on a media display, receiving first data generated from or determined by an Internet of Things (IoT) device, and displaying second content in response to receiving the first data from the IoT device.
BLOCKCHAIN SYSTEM, PROGRAM AND NETWORK CONNECTION APPARATUS
A block chain system includes a network connection apparatus and a plurality of nodes, and includes a node information managing unit, a network connection apparatus information managing unit, a block chain network information managing unit configured to manage information related to a block chain network, a block chain node updating unit configured to update block chain nodes in response to a change in information related to the plurality of nodes, a propagating unit configured to propagate, to the block chain nodes, information that is input in the block chain network for recording, and a recording unit configured to record the information in the block chain network, in a case where agreement is achieved with respect to the information that is input.
Server of statistics for optimization of client-server requests
A method for executing a client application on a client terminal communicating with a server application on a server via a telecommunications network. The client application includes at least two views, at least one view being configured to establish at least one request to the server application. According to the method, the client application is associated with a data structure relating to the views of the application, in which at least one parametrization attribute of the request is associated with a view. The method includes the following steps on the client application: selecting a view, termed a current view; obtaining of an attribute associated with the current view in the data structure relating to the views of the application; and generating a request to the server application.
System for creating network troubleshooting procedure
A system for constructing and storing procedures for troubleshooting computer networks. A user can design and add troubleshooting steps, via a GUI, to define the procedure including annotations. Each step is configured to take an action on the network. The order of the steps can be re-arranged via the GUI. The procedure can be stored and re-executed by another user.
Method, Apparatus, and System for Sending Control Request Based on Key Value Configuration
A method, an apparatus, and a system for sending a control request based on a key value configuration. The method includes generating, by a client controller, a control request, wherein having a plurality of configuration parameters, wherein the plurality of configuration parameters comprise a flexible key value, a control object name, and a universally unique identifier (UUID), where the flexible key value identifies a requested control object, and the flexible key value is determined using at least one of the control object name or the UUID, and sending, by the client controller, the control request to a server controller, where the control request indicates to the server controller to configure the control object.
Agent-based network scanning in software-defined networking (SDN) environments
Example methods are provided for a network scanning controller to perform agent-based network scanning in a software-defined networking (SDN) environment. In one example, the method may comprise identifying multiple networks for which network scanning is required, performing a first network scan using a first agent to obtain first address mapping information associated with multiple first workloads, and performing a second network scan using a second agent to obtain second address mapping information associated with multiple second workloads. The first agent and the multiple first workloads may be located in a first network, and the second agent and the multiple second workloads in a second network. The method may also comprise generating aggregated address information based on the first address mapping information and the second address mapping information.
Network function virtualization compute element image upgrade
A network function virtualization (NFV) compute element installs an image supporting a virtualized network function (VNF) on the element. The image includes instructions/data to initiate a TCP connection between the element and a Software Defined Network (SDN) controller upon reboot of the element. Upon rebooting, the element establishes, as client in accordance with the instructions/data, a TCP connection with the controller. The element then accepts, as a cryptographic network protocol server, a connection via the TCP connection from the controller as a client in accordance with the instructions. Next, the element accepts, as a network management protocol server, a connection via the cryptographic network protocol connection from the controller as network management protocol client. The element receives, from the controller over the network management protocol connection, commands regarding the status of the rebooted element, and then transmits, to the controller over the network management protocol connection, responses to the commands.
SERVER FOR CONTROLLING NETWORK ELEMENT IN COMMUNICATION SYSTEM AND OPERATING METHOD THEREFOR
The present disclosure relates to: a communication technique for merging IoT technology with a 5G communication system for supporting a higher data rate than a beyond 4G system; and a system therefor. The present disclosure can be applied to intelligent services (for example, smart homes, smart buildings, smart cities, smart cars or connected cars, healthcare, digital education, small businesses, security- and safety-related services, and the like) on the basis of 5G communication technology and IoT-related technology. A controller node is disclosed. The controller node comprises: a processor for generating a network element (NE) list on the basis of time zone information and threshold information obtained from a database (DB) node; and a communication interface for receiving a configuration information request message from a network element corresponding to the network element list and transmitting a configuration information response message to the network element in response to the configuration information request message.
Assisting Users with Efficient Information Sharing among Social Connections
In one embodiment, a method includes receiving a user input from a first user at the first client system, determining that the user input is a sharing request to share content, determining multiple second users the sharing request is directed to, determining, for each second user, modalities associated with the respective second user based on the content, a user profile associated with the respective second user, and modalities supported by a second client system the respective second user is currently engaged with, the respective second user being associated with two or more second client systems, and sending, to one or more second client systems currently associated with the second users, instructions for accessing the content based on the determined modalities for each second user.