Abstract:
Techniques are described for providing clients with access to functionality for creating, configuring and executing defined workflows that manipulate source data in defined manners, such as under the control of a configurable workflow service that is available to multiple remote clients over one or more public networks. A defined workflow for a client may, for example, include multiple interconnected workflow components that are specified by the client and that each are configured to perform one or more types of data manipulation operations on a specified type of input data. The configurable workflow service may further execute the defined workflow at one or more times and in one or more manners, such as in some situations by provisioning multiple computing nodes provided by the configurable workflow service to each implement at least one of the workflow components for the defined workflow.
Abstract:
A mobile communication system includes a base station that configures a plurality of cells. The plurality of cells include D2D supporting cell that supports D2D communication in which data communication is directly performed between terminals and D2D non-supporting cell that does not support the D2D communication. The base station transmits D2D information indicating that the D2D communication is permitted even in the D2D non-supporting cell as well as the D2D supporting cell.
Abstract:
Some embodiments provide a non-transitory machine readable medium of a controller of a network control system for configuring a wide area network (WAN) optimizer instance to implement a WAN optimizer for a logical network. The controller receives a configuration for the WAN optimizer to optimize network data from the logical network for transmission to another WAN optimizer. The controller identifies several other controllers in the network control system on which to implement the logical network. The controller distributes the configuration for implementation on the WAN optimizer.
Abstract:
Access terminals are adapted to facilitate automated configuration of communications interfaces based on a current carrier identity. According to one example, an access terminal may determine a carrier identity from a subscription module. A modem configuration associated with the carrier identity may be selected from modem configuration data stored on a storage medium accessible by the access terminal. The selected carrier-specific software configuration may then be activated to configure a communications interface of the access terminal to facilitate operations associated with the carrier identity, such as facilitating wireless communications with a carrier associated with the carrier identity. Other aspects, embodiments, and features are also included.
Abstract:
A system and methods for managing a transformer area in an electrical distribution grid having at least one substation transformer and one service transformer are presented. At least one Remote Hub governed by a policy may be provided, which collects data about the transformer area. The Remote Hub may also execute a discovery procedure to inventory Remotes in the transformer area. The Remote Hub may use the collected data to detect events, such as exceptional conditions, configuration changes, or derived results, within the transformer area. Based on the collected data, the Remote Hub is able to transmit data about the transformer area via a Substation-to-Edge channel. A method and system for forming and establishing boundaries of Transformer Area Networks is also presented. Discovery procedures may be used to form Transformer Area Networks out of Remote Hubs and Remotes powered by the same phase of the service transformer.
Abstract:
It is an object to provide a communication terminal capable of determining a cluster formation so as to promptly perform addition of a participant terminal, while maintaining the quality of a stream relay path. Cluster monitoring terminal (430) is an apparatus to determine a cluster formation in a network performing packet transfer according to terminal relay-type multipoint communication, and includes: a cluster quality calculation section (432) for acquiring cluster quality representing a small loss in a packet to be received, per a cluster; a cluster sustainability calculation section (433) for acquiring cluster sustainability representing ease of acceptance of a participant terminal, per a cluster; and cluster division/integration analysis section (434) for determining cluster division with respect to a cluster having low cluster quality, and determining integration with other cluster with respect to a cluster having high cluster quality and low cluster sustainability.
Abstract:
A device is configured to be operable in a plurality of network environments. A number of different configurations are available to be set on the device, where a first configuration enables operation on a first network, and a second configuration enables operation on a second, disparate, network. A plurality of external ports in conjunction with a multiplexer switch, network switch, internal CPU, external CPU, routing links, etc., can be combined to facilitate multiple configurations for the device. The device is suitable for incorporation into a human machine interface, for application in an industrial processing operation. Receive port information can be incorporated into a data frame to facilitate identification of an external port associated with the reception of the data frame. Applicable networks include linear topology, ring topology, star topology, Ethernet, ROCKWELL NEO, EtherNet/IP, one or more LANs, etc. Configuration can be via a USB device or an interface.
Abstract:
A communication device for handling a cellular-wireless local area network (cellular-WLAN) aggregation (CWA) comprises a storage device for storing instructions of receiving a first configuration configuring a CWA for a radio bearer, from a first cell of a cellular network; enabling the CWA for the radio bearer in response to the first configuration; receiving a handover command from the first cell, when enabling the CWA, wherein the handover command configures the communication device to perform a handover to a second cell of the cellular network; keeping enabling the CWA for the radio bearer in response to the handover command, when the handover command comprises a second configuration; and disabling the CWA for the radio bearer in response to the handover command, when the handover command does not comprise the second configuration.
Abstract:
The present invention discloses a message transmission method, an apparatus, and a system. The method includes: obtaining physical layer operation, administration and maintenance information between an optical line terminal and an optical network unit; fragmenting the physical layer operation, administration and maintenance information, to obtain multiple fragments; generating a first message, where the first message includes: a first message type identifier field, used to identify a type of the first message; a message length field, used to identify a length of a fragment carried in the first message; an action indication field, used to identify whether the fragment carried in the first message is the last fragment; a first fragment sequence number field, used to identify a sequence number of the fragment carried in the first message; and a message content field, used to carry a fragment in the multiple fragments; and sending the first message. According to embodiments of the present invention, an OLT in an OFDM PON system transmits physical layer operation, administration and maintenance information to an ONU.
Abstract:
Embodiments of the present invention provide an access network system, and a data packet processing method and apparatus. The access structure includes: a controller, configured to perform configuration a flow table for a switching module and a protocol function for at least one functional module; the switching module, configured to send a first data packet to a first functional module of the at least one functional module according to the flow table configured by the controller, where the first functional module is a functional module first indicated in the flow table to process the first data packet; and the at least one functional module, configured to process the first data packet according to the protocol function configured by the controller. In the access network system in the embodiments of the present invention, a switching module sends a data packet to a corresponding functional module according to a flow table, and then the functional module processes the data packet according to a configured protocol function. In this way, an appropriate procedure can be selected for processing the data packet, processing efficiency is improved, and software definition at a protocol stack layer is implemented.