Abstract:
A method for automatically configuring terminal equipment improves the performance of configuring and managing the terminal equipment. The method includes: after being powered on/reset, the terminal equipment reporting the current configuration information to the terminal management unit; the terminal management unit determining whether the configuration information reported by the terminal equipment is the same as the configuration information for the terminal equipment stored in the terminal management unit, if it is the same, terminating the current process, otherwise, transmitting the configuration information for the terminal equipment in the terminal management unit to the terminal equipment; the terminal equipment hence updating its own configuration information according to the received configuration information.
Abstract:
A method for determining spare capacity for a video and data network from a network element database is provided. The method includes receiving a request for spare capacity in the video and data network. The request may include a service area identifier, which may be a telephone number of a customer. Using the service area identifier, equipment is then identified and checked for spare capacity. The network element database is checked to determine if the identified equipment has spare data and video capacity and if the equipment has spare data and video capacity, spare video and data capacity is calculated for the identified equipment.
Abstract:
A method and system for managing performance data of communication lines, such as digital subscriber lines, is disclosed. The method includes receiving from a remote user device an identifier for a particular communications line at a web server; initiating a real-time performance analysis of the line at a network end of the line; receiving real-time performance data and converting the real time performance data to analyzed data; receiving field performance data from the user device; and converting at least one of the field performance data and the real-time performance data from a web-based format to a mainframe format; and sending the converted data to a mainframe for storage corresponding to a file associated with the identifier.
Abstract:
In one embodiment, a method includes obtaining a first packet that has a first payload. The first payload identifies a first path between endpoints traversed by the first packet, and identifying information associated with a first node associated with the first path traversed by the first packet. The identifying information includes an arrival time that identifies approximately when the first packet arrived at the first node and a leaving time that identifies approximately when the first packet left the first node. A first service level agreement (SLA) parameter of the first path is determined by analyzing the arrival time and the leaving time, comparing the first SLA parameter with a second SLA parameter associated with a second path traversed by a second probe packet, and selecting the first path for sending packets if the first SLA parameter indicates a higher SLA level than indicated by the second SLA parameter.
Abstract:
The specification provides information for determining any impacted customers, virtual private networks, circuits, and devices following a path failure. The specification uses an information-gathering component to find system information and uses the system information in determining any impacted units. A report is created that allows a network management system to process the impacted units. If any of the impacted units are customer devices, then the management system calculates the impact on the customer based on a Service Level Agreement.
Abstract:
In one embodiment, a method includes correlating, for each intermediate device associated with a Real-time Transport Protocol (RTP) application that connects endpoints through a plurality of intermediate devices across a network, one or more first RTP segments input into the intermediate device with one or more second RTP segments output from the intermediate device. The correlation results are then graphically displayed results of the correlating to obtain a full, end-to-end picture of RTP quality from a source endpoint to a destination endpoint of the RTP application. It is emphasized that this abstract is provided to comply with the rules requiring an abstract that will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure.
Abstract:
The present invention provides an automated mechanism for technicians located remotely from a network operations center to query a communications system for the status of communications paths. An automated capability is also provided for the remote management and testing of network components along a communications path in order to more efficiently diagnose network anomalies.
Abstract:
Systems and methods for determining related node failures in a multi-node system use log data obtained from the nodes. This log data is processed in various ways to indicate clusters of nodes that experience related failures.
Abstract:
Embodiments of an application programming interface (API) for a Storage Area Network (SAN) access layer. A SAN may include a SAN access layer as an interface between SAN components and client applications. A SAN access layer API may be provided which enables a client application to access SAN access layer functionality such as storage management and configuration services. Through the SAN access layer API, a client application may invoke some or all of the functionalities of the SAN access layer. The SAN access layer may provide SAN information gathered from the SAN to the client application through the SAN access layer API. Embodiments of the SAN access layer API may provide security and licensing restrictions to client applications. Embodiments of the SAN access layer API may encapsulate message conversion and network transport functions so that client application developers are not required to implement these functions.
Abstract:
A method and circuitry for implementing digital multi-channel demodulation circuits. More particularly, embodiments of the present invention provide a digital multi-channel demodulator circuit. The demodulator includes a frequency-block down-converter that receives a multi-channel analog RF signal and shifts the multi-channel analog RF signal to a lower frequency band. An ADC receives the multi-channel analog RF signal from the frequency-block down-converter and converts the multi-channel analog RF signal to a multi-channel digital RF signal. A digital channel demultiplexer receives the multi-channel digital RF signal from the ADC and demultiplexes the multi-channel digital RF signal into separate digital RF channels.