Abstract:
In communication using TCP, since the transmission bandwidth is significantly influenced by RTT and discard rate, there was a problem that only the transmission bandwidth significantly lower than the contracted bandwidth could be obtained under the environment such as WAN causing large RTT, large hop number and many discarded segments. There is provided an apparatus connected to a receiving side terminal having a means for feeding back to notify all discarded segments to an apparatus connected to a transmitting side terminal; a means for retransmitting the discarded segments fed back to be notified to the apparatus connected to the transmitting side terminal; and a means for controlling transmission bandwidth, based on retransmission bandwidth and discard bandwidth by the apparatus connected to the transmitting side terminal.
Abstract:
Policy-based, on-demand provisioning of optical transport bandwidth is disclosed. In one of many possible embodiments, a system is provided for policy-based, on-demand provisioning of optical transport bandwidth. The system includes a layer-specific operation support subsystem (OSS) configured to manage network elements that form a sub-network over an optical transport network. The optical transport network provides bandwidth-on-demand provisioning capabilities. The layer-specific OSS includes one or more predefined bandwidth provisioning policies. The layer-specific OSS is configured to selectively request on-demand provisioning of bandwidth on the sub-network based on the predefined bandwidth provisioning policies.
Abstract:
A system comprises a subscriber station and a network, the network comprising an access service network and connectivity service network. In an improved communication method an access service network a quality of service profile for a subscriber is received by an anchor gateway of the subscriber. On the basis of the quality of service profile, a first set of transmission control parameters for the subscriber is determined. The anchor gateway applies the first set of transmission control parameters to user data packets addressed to the subscriber.
Abstract:
The disclosed embodiments include a method, apparatus, and computer program product for managing test traffic over a network. For example, one disclosed embodiment includes a system that includes at least one processor and at least one memory coupled to the at least one processor. In one embodiment, the at least one processor is configured to execute instructions stored in the at least one memory to perform operations comprising receiving a request to perform a throughput test from one or more testing clients; determining a state of the network utilizing indicators received from a plurality of portions of the network; authorizing the throughput test in response to the state of the network being acceptable for performing the throughput test; and pausing the throughput test in response to a change in the state of the network indicative of a network state that is unacceptable for performing the throughput test.
Abstract:
A home wireless router establishes a Wireless Local Area Network (WLAN) that supports wireless communications within a WLAN service area. The home wireless router establishes broadband communications via a broadband connection with a VoIP service accumulator. The home wireless router services a plurality of wireless terminals within the WLAN service area, including at least one Voice over Internet Protocol (VoIP) wireless terminal. The home wireless router determines that a VoIP wireless terminal desires VoIP call servicing determines a WLAN encryption scheme supported by the VoIP wireless terminal, sets up, and services the VoIP call via the WLAN and the broadband connection. Servicing includes terminating the WLAN encryption scheme supported by the VoIP wireless terminal to protect the VoIP call as it is wirelessly serviced by the WLAN and terminating a broadband encryption scheme supported by the broadband connection to protect the VoIP call as it is serviced by the broadband connection.
Abstract:
A method of initiating a communication session includes transmitting, using a call signaling protocol, a call invitation from a first node over a network for receipt by a second node. The call invitation comprises a list of one or more codecs available to the first node for use when transmitting data over a network. The call invitation additionally comprises a traffic specification associated with each of the one or more codecs. The traffic specification associated with each of the one or mode codecs comprises a plurality of bandwidth attributes that describe the flow of data when transmitting data using each of the one or more codecs.
Abstract:
Described herein is a method of controlling call admission for packet switched networks, each network including at least two local area networks (50, 60) and a connecting network (70). The method comprises determining success rates of previous calls from a first local area network to a second local area network and deciding to drop the call attempt based on the success rates of previous calls. In one embodiment, the current packet loss rate for calls from the first local area network to the second local area network is also determined, and the decision to drop the call attempt is based on that current packet loss rate. Additionally, the decision to drop the call attempt may be based on both the current packet loss rate and the success rates of previous calls. It is also possible to transmit a burst of trial data from a first node in the first local area network through the connecting network to a second node in the second local area network, have the burst of trial data received at the second node reflected back to the first node, and to compare the reflected burst of trial data to the transmitted burst of trial data to determine whether transmission of a continuous stream of data can be initiated from the first node in the first local area network to the second node in the second local area network once the reflected burst of trial data has been received at the first node through the connecting network.
Abstract:
In one embodiment, a node of a computer network receives a request to establish a traffic engineering (TE) label switched path (LSP). The node accesses a pre-defined range of preemption-priority values that may be used with the requested TE-LSP. The node determines a preemption-priority value at which adequate network resources to accommodate the requested TE-LSP would be available that is as low as possible within the pre-defined range of preemption-priority values. The node signals the requested TE-LSP with the determined preemption-priority value. The node receives notifications from one or more other nodes within the computer network indicating information about other TE-LSPs that would be preempted if the requested TE-LSP were established at the determined preemption-priority value. In response to the information regarding other TE-LSPs that would be preempted, the node determines whether to proceed with establishment of the requested TE-LSP at the determined preemption-priority value.
Abstract:
A system and method supporting access to multimedia information based upon user-defined quality of service criteria is disclosed. A broadband access gateway may coordinate network behavior during the transition of an access device among communication pathways having different available capacities. Adjustments in bit rates and levels of compression may be made based upon the user-defined quality of service criteria. The user may be notified when network conditions disallow support for the desired quality of service, and may choose to override selected criteria. The user-defined quality of service criteria may be stored within the gateway and associated with a user, or may be located in the access device and accessible to the gateway.
Abstract:
Methods and apparatus for managing a media session on a network device, and for selecting and applying policies to the media session. The network device may initially evaluate a general set of media session policies. A subset of the policies may be identified by selecting only those policies whose rules are currently satisfied, or whose rules are not presently satisfied but which may be satisfied when a fast-changing characteristic of the media session changes. Policies whose rules are not initially satisfied due to a slow-changing characteristic are not likely to be satisfied within the life of the media session, and can be excluded from the subset of policies. Thereafter, only the subset of selected policies need be re-evaluated during the media session.