Gordon Wilfong mostly deals with Computer network, Border Gateway Protocol, Routing, Path vector protocol and Distributed computing. Computer network is closely attributed to Fixed wireless in his research. Gordon Wilfong has researched Border Gateway Protocol in several fields, including Stability, Protocol and Route poisoning.
His study looks at the relationship between Routing and topics such as Distributed algorithm, which overlap with Local optimum, IP forwarding, Internetworking, Open Shortest Path First and Adaptive routing. The Path vector protocol study which covers Enhanced Interior Gateway Routing Protocol that intersects with Interior gateway protocol. His Autonomous system research incorporates elements of Convergence, Correctness, Path and Router.
His primary scientific interests are in Computer network, Routing, Graph, Combinatorics and Artificial intelligence. His Computer network study which covers Distributed computing that intersects with Path vector protocol and Network topology. Gordon Wilfong interconnects Path and Wavelength in the investigation of issues within Routing.
His studies deal with areas such as Discrete mathematics and Point as well as Combinatorics. His work carried out in the field of Artificial intelligence brings together such families of science as Computer vision and Pattern recognition. In Default-free zone, Gordon Wilfong works on issues like Enhanced Interior Gateway Routing Protocol, which are connected to Interior gateway protocol.
Network packet, Approximation algorithm, Path, Software-defined networking and Decomposition are his primary areas of study. His Network packet research is included under the broader classification of Computer network. His study in Computer network is interdisciplinary in nature, drawing from both Sequence, Real-time computing and Fast path.
He focuses mostly in the field of Approximation algorithm, narrowing it down to topics relating to Network topology and, in certain cases, Distance matrix, Topology and Control. His Software-defined networking study necessitates a more in-depth grasp of Distributed computing. His Mathematical optimization study integrates concerns from other disciplines, such as Routing and Header.
The scientist’s investigation covers issues in Distributed computing, Software-defined networking, Load balancing, Network packet and Path. Gordon Wilfong combines subjects such as Topology, Network topology, Logical topology and Representation with his study of Distributed computing. His work deals with themes such as Load management, Scalability and Partition, which intersect with Software-defined networking.
His Network packet study deals with the bigger picture of Computer network. His research is interdisciplinary, bridging the disciplines of Fast path and Computer network. His research integrates issues of Routing, Encoding, Mathematical optimization, Approximation algorithm and Header in his study of Path.
This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.
The stable paths problem and interdomain routing
Timothy G. Griffin;F. Bruce Shepherd;Gordon Wilfong.
IEEE ACM Transactions on Networking (2002)
An analysis of BGP convergence properties
Timothy G. Griffin;Gordon Wilfong.
acm special interest group on data communication (1999)
One-processor scheduling with symmetric earliness and tardiness penalties
Michael R. Garey;Robert E. Tarjan;Gordon T. Wilfong.
Mathematics of Operations Research (1988)
Autonomous robot vehicles
Ingemar J. Cox;Gordon T. Wilfong.
(1990)
On the correctness of IBGP configuration
Timothy G. Griffin;Gordon Wilfong.
acm special interest group on data communication (2002)
Motion planning in the presence of movable obstacles
Gordon T. Wilfong.
Annals of Mathematics and Artificial Intelligence (1991)
A safe path vector protocol
T.G. Griffin;G. Wilfong.
international conference on computer communications (2000)
Ring routing and wavelength translation
Gordon Wilfong;Peter Winkler.
symposium on discrete algorithms (1998)
Policy disputes in path-vector protocols
T.G. Griffin;F.B. Shepherd;G. Wilfong.
international conference on network protocols (1999)
Analysis of the MED oscillation problem in BGP
T.G. Griffin;G. Wilfong.
international conference on network protocols (2002)
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