2012 - Fellow of the American Association for the Advancement of Science (AAAS)
2006 - ACM Distinguished Member
Computer network, Distributed computing, Network topology, Wavelength-division multiplexing and Fault tolerance are his primary areas of study. The concepts of his Computer network study are interwoven with issues in Multiplexing and Traffic grooming. His studies in Distributed computing integrate themes in fields like Crosstalk, Brooks–Iyengar algorithm, Heuristic, All optical and Integer programming.
Arun K. Somani combines subjects such as Circuit switching, Ring network and Topology with his study of Network topology. His Wavelength-division multiplexing study incorporates themes from Node and Bandwidth. His Fault tolerance research integrates issues from Distributed algorithm, Backup, Real-time computing, Embedded system and Fault.
Arun K. Somani mainly focuses on Computer network, Distributed computing, Fault tolerance, Parallel computing and Wavelength-division multiplexing. His research brings together the fields of Traffic grooming and Computer network. His research in Distributed computing focuses on subjects like Scheduling, which are connected to Real-time computing.
His Fault tolerance research incorporates elements of Redundancy, Multiprocessing, Fault and Embedded system. Arun K. Somani interconnects Multiplexing and Provisioning in the investigation of issues within Wavelength-division multiplexing. His Network topology study which covers Circuit switching that intersects with Hypercube.
His main research concerns Computer network, Distributed computing, Artificial intelligence, Fault tolerance and Data mining. His study ties his expertise on Fault coverage together with the subject of Computer network. His Distributed computing research is multidisciplinary, relying on both Data access, Static routing, Multipath routing, Dynamic Source Routing and Queue.
The various areas that Arun K. Somani examines in his Artificial intelligence study include Global Positioning System and Computer vision. His Fault tolerance research includes themes of Redundancy, Vector processor and Computer engineering. His work investigates the relationship between Node and topics such as Floating point that intersect with problems in Parallel computing.
Arun K. Somani spends much of his time researching Distributed computing, Artificial intelligence, Computer network, Scheduling and Data collection. His Distributed computing study combines topics in areas such as Divide and conquer algorithms, Disaster recovery, Network topology, Static routing and Destination-Sequenced Distance Vector routing. His research integrates issues of Network planning and design, Topology, Bandwidth, Heuristic and Core network in his study of Network topology.
His work deals with themes such as Global Positioning System and Computer vision, which intersect with Artificial intelligence. Node, Policy-based routing, Hierarchical routing, Multipath routing and Link-state routing protocol are subfields of Computer network in which his conducts study. His biological study spans a wide range of topics, including Queue, Shared resource, Temporal isolation among virtual machines and Cloud computing.
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All-optical networks with sparse wavelength conversion
Suresh Subramaniam;Murat Azizoğlu;Arun K. Somani.
IEEE ACM Transactions on Networking (1996)
Distributed fault detection of wireless sensor networks
Jinran Chen;Shubha Kher;Arun Somani.
ad hoc networks (2006)
Dynamic wavelength routing using congestion and neighborhood information
Ling Li;Arun K. Somani.
IEEE ACM Transactions on Networking (1999)
Efficient algorithms for routing dependable connections in WDM optical networks
G. Mohan;C. Siva Ram Murthy;Arun K. Somani.
IEEE ACM Transactions on Networking (2001)
On optimal converter placement in wavelength-routed networks
Suresh Subramaniam;Murat Azizoğlu;Arun K. Somani.
IEEE ACM Transactions on Networking (1999)
A practical approach to operating survivable WDM networks
M. Sridharan;M.V. Salapaka;A.K. Somani.
IEEE Journal on Selected Areas in Communications (2002)
A generalized framework for analyzing time-space switched optical networks
R. Srinivasan;A.K. Somani.
IEEE Journal on Selected Areas in Communications (2002)
Computationally-efficient phased-mission reliability analysis for systems with variable configurations
A.K. Somani;J.A. Ritcey;S.H.L. Au.
IEEE Transactions on Reliability (1992)
Understanding Fault Tolerance And Reliability
A.K. Somani;N.H. Vaidya.
IEEE Computer (1997)
Area efficient architectures for information integrity in cache memories
Seongwoo Kim;Arun K. Somani.
international symposium on computer architecture (1999)
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