Shijin Rajakrishnan

dblp:176/5610 · DBLP profile ↗
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5ranked-venue papers
0as first author
2since 2021 · last 2022
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Theory of computation · 2 · 1 since 2021Systems, architecture and hardware · 1 · 1 since 2021Computer networks · 1Applied, interdisciplinary, general and emerging computing · 1
YearPublicationVenuePosition
2022 From Switch Scheduling to Datacenter Scheduling: Matching-Coordinated Greed is Good
abstract
Packet scheduling over a switch (interconnect) fabric is a wellstudied problem in distributed computing, with known near-optimal distributed bipartite matching based protocols.
Rachit Agarwal 0001, Shijin Rajakrishnan, David B. Shmoys
PODC2
2021 Approximability of open k-monopoly problems
Sounaka Mishra, B. Arjuna Krishna, Shijin Rajakrishnan
Theory Comput. Syst.3
2018 Sincronia: near-optimal network design for coflows
abstract
We present Sincronia, a near-optimal network design for coflows that can be implemented on top on any transport layer (for flows) that supports priority scheduling. Sincronia achieves this using a key technical result --- we show that given a "right" ordering of coflows, any per-flow rate allocation mechanism achieves average coflow completion time within 4X of the optimal as long as (co)flows are prioritized with respect to the ordering.
Saksham Agarwal, Shijin Rajakrishnan, Akshay Narayan 0001, Rachit Agarwal 0001, David B. Shmoys, Amin Vahdat
SIGCOMM2
2017 On approximability of optimization problems related to Red/Blue-split graphs
Sounaka Mishra, Shijin Rajakrishnan, Saket Saurabh 0001
Theor. Comput. Sci.2
2016 Lower bounds and optimal protocols for three-party secure computation
abstract
The problem of three-party secure computation, where a function of private data of two parties is to be computed by a third party without revealing information beyond respective inputs or outputs is considered. New and better lower bounds on the amount of communication required between the parties to guarantee zero probability of error in the computation and achieve information-theoretic security are derived. Protocols are presented and proved to be optimal in some cases by showing that they achieve the improved lower bounds.
Sundara Rajan S, Shijin Rajakrishnan, Andrew Thangaraj, Vinod M. Prabhakaran
ISIT2