Alexander Shpiner
Publication record assembled from the DBLP archive of ranked conferences.
Papers indexed
11
Venues
8
Active years
2009–2018
Best venue rank
A*
Where they publish
Papers
11 indexed papers, newest first.
| Year | Venue | Title | Authors |
|---|---|---|---|
| 2018 | SIGCOMM | Revisiting network support for RDMA. | Radhika Mittal, Alexander Shpiner, Aurojit Panda, Eitan Zahavi, Arvind Krishnamurthy, Sylvia Ratnasamy, Scott Shenker |
| 2017 | HPCA | Dragonfly+: Low Cost Topology for Scaling Datacenters. | Alexander Shpiner, Zachy Haramaty, Saar Eliad, Vladimir Zdornov, Barak Gafni, Eitan Zahavi |
| 2017 | SIGCOMM | RoCE Rocks without PFC: Detailed Evaluation. | Alexander Shpiner, Eitan Zahavi, Omar Dahley, Aviv Barnea, Rotem Damsker, Gennady Yekelis, Michael Zus, Eitan Kuta, Dean Baram |
| 2016 | HOTI | Race Cars vs. Trailer Trucks: Switch Buffers Sizing vs. Latency Trade-Offs in Data Center Networks. | Alexander Shpiner, Eitan Zahavi |
| 2016 | HOTNETS | Unlocking Credit Loop Deadlocks. | Alexander Shpiner, Eitan Zahavi, Vladimir Zdornov, Tal Anker, Matty Kadosh |
| 2016 | SC | Scalable Hierarchical Aggregation Protocol (SHArP): A Hardware Architecture for Efficient Data Reduction. | Richard L. Graham, Devendar Bureddy, Pak Lui, Hal Rosenstock, Gilad Shainer, Gil Bloch, Dror Goldenberg, Mike Dubman, Sasha Kotchubievsky, Vladimir Koushnir, Lion Levi, Alex Margolin, Tamir Ronen, Alexander Shpiner, Oded Wertheim, Eitan Zahavi |
| 2014 | CNSM | SAL: Scaling data centers using Smart Address Learning. | Alexander Shpiner, Isaac Keslassy, Carmi Arad, Tal Mizrahi, Yoram Revah |
| 2014 | HOTI | The Buffer Size vs Link Bandwidth Tradeoff in Lossless Networks. | Alexander Shpiner, Eitan Zahavi, Ori Rottenstreich |
| 2014 | HPSR | Scaling multi-core network processors without the reordering bottleneck. | Alexander Shpiner, Isaac Keslassy, Rami Cohen |
| 2010 | IWQoS | A switch-based approach to throughput collapse and starvation in data centers. | Alexander Shpiner, Isaac Keslassy |
| 2009 | IWQoS | Modeling the interactions of congestion control and switch scheduling. | Alexander Shpiner, Isaac Keslassy |