Abhishek Sinha
Tata Institute of Fundamental Research, Indian Institute of Technology Madras, Qualcomm
About
Abhishek Sinha is currently a faculty member in the School of Technology and Computer Science at the Tata Institute of Fundamental Research, Mumbai, India. Prior to joining TIFR, he had been on the faculty of the Dept. of Electrical Engineering at the Indian Institute of Technology Madras. He received his Ph.D. from the Massachusetts Institute of Technology, where he was affiliated with the Laboratory for Information and Decision Systems. Thereafter, Abhishek worked as a senior engineer at Qualcomm Research, San Diego, in the 5G standardization group. He obtained his M.E. degree in Telecommunication Engg. from the Indian Institute of Science, Bangalore, and B.E. degree in Electronics and Telecommunication Engg. from Jadavpur University, Kolkata, India. He is a recipient of the INSA Medal for Young Scientists (2021), Best Paper Awards in INFOCOM 2018 and MobiHoc 2016, and Jagadis Bose National Science Talent Search (JBNSTS) scholarship, Kolkata, India. His areas of interest include theoretical machine learning, networks, and information theory.
Employment
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Tata Institute of Fundamental Research Reader2022 - Present
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Indian Institute of Technology Madras Assistant Professor2018 - 2022
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Qualcomm Senior Engineer2017 - 2018
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (13)
- Optimistic No-regret Algorithms for Discrete Caching Save
- Optimistic No-regret Algorithms for Discrete Caching Save
- Fast and Secure Routing Algorithms for Quantum Key Distribution Networks Save
- Optimistic No-regret Algorithms for Discrete Caching Save
- Optimizing Age-of-Information in Adversarial and Stochastic Environments Save
- Optimal Control of Distributed Computing Networks With Mixed-Cast Traffic Flows Save
- Throughput-Optimal Broadcast in Wireless Networks with Point-to-Multipoint Transmissions Save
- Scheduling Algorithms for Optimizing Age of Information in Wireless Networks With Throughput Constraints Save
- Throughput-Optimal Broadcast in Wireless Networks with Dynamic Topology Save
- Scheduling Policies for Minimizing Age of Information in Broadcast Wireless Networks Save