Timely Distributed Computation with Stragglers

October 08, 2019 Β· Declared Dead Β· πŸ› IEEE Transactions on Communications

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Authors Baturalp Buyukates, Sennur Ulukus arXiv ID 1910.03564 Category cs.IT: Information Theory Cross-listed cs.NI, eess.SP Citations 56 Venue IEEE Transactions on Communications Last Checked 5 months ago
Abstract
We consider a status update system in which the update packets need to be processed to extract the embedded useful information. The source node sends the acquired information to a computation unit (CU) which consists of a master node and $n$ worker nodes. The master node distributes the received computation task to the worker nodes. Upon computation, the master node aggregates the results and sends them back to the source node to keep it \emph{updated}. We investigate the age performance of uncoded and coded (repetition coded, MDS coded, and multi-message MDS (MM-MDS) coded) schemes in the presence of stragglers under i.i.d.~exponential transmission delays and i.i.d~shifted exponential computation times. We show that asymptotically MM-MDS coded scheme outperforms the other schemes. Furthermore, we characterize the optimal codes such that the average age is minimized.
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