File:Electric routing and concurrent flow cutting.pdf

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by Jonathan Kelner & Petar Maymounkov (Author of the original Kademilia paper)

September 15, 2009

Abstract: We investigate an oblivious routing scheme, amenable to distributed computation and resilient to graph changes, based on electrical flow. Our main technical contribution is a new rounding method which we use to obtain a bound on the 1 → 1 operator norm of the inverse graph Laplacian. We show how this norm reflects both latency and congestion of electric routing.

Source: http://arxiv.org/abs/0909.2859 See also: http://pdos.csail.mit.edu/~petar/5ttt.org/

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current08:06, 24 June 2011 (246 KB)Nad (talk | contribs)by Jonathan Kelner & Petar Maymounkov (Author of the original Kademilia paper) September 15, 2009 '''Abstract:''' We investigate an oblivious routing scheme, amenable to distributed computation and resilient to graph changes, based on electrical flow. O
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