תקציר
We prove tight network topology dependent bounds on the round complexity of computing well studied k-party functions such as set disjointness and element distinctness. Unlike the usual case in the CONGEST model in distributed computing, we x the function and then vary the underlying network topology. This complements the recent such results on total communication that have received some attention. We also present some applications to distributed graph computation problems. Our main contribution is a proof technique that allows us to reduce the problem on a general graph topology to a relevant two-party communication complexity problem. However, unlike many previous works that also used the same high level strategy, we do not reason about a two- party communication problem that is induced by a cut in the graph. To stitch' back the various lower bounds from the two party communication problems, we use the notion of timed graph that has seen prior use in network coding. Our reductions use some tools from Steiner tree packing and multi-commodity ow problems that have a delay constraint.
שפה מקורית | אנגלית |
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כותר פרסום המארח | 28th Annual ACM-SIAM Symposium on Discrete Algorithms, SODA 2017 |
עורכים | Philip N. Klein |
מוציא לאור | Association for Computing Machinery |
עמודים | 2524-2539 |
מספר עמודים | 16 |
מסת"ב (אלקטרוני) | 9781611974782 |
מזהי עצם דיגיטלי (DOIs) | |
סטטוס פרסום | פורסם - 2017 |
פורסם באופן חיצוני | כן |
אירוע | 28th Annual ACM-SIAM Symposium on Discrete Algorithms, SODA 2017 - Barcelona, ספרד משך הזמן: 16 ינו׳ 2017 → 19 ינו׳ 2017 |
סדרות פרסומים
שם | Proceedings of the Annual ACM-SIAM Symposium on Discrete Algorithms |
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כרך | 0 |
כנס
כנס | 28th Annual ACM-SIAM Symposium on Discrete Algorithms, SODA 2017 |
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מדינה/אזור | ספרד |
עיר | Barcelona |
תקופה | 16/01/17 → 19/01/17 |
הערה ביבליוגרפית
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