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脑机接口时代,我们还能做什么?——脑科学驱动下的神经外科蜕变与新生
Novel Materials Chemistry for Energy and Environmental Applications
清华大学材料科学与工程研究院《材料科学论坛》:超快激光诱导玻璃微纳结构—现象、机...
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报告题目:
The Power of Tabulation Hashing
 报告人:
Mikkel Thorup
哥本哈根大学
报告时间:
2011-12-15 14:00
报告地点:
FIT 1-222
主办单位:
交叉信息研究院
  简介:

Short Bio:

Mikkel Thorup has a D.Phil. from Oxford University from 1993. From 1993 to 1998 he was at the University of Copenhagen. Since then he has been at AT&T Labs-Research. He is a Fellow of the ACM and of AT&T, Member of the Royal Danish Academy of Sciences and Letters, and co-winner of the 2011 MAA Robbins Award. His main work is in algorithms and data structures and he is the editor of this area for the Journal of the ACM. One of his best-known results is a linear-time algorithm for the single-source shortest paths problem in undirected graphs. Mikkel prefers to seek his mathematical inspiration in nature, combining the quest with his hobbies of bird watching and mushroom picking.

Abstract:
Randomized algorithms are often enjoyed for their simplicity, but the hash functions used to yield the desired theoretical guarantees are often neither simple nor practical. Here we show that the simplest possible tabulation hashing provides unexpectedly strong guarantees. The scheme itself dates back to Carter and Wegman (STOC'77). Keys are viewed as consisting of c characters. We initialize c tables T1,…,Tc mapping characters to random hash codes. A key x=(x1,…,xc) is hashed to T1[x1]⊕⋯⊕Tc[xc], where ⊕ denotes xor. While this scheme is not even 4-independent, we show that it provides many of the guarantees that are normally obtained via higher independence, e.g., Chernoff-type concentration, min-wise hashing for estimating set intersection, and cuckoo hashing. We shall also discuss a twist to simple tabulation that leads to extremely robust performance for linear probing with small buffers.

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