Matroid Secretary Problems

Moshe Babaioff, Nicole Immorlica, D. Kempe, Robert D. Kleinberg
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引用次数: 30

Abstract

We define a generalization of the classical secretary problem called the matroid secretary problem. In this problem, the elements of a matroid are presented to an online algorithm in uniformly random order. When an element arrives, the algorithm observes its value and must make an irrevocable decision whether or not to accept it. The accepted elements must form an independent set, and the objective is to maximize the combined value of these elements. We present an O(log k)-competitive algorithm for general matroids (where k is the rank of the matroid), and constant-competitive algorithms for several special cases including graphic matroids, truncated partition matroids, and bounded degree transversal matroids. We leave as an open question the existence of constant-competitive algorithms for general matroids. Our results have applications in welfare-maximizing online mechanism design for domains in which the sets of simultaneously satisfiable agents form a matroid.
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矩阵秘书问题
我们定义了经典秘书问题的一个推广,称为矩阵秘书问题。在这个问题中,矩阵的元素以一致的随机顺序呈现给在线算法。当一个元素到达时,算法观察它的值,并且必须做出是否接受它的不可撤销的决定。被接受的元素必须形成一个独立的集合,目标是最大化这些元素的组合值。我们提出了一般拟阵的O(log k)竞争算法(其中k为拟阵的秩),以及几种特殊情况的常竞争算法,包括图形拟阵、截断分割拟阵和有界度横切拟阵。对于一般拟阵是否存在常竞争算法,我们留下一个悬而未决的问题。我们的研究结果可以应用于同时可满足的智能体集合形成一个矩阵的领域的福利最大化在线机制设计。
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