网络中的分布式函数计算:联合延迟-能量视角

N. Karamchandani, M. Franceschetti
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引用次数: 1

摘要

本文考虑以下网络计算问题:将n个节点放置在√nx√n网格上,每个节点与自身距离为r(n)的其他节点相连,并给定一个任意输入位。节点之间相互通信,以便最终指定的汇聚节点可以计算输入位的目标函数f。重点讨论了两种不同通信模型下的恒等函数和对称函数类的计算。我们首先考虑一个无噪声模型,其中链路是独立的和无噪声的,适合于有线网络的建模。接下来,我们研究了一个噪声广播模型,其中当一个节点传输一个比特时,它的每个邻居都会接收到该比特的噪声副本。这是一个简单的无线通信模型,最初由El Gamal(1987)提出。我们采用协议模型处理干扰,允许不共享邻居的节点同时传输。对于每个连接半径r(n),我们给出了计算f所需的最小传输数和最小时隙数的下界。然后我们描述了可以将这些下界匹配到常数因子的有效协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed function computation in networks: A joint delay-energy perspective
This paper considers the following network computation problem: n nodes are placed on a √n×√n grid, each node is connected to every other node within distance r(n) from itself, and is given an arbitrary input bit. Nodes communicate with each other so that finally a designated sink node can compute a target function f of the input bits. We focus on computing the identity function and the class of symmetric functions under two different communication models. We first consider a noiseless model where links are independent and noise-free, suitable for modeling wired networks. Next, we study a noisy broadcast model in which when a node transmits a bit, each of its neighbors receives a noisy copy of the bit. This is a simple model for wireless communications, originally proposed by El Gamal (1987). We use the protocol model for interference and nodes which do not share neighbors are allowed to transmit simultaneously. For every connection radius r(n), we present lower bounds on the minimum number of transmissions and the minimum number of time slots required to compute f. We then describe efficient protocols which can match both these lower bounds up to a constant factor.
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