Efficient Approximation Algorithm for Data Retrieval with Conflicts in Wireless Networks

Ping He, Hong Shen, Hui Tian
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引用次数: 5

Abstract

Given a set of data items broadcasting at multiple parallel channels, where each channel has the same broadcast pattern over a time period, and a set of client's requested data items, the data retrieval problem requires to find a sequence of channel access to retrieve the requested data items among the channels such that the total access latency is minimized, where both channel access (to retrieve a data item) and channel switch are assumed to take a single time slot. As an important problem of information retrieval in wireless networks, this problem arises in many applications such as e-commerce and ubiquitous data sharing, and is known two conflicts: requested data items are broadcast at same time slots or adjacent time slots in different channels. Although existing studies focus on this problem with one conflict, there is little work on this problem with two conflicts. So this paper proposes efficient algorithms from two views: single antenna and multiple antennae. Our algorithm adopts a novel approach that wireless data broadcast system is converted to DAG, and applies set cover to solve this problem. Through Experiments, this result presents currently the most efficient algorithm for this problem with two conflicts.
无线网络中存在冲突的数据检索的高效逼近算法
给定在多个并行通道上广播的一组数据项,其中每个通道在一段时间内具有相同的广播模式,以及一组客户端请求的数据项,数据检索问题需要找到一个通道访问序列,以便在通道中检索请求的数据项,从而使总访问延迟最小化,其中通道访问(检索数据项)和通道切换都假定占用单个时隙。该问题是无线网络信息检索中的一个重要问题,在电子商务和无处不在的数据共享等许多应用中都会出现,主要存在两种冲突:请求的数据项是在同一时隙广播还是在不同信道的相邻时隙广播。虽然已有的研究主要集中在一种冲突下的问题上,但对两种冲突下的问题的研究却很少。为此,本文从单天线和多天线两个角度提出了有效的算法。我们的算法采用了一种新颖的方法,将无线数据广播系统转换为DAG,并采用集合覆盖来解决这一问题。通过实验,给出了目前最有效的两冲突问题求解算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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