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粗糙集理论中的离散化问题 被引量:104
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作者 侯利娟 王国胤 +1 位作者 聂能 吴渝 《计算机科学》 CSCD 北大核心 2000年第12期89-94,共6页
一引言数据分析及数据挖掘,是一个重要的正在迅速发展的研究课题。波兰科学家Z.Pawlak于1982年提出的粗糙集(Rough Set)理论正是解决这一问题的新理论,它可用于处理决策信息表中的不确定知识,并用规则的形式表达,是一种有效的知识获取... 一引言数据分析及数据挖掘,是一个重要的正在迅速发展的研究课题。波兰科学家Z.Pawlak于1982年提出的粗糙集(Rough Set)理论正是解决这一问题的新理论,它可用于处理决策信息表中的不确定知识,并用规则的形式表达,是一种有效的知识获取工具。在Roughset中,数据约简是非常重要的,包括属性约简和值约简。运用粗糙集理论处理决策表时。 展开更多
关键词 粗糙集理论 离散化问题 知识获取
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A discrete multi-swarm optimizer for radio frequency identification network scheduling 被引量:1
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作者 陈瀚宁 朱云龙 《Journal of Central South University》 SCIE EI CAS 2014年第1期199-212,共14页
Due to the effectiveness, simple deployment and low cost, radio frequency identification (RFID) systems are used in a variety of applications to uniquely identify physical objects. The operation of RFID systems ofte... Due to the effectiveness, simple deployment and low cost, radio frequency identification (RFID) systems are used in a variety of applications to uniquely identify physical objects. The operation of RFID systems often involves a situation in which multiple readers physically located near one another may interfere with one another's operation. Such reader collision must be minimized to avoid the faulty or miss reads. Specifically, scheduling the colliding RFID readers to reduce the total system transaction time or response time is the challenging problem for large-scale RFID network deployment. Therefore, the aim of this work is to use a successful multi-swarm cooperative optimizer called pseo to minimize both the reader-to-reader interference and total system transaction time in RFID reader networks. The main idea of pS20 is to extend the single population PSO to the interacting multi-swarm model by constructing hierarchical interaction topology and enhanced dynamical update equations. As the RFID network scheduling model formulated in this work is a discrete problem, a binary version of PS20 algorithm is proposed. With seven discrete benchmark functions, PS20 is proved to have significantly better performance than the original PSO and a binary genetic algorithm, pS20 is then used for solving the real-world RFID network scheduling problem. Numerical results for four test cases with different scales, ranging from 30 to 200 readers, demonstrate the performance of the proposed methodology. 展开更多
关键词 reader interference RFID network scheduling pS2O swarm intelligence discrete optimization
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