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A timed mobile agent planning approach for distributed information retrieval in dynamic network environments

机译:动态网络环境中用于分布式信息检索的定时移动代理计划方法

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摘要

The number of mobile agents and total execution time are two factors used to represent the system overhead that must be considered as part of mobile agent planning (MAP) for distributed information retrieval. In addition to these two factors, the time constraints at the nodes of an information repository must also be taken into account when attempting to improve the quality of information retrieval. In previous studies, MAP approaches could not consider dynamic network conditions, e.g., variable network bandwidth and disconnection, such as are found in peer-to-peer (P2P) computing. For better performance, mobile agents that are more sensitive to network conditions must be used. In this paper, we propose a new MAP approach that we have named Timed Mobile Agent Planning (Tmap). The proposed approach minimizes the number of mobile agents and total execution time while keeping the turnaround time to a minimum, even if some nodes have a time constraint. It also considers dynamic network conditions to reflect the dynamic network condition more accurately. Moreover, incorporate a security and fault-tolerance mechanism into the planning approach to better adapt it to real network environments. (C) 2006 Elsevier Inc. All rights reserved.
机译:移动代理程序的数量和总执行时间是用于表示系统开销的两个因素,必须将这些开销视为分布式信息检索的移动代理程序计划(MAP)的一部分。除了这两个因素,在尝试提高信息检索的质量时,还必须考虑到信息存储库节点上的时间限制。在先前的研究中,MAP方法无法考虑动态网络条件,例如,可变的网络带宽和断开连接,例如在对等(P2P)计算中发现的情况。为了获得更好的性能,必须使用对网络状况更敏感的移动代理。在本文中,我们提出了一种新的MAP方法,我们将其称为定时移动代理计划(Tmap)。所提出的方法将移动代理的数量和总执行时间减到最少,同时将周转时间保持为最小,即使某些节点有时间限制。它还考虑了动态网络条件,以更准确地反映动态网络条件。此外,将安全和容错机制纳入规划方法,以使其更好地适应实际的网络环境。 (C)2006 Elsevier Inc.保留所有权利。

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