传感器网络基站移动问题的理论研究

Yi Shi, Yiwei Thomas Hou
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引用次数: 187

摘要

利用移动基站延长传感器网络寿命的好处已得到充分认识。然而,由于问题的复杂性(时变网络拓扑和流量路由),理论上的性能限制和可证明的最优算法仍然难以开发。本文通过提供关于移动基站最优运动的理论结果来填补这一重要空白。我们的主要成果取决于将联合基站移动和流量路由问题从时间域转换到空间域。基于这种转换,我们首先证明,如果基站只允许出现在一组预定义的点上,那么我们可以找到基站在这些点上的最佳时间跨度,从而最大化整个网络的生存时间。基于这一发现,我们表明,当基站的位置不受约束(即可以移动到二维平面上的任何一点)时,我们可以为联合移动基站的位置和流量路由问题开发一种近似算法,使网络寿命保证至少为最大网络寿命的(1-epsiv),其中epsiv可以根据所需的精度任意小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical Results on Base Station Movement Problem for Sensor Network
The benefits of using mobile base station to prolong sensor network lifetime have been well recognized. However, due to the complexity of the problem (time-dependent network topology and traffic routing), theoretical performance limit and provably optimal algorithms remain difficult to develop. This paper fills this important gap by contributing theoretical results regarding the optimal movement of a mobile base station. Our main result hinges upon a novel transformation of the joint base station movement and flow routing problem from time domain to space domain. Based on this transformation, we first show that if the base station is allowed to be present only on a set of pre-defined points, then we can find the optimal time span for the base station on each of these points so that the overall network lifetime is maximized. Based on this finding, we show that when the location of the base station is un-constrained (i.e., can move to any point in the two-dimensional plane), we can develop an approximation algorithm for the joint mobile base station location and flow routing problem such that the network lifetime is guaranteed to be at least (1-epsiv) of the maximum network lifetime, where epsiv can be made arbitrarily small depending on required precision.
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