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首页> 外文期刊>Journal of Parallel and Distributed Computing >Maximum lifetime data sensing and extraction in energy constrained networked sensor systems
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Maximum lifetime data sensing and extraction in energy constrained networked sensor systems

机译:能量受限的网络传感器系统中的最大寿命数据传感和提取

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摘要

We focus on data gathering problems in energy constrained networked sensor systems. The system operates in rounds where a subset of the sensors generate a certain number of data packets during each round. All the data packets need to be transferred to the base station. The goal is to maximize the system lifetime in terms of the number of rounds the system can operate. We show that the above problem reduces to a restricted flow problem with quota constraint, flow conservation requirement, and edge capacity constraint. We further develop a strongly polynomial time algorithm for this problem, which is guaranteed to find an optimal solution. We then study the performance of a distributed shortest path heuristic for the problem. This heuristic is based on self-stabilizing spanning tree construction and shortest path routing methods. In this heuristic, every node determines its sensing activities and data transfers based on locally available information. No global synchronization is needed. Although the heuristic cannot guarantee optimality, simulations show that the heuristic has good average case performance over randomly generated deployment of sensors. We also derive bounds for the worst case performance of the heuristic.
机译:我们专注于能量受限的网络传感器系统中的数据收集问题。该系统循环运行,其中传感器的子集在每个循环中生成一定数量的数据包。所有的数据包都需要传输到基站。目的是根据系统可以运行的回合数来最大化系统寿命。我们表明,以上问题简化为具有配额约束,流量守恒要求和边缘容量约束的受限流量问题。我们针对此问题进一步开发了一个强多项式时间算法,可以保证找到最佳解。然后,我们研究针对该问题的分布式最短路径启发式算法的性能。这种启发式方法基于自稳定的生成树构建和最短路径路由方法。通过这种启发式方法,每个节点都会根据本地可用信息确定其感应活动和数据传输。不需要全局同步。尽管启发式方法不能保证最优性,但仿真表明,与随机生成的传感器部署相比,启发式方法具有良好的平均案例性能。我们还得出启发式算法在最坏情况下的性能范围。

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