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Distributed Connectivity Restoration for Mobile Sensor Systems With Limited Information

机译:信息受限的移动传感器系统的分布式连接恢复

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The use of mobility factor in wireless distributed sensing, mobile sensor systems (MSS), vital in many practical application scenarios can offer distinct advantages over their fixed counterparts. The topological connectivity of the sensor nodes is built upon dynamic ad hoc networks comes with limited information, which requires special care and measures. Any loss of this information especially for those working in extreme environments becomes critical as any failures in one or more sensors could escalate the loss of connectivity leading to possible breakdowns. In order to address this problem, we propose a hybrid connectivity restoration framework (HERO) that makes use of a structured partitioning at topological level and restores the network connectivity upon a functional motion controller. HERO, designed so that while maintaining the trace of connected components, it also: 1) reduces the overall movement distances when restoring the connectivity; 2) eliminates the chance of intersensor collisions; and 3) ensures restorability of the MSS upon the limited available information. The correctness and efficiency of HERO are validated via extensive simulation studies and comparisons. Furthermore, to evaluate HERO in practical working environment, we have conducted several experiments using our small-scale prototype MSS testbed.
机译:在许多实际应用场景中至关重要的无线分布式感测,移动传感器系统(MSS)中使用移动性因子可以提供优于固定解决方案的优势。传感器节点的拓扑连接性建立在动态自组织网络上,并带有有限的信息,这需要特殊的注意和措施。此信息的任何丢失(尤其是对于那些在极端环境中工作的信息)都变得至关重要,因为一个或多个传感器的任何故障都可能加剧连接性丢失,从而可能导致故障。为了解决此问题,我们提出了一种混合连接恢复框架(HERO),该框架在拓扑级别使用结构化分区并在功能运动控制器上恢复网络连接。 HERO的设计使其在保持连接组件的痕迹的同时,还可以:1)在恢复连接性时减少总体移动距离; 2)消除了传感器之间碰撞的机会;和3)根据有限的可用信息确保MSS的可恢复性。 HERO的正确性和效率通过广泛的仿真研究和比较得到了验证。此外,为了评估实际工作环境中的HERO,我们使用小型原型MSS测试平台进行了几次实验。

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