Zeng Yali, Xu Li, Chen Zhide
Fujian Provincial Key Laboratory of Network Security and Cryptology, School of Mathematics and Computer Science, Fujian Normal University, Fuzhou 350007, China.
Sensors (Basel). 2015 Dec 22;16(1):3. doi: 10.3390/s16010003.
As wireless sensor network (WSN) is often deployed in a hostile environment, nodes in the networks are prone to large-scale failures, resulting in the network not working normally. In this case, an effective restoration scheme is needed to restore the faulty network timely. Most of existing restoration schemes consider more about the number of deployed nodes or fault tolerance alone, but fail to take into account the fact that network coverage and topology quality are also important to a network. To address this issue, we present two algorithms named Full 2-Connectivity Restoration Algorithm (F2CRA) and Partial 3-Connectivity Restoration Algorithm (P3CRA), which restore a faulty WSN in different aspects. F2CRA constructs the fan-shaped topology structure to reduce the number of deployed nodes, while P3CRA constructs the dual-ring topology structure to improve the fault tolerance of the network. F2CRA is suitable when the restoration cost is given the priority, and P3CRA is suitable when the network quality is considered first. Compared with other algorithms, these two algorithms ensure that the network has stronger fault-tolerant function, larger coverage area and better balanced load after the restoration.
由于无线传感器网络(WSN)通常部署在恶劣环境中,网络中的节点容易出现大规模故障,导致网络无法正常工作。在这种情况下,需要一种有效的恢复方案来及时恢复故障网络。现有的大多数恢复方案更多地考虑单独部署节点的数量或容错能力,但没有考虑到网络覆盖范围和拓扑质量对网络也很重要这一事实。为了解决这个问题,我们提出了两种算法,即全2连通性恢复算法(F2CRA)和部分3连通性恢复算法(P3CRA),它们从不同方面恢复故障的WSN。F2CRA构建扇形拓扑结构以减少部署节点的数量,而P3CRA构建双环拓扑结构以提高网络的容错能力。当恢复成本优先时,F2CRA适用;当首先考虑网络质量时,P3CRA适用。与其他算法相比,这两种算法确保网络在恢复后具有更强的容错功能、更大的覆盖区域和更好的负载平衡。