Ghoreyshi Seyed Mohammad, Shahrabi Alireza, Boutaleb Tuleen
School of Engineering and Built Environment, Glasgow Caledonian University, Lanarkshire, Glasgow G4 0BA, UK.
Sensors (Basel). 2016 Feb 26;16(3):297. doi: 10.3390/s16030297.
Increasing attention has recently been devoted to underwater sensor networks (UWSNs) because of their capabilities in the ocean monitoring and resource discovery. UWSNs are faced with different challenges, the most notable of which is perhaps how to efficiently deliver packets taking into account all of the constraints of the available acoustic communication channel. The opportunistic routing provides a reliable solution with the aid of intermediate nodes' collaboration to relay a packet toward the destination. In this paper, we propose a new routing protocol, called opportunistic void avoidance routing (OVAR), to address the void problem and also the energy-reliability trade-off in the forwarding set selection. OVAR takes advantage of distributed beaconing, constructs the adjacency graph at each hop and selects a forwarding set that holds the best trade-off between reliability and energy efficiency. The unique features of OVAR in selecting the candidate nodes in the vicinity of each other leads to the resolution of the hidden node problem. OVAR is also able to select the forwarding set in any direction from the sender, which increases its flexibility to bypass any kind of void area with the minimum deviation from the optimal path. The results of our extensive simulation study show that OVAR outperforms other protocols in terms of the packet delivery ratio, energy consumption, end-to-end delay, hop count and traversed distance.
由于水下传感器网络(UWSNs)在海洋监测和资源发现方面的能力,近来其受到了越来越多的关注。UWSNs面临着不同的挑战,其中最显著的或许是如何在考虑可用声学通信信道所有约束的情况下高效地传递数据包。机会路由借助中间节点的协作提供了一种可靠的解决方案,将数据包中继到目的地。在本文中,我们提出了一种新的路由协议,称为机会空穴避免路由(OVAR),以解决空穴问题以及转发集选择中的能量 - 可靠性权衡问题。OVAR利用分布式信标,在每一跳构建邻接图,并选择在可靠性和能量效率之间保持最佳权衡的转发集。OVAR在选择彼此附近的候选节点时的独特特性导致了隐藏节点问题的解决。OVAR还能够从发送方沿任何方向选择转发集,这增加了其绕过任何类型空穴区域的灵活性,且与最优路径的偏差最小。我们广泛的仿真研究结果表明,在数据包交付率、能量消耗、端到端延迟、跳数和遍历距离方面,OVAR优于其他协议。