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Fundamental Lifetime Mechanisms in Routing Protocols for Wireless Sensor Networks: A Survey and Open Issues

机译:无线传感器网络路由协议中的基本生命周期机制:调查和未解决的问题

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Wireless sensor networks basically consist of low cost sensor nodes which collect data from environment and relay them to a sink, where they will be subsequently processed. Since wireless nodes are severely power-constrained, the major concern is how to conserve the nodes' energy so that network lifetime can be extended significantly. Employing one static sink can rapidly exhaust the energy of sink neighbors. Furthermore, using a non-optimal single path together with a maximum transmission power level may quickly deplete the energy of individual nodes on the route. This all results in unbalanced energy consumption through the sensor field, and hence a negative effect on the network lifetime. In this paper, we present a comprehensive taxonomy of the various mechanisms applied for increasing the network lifetime. These techniques, whether in the routing or cross-layer area, fall within the following types: multi-sink, mobile sink, multi-path, power control and bio-inspired algorithms, depending on the protocol operation. In this taxonomy, special attention has been devoted to the multi-sink, power control and bio-inspired algorithms, which have not yet received much consideration in the literature. Moreover, each class covers a variety of the state-of-the-art protocols, which should provide ideas for potential future works. Finally, we compare these mechanisms and discuss open research issues.
机译:无线传感器网络基本上由低成本的传感器节点组成,这些节点从环境中收集数据并将其中继到接收器,然后在接收器中进行处理。由于无线节点受到严格的功率限制,因此主要关注的问题是如何节省节点的能量,从而可以显着延长网络寿命。使用一个静态水槽可以迅速耗尽水槽邻居的能量。此外,将非最佳单路径与最大传输功率级别一起使用可能会迅速耗尽路径上各个节点的能量。所有这些都会导致整个传感器场的能量消耗不平衡,从而对网络寿命产生负面影响。在本文中,我们介绍了用于延长网络寿命的各种机制的综合分类法。这些技术,无论是在路由区域还是跨层区域,都属于以下几种类型:多接收器,移动接收器,多路径,电源控制和受生物启发的算法,具体取决于协议操作。在此分类法中,特别关注多接收器,功率控制和受生物启发的算法,这些在文献中尚未得到太多考虑。此外,每个课程都涵盖了各种最新协议,这些协议应该为未来的潜在工作提供思路。最后,我们比较这些机制并讨论开放研究问题。

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