Department of Automation and Systems, Federal University of Santa Catarina, Florianópolis 88040-900, Brazil.
INEGI, Faculty of Engineering, University of Porto, Porto 4200-465, Portugal.
Sensors (Basel). 2018 Sep 28;18(10):3263. doi: 10.3390/s18103263.
Wireless Sensor Networks (WSN) are enabler technologies for the implementation of the Internet of Things (IoT) concept. WSNs provide an adequate infrastructure for the last-link communication with smart objects. Nevertheless, the wireless communication medium being inherently unreliable, there is the need to increase its communication reliability. Techniques based on the use of cooperative communication concepts are one of the ways to achieve this target. Within cooperative communication techniques, nodes selected as relays transmit not only their own data, but also cooperate by retransmitting data from other nodes. A fundamental step to improve the communication reliability of WSNs is related to the use of efficient relay selection techniques. This paper proposes a relay selection technique based on multiple criteria to select the smallest number of relay nodes and, at the same time, to ensure an adequate operation of the network. Additionally, two relay updating schemes are also investigated, defining periodic and adaptive updating policies. The simulation results show that both proposed schemes, named Periodic Relay Selection and Adaptive Relay Selection, significantly improve the communication reliability of the network, when compared to other state-of-the-art relay selection schemes.
无线传感器网络(WSN)是物联网(IoT)概念实现的使能技术。WSN 为与智能对象的最后链路通信提供了适当的基础设施。然而,由于无线通信媒介本质上不可靠,因此需要提高其通信可靠性。基于使用协作通信概念的技术是实现这一目标的方法之一。在协作通信技术中,被选为中继的节点不仅传输自己的数据,而且通过重传来自其他节点的数据进行协作。提高 WSN 通信可靠性的一个基本步骤涉及使用有效的中继选择技术。本文提出了一种基于多准则的中继选择技术,以选择最少数量的中继节点,同时确保网络的正常运行。此外,还研究了两种中继更新方案,定义了定期和自适应更新策略。仿真结果表明,与其他最先进的中继选择方案相比,这两种名为周期性中继选择和自适应中继选择的方案都显著提高了网络的通信可靠性。