Federal University of Minas Gerais, Av. Antonio Carlos 6627, Belo Horizonte, Brazil.
Sensors (Basel). 2013 Feb 4;13(2):1942-64. doi: 10.3390/s130201942.
The Internet of Things (IoT) is attracting considerable attention from the universities, industries, citizens and governments for applications, such as healthcare, environmental monitoring and smart buildings. IoT enables network connectivity between smart devices at all times, everywhere, and about everything. In this context, Wireless Sensor Networks (WSNs) play an important role in increasing the ubiquity of networks with smart devices that are low-cost and easy to deploy. However, sensor nodes are restricted in terms of energy, processing and memory. Additionally, low-power radios are very sensitive to noise, interference and multipath distortions. In this context, this article proposes a routing protocol based on Routing by Energy and Link quality (REL) for IoT applications. To increase reliability and energy-efficiency, REL selects routes on the basis of a proposed end-to-end link quality estimator mechanism, residual energy and hop count. Furthermore, REL proposes an event-driven mechanism to provide load balancing and avoid the premature energy depletion of nodes/networks. Performance evaluations were carried out using simulation and testbed experiments to show the impact and benefits of REL in small and large-scale networks. The results show that REL increases the network lifetime and services availability, as well as the quality of service of IoT applications. It also provides an even distribution of scarce network resources and reduces the packet loss rate, compared with the performance of well-known protocols.
物联网(IoT)在医疗保健、环境监测和智能建筑等应用中引起了大学、工业界、公民和政府的极大关注。物联网使智能设备在任何时间、任何地点、任何事物之间都能实现网络连接。在这种情况下,无线传感器网络(WSN)在增加具有低成本和易于部署的智能设备的网络普及方面发挥着重要作用。然而,传感器节点在能量、处理能力和内存方面受到限制。此外,低功率无线电对噪声、干扰和多径失真非常敏感。在这种情况下,本文提出了一种基于能量和链路质量的路由协议(REL),用于物联网应用。为了提高可靠性和能效,REL 根据端到端链路质量估计机制、剩余能量和跳数选择路由。此外,REL 提出了一种事件驱动机制,以提供负载均衡并避免节点/网络过早耗尽能量。通过仿真和测试床实验进行了性能评估,以展示 REL 在小范围和大范围网络中的影响和优势。结果表明,与知名协议相比,REL 提高了网络寿命和服务可用性,以及物联网应用的服务质量。它还提供了稀缺网络资源的均匀分配,并降低了分组丢失率。