Grupo de Arquitectura y Concurrencia (GAC), Instituto Universitario de Ciencias y Tecnologías, Cibernéticas (IUCTC), Universidad de Las Palmas de Gran Canaria (ULPGC), 35017 Las Palmas de Gran Canaria, Spain.
Departamento de Ingeniería Telemática (DIT), Universidad de Las Palmas de Gran Canaria (ULPGC), 35017 Las Palmas de Gran Canaria, Spain.
Sensors (Basel). 2019 Dec 19;20(1):30. doi: 10.3390/s20010030.
Wireless sensor networks proliferate more and more in all social scopes and sectors. Such networks are implemented in smart homes, smart cities, security systems, medical resources, agriculture, automotive industry, etc. Communication devices and sensors of such networks are powered with batteries: the enlarging of battery life is a hot research topic. We focus on wireless sensor networks based on ZigBee technology. While sleep standard operation mode is defined for end devices, it is not the case for the rest of devices (routers and Coordinator), which usually always remain in active mode. We designed a formal optimization model for maximizing the enlarging of the battery life of routers and Coordinator, allowing us to delimit practical successful conditions. It was successfully tested with a standard ZigBee datasheet comprising technical data for sensors, routers, and coordinators. It was tested in a practical wireless sensor network assembly with XBee S2C devices. We derived, from the previous model, a novel but simple protocol of communication among routers and coordinators. It was tested in different use cases. We showed that when end devices generate traffic at regular intervals, the enlarging of the battery life of routers and Coordinator was possible only under certain use cases.
无线传感器网络在各个社会领域和行业中越来越普及。这些网络应用于智能家居、智能城市、安全系统、医疗资源、农业、汽车工业等领域。这些网络中的通信设备和传感器都由电池供电:延长电池寿命是一个热门的研究课题。我们专注于基于 ZigBee 技术的无线传感器网络。虽然为终端设备定义了睡眠标准操作模式,但路由器和协调器等其他设备并非如此,它们通常始终处于活动模式。我们设计了一个正式的优化模型,用于最大限度地延长路由器和协调器的电池寿命,从而能够确定实际的成功条件。该模型在包含传感器、路由器和协调器技术数据的标准 ZigBee 数据表中得到了成功测试。我们还在带有 XBee S2C 设备的实际无线传感器网络组件中进行了测试。我们从之前的模型中推导出了一种新的但简单的路由器和协调器之间的通信协议。我们在不同的用例中进行了测试。我们表明,当终端设备以固定间隔生成流量时,只有在某些用例下才有可能延长路由器和协调器的电池寿命。