Bartoli Claudio, Bonanni Michele, Chiti Francesco, Pierucci Laura, Cidronali Alessandro, Collodi Giovanni, Maddio Stefano
Department of Information Engineering, University of Florence, 50139 Firenze, Italy.
Sensors (Basel). 2022 Jun 28;22(13):4882. doi: 10.3390/s22134882.
The foundation of an energy sustainable Web of Industrial Things (WoIT) is facing several open issues due to the constraints imposed by the involved devices, the technological heterogeneity and the complex interactions and, hence, communications patterns. Towards this goal, in this paper, a general framework inspired by the Publish-Subscribe principle have been proposed, in order to jointly optimize the service requirements and the network availability. In particular, in this paper we focus on a holistic design with the objective to manage power budget distribution, in order to support applications that extend the basic publish-and-subscribe scheme.The involved WoIT nodes functionalities, interfaces and hardware architectures have been designed, with a special focus on control protocols. The introduced integrated solution has been validated in scenarios minimising and possibly balancing the power consumption. The achieved results show an average improvement of 45% for the communications performance with the wireless power management.
由于相关设备的限制、技术异构性以及复杂的交互作用和通信模式,能源可持续工业物联网(WoIT)的基础面临着几个未解决的问题。为了实现这一目标,本文提出了一个受发布-订阅原则启发的通用框架,以联合优化服务需求和网络可用性。特别是,本文着重于整体设计,目标是管理功率预算分配,以支持扩展基本发布-订阅方案的应用。已经设计了相关的WoIT节点功能、接口和硬件架构,特别关注控制协议。所引入的集成解决方案已在功耗最小化且可能平衡的场景中得到验证。所取得的结果表明,采用无线电源管理后,通信性能平均提高了45%。