Bluetooth Low Energy (BLE) is an emerging wireless technology created for short-range control and monitoring applications that is becoming increasingly widespread among the Internet of Things (IoT) services because of its low-cost and low-energy consumption. In this paper, we propose a novel neighbor discovery scheme and failure recovery techniques for multi-path and single-path low-power and reliable BLE networks. By exploiting energy-efficient access control and fast and robust routing ideas with adaptive failure recovery, the proposed methods outperform the well-known flooding approach used by the BLE Mesh standard. We show varying improvements in packet latency and power consumption in event-driven simulations as network topology and traffic changes. The failure recovery approaches proposed are optimized and demonstrated during the simulations, showing the varying of the overall failure recovery latency and node power consumption in different use cases.
翻译:蓝牙低能是一种新兴的无线技术,为短程控制和监测应用创造了无线技术,由于成本低、能源消耗低,这种技术在物联网服务中日益普及。在本文中,我们提议为多路和单路低功率、可靠的低能网络提出新的邻居发现办法和故障回收技术。通过利用节能的入口控制以及快速和稳健的航道想法,恢复适应性失灵,拟议方法优于Bleb Mesh标准所使用的众所周知的洪水方法。我们显示,作为网络地形学和交通变化,在由事件驱动的模拟中,包装耐力和电耗量有不同改进。在模拟中,提出的故障回收办法得到优化,并在模拟中展示,显示不同使用情况下的总体故障恢复耐力和节能消耗情况各不相同。