Nikodem Maciej, Slabicki Mariusz, Bawiec Marek
Faculty of Electronics, Wrocław University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.
Institute of Theoretical and Applied Informatics, Polish Academy of Sciences, ul. Bałtycka 5, 44-100 Gliwice, Poland.
Sensors (Basel). 2020 Nov 8;20(21):6371. doi: 10.3390/s20216371.
The use of Bluetooth Low Energy (BLE) in the Internet-of-Things (IoT) applications has become widespread and popular. This has resulted in the increased number of deployed BLE devices. To ensure energy efficiency, applications use connectionless communication where nodes broadcast information using advertisement messages. As the BLE devices compete for access to spectrum, collisions are inevitable and methods that improve device coexistence are required. This paper proposes a connectionless communication scheme for BLE that improves communication efficiency in IoT applications where a large number of BLE nodes operate in the same area and communicate simultaneously to a central server. The proposed scheme is based on an active scanning mode and is compared with a typical application where passive scanning mode is used. The evaluation is based on numerical simulations and real-life evaluation of a network containing 150 devices. The presented scheme significantly reduces the number of messages transmitted by each node and decreases packet loss ratio. It also improves the energy efficiency and preserves the battery of BLE nodes as they transmit fewer radio messages and effectively spent less time actively communicating. The proposed connectionless BLE communication scheme can be applied to a large variety of IoT applications improving their performance and coexistence with other devices operating in the 2.4 GHz band. Additionally, the implementation complexity and costs of the proposed communication scheme are negligible.
低功耗蓝牙(BLE)在物联网(IoT)应用中的使用已变得广泛且流行。这导致已部署的BLE设备数量增加。为确保能源效率,应用程序采用无连接通信,即节点使用广告消息广播信息。由于BLE设备争夺频谱接入,冲突不可避免,因此需要提高设备共存性的方法。本文提出了一种用于BLE的无连接通信方案,该方案可提高物联网应用中的通信效率,在这些应用中,大量BLE节点在同一区域运行并同时与中央服务器通信。所提出的方案基于主动扫描模式,并与使用被动扫描模式的典型应用进行了比较。评估基于对包含150个设备的网络进行的数值模拟和实际评估。所提出的方案显著减少了每个节点传输的消息数量,并降低了丢包率。它还提高了能源效率,并保护了BLE节点的电池,因为它们传输的无线电消息更少,有效地减少了主动通信的时间。所提出的无连接BLE通信方案可应用于各种物联网应用,提高其性能以及与在2.4 GHz频段运行的其他设备的共存性。此外,所提出的通信方案的实现复杂度和成本可忽略不计。