Tags:6P, 6TiSCH, 6top, IEEE Std 802.15.4-2015, IIoT, Industrial IoT, Internet of Things, IoT, MSF and TSCH
Abstract:
IEEE Std 802.15.4-2015 Time Slotted Channel Hopping (TSCH) is the de facto Medium Access Control (MAC) mechanism for the industrial applications. It renders communications more resilient to interference by spreading them over time (time slotted) and frequency (channel hopping) domains. The 6TiSCH architecture bases itself on this new MAC layer to enable high reliability communication in Wireless Sensor Network (WSN). In particular, it manages the construction of a distributed communication schedule that continuously adapts to changes in the network. In this paper, we first provide a thorough description of the 6TiSCH architecture, the 6TiSCH Operation Sublayer (6top), and the Minimal Scheduling Function (MSF). We then study its behavior and reactivity from low to high traffic rates by employing the python-based 6TiSCH simulator. Our performance evaluation results demonstrate that the convergence pattern of MSF is at the origin of the majority of packet losses observed in the network. We also show that MSF is subject to over-provisioning of the network resources, especially in the case of varying traffic load.
Pushing 6TiSCH Minimal Scheduling Function (MSF) to the Limits