English

Feedback Control Goes Wireless: Guaranteed Stability over Low-power Multi-hop Networks

Networking and Internet Architecture 2019-02-20 v4 Multiagent Systems Systems and Control

Abstract

Closing feedback loops fast and over long distances is key to emerging applications; for example, robot motion control and swarm coordination require update intervals of tens of milliseconds. Low-power wireless technology is preferred for its low cost, small form factor, and flexibility, especially if the devices support multi-hop communication. So far, however, feedback control over wireless multi-hop networks has only been shown for update intervals on the order of seconds. This paper presents a wireless embedded system that tames imperfections impairing control performance (e.g., jitter and message loss), and a control design that exploits the essential properties of this system to provably guarantee closed-loop stability for physical processes with linear time-invariant dynamics. Using experiments on a cyber-physical testbed with 20 wireless nodes and multiple cart-pole systems, we are the first to demonstrate and evaluate feedback control and coordination over wireless multi-hop networks for update intervals of 20 to 50 milliseconds.

Keywords

Cite

@article{arxiv.1804.08986,
  title  = {Feedback Control Goes Wireless: Guaranteed Stability over Low-power Multi-hop Networks},
  author = {Fabian Mager and Dominik Baumann and Romain Jacob and Lothar Thiele and Sebastian Trimpe and Marco Zimmerling},
  journal= {arXiv preprint arXiv:1804.08986},
  year   = {2019}
}

Comments

Accepted final version to appear in: 10th ACM/IEEE International Conference on Cyber-Physical Systems (with CPS-IoT Week 2019) (ICCPS '19), April 16--18, 2019, Montreal, QC, Canada

R2 v1 2026-06-23T01:33:54.549Z