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Fast Feedback Control over Multi-hop Wireless Networks with Mode Changes and Stability Guarantees (1909.10873v1)

Published 19 Sep 2019 in eess.SY, cs.MA, and cs.SY

Abstract: Closing feedback loops fast and over long distances is key to emerging cyber-physical applications; for example, robot motion control and swarm coordination require update intervals of tens of milliseconds. Low-power wireless communication technology is preferred for its low cost, small form factor, and flexibility, especially if the devices support multi-hop communication. Thus far, however, feedback control over multi-hop low-power wireless networks has only been demonstrated for update intervals on the order of seconds. To fill this gap, this paper presents a wireless embedded system that supports dynamic mode changes and 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 in the presence of mode changes. Using experiments on a cyber-physical testbed with 20 wireless devices and multiple cart-pole systems, we are the first to demonstrate and evaluate feedback control and coordination with mode changes over multi-hop networks for update intervals of 20 to 50 milliseconds.

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Authors (6)
  1. Dominik Baumann (32 papers)
  2. Fabian Mager (7 papers)
  3. Romain Jacob (8 papers)
  4. Lothar Thiele (30 papers)
  5. Marco Zimmerling (12 papers)
  6. Sebastian Trimpe (111 papers)
Citations (16)

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