Observability-Aware Control for Quadrotor Formation Flight with Range-only Measurement

Fuente: arXiv
Enregistré dans:
Détails bibliographiques
Auteurs principaux: Go, H S Helson, Chong, Ching Lok, Qian, Longhao, Liu, Hugh H. -T.
Format: Preprint
Publié: 2024
Sujets:
Accès en ligne:
Tags: Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
_version_ 1866917251720937472
author Go, H S Helson
Chong, Ching Lok
Qian, Longhao
Liu, Hugh H. -T.
author_facet Go, H S Helson
Chong, Ching Lok
Qian, Longhao
Liu, Hugh H. -T.
contents Cooperative Localization is a promising approach to achieving safe quadrotor formation flight through precise positioning via low-cost inter-drone sensors. This paper develops an observability-aware control principle tailored to quadrotor formation flight with range-only inter-drone measurements. The control principle is based on a novel approximation of the local observability Gramian (LOG), which we name the Short-Term Local Observability Gramian (STLOG). The validity of STLOG is established by proving its link to directional estimation precision in nonlinear systems. We propose the Observability Predictive Controller (OPC), a receding-horizon controller that generates optimal inputs to enhance information gain in weakly observable state directions by maximizing the minimum eigenvalue of the STLOG. This reduces the risk of estimator divergence due to the unbounded growth of uncertainty in weakly observed state components. Monte Carlo simulations and flight experiments are conducted with quadrotors in a GNSS-denied ferrying mission, showing that the OPC improves positioning confidence and estimator robustness.
format Preprint
id arxiv_https___arxiv_org_abs_2411_03747
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Observability-Aware Control for Quadrotor Formation Flight with Range-only Measurement
Go, H S Helson
Chong, Ching Lok
Qian, Longhao
Liu, Hugh H. -T.
Robotics
Cooperative Localization is a promising approach to achieving safe quadrotor formation flight through precise positioning via low-cost inter-drone sensors. This paper develops an observability-aware control principle tailored to quadrotor formation flight with range-only inter-drone measurements. The control principle is based on a novel approximation of the local observability Gramian (LOG), which we name the Short-Term Local Observability Gramian (STLOG). The validity of STLOG is established by proving its link to directional estimation precision in nonlinear systems. We propose the Observability Predictive Controller (OPC), a receding-horizon controller that generates optimal inputs to enhance information gain in weakly observable state directions by maximizing the minimum eigenvalue of the STLOG. This reduces the risk of estimator divergence due to the unbounded growth of uncertainty in weakly observed state components. Monte Carlo simulations and flight experiments are conducted with quadrotors in a GNSS-denied ferrying mission, showing that the OPC improves positioning confidence and estimator robustness.
title Observability-Aware Control for Quadrotor Formation Flight with Range-only Measurement
topic Robotics
url https://arxiv.org/abs/2411.03747