A Minimum Energy Filter for Distributed Multirobot Localisation

05/15/2020
by   Jack Henderson, et al.
0

We present a new approach to the cooperative localisation problem by applying the theory of minimum energy filtering. We consider the problem of estimating the pose of a group of mobile robots in an environment where robots can perceive fixed landmarks and neighbouring robots as well as share information with others over a communication channel. Whereas the vast majority of the existing literature applies some variant of a Kalman Filter, we derive a set of filter equations for the global state estimate based on the principle of minimum energy filtering. We show how the filter equations can be decoupled and the calculations distributed among the robots in the network without requiring a central processing node. Finally, we provide a demonstration of the filter's performance in simulation.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
02/19/2021

Neural Kalman Filtering

The Kalman filter is a fundamental filtering algorithm that fuses noisy ...
research
09/07/2018

Maximum Correntropy Derivative-Free Robust Kalman Filter and Smoother

We consider the problem of robust estimation involving filtering and smo...
research
04/19/2023

Hidden AR Process and Adaptive Kalman Filter

The model of partially observed linear system depending on some unknown ...
research
09/03/2021

Optimizing the Energy Efficiency of Unreliable Memories for Quantized Kalman Filtering

This paper presents a quantized Kalman filter implemented using unreliab...
research
11/19/2018

Decentralized Cooperative Multi-Robot Localization with EKF

Multi-robot localization has been a critical problem for robots performi...
research
11/10/2021

Improving the Chamberlin Digital State Variable Filter

The state variable filter configuration is a classic analogue design whi...
research
08/21/2020

Line-Circle-Square (LCS): A Multilayered Geometric Filter for Edge-Based Detection

This paper presents a state-of-the-art filter that reduces the complexit...

Please sign up or login with your details

Forgot password? Click here to reset