Home /Research /Adaptive particle filter for localization problem in service robotics
OTHER

Adaptive particle filter for localization problem in service robotics

Alexander Heilig, Ilshat Mamaev, Björn Hein, Dmitrii Malov

Year
2018
Citations
10
Access
Open access

Abstract

In this paper we present a statistical approach to the likelihood computation and adaptive resampling algorithm for particle filters using low cost ultrasonic sensors in the context of service robotics. This increases the efficiency of the particle filter in the Monte Carlo Localization problem by means of preventing sample impoverishment and ensuring it converges towards the most likely particle and simultaneously keeping less likely ones by systematic resampling. Proposed algorithms were developed in the ROS framework, simulation was done in Gazebo environment. Experiments using a differential drive mobile platform with 4 ultrasonic sensors in the office environment show that our approach provides strong improvement over particle filters with fixed sample sizes.

Keywords

ResamplingParticle filterRoboticsContext (archaeology)Monte Carlo methodComputer scienceComputationSample (material)Artificial intelligenceFilter (signal processing)

Related papers

Browse all OTHER papers