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Margarita Chli

46 accepted papers

2024

"Hyperion – A fast, versatile symbolic Gaussian Belief Propagation framework for Continuous-Time SLAM"

ECCV 2024poster

"CTSLAM has become a promising approach for fusing asynchronous and multi-modal sensor suites. Unlike discrete-time SLAM, which estimates poses discretely, CTSLAM uses continuous-time motion parametrizations, facilitating the integration of a variety of sensors such as rolling-shutter cameras, event…

2024

Aerial Image-based Inter-day Registration for Precision Agriculture

ICRA 2024poster

Satellite imagery has traditionally been used to collect crop statistics, but its low resolution and registration accuracy limit agricultural analytics to plant stand levels and large areas. Precision agriculture seeks analytic tools at near single plant level, and this work explores how to improve…

Cited by 4SourceScholar
2024

Real-Time Semantic Segmentation in Natural Environments with SAM-assisted Sim-to-Real Domain Transfer

IROS 2024poster

Semantic segmentation plays a pivotal role in many robotic applications requiring high-level scene understanding, such as smart farming, where the precise identification of trees or plants can aid navigation and crop monitoring tasks. While deep-learning-based semantic segmentation approaches have r…

Cited by 0SourcecodeScholar
2024

Temporal- and Viewpoint-Invariant Registration for Under-Canopy Footage using Deep-Learning-based Bird’s-Eye View Prediction

IROS 2024poster

Conducting visual assessments under the canopy using mobile robots is an emerging task in smart farming and forestry. However, it is challenging to register images across different data-collection days, especially across seasons, due to the self-occluding geometry and temporal dynamics in forests an…

Cited by 1SourcecodeScholar
2023

COVINS-G: A Generic Back-end for Collaborative Visual-Inertial SLAM

ICRA 2023poster

Collaborative SLAM is at the core of perception in multi-robot systems as it enables the co-localization of the team of robots in a common reference frame, which is of vital importance for any coordination amongst them. The paradigm of a centralized architecture is well established, with the robots…

Cited by 26SourcecodeScholar
2023

Cross-Agent Relocalization for Decentralized Collaborative SLAM

ICRA 2023poster

State-of-the-art decentralized collaborative Simultaneous Localization And Mapping (SLAM) systems crucially lack the ability to effectively use well-mapped areas generated by other agents in the team for relocalization. This often leads to map redundancy between agents, inefficient communication, an…

Cited by 6SourceScholar
2023

Decentralised Multi-Robot Exploration Using Monte Carlo Tree Search

IROS 2023poster

Autonomous robotic systems are useful in automating tasks such as inspection and surveying of unknown areas, where speed is often an important factor. In order to effectively reduce the time required to complete missions, an efficient exploration and coordination strategy is needed. In this spirit,…

Cited by 6SourceScholar
2023

Target-Aware Implicit Mapping for Agricultural Crop Inspection

ICRA 2023poster

Crop inspection is a critical part of modern agricultural practices that helps farmers assess the current status of a field and then make crop management decisions. Current crop inspection methods are labour-intensive tasks, which makes them rather slow and expensive to apply. In this paper, we expl…

Cited by 14SourceScholar
2022

Autonomous Emergency Landing for Multicopters using Deep Reinforcement Learning

IROS 2022

This work presents a pipeline for autonomous emergency landing for multicopters, such as rotary wing Unmanned Aerial Vehicles (UAVs), using deep Reinforcement Learning (RL). Mechanical malfunctions, strong winds, sudden battery life drops (e.g, due to cold weather), failure in localization or GPS ja

Cited by 19SourceScholar
2022

Sweep-Your-Map: Efficient Coverage Planning for Aerial Teams in Large-Scale Environments

RA-L 2022

The efficiency of path-planning in robot navigation is crucial in tasks such as search-and-rescue and disaster surveying, but this is emphasized even more when considering multi-rotor aerial robots due to the limited battery and flight time. In this spirit, this work proposes an efficient, hierarchi

Cited by 16SourceScholar
2022

T-PRM: Temporal Probabilistic Roadmap for Path Planning in Dynamic Environments

IROS 2022poster

Sampling-based motion planners are widely used in robotics due to their simplicity, flexibility and computational efficiency. However, in their most basic form, these algorithms operate under the assumption of static scenes and lack the ability to avoid collisions with dynamic (i.e. moving) obstacle…

Cited by 35SourceScholar
2022

Volumetric Instance-Level Semantic Mapping Via Multi-View 2D-to-3D Label Diffusion

RA-L 2022

Robots operating in real-world settings often need to plan interactions with surrounding scene elements and therefore, it is crucial for them to understand their workspace at the level of individual objects. In this spirit, this work presents a novel approach to progressively build instance-level, d

Cited by 22SourceScholar
2022

Voxfield: Non-Projective Signed Distance Fields for Online Planning and 3D Reconstruction

IROS 2022poster

Creating accurate maps of complex, unknown environments is of utmost importance for truly autonomous navigation robot. However, building these maps online is far from trivial, especially when dealing with large amounts of raw sensor readings on a computation and energy constrained mobile system, suc…

Cited by 42SourceScholar
2021

Diffuser: Multi-View 2D-to-3D Label Diffusion for Semantic Scene Segmentation

ICRA 2021poster

Semantic 3D scene understanding is a fundamental problem in computer vision and robotics. Despite recent advances in deep learning, its application to multi-domain 3D semantic segmentation typically suffers from the lack of extensive enough annotated 3D datasets. On the contrary, 2D neural networks…

Cited by 37SourceScholar
2021

Distributed Formation Estimation Via Pairwise Distance Measurements

RA-L 2021

Continuously and reliably estimating the relative configuration of robotic swarms in real-time constitutes a core functionality when pursuing the autonomy of such a swarm. Relying on external positioning systems, such as GPS or motion tracking systems, can provide the required information, but signi

Cited by 51SourceScholar
2021

Hough$2$Map - Iterative Event-Based Hough Transform for High-Speed Railway Mapping

RA-L 2021

To cope with the growing demand for transportation on the railway system, accurate, robust, and high-frequency positioning is required to enable a safe and efficient utilization of the existing railway infrastructure. As a basis for a localization system we propose a complete on-board mapping pipeli

Cited by 22SourcecodeScholar
2021

Informed Sampling Exploration Path Planner for 3D Reconstruction of Large Scenes

RA-L 2021

As vision-based navigation of small aircraft has been demonstrated to reach relative maturity, research into effective path-planning algorithms to complete the loop of autonomous navigation has been booming. Although the literature has seen some impressive works in this area, efficient path-planning

Cited by 43SourceScholar
2021

Semantic-aware Active Perception for UAVs using Deep Reinforcement Learning

IROS 2021poster

This work presents a semantic-aware path-planning pipeline for Unmanned Aerial Vehicles (UAVs) using deep reinforcement learning for vision-based navigation in challenging environments. Driven by the maturity of works in semantic segmentation, the proposed path-planning architecture uses reinforceme…

Cited by 32SourceScholar
2020

Aerial Single-View Depth Completion With Image-Guided Uncertainty Estimation

RA-L 2020

On the pursuit of autonomous flying robots, the scientific community has been developing onboard real-time algorithms for localisation, mapping and planning. Despite recent progress, the available solutions still lack accuracy and robustness in many aspects. While mapping for autonomous cars had a s

Cited by 60SourcecodeScholar
2020

Multi-robot Coordination with Agent-Server Architecture for Autonomous Navigation in Partially Unknown Environments

IROS 2020poster

In this work, we present a system architecture to enable autonomous navigation of multiple agents across user-selected global interest points in a partially unknown environment. The system is composed of a server and a team of agents, here small aircrafts. Leveraging this architecture, computation-a…

Cited by 19SourceScholar
2019

A Fully-Integrated Sensing and Control System for High-Accuracy Mobile Robotic Building Construction

IROS 2019poster

We present a fully-integrated sensing and control system which enables mobile manipulator robots to execute building tasks with millimeter-scale accuracy on building construction sites. The approach leverages multi-modal sensing capabilities for state estimation, tight integration with digital build…

Cited by 74SourceScholar
2018

Collaborative 6DoF Relative Pose Estimation for Two UAVs with Overlapping Fields of View

ICRA 2018poster

Driven by the promise of leveraging the benefits of collaborative robot operation, this paper presents an approach to estimate the relative transformation between two small Unmanned Aerial Vehicles (UAVs), each equipped with a single camera and an inertial sensor, comprising the first step of any me…

Cited by 20SourceScholar
2018

GOMSF: Graph-Optimization Based Multi-Sensor Fusion for robust UAV Pose estimation

ICRA 2018poster

Achieving accurate, high-rate pose estimates from proprioceptive and/or exteroceptive measurements is the first step in the development of navigation algorithms for agile mobile robots such as Unmanned Aerial Vehicles (UAVs). In this paper, we propose a decoupled Graph-Optimization based Multi-Senso…

Cited by 148SourceScholar
2018

Learning Context Flexible Attention Model for Long-Term Visual Place Recognition

RA-L 2018

Identifying regions of interest in an image has long been of great importance in a wide range of tasks, including place recognition. In this letter, we propose a novel attention mechanism with flexible context, which can be incorporated into existing feedforward network architecture to learn image r

Cited by 106SourceScholar
2018

Learning Deep Descriptors With Scale-Aware Triplet Networks

CVPR 2018poster

Research on learning suitable feature descriptors for Computer Vision has recently shifted to deep learning where the biggest challenge lies with the formulation of appropriate loss functions, especially since the descriptors to be learned are not known at training time. While approaches such as Sia…

Cited by 71SourcePDFScholar
2018

Viewpoint-Tolerant Place Recognition Combining 2D and 3D Information for UAV Navigation

ICRA 2018poster

The booming interest in Unmanned Aerial Vehicles (UAV s) is fed by their potentially great impact, however progress is hindered by their limited perception capabilities. While vision-based odometry was shown to run successfully onboard UAV s, loop-closure detection to correct for drift or to recover…

Cited by 54SourceScholar
2017

Autonomous navigation of hexapod robots with vision-based controller adaptation

ICRA 2017poster

This work introduces a novel hybrid control architecture for a hexapod platform (Weaver), making it capable of autonomously navigating in uneven terrain. The main contribution stems from the use of vision-based exteroceptive terrain perception to adapt the robot's locomotion parameters. Avoiding com…

Cited by 31SourceScholar
2017

Only look once, mining distinctive landmarks from ConvNet for visual place recognition

IROS 2017poster

Recently, image representations derived from Convolutional Neural Networks (CNNs) have been demonstrated to achieve impressive performance on a wide variety of tasks, including place recognition. In this paper, we take a step deeper into the internal structure of CNNs and propose novel CNN-based ima…

Cited by 179SourceScholar
2017

Robust visual-inertial localization with weak GPS priors for repetitive UAV flights

ICRA 2017poster

Agile robots, such as small Unmanned Aerial Vehicles (UAVs) can have a great impact on the automation of tasks, such as industrial inspection and maintenance or crop monitoring and fertilization in agriculture. Their deploy-ability, however, relies on the UAV's ability to self-localize with precisio…

Cited by 59SourceScholar
2017

Short-term UAV path-planning with monocular-inertial SLAM in the loop

ICRA 2017poster

Small Unmanned Aerial Vehicles (UAVs) are some of the most promising robotic platforms in a variety of applications due to their high mobility. Their restricted computational and payload capabilities, however, translate into significant challenges in automating their navigation. With Simultaneous Lo…

Cited by 33SourceScholar
2016

Real-time dense surface reconstruction for aerial manipulation

IROS 2016poster

With robotic systems reaching considerable maturity in basic self-localization and environment mapping, new research avenues open up pushing for interaction of a robot with its surroundings for added autonomy. However, the transition from traditionally sparse feature-based maps to dense and accurate…

Cited by 15SourceScholar