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Titus Cieslewski

13 accepted papers

2022

Continuous-Time Vs. Discrete-Time Vision-Based SLAM: A Comparative Study

RA-L 2022

Robotic practitioners generally approach the vision-based SLAM problem through discrete-time formulations. This has the advantage of a consolidated theory and very good understanding of success and failure cases. However, discrete-time SLAM needs tailored algorithms and simplifying assumptions when

Cited by 61SourcecodeScholar
2020

AlphaPilot: Autonomous Drone Racing

RSS 2020poster

This paper presents a novel system for autonomous, vision-based drone racing combining learned data abstraction, nonlinear filtering, and time-optimal trajectory planning. The system has successfully been deployed at the first autonomous drone racing world championship: the 2019 AlphaPilot Challeng…

2019

Are We Ready for Autonomous Drone Racing? The UZH-FPV Drone Racing Dataset

ICRA 2019poster

Despite impressive results in visual-inertial state estimation in recent years, high speed trajectories with six degree of freedom motion remain challenging for existing estimation algorithms. Aggressive trajectories feature large accelerations and rapid rotational motions, and when they pass close…

Cited by 269SourceScholar
2017

Dynamic collaboration without communication: Vision-based cable-suspended load transport with two quadrotors

ICRA 2017poster

Transport of objects is a major application in robotics nowadays. While ground robots can carry heavy payloads for long distances, they are limited in rugged terrains. Aerial robots can deliver objects in arbitrary terrains; however they tend to be limited in payload. It has been previously shown th…

Cited by 161SourceScholar
2017

Rapid exploration with multi-rotors: A frontier selection method for high speed flight

IROS 2017poster

Exploring and mapping previously unknown environments while avoiding collisions with obstacles is a fundamental task for autonomous robots. In scenarios where this needs to be done rapidly, multi-rotors are a good choice for the task, as they can cover ground at potentially very high velocities. Fly…

Cited by 269SourceScholar
2016

Point cloud descriptors for place recognition using sparse visual information

ICRA 2016

Place recognition is a core component in simultaneous localization and mapping (SLAM), limiting positional drift over space and time to unlock precise robot navigation. Determining which previously visited places belong together continues to be a highly active area of research as robotic application

Cited by 50SourceScholar
2016

Robustness to connectivity loss for collaborative mapping

IROS 2016poster

Having a team of robots to perform a task such as mapping is faster and more reliable than doing the same with a single robot, which can be crucial in scenarios such as search and rescue. We are developing a fully distributed framework for collaborative mapping with large robot swarms that is robust…

Cited by 5SourceScholar
2016

Structure-based vision-laser matching

IROS 2016poster

Persistent merging of maps created by different sensor modalities is an insufficiently addressed problem. Current approaches either rely on appearance-based features which may suffer from lighting and viewpoint changes or require pre-registration between all sensor modalities used. This work present…

Cited by 67SourceScholar
2015

Map API - scalable decentralized map building for robots

ICRA 2015poster

Large scale, long-term, distributed mapping is a core challenge to modern field robotics. Using the sensory output of multiple robots and fusing it in an efficient way enables the creation of globally accurate and consistent metric maps. To combine data from multiple agents into a global map, most e…

Cited by 55SourceScholar
2015

The gist of maps - summarizing experience for lifelong localization

ICRA 2015poster

Robust, scalable place recognition is a core competency for many robotic applications. However, when revisiting places over and over, many state-of-the-art approaches exhibit reduced performance in terms of computation and memory complexity and in terms of accuracy. For successful deployment of robo…

Cited by 101SourceScholar