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Sikang Liu

14 accepted papers

2025

Multimodal Integrated Prediction and Decision-making with Adaptive Interaction Modality Explorations

IROS 2025

Navigating dense and dynamic environments poses a significant challenge for autonomous driving systems, owing to the intricate nature of multimodal interaction, wherein the actions of various traffic participants and the autonomous vehicle are complex and implicitly coupled. In this paper, we propos

Cited by 7SourcecodeScholar
2024

SIMPL: A Simple and Efficient Multi-Agent Motion Prediction Baseline for Autonomous Driving

RA-L 2024

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Cited by 66SourcecodeScholar
2019

The Open Vision Computer: An Integrated Sensing and Compute System for Mobile Robots

ICRA 2019poster

In this paper we describe the Open Vision Computer (OVC) which was designed to support high speed, vision guided autonomous drone flight. In particular our aim was to develop a system that would be suitable for relatively small-scale flying platforms where size, weight, power consumption and computa…

Cited by 40SourceScholar
2018

Experiments in Fast, Autonomous, GPS-Denied Quadrotor Flight

ICRA 2018poster

High speed navigation through unknown environments is a challenging problem in robotics. It requires fast computation and tight integration of all the subsystems on the robot such that the latency in the perception-action loop is as small as possible. Aerial robots add a limitation of payload capaci…

Cited by 61SourceScholar
2018

Robust Stereo Visual Inertial Odometry for Fast Autonomous Flight

RA-L 2018

In recent years, vision-aided inertial odometry for state estimation has matured significantly. However, we still encounter challenges in terms of improving the computational efficiency and robustness of the underlying algorithms for applications in autonomous flight with microaerial vehicles, in wh

Cited by 502SourcecodeScholar
2018

Trajectory Optimization On Manifolds with Applications to SO(3) and R3XS2

RSS 2018poster

Manifolds are used in almost all robotics applications even if they are not explicitly modeled. We propose a differential geometric approach for optimizing trajectories on a Riemannian manifold with obstacles. The optimization problem depends on a metric and collision function specific to a manifol…

Cited by 35SourcePDFScholar
2017

Planning Dynamically Feasible Trajectories for Quadrotors Using Safe Flight Corridors in 3-D Complex Environments

RA-L 2017

There is extensive literature on using convex optimization to derive piece-wise polynomial trajectories for controlling differential flat systems with applications to three-dimensional flight for Micro Aerial Vehicles. In this work, we propose a method to formulate trajectory generation as a quadrat

Cited by 539SourceScholar
2017

Search-based motion planning for quadrotors using linear quadratic minimum time control

IROS 2017poster

In this work, we propose a search-based planning method to compute dynamically feasible trajectories for a quadrotor flying in an obstacle-cluttered environment. Our approach searches for smooth, minimum-time trajectories by exploring the map using a set of short-duration motion primitives. The prim…

Cited by 257SourcecodeScholar
2015

Information-Theoretic Planning with Trajectory Optimization for Dense 3D Mapping

RSS 2015poster

We propose an information-theoretic planning approach that enables mobile robots to autonomously construct dense 3D maps in a computationally efficient manner. Inspired by prior work, we accomplish this task by formulating an information-theoretic objective function based on Cauchy-Schwarz quadratic…

Cited by 232SourcePDFScholar
2015

Information-theoretic mapping using Cauchy-Schwarz Quadratic Mutual Information

ICRA 2015poster

We develop a computationally efficient control policy for active perception that incorporates explicit models of sensing and mobility to build 3D maps with ground and aerial robots. Like previous work, our policy maximizes an information-theoretic objective function between the discrete occupancy be…

Cited by 211SourceScholar