activity
20172022
most citedFast, Autonomous Flight in GPS-Denied and Cluttered Environments

202 citations · 243 across the 7 of their papers we have counts for

collaborators
Showing cs.ROShow all

9 papers · 1 filter

cs.RO2021

Belief Space Planning for Mobile Robots with Range Sensors using iLQG

Ke Sun, Vijay Kumar

In this work, we use iterative Linear Quadratic Gaussian (iLQG) to plan motions for a mobile robot with range sensors in belief space. We address two limitations that prevent appli…

cs.RO202020 cited

Stochastic Motion Planning under Partial Observability for Mobile Robots with Continuous Range Measurements

Ke Sun, Brent Schlotfeldt, George Pappas +1

In this paper, we address the problem of stochastic motion planning under partial observability, more specifically, how to navigate a mobile robot equipped with continuous range se…

cs.RO20201 cited

Feedback Enhanced Motion Planning for Autonomous Vehicles

Ke Sun, Brent Schlotfeldt, Stephen Chaves +3

In this work, we address the motion planning problem for autonomous vehicles through a new lattice planning approach, called Feedback Enhanced Lattice Planner (FELP). Existing latt…

cs.RO2018

Stochastic 2-D Motion Planning with a POMDP Framework

Ke Sun, Vijay Kumar

Motion planning is challenging when it comes to the case of imperfect state information. Decision should be made based on belief state which evolves according to the noise from the…

cs.RO2018

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

Morgan Quigley, Kartik Mohta, Shreyas S. Shivakumar +8

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 sys…

cs.RO2018

Experiments in Fast, Autonomous, GPS-Denied Quadrotor Flight

Kartik Mohta, Ke Sun, Sikang Liu +6

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…