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Alexander W. Winkler

8 accepted papers

2018

Gait and Trajectory Optimization for Legged Systems Through Phase-Based End-Effector Parameterization

RA-L 2018

We present a single trajectory optimization formulation for legged locomotion that automatically determines the gait sequence, step timings, footholds, swing-leg motions, and six-dimensional body motion over nonflat terrain, without any additional modules. Our phase-based parameterization of feet mo

Cited by 470SourceScholar
2017

An efficient optimal planning and control framework for quadrupedal locomotion

ICRA 2017poster

In this paper, we present an efficient Dynamic Programing framework for optimal planning and control of legged robots. First we formulate this problem as an optimal control problem for switched systems. Then we propose a multi-level optimization approach to find the optimal switching times and the o…

Cited by 195SourceScholar
2017

Fast Trajectory Optimization for Legged Robots Using Vertex-Based ZMP Constraints

RA-L 2017

This letter combines the fast zero-moment-point approaches that work well in practice with the broader range of capabilities of a trajectory optimization formulation, by optimizing over body motion, footholds, and center of pressure simultaneously. We introduce a vertex-based representation of the s

Cited by 83SourceScholar
2017

Online walking motion and foothold optimization for quadruped locomotion

ICRA 2017poster

We present an algorithm that generates walking motions for quadruped robots without the use of an explicit footstep planner by simultaneously optimizing over both the Center of Mass (CoM) trajectory and the footholds. Feasibility is achieved by imposing stability constraints on the CoM related to th…

Cited by 66SourceScholar
2017

Trajectory Optimization Through Contacts and Automatic Gait Discovery for Quadrupeds

RA-L 2017

In this letter, we present a trajectory optimization framework for whole-body motion planning through contacts. We demonstrate how the proposed approach can be applied to automatically discover different gaits and dynamic motions on a quadruped robot. In contrast to most previous methods, we do not

Cited by 138SourceScholar
2016

Evaluating Direct Transcription and Nonlinear Optimization Methods for Robot Motion Planning

RA-L 2016

This letter studies existing direct transcription methods for trajectory optimization applied to robot motion planning. There are diverse alternatives for the implementation of direct transcription. In this study, we analyze the effects of such alternatives when solving a robotics problem. Different

Cited by 78SourceScholar
2015

Planning and execution of dynamic whole-body locomotion for a hydraulic quadruped on challenging terrain

ICRA 2015poster

We present a framework for dynamic quadrupedal locomotion over challenging terrain, where the choice of appropriate footholds is crucial for the success of the behaviour. We build a model of the environment on-line and on-board using an efficient occupancy grid representation. We use Any-time-Repair…

Cited by 166SourceScholar