Published January 2, 2018 | Version Submitted
Discussion Paper Open

Input to State Stability of Bipedal Walking Robots: Application to DURUS

Abstract

Bipedal robots are a prime example of systems which exhibit highly nonlinear dynamics, underactuation, and undergo complex dissipative impacts. This paper discusses methods used to overcome a wide variety of uncertainties, with the end result being stable bipedal walking. The principal contribution of this paper is to establish sufficiency conditions for yielding input to state stable (ISS) hybrid periodic orbits, i.e., stable walking gaits under model-based and phase-based uncertainties. In particular, it will be shown formally that exponential input to state stabilization (e-ISS) of the continuous dynamics, and hybrid invariance conditions are enough to realize stable walking in the 23-DOF bipedal robot DURUS. This main result will be supported through successful and sustained walking of the bipedal robot DURUS in a laboratory environment.

Additional Information

This work is supported by the National Science Foundation through grants NRI-1526519

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Submitted - 1801.00618.pdf

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Additional details

Identifiers

Eprint ID
92570
Resolver ID
CaltechAUTHORS:20190201-135554491

Related works

Funding

NSF
IIS-1526519

Dates

Created
2019-02-01
Created from EPrint's datestamp field
Updated
2023-06-02
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