Transitioning to humanoids: opportunities and challenges

Abstract Robotic manipulation has traditionally relied on fixed-base robotic arms with parallel grippers and external sensors for structured and repetitive tasks, which could be mounted on mobile platforms. Recent advances in limb-based locomotion and dexterous end effectors are enabling a shift toward mobile humanoid platforms. This paper examines the opportunities and challenges of that transition based on the state-of-the art in 2026 on the use case of sorting mixed textiles from an unordered heap into designated bins. We compare a conventional workcell with fixed robotic arms equipped with parallel grippers, and external vision, against a humanoid robot equipped with three-finger hands and onboard RGB‑D sensing. We assess the differences in both use cases regarding deployment flexibility, workspace reachability, safety certification, reliability and in-hand manipulation. As a preliminary step, we define a perception–manipulation pipeline for deformable objects and identify key bottlenecks that currently limit performance: category classification, grasp stability on textiles and whole-body motion planning. We conclude with an outlook on the maturity of current humanoid systems and outline the technical and regulatory steps needed for their integration into textile sorting and related industrial domains.

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Publication Details

Journal
e+i Elektrotechnik und Informationstechnik
Published
2026-10-06
DOI
https://doi.org/10.1007/s00502-026-01460-3
Primary Topic
Robot Manipulation and Learning
Type
article
Field-Weighted Citation Impact
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article

Transitioning to humanoids: opportunities and challenges

Serkan Ergun, Hubert Zangl, Thomas Haspl, Tobias Mitterer et al.
e+i Elektrotechnik und Informationstechnik
Robot Manipulation and Learning
article

Transitioning to humanoids: opportunities and challenges

Serkan Ergun, Hubert Zangl, Thomas Haspl, Tobias Mitterer, Michael Rathmair, Christian Oswald, Narcis Dumea
article en

Abstract

Abstract Robotic manipulation has traditionally relied on fixed-base robotic arms with parallel grippers and external sensors for structured and repetitive tasks, which could be mounted on mobile platforms. Recent advances in limb-based locomotion and dexterous end effectors are enabling a shift toward mobile humanoid platforms. This paper examines the opportunities and challenges of that transition based on the state-of-the art in 2026 on the use case of sorting mixed textiles from an unordered heap into designated bins. We compare a conventional workcell with fixed robotic arms equipped with parallel grippers, and external vision, against a humanoid robot equipped with three-finger hands and onboard RGB‑D sensing. We assess the differences in both use cases regarding deployment flexibility, workspace reachability, safety certification, reliability and in-hand manipulation. As a preliminary step, we define a perception–manipulation pipeline for deformable objects and identify key bottlenecks that currently limit performance: category classification, grasp stability on textiles and whole-body motion planning. We conclude with an outlook on the maturity of current humanoid systems and outline the technical and regulatory steps needed for their integration into textile sorting and related industrial domains.

e+i Elektrotechnik und Informationstechnik
Joanneum Research (AT), Klinikum Klagenfurt (AT), University of Klagenfurt (AT)
Openalex Percentile: Top 15%
Robot Manipulation and Learning
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Transitioning to humanoids: opportunities and challenges — Serkan Ergun, Hubert Zangl, et al. · e+i Elektrotechnik und Informationstechnik (2026) | TGRS Research Map | TGRS