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Makale detayı · 2020 · conference-paper

A Variable-Fractional Order Admittance Controller for pHRI

OpenAlex Üst %10
Yıl2020
Atıf22OpenAlex
Yüzdelik%97,4
FWCI6,031,00 = dünya ortalaması

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Özet

OpenAlex İngilizce

In today's automation driven manufacturing environments, emerging technologies like cobots (collaborative robots) and augmented reality interfaces can help integrating humans into the production workflow to benefit from their adaptability and cognitive skills. In such settings, humans are expected to work with robots side by side and physically interact with them. However, the trade-off between stability and transparency is a core challenge in the presence of physical human robot interaction (pHRI). While stability is of utmost importance for safety, transparency is required for fully exploiting the precision and ability of robots in handling labor intensive tasks. In this work, we propose a new variable admittance controller based on fractional order control to handle this trade-off more effectively. We compared the performance of fractional order variable admittance controller with a classical admittance controller with fixed parameters as a baseline and an integer order variable admittance controller during a realistic drilling task. Our comparisons indicate that the proposed controller led to a more transparent interaction compared to the other controllers without sacrificing the stability. We also demonstrate a use case for an augmented reality (AR) headset which can augment human sensory capabilities for reaching a certain drilling depth otherwise not possible without changing the role of the robot as the decision maker.

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Atıflar

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22atıfOpenAlex · cited_by_count (önbellek / veritabanı)

Yerel katalogda bu makaleye atıf yapan 11 yayın (OpenAlex referans eşleşmesi; tam dünya listesi değildir).

  1. 2021 Adaptive Human Force Scaling via Admittance Control for Physical Human-Robot InteractionAtıf 54 · OpenAlex
  2. 2022 An adaptive admittance controller for collaborative drilling with a robot based on subtask classification via deep learningAtıf 25 · OpenAlex
  3. 2022 An adaptive admittance controller for collaborative drilling with a robot based on subtask classification via deep learningAtıf 25 · OpenAlex
  4. 2020 Detecting Human Motion Intention during pHRI Using Artificial Neural Networks Trained by EMG SignalsAtıf 21 · OpenAlex
  5. 2022 Robot-Assisted Drilling on Curved Surfaces with Haptic Guidance under Adaptive Admittance ControlAtıf 18 · OpenAlex
  6. 2025 A Machine Learning Approach to Resolving Conflicts in Physical Human-Robot InteractionAtıf 6 · OpenAlex
  7. 2025 A Machine Learning Approach to Resolving Conflicts in Physical Human–Robot InteractionAtıf 5 · OpenAlex
  8. 2024 Learning-based Adaptive Admittance Controller for Efficient and Safe pHRI in Contact-rich Manufacturing TasksAtıf 4 · OpenAlex
  9. 2024 Robotic Learning of Haptic Skills from Expert Demonstration for Contact-Rich Manufacturing TasksAtıf 2 · OpenAlex
  10. 2025 A Hybrid Control Scheme for Backdriving a Surgical Robot About a Pivot PointAtıf 0 · OpenAlex

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