Xie, SQ
41  Ergebnisse:
Personensuche X
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1

Bayesian-based Classification Confidence Estimation for Enh..:

Zhang, Y ; Xie, SQ ; Wang, H..
https://eprints.whiterose.ac.uk/199879/1/Bayesian_based_Classification_Confidence_Estimation.pdf.  , 2023
 
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2

Cross-Subject Transfer Learning for Boosting Recognition Pe..:

Zhang, Y ; Xie, SQ ; Shi, C..
https://eprints.whiterose.ac.uk/196816/1/Cross_Subject_Transfer_Learning_for_Boosting_Recognition_Performance_in_SSVEP_based_BCIs.pdf.  , 2023
 
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3

Stiffness evaluation of a novel ankle rehabilitation exoske..:

Wang, T ; Lin, YH ; Spyrakos-Papastavridis, E..
https://eprints.whiterose.ac.uk/192563/7/1-s2.0-S0094114X22003184-main.pdf.  , 2023
 
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4

Flexible strain sensing percolation networks towards compli..:

Liu, Z ; Li, Z ; Yi, Y...
https://eprints.whiterose.ac.uk/188130/1/Flexible%20sensor%20nano%20energy.pdf.  , 2022
 
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5

Computational Efficient Personalised EMG-Driven Musculoskel..:

Zhao, Y ; Zhang, J ; Li, Z...
https://eprints.whiterose.ac.uk/193399/6/Accepted%20manuscript%281%29.pdf.  , 2022
 
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6

Physics-informed Deep Learning for Musculoskeletal Modellin..:

Zhang, J ; Zhao, Y ; Shone, F...
https://eprints.whiterose.ac.uk/193863/18/Physics-informed_Deep_Learning_for_Musculoskeletal_Modelling_Predicting_Muscle_Forces_and_Joint_Kinematics_from_Surface_EMG.pdf.  , 2022
 
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7

Fractional robust finite time control of four-wheel-steerin..:

Jiang, L ; Wang, S ; Xie, Y...
https://eprints.whiterose.ac.uk/182100/3/Revised-Manuscript_MMT_20211027-unmarked.pdf.  , 2022
 
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8

Boosting Personalised Musculoskeletal Modelling with Physic..:

Zhang, J ; Zhao, Y ; Bao, T...
https://eprints.whiterose.ac.uk/193432/6/PINN_Transfer_Learning.pdf.  , 2022
 
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9

Automatic detection and classification of peri-prosthetic f..:

Alzaid, A ; Wignall, A ; Dogramadzi, S..
https://eprints.whiterose.ac.uk/183892/13/Alzaid2022_Article_AutomaticDetectionAndClassific.pdf.  , 2022
 
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10

Path Planning and Impedance Control of a Soft Modular Exosk..:

Liu, Q ; Liu, Y ; Li, Y...
https://eprints.whiterose.ac.uk/181086/6/Video_1_Path%20Planning%20and%20Impedance%20Control%20of%20a%20Soft%20Modular%20Exoskeleton%20for%20Coordinated%20Upper%20Limb%20Rehabilitation.MP4.  , 2021
 
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11

Design and control of soft rehabilitation robots actuated b..:

Liu, Q ; Zuo, J ; Zhu, C.
https://eprints.whiterose.ac.uk/165301/1/manuscript%20%20%5BFUTURE_5712%5D.pdf.  , 2020
 
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12

A robot-assisted bilateral upper limb training strategy wit..:

Miao, Q ; Zhang, M ; McDaid, A..
https://eprints.whiterose.ac.uk/156490/1/A%20robot-assisted%20bilateral%20upper%20limb%20training%20strategy%20with%20subject-.pdf.  , 2020
 
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13

Automated robot-assisted assessment for wrist active ranges..:

Zhang, M ; McDaid, A ; Zhang, S..
https://eprints.whiterose.ac.uk/150305/1/Manuscript-clean%20copy.pdf.  , 2019
 
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14

Interactive Compliance Control of a Wrist Rehabilitation De..:

Xu, D ; Zhang, M ; Xu, H...
https://eprints.whiterose.ac.uk/147485/3/6537848.pdf.  , 2019
 
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15

Adaptive Trajectory Tracking Control of a Parallel Ankle Re..:

Zhang, M ; Mcdaid, A ; Veale, AJ..
https://eprints.whiterose.ac.uk/149511/1/08746244.pdf.  , 2019
 
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