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  4. Torque Measurement and Control for Electric-Assisted Bike Considering Different External Load Conditions
 
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Torque Measurement and Control for Electric-Assisted Bike Considering Different External Load Conditions

Journal
Sensors
Journal Volume
23
Journal Issue
10
Date Issued
2023-05-01
Author(s)
Ho, Ping Jui
Yi, Chen Pei
Lin, Yi Jen
Chung, Wei Der
Chou, Po Huan
SHIH-CHIN YANG  
DOI
10.3390/s23104657
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/632582
URL
https://api.elsevier.com/content/abstract/scopus_id/85160451499
Abstract
This paper proposes a novel torque measurement and control technique for cycling-assisted electric bikes (E-bikes) considering various external load conditions. For assisted E-bikes, the electromagnetic torque from the permanent magnet (PM) motor can be controlled to reduce the pedaling torque generated by the human rider. However, the overall cycling torque is affected by external loads, including the cyclist’s weight, wind resistance, rolling resistance, and the road slope. With knowledge of these external loads, the motor torque can be adaptively controlled for these riding conditions. In this paper, key E-bike riding parameters are analyzed to find a suitable assisted motor torque. Four different motor torque control methods are proposed to improve the E-bike’s dynamic response with minimal variation in acceleration. It is concluded that the wheel acceleration is important to determine the E-bike’s synergetic torque performance. A comprehensive E-bike simulation environment is developed with MATLAB/Simulink to evaluate these adaptive torque control methods. In this paper, an integrated E-bike sensor hardware system is built to verify the proposed adaptive torque control.
Subjects
E-bike cycling quality | E-bike pedaling power | electric-assisted bicycle | permanent magnet motor | two-wheeler simulation
SDGs

[SDGs]SDG7

Type
journal article

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