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Development of Clamping Force Estimation Algorithm and Clamp-force Sensor Calibration on Electromechanical Brake Systems
Author(s) -
Giseo Park,
Seibum Choi,
Dongyoon Hyun
Publication year - 2016
Publication title -
transactions of korean society of automotive engineers
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.206
H-Index - 5
eISSN - 2234-0149
pISSN - 1225-6382
DOI - 10.7467/ksae.2016.24.3.365
Subject(s) - clamping , clamp , calibration , brake , computer science , control theory (sociology) , control engineering , engineering , automotive engineering , physics , artificial intelligence , computer vision , control (management) , quantum mechanics
The electromechanical brake (EMB) is one of future brake systems due to its many advantages. For imple- mentation of the EMB, the correct feed back about clamping force is necessary. Keeping commercialization of the EMB in mind, it is strongly demanded that an expensive load cell measuring the clamping force is replaced with an estimation algorithm. In addition, an estimation of the kissing point where the brake pads start to come into contact with a disk wheel is proposed in this paper. With these estimation algorithms, the clamping force can be expressed as a polynomial characteristic curve versus the motor angle. Also, a method for calibration of measured values by the load cell is proposed and used for an actual characteristic curve. Lastly, the performance of the proposed algorithms is evaluated in comparison with the actual curve on a developed EMB test bench.

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