Vibroacoustic Diagnostics of Electronic Parking Brake System

This article reports the new approach in the diagnostics of Electronic Parking Brake (EPB). Module, the electromechanic part that is used as literally electronic brake and in a hill-holder system. Each module contains the gear system, that consists of 4 rotating elements: pinion gear, worm gearbox, electric motor, and spur gear that can suffer the damage during its operation. In order to precisely define the defective element, we focus on its diagnostics with piezoelectric sensors, i.e. Micro Fiber Composite (MFC). Each of mounted piezoelectric sensors on the EPB’s housing is sensitive to the vibrations during its operation. Recorded voltage time-series are used for the quantitative estimation of the module’s condition with help of several statistical indicators. Such approach allows to state, which of elements generates high amplitudes and should be replaced. The proposed approach is the alternative to the diagnostics method applied in the company dealing with the regeneration of the EPB’s modules.

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Vibroacoustic Diagnostics of Electronic Parking Brake System

Semantic Scholar · Engineering · 2024

Abstract

This article reports the new approach in the diagnostics of Electronic Parking Brake (EPB). Module, the electromechanic part that is used as literally electronic brake and in a hill-holder system. Each module contains the gear system, that consists of 4 rotating elements: pinion gear, worm gearbox, electric motor, and spur gear that can suffer the damage during its operation. In order to precisely define the defective element, we focus on its diagnostics with piezoelectric sensors, i.e. Micro Fiber Composite (MFC). Each of mounted piezoelectric sensors on the EPB’s housing is sensitive to the vibrations during its operation. Recorded voltage time-series are used for the quantitative estimation of the module’s condition with help of several statistical indicators. Such approach allows to state, which of elements generates high amplitudes and should be replaced. The proposed approach is the alternative to the diagnostics method applied in the company dealing with the regeneration of the EPB’s modules.

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