Clutch Torque Estimation of Ball-ramp Dual Clutch Transmission using Higher Order Disturbance Observer

Dong-Hyun Kim, Seibum B. Choi
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引用次数: 1

Abstract

Ball Ramp Dual Clutch Transmission (BR-DCT) was developed for clutch torque estimation by reducing the energy consumption of the clutch actuator by using a self-energizing mechanism. However, due to model uncertainty, the estimation accuracy of the friction coefficient is poor. Therefore, this manuscript proposed a clutch torque estimation method using a higher order disturbance observer designed to estimate the time series disturbance. The proposed method was verified by powertrain test bench experiment. During the verification process, the order and pole of the target disturbance were determined.As a result of the estimation verified by experiment, the estimation accuracy using the proposed clutch torque estimation method is improved by about 20% compared to the actuator model-based estimation result, and this is expected to improve the accuracy and stability during clutch torque control.
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基于高阶扰动观测器的球匝道双离合器变速器离合器转矩估计
球坡道双离合变速器(BR-DCT)通过采用自激机构降低离合器执行器的能量消耗,用于离合器扭矩估计。然而,由于模型的不确定性,摩擦系数的估计精度较差。因此,本文提出了一种利用高阶干扰观测器估计时间序列干扰的离合器转矩估计方法。通过动力总成试验台试验验证了该方法的有效性。在验证过程中,确定了目标扰动的阶数和极点。实验结果表明,与基于作动器模型的估计结果相比,所提出的离合器转矩估计方法的估计精度提高了约20%,有望提高离合器转矩控制的精度和稳定性。
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