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Adaptive fuzzy iterative control strategy for the wet-clutch filling of automatic transmission

机译:自动变速器湿式离合器加注的自适应模糊迭代控制策略

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In the gear shifting processes of an automatic transmission (AT), fast and smooth transitions between different gears without drivetrain jerking are always expected, which leads to a desire for high-quality clutch-to-clutch shifts. The accurate and effective filling control of clutches is the base for achieving desirable clutch-to-clutch shifts. This study focuses on developing an adaptive fuzzy iterative control strategy for the filling process of wet clutches in ATs. Firstly, a specific structure and dynamic characteristics of the wet clutch actuating system is analyzed to assist in the designing of control strategies. Afterwards, three types of deviations that usually occur in the filling process, named as speed drop, clutch tie-up and engine flare respectively, are defined and analyzed according to their different characteristics. The adaptive control strategy is then developed to realize the reduction of the deviations. The concrete adjustment performed by the control strategy is based on the features of the previous deviations during the adaptive iteration. Moreover, a double-input-and-double-output fuzzy logic controller (DIDO-FLC) is designed and introduced in the control strategy, which can adjust the fast filling time and the maximum fast filling pressure of the clutch simultaneously. In order to validate the proposed strategy, the results of vehicle test are presented, which demonstrate that the deviations are effectively diminished and the shifting quality is obviously improved. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在自动变速器(AT)的换挡过程中,总是希望在不同的齿轮之间实现快速,平稳的过渡而不会造成动力传动系统的晃动,这导致了人们对高质量的离合器到离合器换挡的渴望。离合器的准确和有效的填充控制是实现理想的离合器到离合器变速的基础。这项研究的重点是为AT中的湿式离合器填充过程开发自适应模糊迭代控制策略。首先,分析了湿式离合器致动系统的具体结构和动态特性,以帮助设计控制策略。然后,根据它们的不同特性,定义和分析了在填充过程中通常发生的三种类型的偏差,分别称为速度下降,离合器卡死和发动机火炬。然后,开发出自适应控制策略以实现偏差的减小。控制策略执行的具体调整基于自适应迭代过程中先前偏差的特征。此外,在控制策略中设计并引入了双输入双输出模糊逻辑控制器(DIDO-FLC),该控制器可以同时调节离合器的快速填充时间和最大快速填充压力。为了验证所提出的策略,提出了车辆测试的结果,证明了偏差得到了有效的减少,并且换档质量得到了明显改善。 (C)2019 Elsevier Ltd.保留所有权利。

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